10 SOPS Det C Guam Antenna Requirements April 2025.pdf

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Attached to
DET C Guam Antenna Federal contract opportunity
Solicitation number
FA251825R0017
Issued by
Department of the Air Force Space Command

About this file

This document is a detailed requirements specification for a new L/S Band Antenna System for the 10th Space Operations Squadron (10 SOPS) Detachment Charlie (Det C) located in Finegayan, Guam. The requirement stems from damage caused by Typhoon Mawar, which destroyed the existing 10-meter antenna, pedestal, and associated equipment at the Naval Communications Telecommunications Station (NCTS).

The specification outlines comprehensive technical requirements for a new antenna system, including specific performance parameters for S-band receive and transmit capabilities, antenna positioning, tracking accuracy, and environmental resilience. Key deliverables include a 10-meter dual-band antenna with L and S-band uplink and S-band downlink capabilities, a rigid radome able to withstand 200-knot winds, a new pedestal, electrical power panels, network equipment, test tools, antenna spares, and a replacement Uninterruptible Power Supply (UPS). The system must support telemetry, tracking, and commanding of geosynchronous communication satellites, with stringent requirements for pointing accuracy (< 0.05 degrees RMS), tracking performance, and cybersecurity compliance. The contract requires delivery to 10 SOPS Det Charlie in Finegayan, Guam within 16 months of order receipt, with a one-year warranty on all delivered materials.

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10 SOPS Requirements for a Detachment Charlie Finegayan Guam Antenna, Rigid Radome, and Auxiliary Equipment Replacement

17 April 2025

TABLE OF CONTENTS

1.0 SYNOPSIS

2.0. GROUND TERMINAL REQUIREMENTS

2.1 SGLS S-BAND RECEIVE REQUIREMENTS

[SRX-001] S-band Receive Polarization

[SRX-002] S-band G/T

[SRX-003] S-band G/T while Transmitting

[SRX-004] S-band Receive Axial Ratio

[SRX-005] S-band Receive Frequency

[SRX-006] S-band Receive Filtering / Rejection

[SRX-006] S-band First Side lobes

[SRX-07] S-band Receive Interface

[SRX-8] S-band Receive Equipment monitor and control

[SRX-] S-band Receive Equipment location

2.2 S-BAND TRACKING REQUIREMENTS

[STK-001] S-band Tracking Polarization

[STK-002] S-band Tracking Type

[STK-003] S-band Tracking Frequency

[STK-004] S-band LNA Logistics

[STK-005] S-band Tracking Receiver Input

[STK-006] S-band Tracking Tuning

[STK-007] S-band Non-coherent Tracking

2.3 L and S-Band Transmit Requirements

[LTX-001] L and S-band Transmit Polarization

[LTX-002] L and S-band Transmit Frequency

[LTX-003] L and S-band EIRP

[LTX-004] L and S-band HPA Output Power Control

[LTX-005] L and S-band HPA Power Levels Status

[LTX-006] L and S-band HPA Protection

[LTX-007] L and S-band HPA input

[LTX-008] L and S-band HPA Out of Band Emissions

[SMS-001] L/S-band Feed Pressurization

[SMS-002] L/S-band Feed Temperature

[SMS-003] L/S-band upconverter location

[SMS-00] equipment to be provided

2.4 ANTENNA MISCELLANEOUS REQUIREMENTS

[AMS-001] Radome Warning Lights

[AMS-002] Lightning Protection

[AMS-003] Fall Protection

[AMS-004] L/S-band Feed Pressurization

2.5 POINTING / TRACKING Accuracy/Range Calibration Requirements

[PTA-001] Pointing Accuracy

[PTA-002] Tracking Accuracy (Autotracking)

