DVSS SOW Draft Summary (002).docx
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- Digital Video Surveillance System Federal contract opportunity
- Solicitation number
- N64498-23-RFPREQ-PD-22-0059
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This document outlines technical requirements for a Digital Video Surveillance System (DVSS) to be procured by the Naval Sea Systems Command. The DVSS will include cameras, video input/output enclosures, servers and associated hardware and software to provide video monitoring and recording capabilities across multiple Navy vessels. Key requirements include IP and analog cameras, video encoding and recording equipment, management software, and interfaces to integrate the system with existing network and control systems. The technical requirements specify detailed performance specifications for all DVSS components, including hardware specifications, software functionality, reliability metrics, maintenance and testing procedures, and certifications for environmental hardening and cybersecurity.
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DVSS SOW Draft Summary
1.1 BACKGROUND
The Hull, Mechanical, & Electrical (HM&E) Data Acquisition and Information Systems (Code 533) of the Naval Surface Warfare Center, Philadelphia Division (NSWCPD), provide services to develop Digital Video Surveillance System (DVSS) that is deployed on DDG Modernization (DDG-M) Backfit and SCN Ships intended for the monitoring of remote or unmanned engineering spaces. DVSS is also installed on new construction ships (SCN systems) starting with the USS John Finn (DDG 113).
DVSS is primarily a Commercial off the Shelf (COTS) system. The Digital Video Surveillance System (DVSS) is one of four core DDG Modernization (DDG-M) alterations designed to reduce workload in the Central Control Station (CCS) and Bridge on DDG 51 Class Destroyers. The other upgrades are the Machinery Control System (MCS), Integrated Bridge and Navigation System (IBNS) and Gigabit Ethernet Data Multiplexing System (GEDMS).
1.2 SCOPE OF WORK
The Contractor shall provide engineering and technical services required for the design, development, fabrication, test, repair, and fleet implementation of Digital Video Surveillance System (DVSS).
The DVSS must be capable of being integrated into the ship without impacting other systems or established interfaces for the modernization and new construction programs already in progress. The physical design must meet the requirement to be installed onboard the ship with new foundations and not impact existing cable connections as already established for the modernization and new construction programs in process. The system to be procured will employ a modern, supported, cyber-secure computer operating system, and the overall system will employ increased cybersecurity capabilities.
DVSS Architecture There are three major functions in DVSS that shall occur prior to GEDMS: raw video generation, encoding/compression of video, and recording and storage of video. Video is only passed across GEDMS when a UCC or an RSC user requests video stream(s) with the DVSS viewing or playback software applications. Video shall be recorded continuously, 24 hours per day, 7 days per week at minimum recording quality of Common Intermediate Format (CIF) resolution (352x288) video, 7 Frames per Second (FPS). The system architecture requires the recorder to be located in a different compartment than the camera it serves so that recorded video can be analyzed if a camera is damaged beyond repair during an event.
3. REQUIREMENTS
The Contractor shall design, test, supply, and assemble, the Digital Video Surveillance System (DVSS) to meet the DVSS performance requirements specified in Appendix A in accordance with stringent design and quality testing. The Contractor shall provide qualified personnel, materials, facilities, equipment, controls and control interfaces, test instrumentation, data collection and analysis, hardware, and software that support the product areas and applicable documents for the DVSS. This includes, but is not limited to:
· Machinery control system integration
· Mechanical interface requirements
· Electrical power interface requirements
· Network systems integration
· Design integration
All work performed under this contract shall comply with applicable Federal, State, and local laws and regulations. The Contractor shall have all valid permits and licenses necessary prior to performing the associated scope of work. The Contractor shall maintain valid permits and licenses throughout the period of performance of this contract.
3.1 General Descriptions and Definitions
DVSS shall be integrated and fully interoperable with MCS and GEDMS. GEDMS and MCS development and infrastructure do not fall within the scope of this requirement and are managed/maintained by NSWCPD MCS ISEA (C/551 & C/552) and NSWCPD GEDMS ISEA (C/542).
| 3.1.1 | Gigabit Ethernet Data Multiplexing System (GEDMS) Interface |
| DVSS shall utilize GEDMS for all video networking needs. All GEDMS hardware shall be installed aboard ship prior to or concurrently with DVSS. All hardware for GEDMS shall be purchased and installed aboard ship under the GEDMS program. Appendix A Section 1.2 Software Requirements) describes the performance requirements DVSS shall meet to interface with GEDMS. Additional network hardware beyond what is provided by GEDMS is not allowed. |
GEDMS is the planned product upgrade to a Gigabit Ethernet network based on Institute of Electrical and Electronics Engineers (IEEE) 802.3 specifications. GEDMS shall maintain the dual network active redundant capability of Fiber Optic Data Multiplex System (FODMS) but shall utilize Rapid Spanning Tree Protocol for self-healing reconfiguration within each network backbone. GEDMS shall be the first network in the AN/USQ-82(V) suite of networks to utilize COTS equipment as part of its core infrastructure; namely the Ethernet switches that shall be used in the network backbone as well as those used for interfacing to user systems.
