MTM-6 Procurement Specification.pdf
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- Attached to
- Small Aperture Mobile Telemetry Antenna System Federal contract opportunity
- Solicitation number
- 80GSFC4200892481
About this file
This document is a procurement specification for a Small Aperture Mobile L/S/C-Band Telemetry Antenna System (MTM-6) for NASA Goddard Space Flight Center's Wallops Flight Facility. The specification outlines detailed technical requirements for the antenna system including RF capabilities across multiple frequency bands (1435-5150 MHz), simultaneous RHCP and LHCP receive capability, specific gain/temperature ratios, axial ratio requirements, and tracking capabilities.
The system must be fully mobile and contained on a single self-leveling trailer, operate in sustained winds up to 40 mph, survive 80 mph winds in any position, and include comprehensive safety features like emergency stops, brake assemblies, and lightning protection. Key control requirements include an Antenna Control Unit (ACU) with multiple operational modes (Manual, Autotrack, Slave, Search, Program Track), remote monitoring capabilities, and fiber optic interfaces. The system must achieve 0.9995 inherent availability over a 20-year lifespan and include extensive IT security controls including PIV authentication, audit logging, and cybersecurity requirements aligned with NASA standards. All IP-addressable components must undergo Nessus vulnerability scanning prior to acceptance.
View the file
Other files for this federal contract opportunity
| File | Type | Posted |
|---|---|---|
| MTM-7 and MTM-8 Procurement Specification.pdf | ||
| Wallops RMMO Mobile Antenna Procurement SOW_Draft_Redacted.pdf |
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Text version
A B C D E
RF Requirements
2200.02.0010 The antenna system shall meet all performance specifications while operating between 1435 and 1525 MHz. M
2200.02.0015 The antenna system shall meet all performance specifications while operating between 1780 and 1850 MHz. M
2200.02.0020 The antenna system shall meet all performance specifications while operating between 2200 and 2290 MHz. M
2200.02.0025 The antenna system shall meet all performance specifications while operating between 2360 and 2395 MHz. M
2200.02.0030 The antenna system shall meet all performance specifications while operating between 4400 and 4940 MHz. M
2200.02.0032 The antenna system shall meet all performance specifications while operating between 5091 and 5150 MHz. M
2200.02.0035 The antenna system shall provide simultaneous RHCP and LHCP receive capability in the L, S and C bands. M
2200.02.0040 The antenna system shall split the received power of any linear or circular polarized signal into separate RHC and LHC components for signal processing.
M
2200.02.0045 The maximum L-Band axial ratio in RHC and LHC shall be 1.5 dB between 1435 and 1540 MHz. M
2200.02.0050 The maximum L-Band axial ratio in RHC and LHC shall be 1.5 dB between 1650 and 1710 MHz. M
2200.02.0055 The maximum S-Band axial ratio in RHC and LHC shall be 1.5 dB between 2200 and 2290 MHz. M
2200.02.0060 The maximum S-Band axial ratio in RHC and LHC shall be 1.5 dB between 2360 and 2395 MHz. M
2200.02.0065 The maximum C-Band axial ratio in RHC and LHC shall be 1.5 dB between 4400 and 4940 MHz. M
2200.02.0067 The maximum C-Band axial ratio in RHC and LHC shall be 1.5 dB between 5091 and 5150 MHz. M
2200.02.0068 The antenna system shall separate the tracking and data channels. M
2200.02.0070
The minimum RHC and LHC G/T over the frequency range of 1435 and 1540MHz measured at the output of the multicoupler shall be a minimum of
5.0 dB/K under the following conditions: 1.) elevation angle greater than 5 deg, 2.) clear sky at ambient temperature.
M
2200.02.0075
The minimum RHC and LHC G/T over the frequency range of 1650 and 1710MHz measured at the output of the multicoupler shall be a minimum of
5.0 dB/K under the following conditions: 1.) elevation angle greater than 5 deg, 2.) clear sky at ambient temperature.
M
Project Description:
MTM-6 RTVM
Small Aperture Mobile L/S/C-Band TM Antenna System
Procurement Specification Project Name:
RSM Name:
Project Engineer Name:
Test Procedure Title:
MTM-6 Antenna System Development
REQ ID Requirement Text Requirement TypeParent Requirement Additional
Comments
A B C D E
Project Description:
MTM-6 RTVM
Small Aperture Mobile L/S/C-Band TM Antenna System
Procurement Specification Project Name:
RSM Name:
Project Engineer Name:
Test Procedure Title:
MTM-6 Antenna System Development
REQ ID Requirement Text Requirement TypeParent Requirement Additional
Comments
2200.02.0080
The minimum RHC and LHC G/T over the frequency range of 2200 and 2290 MHz measured at the output of the multicoupler shall be a minimum of
10.0 dB/K under the following conditions: 1.) elevation angle greater than 5 deg, 2.) clear sky at ambient temperature.
M
2200.02.0085
The minimum RHC and LHC G/T over the frequency range of 2360 and 2395 MHz measured at the multicoupler output shall be a minimum of 10.0 dB/K under the following conditions: 1.) elevation angle greater than 5 deg, 2.) clear sky at ambient temperature.
M
2200.02.0090
The minimum RHC and LHC G/T over the frequency range of 4400 and 4940 MHz measured at the multicoupler output shall be a minimum of 13.0 dB/K under the following conditions: 1.) elevation angle greater than 5 deg, 2.) clear sky at ambient temperature.
M
2200.02.0092
The minimum RHC and LHC G/T over the frequency range of 5091 and 5150MHz measured at the multicoupler output shall be a minimum of 13.0 dB/K under the following conditions: 1.) elevation angle greater than 5 deg, 2.) clear sky at ambient temperature.
M
2200.02.0095 The L-Band RHC and LHC receive channels shall have a maximum gain flatness of 1.0 dB pk-pk over any 10 MHz frequency range across the required operating frequency range.
M
2200.02.0100 The S-Band RHC and LHC receive channels shall have a maximum gain flatness of 1.0 dB pk-pk over any 35 MHz frequency range across the required operating frequency range.
M
2200.02.0105 The C-Band RHC and LHC receive channels shall have a maximum gain flatness of 1.5 dB pk-pk over any 400 MHz frequency range across the required operating frequency range.