[PTA-003] Range Calibration LOOP Equipment

2.6 POSITIONING REQUIREMENTS

[POS-001] Pedestal Configuration

[POS-002] Azimuth Velocity

[POS-003] Azimuth Acceleration

[POS-004] Elevation Velocity

[POS-005] Elevation Acceleration

[POS-006] Azimuth Travel

[POS-007] Elevation Travel

2.7 DRIVE REQUIREMENTS

[DRV-001] Motor Type

[DRV-002] Safety

2.8 POSITION FEEDBACK REQUIREMENTS

[FBK-001] Feedback Type

[FBK-002] Encoder Logistics

[FBK-003] Resolver Redundancy

[FBK-004] Resolver Calibration

2.9 BASE EXTENSION REQUIREMENTS

[EXT-001] Base Extension

[EXT-002] Pedestal Interior Lighting

[EXT-003] Pedestal Utility Outlet

[EXT-004] Base Extension Emergency Stop

[EXT-005] External Lighting

2.10 ANTENNA CONTROL UNIT (ACU) REQUIREMENTS

[ACU-001] Removable Storage

[ACU-002] Angle Resolution

[ACU-003] Automated Tests

[ACU-004] Local Control

[ACU-005] C2 System Interface

[ACU-006] Pointing Control

[ACU-007] Information Assurance Requirements

[ACU-008] Antenna Simulator

2.11 CABLING REQUIREMENTS

[CAB-001] Cables

[CAB-002] Connectors

2.12 Fiber Interface REQUIREMENTS

2.13 MONITOR & CONTROL REQUIREMENTS

[MCS-001] M&C System

[MCS-002] M&C GUI

[MCS-003] M&C GUI Layout

[MCS-004] M&C Logging Tool

[MCS-005] M&C Machine Interface

2.14 RINGWALL REQUIREMENTS ...................................................... Error! Bookmark not defined.

[RWR-001] Ringwall ................................................................................ Error! Bookmark not defined.

[RWR-002] Ringwall access door ............................................................. Error! Bookmark not defined.

2.15 Radome Requirements

[RR-001] Radome Size

[RR-003] Radome Environment Requirements

2.16 Antenna Installation Requirement

[INS-001] Antenna Installation Requirement

2.17 Damaged Equipment Removal and Disposal. ........................................ Error! Bookmark not defined.

2.18 UPS Replacement

3.0 GENERAL REQUIREMENTS

3.1 POWER REQUIREMENTS

[PWR-001] Outdoor System Power

[PWR-002] De-Ice System Power

[PWR-003] Indoor System Power

3.2 ENVIRONMENTAL REQUIREMENTS

[ENV-001] Outdoor Operating Temperature

[ENV-002] Outdoor Operating Humidity

[ENV-003] Climate Control

3.3 Spares

[SPR-001] Electronic Spares

[SPR-002] Mechanical Spares

3.4 FINISH AND CORROSION PROTECTION

3.5 DOCUMENTATION, DRAWINGS AND DATA

[DOC-001] facilities Interface Documentation

[DOC-002] Drawing Tree

[DOC-003] Operations and Maintenance Manual

[DOC-004] Test and Measurement Data

[DOC-005] Communications Interface Control Documentation

[DOC-006] Monthly Report

[DOC-007] system top assembly block diagram

[DOC-008] Feed and converter rf block diagram

[DOC-009] pedestal cable diagram

[DOC-010] radome diagram

[DOC-011] radome ringwall diagram

3.6 QUALITY ASSURANCE

[QA-001] Inspections / Factory acceptance

3.7 WARRANTY

[WAR-001] Warranty Terms

3.8 SHIPMENT AND DELIVERY

[DEL-001] Delivery Address

[DEL-002] Delivery Date

[DEL-003] Contractor Provided Equipment

10 SOPS Det C requirements for a L/S Band Antenna System

Requirements for 10 SOPS Det C L/S Band Antenna System

1.0 SYNOPSIS

The 10 Space Operations Squadron (10 SOPS) formerly known as Naval Satellite Operations Center (NAVSOC) was the first United States commissioned military space command and has been operating spacecraft since 1962. On 6 June 2022 NAVSOC transitioned from a U.S. Navy command to U.S. Space Force Squadron under the command of Delta 8. 10 SOPS mission is to conduct telemetry, tracking, and commanding (TT&C) of military communication satellites. 10 SOPS antenna site Detachment Charlie (Det C) located in Finegayan Guam on Naval Communications Telecommunications Station (NCTS) was recently hit by typhoon Mawar. The 10 SOPS 10-meter antenna, pedestal, and other equipment inside the ring wall were damaged beyond repair. 10 SOPS Det C requires a new antenna, rigid radome, a new ring wall, new electrical power panels and associated wiring, air conditioning unit, network equipment, test tools, antenna spares, and a new Uninterruptable Power Supply (UPS).

The Det C antenna is used to conduct TT&C in support of geosynchronous communication satellites.

2.0. GROUND TERMINAL REQUIREMENTS

The L/S Band antenna systems for Det C shall be compliant to the following requirements.

2.1 SGLS S-BAND RECEIVE REQUIREMENTS

[SRX-001] S-band Receive Polarization

System shall be able to receive S-band signals in Right Hand Circular (RHC) and Left Hand Circular (LHC) Polarization.

[SRX-002] S-BAND G/T

Data channel G/T shall be minimum 22.5 dB/K at 2200 to 2290 MHz, 23°C, 35% relative humidity, and 30° elevation.

[SRX-003] S-BAND G/T WHILE TRANSMITTING

G/T shall be met with system transmitting at greater than or equal to required Effective Isotropic Radiated Power

(EIRP).

[SRX-004] S-BAND RECEIVE AXIAL RATIO

Data channel axial ratio shall be a maximum 1.5 dB.