The GEDMS network can be broken down into six (6) functional elements:
1- Fiber Optic Cable Plant (FOCP)
· Backbone Switch-to-Backbone Switch Connections
· Backbone Switch-to-IOU Connections 2- Backbone Switch Enclosure (BSE)
· COTS Gigabit Ethernet Switch (GES)
· Fiber Optic Patch Panel & Cable Assemblies
· Shock-Hardened Enclosure 3- Input Output Unit (IOU)
· Internal Fiber Optic Cable Assemblies
· Gigabit Ethernet Controller (GEC) Modules
· Gigabit Ethernet Module (GEM)
· Inlet & Outlet Air Filters 4- User System Interface Switch Enclosure (USE)
· COTS Ethernet Switch
· Shock-Hardened Enclosure
· IOU & C-DR Box Connections
· Copper & Fiber Optic User System Connections 5- Maintenance Group (MG)
· Network Interface Card
· Software Modification 6- Internet Protocol Interface Units (IIU)
· Network nodes optimized for high speed IP devices and for serial RS-232, 422, and 485 devices
· Supports two actively redundant backbone interfaces, Gigabit Ethernet, identical to IOUs, and they support Fast Ethernet interfaces to end systems
· IIUs can intercommunicate with IOUs
· Support two access IP subnets, up to 16 local Ethernet interfaces (12 10/100BASE-TX, 4 100BASE-FX), and eight serial interfaces
· Support the same embedded signal processing capability as IOUs
· IIUs are built into enclosures similar to the BSEs and USEs
DVSS leverages GEDMS to eliminate the cost of installation and maintenance of a second network for video. Since DVSS shares a network that also carries critical MCS data, the amount of bandwidth available for DVSS and the requirement that DVSS shall be a scalable system are the primary drivers for the DVSS hardware architecture and requirements.
DVSS connects to the GEDMS architecture at a GEDMS User Switch Enclosure (USE) and Internet Protocol Interface Units (IIU); USEs and IIUs is located throughout the ship.
| 3.1.2 | Machinery Control System (MCS) Interface | |
| DVSS shall also utilize the Machinery Control System (MCS) Universal Control Consoles (UCC) and Repair Station Consoles (RSC) to provide a computer platform for DVSS software to display video and provide Pan, Tilt, Zoom (PTZ) control of the cameras. DVSS administrator functionality shall be from the DVSS Maintenance Laptop. The UCCs and RSCs shall be installed aboard ship prior to or concurrently with DVSS and shall be connected to GEDMS. The primary function of the UCC is to run Machinery Control System (MCS) software packages; the primary function of the RSC is to run Damage Control Software packages. This specification does list software performance requirements (reference Appendix A Section 1.2 Software Requirements) DVSS shall meet all requirements to operate on MCS consoles. Additional computer workstations for video administration or display are not allowed. |
3.2 DVSS Supply and Assembly Kits
Equipment furnished under this specification shall be products which have satisfactorily completed the tests specified herein. Onboard repair parts, stocked spare parts, and kits ordered for DVSS built to this specification shall be subject to the same requirements and tests (drawings, quality control, non-destructive tests, etc.) as the original equipment.
3.2.1 Qualification Test Set (First Article Test Set)
A First Article Test Set is equipment used during Environmental Qualification Tests and Functional Tests during First Article Testing.
A First Article Test Set shall consist of the following components and subsystems, at a minimum. Additional equipment, fittings, and accessories shall be provided as necessary to meet the requirements in the Appendix A:
1. Eight (8) cameras and mounting hardware required for testing
1. One (1) Video Input Record Output Enclosure (VIROE) with the hardware required to support 8 cameras
1. One (1) 300 foot length of CAT5E cable to connect one (1) camera to the VIROE, properly terminated on each end.
1. Seven (7) CAT5E cables required to connect the remaining seven (7) cameras to the VIROE. Contractor can determine minimum length required to meet testing requirements.
1. Two (2) Commercial Off The Shelf (COTS) Computer Processing Units (CPU) with the same hardware and Operating System (OS) configuration as Repair Station Console (RSC) in Appendix A section 1.2.1 Computer Processing Unit (CPU) Requirements..
1. All Software required to simulate DVSS functionality on a RSC, including OS and DVSS Software.
1. One (1) COTS CPU with the same hardware and OS configuration as Universal Control Console (UCC) Processor 1 in Appendix A section 1.2.1 Computer Processing Unit (CPU) Requirements.