M
2200.02.0110 The RF alignment angle between L and S-Band shall be less than 0.2 degrees M
2200.02.0115 The RF alignment angle between L and C-Band shall be less than 0.1 degrees M
2200.02.0120 The RF alignment angle between S and C-Band shall be less than 0.1 degrees M
2200.02.0125 The first sidelobe level shall be ≤ -20 dB referenced from the beam peak at the center of each band. M
2200.02.0130 The L, S- and C-band Low Noise Amplifiers (LNA) shall have an output 1 dB compression point of no less than +15 dBm over all supported frequency bands.
M
A B C D E
Project Description:
MTM-6 RTVM
Small Aperture Mobile L/S/C-Band TM Antenna System
Procurement Specification Project Name:
RSM Name:
Project Engineer Name:
Test Procedure Title:
MTM-6 Antenna System Development
REQ ID Requirement Text Requirement TypeParent Requirement Additional
Comments
2200.02.0135
The antenna system shall include separate multicouplers for the RHCP and LHCP paths with the performance parameters defined below:
- Frequency: 1435 – 5150 MHz
- 1 input, 12 output
- Gain: 0 to 3 dB
- Noise Factor < 6 dB
- Input Level @ 1 dB Gain Compression: > -10 dBm
- Isolation between outputs: >60 dB
M
2200.02.0140 The Antenna shall have L-band RHCP and LHCP receive channels with the amplitude balanced to within +/-1.0 dB of each other at the output of the multicoupler.
M
2200.02.0145 The Antenna shall have S-band RHCP and LHCP receive channels with the amplitude balanced to within +/-1.0 dB of each other M
2200.02.0150 The Antenna shall have C-band RHCP and LHCP receive channels with the amplitude balanced to within +/-1.0 dB of each other M
2200.02.0155
The Antenna shall be equipped with a filter to reject RFI with the following specifications:
-Passband: 1435-1850MHz, 2200-2400MHz & 4400-5150 MHz -Insertion Loss: 0.5 dB max -Rejection: 40 dB min from 0-1200MHz, 1930-2120 MHz & 2700-4000 MHz
M
2200.02.0157 The antenna shall be controllable either from a remote location or locally by an operator. M
Antenna Control Unit Requirements
2200.02.0160 The antenna system shall provide an electrical hand control for moving the antenna at the pedestal that is also capable of backing out of mechanical stops
M
2200.02.0165 The Antenna shall disable ACU control when the antenna is being operated at the pedestal. M
2200.02.0170 The ACU shall have the following operational modes: Manual, Autotrack, Slave, Search, Program Track, and Launch Acquisition. M
2200.02.0175 The ACU shall have touch screen operation that allows access to all modes of operation. M
2200.02.0180 The ACU shall have a keyboard that can be used to enter parameter values and mouse that can be used to provide the same functions as the touch screen.
A B C D E
Project Description:
MTM-6 RTVM
Small Aperture Mobile L/S/C-Band TM Antenna System
Procurement Specification Project Name:
RSM Name:
Project Engineer Name:
Test Procedure Title:
MTM-6 Antenna System Development
REQ ID Requirement Text Requirement TypeParent Requirement Additional
Comments
2200.02.0185 The actual antenna AZ and EL position angles and commanded angles shall be displayed on the ACU front panel with a minimum resolution of 0.01 degree.
M
2200.02.0190 When manual mode is selected, the antenna shall be positioned using hand wheel controls on the ACU front panel or via values typed in via keyboard. M
2200.02.0195 The antenna hand wheel controls shall be locked-out when operation is in auto or program track modes. M
2200.02.0200 The autotrack SNR threshold shall have a minimum adjustment of 0.5 dB from the ACU front panel. M
2200.02.0205 The autotrack threshold hysteresis shall be adjustable from 1 to 20 dB at the ACU front panel. M
2200.02.0210 The ACU shall be able to select from up to eight slaving eLTAS sources. M
2200.02.0215 The ACU shall display the following for the eLTAS slave sources: table of computed AZ/EL angles based on antenna location, Q and T bit (red or green), SITE ID, latency.
M
2200.02.0220 The ACU shall have an Ethernet interface that will be used to receive eLTAS data in multicast UDP M
2200.02.0221 The ACU shall have an Ethernet interface that will be used to receive eLTAS data in broadcast UDP M
2200.02.0222 The ACU shall have an Ethernet interface that will be used to receive eLTAS data in unicast UDP M
2200.02.0225 The ACU shall synchronize its clock with both IRIG-B and NTP time. M
2200.02.0230 The program mode shall point the antenna based on information contained in an Internet Prediction (INP), Internet Prediction version 3 (INPv3), Improved Inter-Range Vector (IIRV), or Two Line Element (TLE) text files.
M
2200.02.0235 The ACU shall have the capability to stow the antenna to preset elevation and azimuth angles. M
2200.02.0240 The antenna system shall have a remote stow pin which is controlled via the
ACU. M
2200.02.0245 The ACU shall display the brakes & interlock status M
2200.02.0250 The antenna system ACU shall have a cable wrap indicator which is displayed on the front panel. M
2200.02.0255 The antenna system ACU shall sense the cable wrap and when configuring for tracking event, drive the azimuth axis in the direction to reduce, minimize or zero out the cable wrap.