[SRX-005] S-BAND RECEIVE FREQUENCY

System receive frequency shall be 2200 - 2290 MHz.

[SRX-006] S-BAND RECEIVE FILTERING / REJECTION

The S-Band antenna feed system must filter/reject adjacent terrestrial and space to ground service bands by a minimum of 40 db.

[SRX-006] S-BAND FIRST SIDE LOBES

First side lobe levels shall be at least -16dB below the main lobe.

[SRX-07] S-BAND RECEIVE INTERFACE

The S-Band Data Channel shall connect to the ground station’s RF over Fiber equipment.

[SRX-8] S-BAND RECEIVE EQUIPMENT MONITOR AND CONTROL

The S-Band downconverter will have an Ethernet interface which can be monitored and controlled from the ground station Command and Control (C2) system.

[SRX-] S-BAND RECEIVE EQUIPMENT LOCATION

The S-Band downconverter will located in the pedestal.

2.2 S-BAND TRACKING REQUIREMENTS

[STK-001] S-BAND TRACKING POLARIZATION

System shall be able to track on S-band signals in RHC and LHC polarization.

[STK-002] S-BAND TRACKING TYPE

S-band tracking system shall utilize a 5 element monopulse tracking feed or functional equivalent.

[STK-003] S-BAND TRACKING FREQUENCY

S-band tracking frequency shall be 2200 - 2290 MHz.

[STK-004] S-BAND LNA LOGISTICS

Data channel and tracking channel LNAs shall be identical in performance but may differ in interface.

[STK-005] S-BAND TRACKING RECEIVER INPUT

S-band tracking receiver input frequency range shall be greater than or equal to 2200 -2290 MHz.

[STK-006] S-BAND TRACKING TUNING

S-band tracking receiver shall have a remotely selectable tuning resolution of 50 kHz or better.

[STK-007] S-BAND NON-COHERENT TRACKING

S-band tracking receiver shall support non-coherent tracking.

2.3 L AND S-BAND TRANSMIT REQUIREMENTS

[LTX-001] L AND S-BAND TRANSMIT POLARIZATION

System shall be able to transmit L and S-band signals in RHC and LHC polarization.

[LTX-002] L AND S-BAND TRANSMIT FREQUENCY

System transmit frequency range shall be greater than or equal to 1761-1840 MHz and 2025 – 2110 MHz.

Antenna will only be transmitting one frequency at a time; antenna will not be transmitting more than one frequency at any time. The Contractor shall provide an upconverter which supports a frequency range greater than or equal to 1761-1840 MHz and 2025 – 2110 MHz. The upconverter will be monitored and controlled by the ground station C2 system.

[LTX-003] L AND S-BAND EIRP

EIRP shall be a minimum of 62 dBW +/- 1db continuous operation across the band of 1761 to 1840 MHz and 2025 – 2110 MHz

[LTX-004] L AND S-BAND HPA OUTPUT POWER CONTROL

The High-Power Amplifier (HPA) output power level will be monitored and controlled by the ground station C2 system to maintain +/- 1 dBW.

[LTX-005] L AND S-BAND HPA POWER LEVELS STATUS

The HPA forward and reverse power shall be able to be monitored remotely via TCP/IP connection to the ground station C2 system

[LTX-006] L AND S-BAND HPA PROTECTION

The HPA must protect itself in the event damage to the transmission line or waveguide causes unexpected high reflected power

[LTX-007] L AND S-BAND HPA INPUT

The ground station will provide u p t o a 4 M H z e m i s s i o n s B W modulated L-Band (1761-1840 MHz) a n d S - B a n d ( 2 0 2 5 - 2 1 1 0 M H z ) s i g n a l to the pedestal cable entryway via the ground station’s RF over Fiber equipment at 50-ohm impedance at a power level required by the antenna manufacturer. (Typical is 0 dBM for HPA ALC operation to full power.)

[LTX-008] L AND S-BAND HPA OUT OF BAND EMISSIONS

The L and S Band transmit system must filter all out of band emissions by a minimum of 60 dB.

[SMS-001] L/S-BAND FEED PRESSURIZATION

L/S-band feed shall be pressurized with a dry air system.

[SMS-002] L/S-BAND FEED TEMPERATURE

The temperature in the L/S-band feed shall be able to be monitored remotely.

[SMS-003] L/S-BAND UPCONVERTER LOCATION

L/S-band upconverter will be located in the pedestal.