1. All Software required to simulate DVSS functionality on a UCC, including OS and DVSS Software.
1. Computer networking hardware that simulates the bandwidth performance of the Gigabit Ethernet Data Multiplex System (GEDMS).
1. Any other hardware, software, equipment, fittings, foundation adapters, and accessories required for Qualification Testing including all licenses.
1. All hardware with firmware shall be delivered with the government approved firmware version installed.
3.2.2 Shipset
A shipset is equipment that will be installed onboard ship.
A shipset shall consist of the following components and subsystems, at a minimum.
Additional equipment, fittings, and accessories shall be provided as necessary to meet the requirements in the Appendix A:
1. Twenty-four (24) cameras, Twenty-four (24) camera mounts, and associated mounting hardware and ground straps.
1. Seven (7) VIROEs configured to support four (4) cameras each IAW Appendix A Section 1.1.3, 7 foundation adapters (as required), and associated mounting hardware and ground straps.
1. Twenty-four (24) camera tamper resistant camera connector housings in accordance with Appendix A Section 1.1.2.
1. Twenty-four (24) connector sets to terminate the VIROE to camera CAT5 cable at the camera side.
1. Seven (7) key locks with seven (7) keys for VIROEs. Keys shall be identical for all locks on all shipsets.
1. Two (2) copies of any required DVSS installation software on optical media (CD, DVD, DVD-DL, or Blu-Ray), including all licenses.
1. Four (4) sets of maintenance test equipment as defined in Appendix A Section 1.5.8.
1. All hardware with firmware shall be delivered with the government approved firmware version installed.
1. One (1) licensed copy of the software used to create and restore computer images in accordance with this contract.
1. Licensed copies of any other software required to meet the requirements of the contract.
Government will provide the following for DVSS Shipboard installation:
· Design and construction of all shipboard Foundations, but not including any foundation adapters required to mount hardware to the foundation.
· All Cables and terminating hardware.
· GEDMS, RSC, and UCC hardware and software.
3.2.3 Lab Set
A Lab set is equipment that is installed at Bldg 77H LBES test site.
A Lab Set shall consist of the following components and subsystems, at a minimum. Additional equipment, fittings, and accessories shall be provided as necessary to meet the requirements in the Appendix A:
1. Four (4) cameras, four (4) camera mounts, and associated mounting hardware and ground straps.
1. One (1) VIROE with the hardware required to support four (4) cameras, one (1) foundation adapter (as required), and associated mounting hardware and ground straps.
1. Four (4) camera tamper resistant camera connector housings in accordance with Appendix A Section 1.1.2.
1. Four (4) connector sets to terminate the VIROE to camera CAT5 cable at the camera side.
1. One (1) key lock with two (2) keys for VIROEs. Keys shall be identical for as locks on shipsets.
1. Two (2) copies of any required DVSS installation software on CD or DVD including all licenses.
1. Four (4) sets of maintenance test equipment as defined in Appendix A Section 1.5.8.
1. All hardware with firmware shall be delivered with the government approved firmware version installed.
1. One (1) licensed copy of the software used to create and restore computer images in accordance with this contract.
1. Licensed copies of any other software required to meet the requirements of the contract.
Government will provide the following for DVSS Lab Set installation:
· Design and construction of Foundations, but not including any foundation adapters required to mount hardware to the foundation.
· GEDMS, RSC, and UCC hardware and software
3.2.4 Installation and Check-Out (INCO) Kits
3.2.4.1 Installation and Check-Out (INCO) I Kit
INCO I Kit allows flexibility to propose additional parts and/or additional quantities for kits.
The INCO I kit shall consist of the following components and subsystems, at a minimum but not limited to:
· One (1) camera
· One (1) complete VIROE – four (4) channel.
· One (1) of each type of power supply used inside the VIROE.
· One (1) Power Over Ethernet (PoE) injector or switch.
· One (1) PoE input fuse board.
· One (1) VIROE video recorder - fully assembled.
· One (1) VIROE video recorder storage unit.
· One (1) VIROE Ethernet switch.
3.2.4.2 Installation and Check-Out (INCO) R Kit
INCO R Kit allows flexibility to propose additional parts and/or additional quantities for kits.
The INCO R kit shall consist of the following components and subsystems, at a minimum but not limited to:
· One (1) camera
· One (1) complete VIROE – four (4) channel.
· One (1) Power Over Ethernet (PoE) injector or PoE switch.
· One (1) set of maintenance test equipment as defined in Appendix A Section 1.5.8.
3.2.5 Camera Tech Refresh Kit
Camera Tech Refresh Kit allows flexibility to propose additional parts and/or additional quantities for kits.