A B C D E
Project Description:
MTM-6 RTVM
Small Aperture Mobile L/S/C-Band TM Antenna System
Procurement Specification Project Name:
RSM Name:
Project Engineer Name:
Test Procedure Title:
MTM-6 Antenna System Development
REQ ID Requirement Text Requirement TypeParent Requirement Additional
Comments
2200.02.0257 The antenna system ACU shall display a cable wrap warning after an INP trajectory is loaded if a cable wrap issue during the track is predicted. M
2200.02.0260 The eLTAS sources shall be selectable in real-time by touch screen or mouse from the ACU front panel and displayed in a table format. M
2200.02.0262
The antenna system shall capture and record tracking log files for a User Mission Platform support and include the following information at a minimum:
- Date & UTC Time
- Antenna Location Information (latitude, longitude, WGS-84 ellipsoid height)
- Selected RX
- LHC and RHC dB values
- LHC and RHC AGC values in volts
- INP Launch Indicator
- Azimuth and Elevation Commanded/Actual Angles
- Slave source information (AZ , EL , Q & T Bit , SID , Latency)
- Time Tagging of each data entry
- Limit Conditions
- ACU Modes of operation
- Tracking Receiver AGC values
- Demod AZ/EL values and voltages
- System alarms
M
2200.02.0263 The Antenna shall provide record tracking log files at an adjustable rate between 10 Hz and 100 Hz M
2200.02.0264 The Antenna Control Unit shall be equipped with removable hard drive M
Antenna Tracking Requirements
2200.02.0187 The system shall have a frequency tuning resolution of 10 kHz in all bands of operation. M
2200.02.0265 The Antenna shall provide L-band Azimuth angle tracking in autotrack to within 0.03 (TBR) degrees, 1-sigma, with a granularity of 0.01 degrees M
2200.02.0270 The Antenna shall provide L-band Elevation angle tracking in autotrack to within 0.05 degrees, 1-sigma, with a granularity of 0.01 degrees M
A B C D E
Project Description:
MTM-6 RTVM
Small Aperture Mobile L/S/C-Band TM Antenna System
Procurement Specification Project Name:
RSM Name:
Project Engineer Name:
Test Procedure Title:
MTM-6 Antenna System Development
REQ ID Requirement Text Requirement TypeParent Requirement Additional
Comments
2200.02.0275 The Antenna shall provide S-band Azimuth angle tracking in autotrack to within 0.05 degrees, 1-sigma, with a granularity of 0.01 degrees M
2200.02.0280 The Antenna shall provide S-band Elevation angle tracking in autotrack to within 0.05degrees, 1-sigma, with a granularity of 0.01 degrees M
2200.02.0285 The Antenna shall provide C-band Azimuth angle tracking in autotrack to within 0.05degrees, 1-sigma, with a granularity of 0.001 degrees M
2200.02.0290 The Antenna shall provide C-band Elevation angle tracking in autotrack to within 0.05degrees, 1-sigma, with a granularity of 0.001 degrees M
2200.02.0295 The Antenna shall provide Azimuth angle tracking in program track mode to within 0.050 degrees, 1-sigma. M
2200.02.0300 The Antenna shall provide Elevation tracking in program track mode to within
0.050 degrees, 1-sigma. M
2200.02.0302 The Antenna shall be configured to track two RF frequencies from any combination of bands. M
2200.02.0303 The Antenna shall switch between L-band autotrack to S-band autotrack when S-band SNR is above the S-band autotracking threshold and when automatic switchover from S-band to L-band autotracking is enabled
M
2200.02.0304 The Antenna shall switch between S-band autotrack to L-band autotrack when L-band SNR is above the L-band autotracking threshold and when automatic switchover from L-band to S-band autotracking is enabled
M
2200.02.0305 The Antenna shall switch between S-band autotrack to C-band autotrack when C-band SNR is above the C-band autotracking threshold and when automatic switchover from C-band to S-band autotracking is enabled
M
2200.02.0310
The Antenna shall switch between C-band autotrack to S-band autotrack when C-band SNR is below the C-band autotracking threshold and when the S-band SNR is above the S-band autotracking threshold and when automatic switchover from C-band to S-band autotracking is enabled.
M
2200.02.0311 The Antenna shall switch between L-band autotrack to C-band autotrack when C-band SNR is above the C-band autotracking threshold and when automatic switchover from C-band to L-band autotracking is enabled
A B C D E
Project Description:
MTM-6 RTVM
Small Aperture Mobile L/S/C-Band TM Antenna System
Procurement Specification Project Name:
RSM Name:
Project Engineer Name:
Test Procedure Title:
MTM-6 Antenna System Development
REQ ID Requirement Text Requirement TypeParent Requirement Additional
Comments
2200.02.0312 The Antenna shall switch between C-band autotrack to L-band autotrack when L-band SNR is above the L-band autotracking threshold and when automatic switchover from L-band to C-band autotracking is enabled
M
2200.02.0317 The Antenna shall acquire and maintain autotrack for the primary frequency band once the SNR threshold is met and as long as SNR is at or above the threshold.
M
2200.02.0320 The Antenna shall program track the customer spacecraft with the antenna based on the TLE orbit determination message format as specified in Wallops Range Data Formats (36FC1-TECM-000012).
M
2200.02.0330 The Antenna shall program track the customer spacecraft with the antenna based on the IIRV orbit determination message format as specified in Wallops Range Data Formats (36FC1-TECM-000012).
M
2200.02.0340 The Antenna shall program track the customer spacecraft with the antenna based on the INPv3 orbit determination message format as specified in Wallops Range Data Formats (36FC1-TECM-000012).
M
2200.02.0345
The antenna system slave mode shall be capable of pointing the antenna based on earth-centered earth-fixed (ECEF) position and velocity data input to the ACU in the Ethernet Launch Trajectory Acquisition System (eLTAS) data format as specified in Wallops Range Data Formats (36FC1-TECM- 000012).
M
2200.02.0350 The Antenna shall express angular tracking to a resolution of 0.01 degrees. M
Test Inject Requirements
2200.02.0355 The antenna system shall incorporate a test inject capability in the L-Band RHC and LHC receive channels M
2200.02.0360 The antenna system shall incorporate a test inject capability in the S-Band RHC and LHC receive channels M
2200.02.0365 The antenna system shall incorporate a test inject capability in the C-Band RHC and LHC receive channels M
2200.02.0370 The antenna system test inject shall be closed loop and directly coupled or switched into the receive channel prior to the feed Filter/LNA input. M
2200.02.0380 The test inject shall be one RF line source that feeds each polarization at a balanced RF level not to exceed +/- 1.0dB at the test inject feed point across all bands of operation.