[SMS-00] EQUIPMENT TO BE PROVIDED

The contractor shall provide the minimum set of equipment for Det C as part of the antenna system:

Pedestal Interface Unit Servo System Antenna Control Unit Diplexer/Triplexer Dual band High Power Amplifier (1750-1850 MHz 2015-2110 MHz) Upconverter (1750-1850 MHz 2015-2110 MHz) Downconverter (2200-2300 MHz)

Fiber Modules Ethernet Switch Range Calibration Loopback system (uplink frequency 1750-1850 MHz 2015-2110 MHz converts to downlink frequency of 2200-2300 MHz)

Figure 1 depicts a notional antenna system diagram; contractor may suggest a different layout.

Figure 1 Notional Antenna System diagram

2.4 ANTENNA MISCELLANEOUS REQUIREMENTS

[AMS-001] RADOME WARNING LIGHTS

The radome shall be equipped with an aircraft warning light.

[AMS-002] LIGHTNING PROTECTION

The antenna shall be equipped with lightning protection.

[AMS-003] FALL PROTECTION

The antenna shall be equipped with permanent fall protection anchors point in areas that maintenance personnel may have to work aloft outside of a man lift. Reference ANSI Z359.1, Safety Requirements for Personal Fall Arrest System, Subsystems and Components for requirements

[AMS-004] L/S-BAND FEED PRESSURIZATION

L/S-band feed shall be pressurized with a dry air system that will provide an alarm status in the event of a failure.

2.5 POINTING / TRACKING ACCURACY/RANGE CALIBRATION REQUIREMENTS

[PTA-001] POINTING ACCURACY

The pointing error of the antenna shall be <0.05 DEG RMS for a geostationary satellite.

[PTA-002] TRACKING ACCURACY (AUTOTRACKING)

The tracking accuracy of the antenna shall be equal to or better than 0.02 Degrees under nominal conditions and

0.04 Degrees at -20°C.

[PTA-003] RANGE CALIBRATION LOOP EQUIPMENT

A range calibration loop equipment system will support ranging of geosynchronous satellites. The range calibration loop equipment shall accept L or USB uplink frequencies and convert them to S band downlink frequencies. Range calibration tests will be conducted by 10 SOPS 2-3 times per year. Range calibration tests will use Pseudo Random Number (PRN) data modulated onto the uplink signal. The range calibration loop equipment will tap L or USB uplink signals near or at the Solid-State Power Amplifier (SSPA), convert the L and USB signals to S band down link frequencies of 2252.5 MHz or 2262.5 MHz, and send the S band down link signals down the telemetry link.

2.6 POSITIONING REQUIREMENTS

[POS-001] PEDESTAL CONFIGURATION

System shall utilize a pedestal in an elevation over azimuth configuration.

[POS-002] AZIMUTH VELOCITY

Azimuth velocity shall be a minimum of 15.0°/s.

[POS-003] AZIMUTH ACCELERATION

Azimuth acceleration shall be a minimum of 15.0°/s².

[POS-004] ELEVATION VELOCITY

Elevation velocity shall be a minimum of 12.0°/s.

[POS-005] ELEVATION ACCELERATION

Elevation acceleration shall be a minimum of 10.0°/s².

[POS-006] AZIMUTH TRAVEL

The travel of the azimuth axis shall be a minimum of ±360° continuous.

[POS-007] ELEVATION TRAVEL

The travel of the elevation axis shall be a minimum of 0° to +90° continuous.

2.7 DRIVE REQUIREMENTS

[DRV-001] MOTOR TYPE

The system shall use brushless DC servo motors.

[DRV-002] SAFETY

Activation of any of the safety interlocks; emergency limits or emergency stop switch must completely remove the power from the Drive System Electronics.

2.8 POSITION FEEDBACK REQUIREMENTS

[FBK-001] FEEDBACK TYPE

On Axis resolvers shall be used for axis position feedback.

[FBK-002] ENCODER LOGISTICS

All resolvers in the system shall be identical.

[FBK-003] RESOLVER REDUNDANCY

In case of a failed resolver, the antenna shall still be able to run in a degraded mode.

[FBK-004] RESOLVER CALIBRATION

The ACU shall include capability to calibrate the axis resolver.

2.9 BASE EXTENSION REQUIREMENTS

[EXT-001] BASE EXTENSION

The antenna reflector and pedestal shall be raised off the ground by the base extension to a minimum height of 6 foot measured to the lower edge of the reflector while pointed at 0 degrees elevation. This will allow clearance for technicians to service the area while in operation at any elevation.

[EXT-002] PEDESTAL INTERIOR LIGHTING

Contractor will provide lighting that would allow for adequate lighting in the event of maintenance during nighttime hours.

[EXT-003] PEDESTAL UTILITY OUTLET

Contractor will provide outlets with at least 6-foot spacing around the outside of the pedestal or ring wall if Contractor recommends that a ring wall be used with the rigid radome.