M
2200.02.0383 The antenna shall be fully mobile and contained on a single trailer when packed up. M
Antenna Pedestal and Drive System Requirements
A B C D E
Project Description:
MTM-6 RTVM
Small Aperture Mobile L/S/C-Band TM Antenna System
Procurement Specification Project Name:
RSM Name:
Project Engineer Name:
Test Procedure Title:
MTM-6 Antenna System Development
REQ ID Requirement Text Requirement TypeParent Requirement Additional
Comments
2200.02.0385 The antenna system shall include a cable wrap system. M
2200.02.0387 The antenna system trailer shall be self-levelling. M
2200.02.0390 The antenna system shall include pedestal levelness adjustment capability of variable adjustment up to 0.2 degrees. M
2200.02.0395 The pedestal levelness shall be within 0.1 degrees measured at the T-head (center of rotation) in any of the quadrants. M
2200.02.0400 The antenna system shall drive into stow position from any position, when commanded M
2200.02.0405 The antenna sub-system shall have a minimum azimuth travel of +/- 540 degrees over the full azimuth travel range. M
2200.02.0410 The antenna sub-system shall have total elevation travel greater than or equal to -5 to 185 degrees over the full elevation travel range. M
2200.02.0415 The Antenna shall have an azimuth velocity that is adjustable and capable of ≥20°/sec M
2200.02.0420 The Antenna shall have an elevation velocity that is adjustable and capable of ≥ 20°/sec M
2200.02.0425 The Antenna shall have an azimuth axis acceleration that is adjustable and capable of ≥ 20°/sec^2 M
2200.02.0430 The Antenna shall have an elevation axis acceleration that is adjustable and capable of ≥ 20°/sec^2 M
Mobile Antenna System Requirements
2200.02.0157 The antenna shall be controllable either from a remote location or locally by an operator M
2200.02.0383 The antenna shall be fully mobile and contained on a single trailer when packed up. M
2200.02.0387 The antenna system trailer shall be self-levelling. M
2200.02.0388 The antenna system shall include provisions to accommodate up to 12u of rack mounted equipment on the trailer. M
Fiber Optic Requirements
2200.02.0435 The antenna system Fiber Optic Transmit (FOT) and Fiber Optic Receive (FOR) modules shall be mounted in the antenna and paired with matching performance FOT and FOR units to be installed in the equipment room rack.
M
2200.02.0445 The vendor shall provide fiber optic links that operate over a frequency range of 1400 – 5300 MHz. M
2200.02.0450 The vendor shall compute and propose the optimal gain and noise figure balance for the fiber optic links. M
2200.02.0460 The vendor shall use LC UPC connectors on all fiber modules at both the base of the antenna and in the control room . M
A B C D E
Project Description:
MTM-6 RTVM
Small Aperture Mobile L/S/C-Band TM Antenna System
Procurement Specification Project Name:
RSM Name:
Project Engineer Name:
Test Procedure Title:
MTM-6 Antenna System Development
REQ ID Requirement Text Requirement TypeParent Requirement Additional
Comments
2200.02.0465 The fiber module chassis shall accommodate hot swappable TX and RX fiber modules and include redundant power supplies M
2200.02.0466 The antenna system shall utilize singe mode fiber for all fiber connections. M
Environmental, Safeth & Health Requirements
2200.02.0475 The Antenna shall interface lightning rods and ground conductors with the site’s lightning grounding M
2200.02.0480 The Antenna shall have ground conductors that are cadwelded to the site’s ground system per MIL-HDBK-419A. M
2200.02.0485
The Antenna shall be equipped with lightning rods attached to the main structure and lightning ground conductors to protect the antenna per National Fire Protection Agency (NFPA)-780 Standard for the Installation of Lightning Protection Systems
M
2200.02.0490 The Antenna shall be designed to protect employees and equipment from predictable hazards associated with antenna installation, operation, maintenance, and service.
M
2200.02.0495 The Antenna shall have electrical disconnects that are in accessible locations. M
2200.02.0500 The Antenna shall have operating equipment used in the design that does not exceed noise levels of 80 dBA at 3 feet from the equipment. This does not include audible alarms or other warning devices.
M
2200.02.0505 The Antenna shall be designed to protect personnel working at heights from falls in accordance with OSHA 29 CFR 1910/1926 and the ANSI Z359, Fall Protection Code Series.
M
2200.02.0510 The Antenna shall have climbing surfaces both internal and external that are equipped with appropriate non-skid surface or coatings. M
2200.02.0515 The Antenna shall appropriately protect equipment that may be damaged by falling materials during installation, service, or maintenance. M
2200.02.0520
The Antenna shall have interior spaces that are designed with LED lighting meeting the requirements of OSHA 29 CFR 1926.56(a) Table D-3 Illumination and American National Standards Institute (ANSI) A11.1-1965, R1970, Practice for Industrial Lighting, for recommended values of illumination.
M
2200.02.0525 The Antenna shall have interior spaces that are equipped with emergency LED lighting to allow egress in the event of a power loss. M
A B C D E
Project Description:
MTM-6 RTVM
Small Aperture Mobile L/S/C-Band TM Antenna System
Procurement Specification Project Name:
RSM Name:
Project Engineer Name:
Test Procedure Title:
MTM-6 Antenna System Development
REQ ID Requirement Text Requirement TypeParent Requirement Additional
Comments
2200.02.0530 The Antenna shall provide antenna activation lights to clearly indicate when the antenna is active. M
2200.02.0535 The Antenna shall have a design that allows for safe service or maintenance. M
2200.02.0550
The Antenna shall have position sensing and drive control for limit-stopping to allow for a sufficiently gradual decrease of the antenna angular momentum to prevent the antenna from abruptly hitting the limit-stop and damaging the limit switch or the drive mechanism.
M
2200.02.0555 The Antenna shall have software-controlled limit stops implemented to prevent the antenna from moving beyond its safe operating range on any axis.
M
2200.02.0557 The Antenna shall have electrically controlled limit stops implemented to prevent the antenna from moving beyond its safe operating range on any axis.
M
2200.02.0558 The Antenna shall have hard mechanical stops to prevent the antenna from moving beyond its safe operating range on any axis as a last resort if software or electrical limits fail.
M
2200.02.0560 The Antenna shall be equipped with emergency stops to disable all moving parts on the antenna system. M
2200.02.0565 The Antenna shall allow for the expansion of additional emergency stops or interlock devices M
2200.02.0575 The Antenna shall have stow pins that are electrically sensed when the stow pins are inserted, for all axes. M
2200.02.0580 The Antenna shall have stow pins that are interlocked to prevent damage to the antenna. M
2200.02.0605 The Antenna shall include a mechanical or electrical release for the brakes in the event electrical power is not available M
2200.02.0610 The Antenna shall include brake assemblies that are capable of stopping antenna movement when activated. M
2200.02.0615 The Antenna shall include brake assemblies activate in the event of a power failure (fail-safe) M
2200.02.0620 The Antenna shall include brake assemblies capable of holding the antenna in wind velocities of 80 miles per hour (mph) without any damage at any antenna position orientation.
M
2200.02.0625 The Antenna shall have stow pins that can physically lock the antenna axes in place. M
2200.02.0630 The Antenna shall meet FAA lighting and marking requirements. M
2200.02.0635 The Antenna shall have all equipment components capable of exceeding 52℃ (125°F) at their surface and should be guarded to prevent inadvertent contact.
A B C D E
Project Description:
MTM-6 RTVM
Small Aperture Mobile L/S/C-Band TM Antenna System
Procurement Specification Project Name:
RSM Name:
Project Engineer Name:
Test Procedure Title:
MTM-6 Antenna System Development
REQ ID Requirement Text Requirement TypeParent Requirement Additional
Comments
2200.02.0637 The Antenna shall incorporate a latch on any entry door to secure the door in the position. M
2200.02.0640 The Antenna shall have isolation devices to isolate hazardous energy sources located outside of any hazardous area for personnel to safely apply LOTO devices prior to beginning maintenance activities.
M
General Requirements
2200.02.0650
The antenna system vendor shall install all control room equipment in a standard contractor supplied EIA 19-inch four post rack(s) (H-87” x W-24” x D-30”) that conform to the interface requirements of EIA-310-D, Cabinets, Racks, Panels and Associated Equipment.
M
2200.02.0655 The antenna system shall have a pressurized dry air system to protect critical subassemblies (such as the feed) from moisture, condensation, and corrosion damage.
M
2200.02.0660 The indoor operating components shall operate up to 90% humidity non-condensing M
2200.02.0665 The indoor operating components shall operate in temperatures from 0 to 50℃ (32 to 122°F) M
2200.02.0670 The antenna sub-system power shall be 208/120 VAC, 3-phase, 4-wire, 60Hz. M
2200.02.0675 The antenna shall be equipped with a minimum of four 120-volt 60 Hz AC power outlets in the antenna pedestal. M
2200.02.0685 The antenna subsystem electrical power distribution (panels, wiring, etc.)
shall be designed and installed in accordance with National Electrical Code. M
2200.02.0690 The vendor shall provide power transformation component(s) required to allow all antenna system component(s) to interface with voltage(s) and utility line frequency as described in this SRD and corresponding SOW.
M
2200.02.0695 The antenna system vendor shall install 2 spare RF cables in the cable wrap in the pedestal for future use. M
2200.02.0700 Any Commercial-Off-The-Shelf (COTS) equipment used in the antenna system will be expected to meet the FCC Class A or B electromagnetic radiated and conducted emission levels.
A B C D E
Project Description:
MTM-6 RTVM
Small Aperture Mobile L/S/C-Band TM Antenna System
Procurement Specification Project Name:
RSM Name:
Project Engineer Name:
Test Procedure Title:
MTM-6 Antenna System Development
REQ ID Requirement Text Requirement TypeParent Requirement Additional
Comments
2200.02.0725
The Antenna Subsystem shall comply with the Wallops Range Environment IT Security Control Requirements Form
Rationale: These are the NIST/NASA Security requirements a Program/Engineer/Vendor will need to meet and maintain for their device/system within the Wallops Flight Facility Range environment. The Range ISO Implementation Team is the formal name for the ROC IT Security group.
See Requirements 2200.02.0985 - 2200.02.1059 for full scope
M
2200.02.0730
The Antenna Subsystem shall complete a security impact analysis (SIA)
Rationale: The Security Impact Analysis is a part of the Engineering Project Delivery Lifecycle within the Engineering Management Plan and is a required to obtain CCB approval to proceed. The Security Impact Analysis is captured in FORM-000385
M
2200.02.0735 The antenna system networked electronics shall accept a Nessus network vulnerability scan without any adverse effect to operational state. M
2200.02.0740
The antenna system shall meet NASA NPR-7150.2D, NASA Software Engineering Requirements for a Class C non-safety critical system.
Note: Vendor specific requirements/deliverables to meet this requirement are noted in the SOW.
2200.02.0745 All Ethernet connected, IP based, subsystem elements shall be connected to government furnished network equipment. M
Monitor & Control Requirements
2200.02.0750 The Antenna shall allow for remote monitor & control of all user-configurable parameters M
2200.02.0752
The Antenna equipment shall be capable of remote monitor and control and compatible with third party applications by supporting industry standards (i.e., SNMP Read and Write) or by providing an exposed and documented API (i.e., RESTful API) or ICD.
M
2200.02.0755 The Antenna shall accept remote time-tagged axis position commands at a minimum rate of 10 Hz and act upon those commands at the designated time specified.
M
2200.02.0760 The Antenna shall allow each axis of the antenna to be positioned to an accuracy within 0.05 degrees of the commanded position received from the external monitor and control interface.
A B C D E
Project Description:
MTM-6 RTVM
Small Aperture Mobile L/S/C-Band TM Antenna System
Procurement Specification Project Name:
RSM Name:
Project Engineer Name:
Test Procedure Title:
MTM-6 Antenna System Development
REQ ID Requirement Text Requirement TypeParent Requirement Additional
Comments
2200.02.0765 The Antenna shall accommodate a minimum of 5 simultaneous connections for remote status. M
2200.02.0770 The Antenna shall allow for a minimum of one point per second status querying and/or provide status data automatically at a minimum rate of once per second.
M
2200.02.0775
The Antenna shall provide time-tagged remote status indication of antenna position (actual and commanded to an accuracy of 0.001 degrees), cable wrap, limit indications, autotrack error, autotrack status, autotrack channel, signal level, axis mode, coordinate system, time synchronization, and system errors.