[EXT-004] BASE EXTENSION EMERGENCY STOP

An emergency stop switch on the base extension shall be provided to disable all pedestal motion by removing the power from the drive electronics and setting a braking mechanism in both axes.

[EXT-005] EXTERNAL LIGHTING

Contractor will provide lighting on the exterior opening of the pedestal to allow for safe access during dusk to dawn hours.

Contractor will provide lighting on the exterior opening of the radome to allow for safe access during dusk to dawn hours.

2.10 ANTENNA CONTROL UNIT (ACU) REQUIREMENTS

[ACU-001] REMOVABLE STORAGE

The ACU shall have solid-state removable storage for internal settings.

[ACU-002] ANGLE RESOLUTION

The ACU shall have an angle resolution of 0.001 degrees.

[ACU-003] AUTOMATED TESTS

The ACU shall have remotely executed velocity and acceleration tests.

[ACU-004] LOCAL CONTROL

The ACU shall provide for local control of the antenna motion and pointing for maintenance and troubleshooting purposes.

[ACU-005] C2 SYSTEM INTERFACE

ACU must have a TCP/IP machine to machine interface that will connect to the ground station’s C2 (Command and Control) to allow for control, polling of status and configuration and file transfers. All operational functions must be controllable over this interface.

[ACU-006] POINTING CONTROL

a. The ACU shall accept and use an ASCII tracking table generated by the ground station TT&C system.

b. The ACU shall operate the pointing of the antenna autonomously if given Two Line Elements (TLE’s) and the mode is selected.

c. The ACU must store a file that contains the tracking error (commanded vs actual)

d. The ACU shall use NTP (Network Time Protocol) for time of year and time of day

e. The ACU shall continue to track using its internal clock if the NTP is interrupted. A status flag shall be set indication the condition.

[ACU-007] INFORMATION ASSURANCE REQUIREMENTS

a. The contractor shall provide IT products that adhere to the cybersecurity policies and guidelines specified in Department of Defense Directive 8500 and comply with the National Institute of Standards and Technology (NIST) Special Publication (SP) 800-53 controls. The objective is to ensure the highest level of security and compliance for the implemented solutions within the 10 SOPS environment.

b. Assess DoD Cybersecurity Requirements:

- Conduct a comprehensive assessment of the cybersecurity policies and guidelines outlined in DoD Directive 8500 and the NIST SP 800-53 controls.

- Identify specific compliance requirements from NIST SP 800-53 and document them for reference throughout the project.

c. Design and Development:

- Develop a detailed project plan outlining the approach, timelines, and resources required for the design and development of the IT products within the 10 SOPS environment.

- Implement robust cybersecurity measures and protocols in accordance with DoD Directive 8500 and the NIST SP 800-53 controls to ensure compliance.

- Incorporate the appropriate NIST SP 800-53 security controls, such as access controls, audit and accountability measures, system and information integrity, and incident response, into the design and development of the IT products.

- Employ encryption, access controls, and other industry-standard security measures as specified by the NIST SP 800-53 controls to safeguard sensitive data.

d. Testing and Quality Assurance:

- Perform thorough testing of the IT products to validate compliance with the cybersecurity policies and guidelines specified in DoD Directive 8500 and the NIST SP 800-53 controls.

e. Documentation and Reporting:

- Prepare comprehensive documentation, including system architecture, security controls, and operational procedures, in adherence to DoD Directive 8500 and the NIST SP 800-53 controls.

f. Deliverables:

- Design documents, including system architecture and security controls, aligned with the requirements of DoD Directive 8500 and the NIST SP 800-53 controls.

- Fully developed and tested IT products compliant with the cybersecurity policies and guidelines specified in DoD Directive 8500 and the NIST SP 800-53 controls.

- Comprehensive documentation, including operational procedures, user manuals, and security protocols, in accordance with DoD Directive 8500 and the NIST SP 800-53 controls.

g. Compliance and Security:

- Ensure that all IT products meet or exceed the cybersecurity policies and guidelines specified in DoD Directive 8500 and the NIST SP 800-53 controls.

- Maintain compliance with relevant DoD standards, regulations, and guidelines, as well as the NIST SP 800-53 controls, throughout the project duration.

[ACU-008] ANTENNA SIMULATOR

ACU must have a simulator that can be used to test the interface between the Telemetry, Tracking, and Commanding (TT&C) system and the ACU. The antenna simulator will provide simulated antenna status back to the TT&C system based on program track data or Two-Line Elements (TLEs) which are sent from the TT&C system to the ACU.

2.11 CABLING REQUIREMENTS

[CAB-001] CABLES

Contractor shall procure and install all data cables. The contractor shall procure and install a new fiber optic module/chassis in Building 285. Contractor shall run fiber optic cables from fiber optic module/chassis in Bldg 285 into pedestal using existing conduit. Contractor shall procure and install a new fiber optic module/chassis in Bldg 285 satellite operations center equipment room.