M
2200.02.0780 The Antenna shall provide logging of system activities, current status, and remote communications, time-tagged to the nearest second and user-accessible
M
Camera Requirements (NA) Operational Environment Requirements
2200.02.0810 The RMMO TM Antenna Systems shall operate in sustained winds of 40 mph within 3 dB beamwidth of all supported bands without degradation to the pointing accuracy.
M
2200.02.0815 RMMO TM System Antennas shall survive winds of 80 mph winds in any position and 129 mph in stow without structural damage. M
2200.02.0820 New equipment installed as part of the RMMO TM System that is exposed to outdoor environment shall operate in the ambient temperature range of -26 C to 54 C (-15° Fahrenheit (F) to +130° F).
M
2200.02.0825
New equipment installed as part of the RMMO TM System, exposed to outdoor environment, in a non-operating state shall withstand continuous exposure to temperatures between -30 C to 70 C (-22° F to +158° F), without solar radiation and with negligible air movement.
M
2200.02.0830 New equipment installed as part of the RMMO TM System, exposed to outdoor environment shall be capable of withstanding rain rates of up to 10 centimeter (cm)/hr (4 in/hr) without structural damage.
M
2200.02.0835 All electrical components, enclosures, cables and connectors exposed to outdoor environment shall be rated for outdoor use and sealed to prevent water intrusion.
M
2200.02.0840 New equipment installed as part of the RMMO TM System, exposed to outdoor environment shall be capable of meeting all performance requirements for up to 100% relative humidity with condensation.
A B C D E
Project Description:
MTM-6 RTVM
Small Aperture Mobile L/S/C-Band TM Antenna System
Procurement Specification Project Name:
RSM Name:
Project Engineer Name:
Test Procedure Title:
MTM-6 Antenna System Development
REQ ID Requirement Text Requirement TypeParent Requirement Additional
Comments
2200.02.0845
New equipment installed as part of the RMMO TM System, exposed to outdoor environment shall withstand continuous exposure to relative humidity as low as 5% at an air temperature of 50 C (+122° F) and as high as 100% at temperatures ranging from -30 C to 30 C (-22° F to +86° F), with condensation at all temperatures lower than 30 C (+86° F).
M
2200.02.0850
New equipment installed as part of the RMMO TM System, exposed to outdoor environment shall be capable of meeting all performance requirements in direct solar radiation levels of at least 1,120W/m^2 (355 British Thermal Units (BTU)) per hour (hr) per ft2).
M
2200.02.0855 New equipment installed as part of the RMMO TM System shall be configured to preclude the intrusion of dirt and dust. M
2200.02.0860 New equipment installed as part of the RMMO TM System shall be made to prevent infestation by insects, birds and vermin. M
2200.02.0865 New equipment installed as part of the RMMO TM System shall utilize materials, finishes, and seals suitable for the installation site environment. M
2200.02.0870 New equipment installed as part of the RMMO TM System shall survive 1-inch diameter hail in winds of 48 km/hr (30 mph) without damage or permanent performance degradation.
M
2200.02.0875 New equipment installed as part of the RMMO TM System shall be capable of withstanding 19mm (0.75 in) of ice in winds of 64 km/hr (40 mph) without damage.
M
2200.02.0880 After coating, the exterior surfaces of both fixed and transportable antenna systems shall be painted with white urethane enamel, matching color chip 27875 or 37875 of FED STD-595.
M
2200.02.0885 The treatment of structural components and joints between dissimilar metals shall follow the guidelines of MIL-STD 889B or approved commercial equivalents.
M
2200.02.0890 Sealant, including mastics, used on joints and seams shall be used according to the sealant manufacturer’s recommendations. M
2200.02.0895 Secondary coatings shall be applied to any vendor-supplied components, which do not have an approved high-quality corrosion-resistant coating. M
Availability, Reliability and Maintainability Requirements
2200.02.0900 The Antenna System shall achieve an inherent availability (Ai) of .9995 as defined in NASA-STD-8729.1 M
2200.02.0905 The antenna system vendor shall provide a complete system FMEA M
A B C D E
Project Description:
MTM-6 RTVM
Small Aperture Mobile L/S/C-Band TM Antenna System
Procurement Specification Project Name:
RSM Name:
Project Engineer Name:
Test Procedure Title:
MTM-6 Antenna System Development
REQ ID Requirement Text Requirement TypeParent Requirement Additional
Comments
2200.02.0910 The Antenna System shall include spare Line Replaceable Units (LRU) that are required to support the achievement of the required operational availability.
M
2200.02.0915 The Antenna System shall facilitate fault detection and fault isolation to the LRU level. M
2200.02.0920
The Mean Time Between Failure (MTBF) of the antenna system shall be greater than 2,000 hours in accordance with MIL-HDBK-217 or similar method, where the antenna shall be considered as failed when any major antenna component (any LNA, any HPA, Antenna Drive, any RF switch, etc.)
fails.
M
2200.02.0925 The Mean Time to Repair (MTTR) for all Range TM System equipment, except for repairs on antennas, shall not exceed 1.0 hours. M
2200.02.0930 The antenna system shall be designed to meet all the requirements in this document over a life of 20 years with appropriate preventative maintenance and sustainment support.
M
2200.02.0935 Systems and devices shall transport over an IEEE 802 wired Network (Range Mission Network, Corportate Network) for local and remote operations.
M
2200.02.0940 Networked systems and devices shall be IPv4 compatible. M
2200.02.0945 System network devices shall be IPV6 compatible D
2200.02.0950 Networked systems that require communication redundancy shall have multiple dedicated {Ethernet} interfaces. D
2200.02.0955 Networked systems shall be compatible with standard RJ45 10/100/1,000/10,000 Copper Ethernet ports. M
2200.02.0960 Networked systems and devices shall have dedicated unique IPv4/IPv6 address(s). M
2200.02.0965 Networked systems and devices shall be compatible with DHCP. D
2200.02.0970 Networked systems and devices shall auto-negotiate speeds {10/100/1000/10000}. D
2200.02.0975 Networked systems and devices shall auto-negotiate duplex {Full/Half}. D
2200.02.0980 Networked systems and devices shall be capable of IEEE standard 802.1X for port-based network access control (PNAC). D
2200.02.0985
The project shall document any deviation from the following list of IT Security requirements, even when stronger/stricter requirements are implemented, with technical justification to support continuous monitoring assessments on the ROC IT Security Requirements Exception Form (FORM-000428).
A B C D E
Project Description:
MTM-6 RTVM
Small Aperture Mobile L/S/C-Band TM Antenna System
Procurement Specification Project Name:
RSM Name:
Project Engineer Name:
Test Procedure Title:
MTM-6 Antenna System Development
REQ ID Requirement Text Requirement TypeParent Requirement Additional
Comments
2200.02.0986 The project shall develop a NAMS workflow process (Complete Application Information Form) for requesting access to the system, if a NAMS workflow does not currently exist.
M
2200.02.0987 All external administrators and users of NASA owned systems shall create a NASA identity via the NASA Access Launchpad website, selecting First Time User in the upper right of the screen then following the five-step process.
M
2200.02.0988
After the NAMS workflow has been defined and the initial training has been completed, the project or area supervisor shall submit a NAMS request for Individuals identified in the Security Impact Analysis (SIA) Form as a user or system administrator.
M
2200.02.0989 The project shall design the information system with separate user and administrator accounts to support the least privilege principles. M
2200.02.0990 The information system shall enforce approved authorizations to information and system resources for the defined accounts. M
2200.02.0991 The project shall document the separation of duties defining system access authorization differences between users and administrators. M
2200.02.0992 The information system shall employ least privilege for specific duties allowing users to operate the system to support missions without requiring administrative privileges.
M
2200.02.0993 The information system shall not be purchased with wireless network interfaces, as wireless access is not permitted. (unless specifically required). M
2200.02.0994 If iformation systems contain wireless network interfaces, they shall be removed or administratively disabled and secured from re-activation. M
2200.02.0995
After creating a NASA identity, all external administrators and users of NASA owned systems shall take the following initial no cost training in NASA’s SATERN Learning Management System (LMS):
ITS-0YY-001 – FYYYYY Cybersecurity and Sensitive Unclassified Information Awareness Training*
*Where YY is the fiscal year, e.g., ITS-018-001 – FY2018 Cybersecurity…
HQ—025-07 NASA Records Management for Everyone
A B C D E
Project Description:
MTM-6 RTVM
Small Aperture Mobile L/S/C-Band TM Antenna System
Procurement Specification Project Name:
RSM Name:
Project Engineer Name:
Test Procedure Title:
MTM-6 Antenna System Development
REQ ID Requirement Text Requirement TypeParent Requirement Additional
Comments
2200.02.0996
Individuals identified in the Security Impact Analysis (SIA) Form as a user or system administrator shall take the following elevated privileges (EP) related training in NASA’s SATERN Learning Management System (LMS) after their NAMS request has been approved:
Users Granted EP for Longer than 30 Days
ITS-002-09 – Elevated Privileges on NASA Information Systems training
An appropriate operating system (OS) course for each OS on which the person will have EP. See the list of OS courses below under OPERATING SYSTEMS.
System Administrators ITS-002-09 – Elevated Privileges on NASA Information Systems training ITS-RB1-SA – IT Security for System Administrators – Beginning Level ITS-RB2-SA – IT Security for System Administrators – Intermediate Level
An appropriate OS course for each OS on which the person will have EP. See the list of OS courses below under
OPERATING SYSTEMS.
Windows 10 - Managing Modern Desktops: Device Authentication Windows 11 - Windows: Advanced Troubleshooting in Windows 11 Linux – CompTIA Linux+: Security Best Practices Getting Started with Linux System Administration Tasks macOS – MAC OS X Security (ITS-001-09 – SATERN
Application Administrators
ITS-002-09 – Elevated Privileges on NASA Information Systems training SS-SP_SOAA_A01_IT_ENUS – Securing User Accounts: Fundamental Security Concepts Database Administrators ITS-002-09 – Elevated Privileges on NASA Information Systems training SS-CL_DICP_A06_IT_ENUS – SQL Server Database Security Operating Systems
Windows 10: SS-MW_WDMC_A03_IT_ENUS – Microsoft Windows 10: Supporting Authentication, Permissions, and Data Security Mac OS: ITS-001-09 – Mac OS X Security Linux: SS-CS_LXPT_A04_IT_ENUS – CompTIA Linux+ 2014 Powered By LPI: LX0-104 Security, Data, and Accessibility Windows Server 2019:
SS-WS_ICFH_A09_IT_ENUS – Microsoft Windows Server 2012 R2 - Installing and Configuring: Security
M
2200.02.0997
The project shall provide the PMO admin and the ISO Implementation Team a certificate/proof of successful completion of ALL applicable elevated privileges (EP) training courses in NASA’s SATERN Learning Management System (LMS) for the users and system administrators identified on the SIA Form per Requirement 2200.02.0997
A B C D E
Project Description:
MTM-6 RTVM
Small Aperture Mobile L/S/C-Band TM Antenna System
Procurement Specification Project Name:
RSM Name:
Project Engineer Name:
Test Procedure Title:
MTM-6 Antenna System Development
REQ ID Requirement Text Requirement TypeParent Requirement Additional
Comments
2200.02.0998
The project shall determine if the information system is capable of auditing the events per the specific operating system configuration specification guide (e.g. Windows 10, Windows Server 2016, Red Hat Enterprise 7, etc.)
documented on the NASA Enterprise Technology Assessments and Digital Standards (ETADS) Office website.
M
2200.02.0999 The project shall implement the audit events the system is capable of per requirement 2200.02.0998 M
2200.02.1000 The audit records/log files shall contain information that establishes what type of event occurred. (e.g. user/process identifiers) M
2200.02.1001 The audit records/log files shall contain information that establishes when the event occurred. (e.g., time stamps) M
2200.02.1002 The audit records/log files shall contain information that establishes where the event occurred. (e.g., destination addresses, and filenames involved) M
2200.02.1003 The audit records/log files shall contain information that establishes the source of the event. (e.g., source addresses and filenames involved) M
2200.02.1004 The audit records/log files shall contain information that establishes the outcome of the event. (e.g., success/fail indications) M
2200.02.1005 The audit records/log files shall contain information that establishes the identity of any individuals or subjects associated with the event. (e.g., access control or flow control rules invoked)
M
2200.02.1006 The project shall allocate audit record/log file capacity that allows for one year’s worth of audit data. M
2200.02.1007 The system shall use internal system clock(s) to generate time stamps for audit records/log files. M
2200.02.1008 The system shall record time stamps for audit records that can be mapped to Coordinated Universal Time (UTC) or Greenwich Mean Time (GMT). M
2200.02.1009
The information system shall compare the internal system clock(s) weekly for systems not connected to a network with access to a recognized time standard with a NASA-controlled time source, such as NISN NTP or an equivalently accurate time service.