SANTANA, LENETTE B CIV USSF SpOC Delta 8/10 SOPS I don’t think these are captured in SOW.

Groves, Keith N CIV USN NAVSOC PT MUGU CA (USA) Added Cyber Security requirements to the SOW

Approximately how many feet?

Contractor shall procure and install necessary power cables and breakers for electrical panel Contractor may need to install conduit from electrical panel to start of conduit run.

[CAB-002] CONNECTORS

All cables shall enter the riser through a cable conduit.

2.12 FIBER INTERFACE REQUIREMENTS

Single Mode fiber optic cable shall be used.

2.13 MONITOR & CONTROL REQUIREMENTS

[MCS-001] M&C SYSTEM

The system shall have an M&C system which controls and monitors the antenna system in addition to the ground station’s C2 System. This may be included in the ACU function or as an additional unit. The ground station’s C2 system will be the primary control and status machine. The M&C will be used as an offline or maintenance function to control, monitor and test the antenna system standalone.

[MCS-002] M&C GUI

The M&C system shall include a Graphical User Interface (GUI) to allow a user to monitor and control the system.

[MCS-003] M&C GUI LAYOUT

Not applicable.

[MCS-004] M&C LOGGING TOOL

Not applicable.

[MCS-005] M&C MACHINE INTERFACE

The M&C System must have a TCP/IP machine to machine interface that will connect to the ground station’s C2 (Command and Control) to allow for control, polling of status and configuration and file transfers. All operational functions must be controllable over this interface. See figures 4 and 5 below.

2.15 RADOME REQUIREMENTS

[RR-001] RADOME SIZE

The proposed antenna must be able to fit and operate within the radome. This includes maintenance actions using a manlift. A radome without the ring wall is acceptable as long as the radome can accommodate the manlift access.

[RR-003] RADOME ENVIRONMENT REQUIREMENTS

The radome shall be able to withstand: winds of 200 knots and be able to protect the antenna from the harsh environment (rain and marine air) along the Pacific.

From electrical panels to where? Seems like incomplete sentence.

2.16 ANTENNA INSTALLATION REQUIREMENT.

[INS-001] ANTENNA INSTALLATION REQUIREMENT.

The Contractor shall install the antenna pedestal on the existing Det C foundation. Contractor must assess existing Det C foundation to ensure the foundation can support new antenna and radome.

2.18 UPS REPLACEMENT

[UPS-001] UPS Replacement

The Contractor shall procure, ship, install, test a new UPS to replace the damaged UPS (damaged UPS was an APC Symmetra Model: PX SY30K40F). The new UPS will meet or exceed the existing UPS’s capabilities and be compatible with the existing power that is present on the antenna site.

3.0 GENERAL REQUIREMENTS

3.1 POWER REQUIREMENTS

[PWR-001] OUTDOOR SYSTEM POWER

Outdoor equipment shall be supported by three-phase 60 Hz 120/208 VAC technical power without the need for additional voltage-converting transformers.

[PWR-002] DE-ICE SYSTEM POWER

Not applicable.

[PWR-003] INDOOR SYSTEM POWER

Indoor equipment shall be supported by single-phase 60 Hz 120/208 VAC technical power without the need for voltage-converting transformers.

3.2 ENVIRONMENTAL REQUIREMENTS

[ENV-001] OUTDOOR OPERATING TEMPERATURE

The outdoor subsystem shall be rated to operate in a temperature of -30°C to +50°C.

[ENV-002] OUTDOOR OPERATING HUMIDITY

The outdoor components of the system shall be rated to operate in a relative humidity of 0% to 100%, condensing.

[ENV-003] CLIMATE CONTROL

The contractor shall provide a climate control system that will keep the RF and electronic equipment at an optimum temperature and humidity range to maintain system performance and reliability.

Are there specific testing r eq’ts they need to meet. I didn’t see any in SOW?

If the kt provides a new UPS that meets or exceeds the damaged UPS then I’m assuming it will be compatible with existing power? Just want to make sure if it exceeds the current UPS it will still be compatible. Assuming existing power is defined below in para 3.1?

3.3 SPARES

[SPR-001] ELECTRONIC SPARES

Contractor shall provide a list of recommended spares for the antenna.

[SPR-002] MECHANICAL SPARES

Contractor shall suggest a baseline spare package for all mechanical and electromechanical components.

3.4 FINISH AND CORROSION PROTECTION

[FIN-001] The system shall be made of materials and treated or coated to protect it from the corrosive effects of salt fog as encountered in coastal areas. The non-reflecting surfaces shall be cleaned, primed and coated with white paint.

3.5 DOCUMENTATION, DRAWINGS AND DATA

All documentation, drawings, and data shall be provided in MS Word or PDF file format.

[DOC-001] FACILITIES INTERFACE DOCUMENTATION

All interfaces shall be finalized and defined in Contractor-supplied drawings. Facilities ICD (Interface Control Document) shall be provided to the customer within 45 days of award. The documents shall contain the required physical interfaces, any weight, moments and or loading data needed to design and construct the pad and utilities infrastructure to support and maintain the required antenna system specification. Cable drawings (power, fiber optic, command, telemetry, control, and status) for the entire antenna system shall be provided at the wire and connector pin level.

[DOC-002] DRAWING TREE

A document identifying all applicable antenna related drawings will be provided.

[DOC-003] OPERATIONS AND MAINTENANCE MANUAL

Contractor will supply an O&M (Operations and Maintenance) manual for the system or for each of the major subsystems. The manual shall describe the operation, corrective and preventative maintenance and logistics down to the Lowest Replaceable Unit (LRU) level.

[DOC-004] TEST AND MEASUREMENT DATA

Test and measurement data for RF components and RF systems, antenna surface contour, antenna pointing and tracking, and other performance parameters shall be provided from both the Factory and Site Acceptance Testing.

[DOC-005] COMMUNICATIONS INTERFACE CONTROL DOCUMENTATION

All computer interfaces shall be defined in Contractor-supplied documentation. Communication ICD (Interface Control Document) shall be provided to the customer within 60 days of award. The documents shall contain data type descriptions, formatting, protocols and timing for all computer-to-computer messaging, controls and statuses.

Figure 5 identifies the government’s concept of the new Det C antenna system interfaced with Det C satellite operations center.

[DOC-006] MONTHLY REPORT

Monthly Report which includes at a minimum: documentation development status, product development status, The figure below is marked “figure 5”.

installation status, training status, and testing status.

[DOC-007] SYSTEM TOP ASSEMBLY BLOCK DIAGRAM

System Top Assembly Block Diagram shall be provided as part of the documentation. The diagram shall include all antenna components.

[DOC-008] FEED AND CONVERTER RF BLOCK DIAGRAM

The antenna feed and converter RF elements block diagram shall be provided as part of the documentation.

[DOC-009] PEDESTAL CABLE DIAGRAM

Pedestal Cable Diagram showing all cables (power, fiber, command, telemetry, control, and status) entering, leaving, and internal to the pedestal shall be provided.

[DOC-010] RADOME DIAGRAM

Radome Diagram shall be provided showing radome dimensions, access door, and all details related to the radome.

[DOC-011] RADOME RINGWALL DIAGRAM

Radome Ring wall Diagram shall be provided and showing all dimensions, specifications, and interface details to the associated radome.

Figure 5 Det C Satellite Operations Center to New Antenna Topology

3.6 QUALITY ASSURANCE

[QA-001] INSPECTIONS / FACTORY ACCEPTANCE

An inspection shall be performed to ensure compliance with the best commercial practices and with this specification. The contractor shall schedule and conduct a factory acceptance test per the statement of work of the major components (pedestal, reflector, and RF equipment.)

3.7 WARRANTY

[WAR-001] WARRANTY TERMS

Antenna assembly, pedestal and all delivered material shall have a warranty of one year starting from the time the contractor completes government witnessed system testing of the installed products.

Detachment Charlie

Approximately 300’ run to pedestal from Bldg 285

3.8 SHIPMENT AND DELIVERY

[DEL-001] DELIVERY ADDRESS

All deliverables will be delivered to 10 SOPS Det Charlie Finegayan Guam NCTS Bldg 285

[DEL-002] DELIVERY DATE

16 months after receipt of order.

[DEL-003] CONTRACTOR PROVIDED EQUIPMENT

Contractor shall provide all tools, machinery, equipment, and operators needed to receive, uncrate and assemble the system hardware as well as remove and dispose of damaged equipment.