M
2200.02.1010 The information system shall synchronize the internal system clock(s) to the authoritative time source when the time difference is greater than 60 seconds to ensure adequate support for mission and forensic requirements.
A B C D E
Project Description:
MTM-6 RTVM
Small Aperture Mobile L/S/C-Band TM Antenna System
Procurement Specification Project Name:
RSM Name:
Project Engineer Name:
Test Procedure Title:
MTM-6 Antenna System Development
REQ ID Requirement Text Requirement TypeParent Requirement Additional
Comments
2200.02.1011 The information system shall protect audit information and audit tools from unauthorized access. M
2200.02.1012 The information system shall protect audit information and audit tools from unauthorized modification. M
2200.02.1013 The information system shall protect audit information and audit tools from unauthorized deletion. M
2200.02.1014 The information system shall back up audit records daily onto a physically different system or system component than the system or component being audited.
M
2200.02.1015 The information system shall only authorize the system administrator access to management of audit functionality. M
2200.02.1016 The information system shall retain audit records/log files for one year to provide support for after-the-fact investigations of security incidents. M
2200.02.1017 The project shall develop an Interconnection Security Agreement (ISA), using the template on ROMS (36FC1-TEMP-000054), for connecting external systems to the Range boundary.
M
2200.02.1018 The project shall develop a Memorandum of Understanding/Agreement (MOU/MOA), using the template on ROMS (36FC1-TEMP-000055), for connecting external systems to the Range boundary.
M
2200.02.1019 The project shall work with the Network Sustaining Engineer to document the system and connection(s) to the Range Boundary diagram(s). M
2200.02.1020 The project shall develop, document and maintain under Configuration Control, a current baseline of the system. M
2200.02.1021 The project shall document software application configuration settings as part of developing the recovery and reconstitution procedures in connection with the system asset management plan.
M
2200.02.1022
The project shall document the configuration of the information system operating system (e.g. Windows 10/11, Windows Server 2016/2019/2022, Red Hat Enterprise 8, etc.) as a result of implementing the security configuration specification documented on the NASA Cybersecurity Standard and Engineering Team (CSET) Office website.
M
2200.02.1023
The project shall obtain and install the Agency Security Configuration Standards for the appropriate operating system (e.g. Windows 10/11, Windows Server 2016/2019/2022, Red Hat Enterprise 8, etc.) from the NASA Cybersecurity Standard and Engineering Team (CSET) Office website.
A B C D E
Project Description:
MTM-6 RTVM
Small Aperture Mobile L/S/C-Band TM Antenna System
Procurement Specification Project Name:
RSM Name:
Project Engineer Name:
Test Procedure Title:
MTM-6 Antenna System Development
REQ ID Requirement Text Requirement TypeParent Requirement Additional
Comments
2200.02.1024 The project shall configure the information system to provide only essential mission capabilities to the system user account. M
2200.02.1025 The project shall install the Agency BigFix client on all IP-addressable systems for patch management and reporting. M
2200.02.1026 The information system shall connect to either the Range or the Center Network Environment (CNE) Active Directory stack. M
2200.02.1027 The information system shall uniquely identify and authenticate users through the Range or CNE Active Directory stack. M
2200.02.1028 All devices shall utilize the Agency approved two-factor Personal Identification Verification (PIV) solution for authentication. M
2200.02.1029 The project shall change/rename the default account name(s) on the system. M
2200.02.1030 The project shall change the default account password(s) on the system. M
2200.02.1031
The system shall enforce NASA’s minimum password complexity requirements which include the following:
(1) Use of at least 12 characters
(2) Include 3 of the 4-character types:
- Upper-case letters
- Lower-case letters
- Numbers
- Special characters.
M
2200.02.1032 The information system shall enforce a minimum of one character change when new passwords are created. M
2200.02.1033 The information system shall enforce a 60-day maximum lifetime restriction for passwords. M
2200.02.1034 The project shall patch all systems to the current level prior to connecting to the network. M
2200.02.1035 The project shall deliver all systems to the Operational Readiness Review (ORR) with the latest Operating System version installed. M
2200.02.1036 Application/Operating System maintenance/patching software shall be provided with instructions as outlined in requirements. M
2200.02.1037 The project shall obtain restoration media with the latest Operating System as delivered to ORR. M
2200.02.1038 The project shall obtain restoration media with the latest Patch Level as delivered to ORR. M
2200.02.1039 The project shall obtain restoration media with the latest application version/upgrade as delivered to ORR. M
A B C D E
Project Description:
MTM-6 RTVM
Small Aperture Mobile L/S/C-Band TM Antenna System
Procurement Specification Project Name:
RSM Name:
Project Engineer Name:
Test Procedure Title:
MTM-6 Antenna System Development
REQ ID Requirement Text Requirement TypeParent Requirement Additional
Comments
2200.02.1040 The project shall disable all unnecessary ports not specific to functionality on all IP-addressable systems. M
2200.02.1041 The project shall disable all unnecessary protocols not specific to functionality on all IP-addressable systems M
2200.02.1042 The system shall be capable of defining and disabling all unnecessary services not specific to functionality on all IP-addressable systems. M
2200.02.1043
The project shall obtain from the vendor or develop administrator documentation for the information system, system component, or information system service that describes secure configuration, installation, and operation of the system, component, or service.
M
2200.02.1044
The project shall obtain from the vendor or develop administrator documentation for the information system, system component, or information system service that describes effective use and maintenance of security functions/mechanisms.
M
2200.02.1045
The project shall obtain from the vendor or develop user documentation for the information system, system component, or information system service that describes user- accessible security functions/mechanisms and how to effectively use the security functions/mechanism
M
2200.02.1046
The project shall obtain from the vendor or develop user documentation for the…
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