1.0 SYNOPSIS
2.0. GROUND TERMINAL REQUIREMENTS
2.1 SGLS S-BAND RECEIVE REQUIREMENTS
[SRX-001] S-band Receive Polarization
[SRX-002] S-band G/T
[SRX-003] S-band G/T while Transmitting
[SRX-004] S-band Receive Axial Ratio
[SRX-005] S-band Receive Frequency
[SRX-006] S-band Receive Filtering / Rejection
[SRX-006] S-band First Side lobes
[SRX-07] S-band Receive Interface
[SRX-8] S-band Receive Equipment monitor and control
[SRX-] S-band Receive Equipment location
2.2 S-BAND TRACKING REQUIREMENTS
[STK-001] S-band Tracking Polarization
[STK-002] S-band Tracking Type
[STK-003] S-band Tracking Frequency
[STK-004] S-band LNA Logistics
[STK-005] S-band Tracking Receiver Input
[STK-006] S-band Tracking Tuning
[STK-007] S-band Non-coherent Tracking
2.3 L and S-Band Transmit Requirements
[LTX-001] L and S-band Transmit Polarization
[LTX-002] L and S-band Transmit Frequency
[LTX-003] L and S-band EIRP
[LTX-004] L and S-band HPA Output Power Control
[LTX-005] L and S-band HPA Power Levels Status
[LTX-006] L and S-band HPA Protection
[LTX-007] L and S-band HPA input
[LTX-008] L and S-band HPA Out of Band Emissions
[SMS-001] L/S-band Feed Pressurization
[SMS-002] L/S-band Feed Temperature
[SMS-003] L/S-band upconverter location
[SMS-00] equipment to be provided
2.4 ANTENNA MISCELLANEOUS REQUIREMENTS
[AMS-001] Radome Warning Lights
[AMS-002] Lightning Protection
[AMS-003] Fall Protection
[AMS-004] L/S-band Feed Pressurization
2.5 POINTING / TRACKING Accuracy/Range Calibration Requirements
[PTA-001] Pointing Accuracy
[PTA-002] Tracking Accuracy (Autotracking)
[PTA-003] Range Calibration LOOP Equipment
2.6 POSITIONING REQUIREMENTS
[POS-001] Pedestal Configuration
[POS-002] Azimuth Velocity
[POS-003] Azimuth Acceleration
[POS-004] Elevation Velocity
[POS-005] Elevation Acceleration
[POS-006] Azimuth Travel
[POS-007] Elevation Travel
2.7 DRIVE REQUIREMENTS
[DRV-001] Motor Type
[DRV-002] Safety
2.8 POSITION FEEDBACK REQUIREMENTS
[FBK-001] Feedback Type
[FBK-002] Encoder Logistics
[FBK-003] Resolver Redundancy
[FBK-004] Resolver Calibration
2.9 BASE EXTENSION REQUIREMENTS
[EXT-001] Base Extension
[EXT-002] Pedestal Interior Lighting
[EXT-003] Pedestal Utility Outlet
[EXT-004] Base Extension Emergency Stop
[EXT-005] External Lighting
2.10 ANTENNA CONTROL UNIT (ACU) REQUIREMENTS
[ACU-001] Removable Storage
[ACU-002] Angle Resolution
[ACU-003] Automated Tests
[ACU-004] Local Control
[ACU-005] C2 System Interface
[ACU-006] Pointing Control
[ACU-007] Information Assurance Requirements
[ACU-008] Antenna Simulator
2.11 CABLING REQUIREMENTS
[CAB-001] Cables
[CAB-002] Connectors
2.12 Fiber Interface REQUIREMENTS
2.13 MONITOR & CONTROL REQUIREMENTS
[MCS-001] M&C System
[MCS-002] M&C GUI
[MCS-003] M&C GUI Layout
[MCS-004] M&C Logging Tool
[MCS-005] M&C Machine Interface
2.15 Radome Requirements
[RR-001] Radome Size
[RR-003] Radome Environment Requirements
2.16 Antenna Installation Requirement.
[INS-001] Antenna Installation Requirement.

2.18 UPS Replacement

3.0 GENERAL REQUIREMENTS
3.1 POWER REQUIREMENTS
[PWR-001] Outdoor System Power
[PWR-002] De-Ice System Power
[PWR-003] Indoor System Power
3.2 ENVIRONMENTAL REQUIREMENTS
[ENV-001] Outdoor Operating Temperature
[ENV-002] Outdoor Operating Humidity
[ENV-003] Climate Control
3.3 Spares
[SPR-001] Electronic Spares
[SPR-002] Mechanical Spares
3.4 FINISH AND CORROSION PROTECTION
3.5 DOCUMENTATION, DRAWINGS AND DATA
[DOC-001] facilities Interface Documentation
[DOC-002] Drawing Tree
[DOC-003] Operations and Maintenance Manual
[DOC-004] Test and Measurement Data
[DOC-005] Communications Interface Control Documentation
[DOC-006] Monthly Report
[DOC-007] system top assembly block diagram
[DOC-008] Feed and converter rf block diagram
[DOC-009] pedestal cable diagram
[DOC-010] radome diagram
[DOC-011] radome ringwall diagram
3.6 QUALITY ASSURANCE
[QA-001] Inspections / Factory acceptance
3.7 WARRANTY
[WAR-001] Warranty Terms
3.8 SHIPMENT AND DELIVERY
[DEL-001] Delivery Address
[DEL-002] Delivery Date
[DEL-003] Contractor Provided Equipment

File details come from the government source that posted it. Updated .