Camera Technical Refresh Kit shall consist of the following components and subsystems, at a minimum but not limited to:
· Twenty-four (24) cameras with connector boxes and labels
· Twenty-four (24) CAT5 connectors for the camera
3.2.6 VIROE Tech Refresh Kit
VIROE Tech Refresh Kit allows flexibility to propose additional parts and/or additional quantities for kits.
VIROE Technical Refresh Kit shall consist of the following components and subsystems, at a minimum but not limited to:
· Seven (7) fully assembled VIROEs with all connectors
· All associated software licenses
3.2.7 Archiver Tech Refresh kit
Archiver Tech Refresh Kit allows flexibility to propose additional parts and/or additional quantities for kits.
Archiver Technical Refresh Kit shall consist of the following components and subsystems, at a minimum but not limited to:
· Seven (7) fully assembled archivers.
· Seven (7) cable assemblies required to upgrade the VIROE.
· All associated software licenses required to upgrade a shipset.
· All special tools and other hardware required to install the kit.
3.2.8 Software Refresh Kit
Software Refresh Kit allows flexibility to propose additional parts and/or additional quantities for kits.
A Software Refresh Kit shall consist of the following components and subsystems, at a minimum but not limited to:
· One (1) set of software licenses required for shipset console software licensing.
3.2.9 Test Set Laptop Refresh Kit
Test Set Refresh Kit allows flexibility to propose additional parts and/or additional quantities for kits.
A Test Set Laptop Refresh Kit shall consist of the following components and subsystems, at a minimum but not limited to:
· Four (4) fully assembled maintenance laptops as defined in Appendix A Section 1.5.8
· All associated software licenses.
Appendix A – DVSS Performance Specification
1. Performance Requirements
| 1.1 | Hardware Requirements |
| This section refers to the hardware and any firmware or software requirements of the camera, encoder and recorder. DVSS software requirements are also covered under section 1.2. | |
| All Line Replaceable Units (LRUs) shall be interchangeable within the proposed system. Interchangeable is defined as the ability to exchange one LRU with a replacement LRU without the need for special tooling or software license updates. Replacement of LRUs that communicate with GEDMS shall only require the DVSS administrator to configure the network IP address and camera name for that location. All other configuration shall be automatic. | |
| Cameras that are protected from being back driven or are capable of being back driven without sustaining damage are preferred. |
| 1.1.1 | Open Network Video Interface Forum (ONVIF) | |
| All video cameras shall have a Declaration of Conformance with ONVIF Profile S. | ||
| 1.1.2 | Camera | |
| All camera solutions shall be required to meet all of the GEDMS requirements in this document. IP Digital camera solutions with integrated video storage medium shall be required to record video in accordance with the VIROE requirements in this document. |
| 1.1.2.1 | Video Resolution | |
| Cameras shall be capable generating a color video stream of a minimum resolution of 720 lines progressive scan. |
| 1.1.2.2 | Field of View |
| The camera shall have a horizontal field of view of 40 degrees minimum, 80 degrees maximum in the fully zoomed out lens position. |
| 1.1.2.3 | Pan, Tilt and Zoom (PTZ) Functionality | |
| The camera shall be capable of providing pan, tilt and zoom functionality to the operator viewing the image on a UCC or RSC. The camera shall be able to continuously pan 360o in the horizontal plane. The camera shall be capable of tilting down 90o from horizontal level and tilting up a minimum of 25o from horizontal level (115o total). The camera shall also be capable of providing 18x optical zoom as a minimum. | ||
| The PTZ function shall include a home position. The PTZ shall also be capable of supporting a minimum of fifteen additional preset PTZ locations that are set by the DVSS administrator in the software described in section 1.2. The presets will be used to allow the user to automatically pan, tilt and zoom the camera to a predetermined position and field of view by clicking on a button in the PTZ controls described in section 1.2. | ||
| Cameras shall be capable of supporting PTZ scaling. PTZ scaling is defined as the ability of the camera to proportionally slow down the rate of pan and tilt movement speed as the camera is zoomed in and proportionally increase the pan and tilt movement speed as the camera zooms out. The reduction or increase in the speed of the pan and tilt movement shall keep the rate of pan and tilt speed that is apparent to the operator viewing the video in the DVSS software the same through various zoom positions. | ||
| Cameras that support automatic E-Flip of the video image so that the image is shown in the viewing software is never inverted after the camera passes through its nadir position when tilting are required. Nadir is defined as the direction directly below a dome camera that is mounted in the overhead (ceiling). |
| 1.1.2.4 | Camera Lens Abrasion and Scratch Resistance | |
| The camera lens shall be protected by a second outer protective abrasion and scratch resistant lens. Preferred systems have abrasion and scratch resistant protective lens with a Bayer ratio of at least 5 or on the outer surface of the lens. Other scratch resistant materials are allowed for the outer protective lens. |
| 1.1.2.5 | Focus Adjustment | |
| The camera shall be properly focused at the factory and not require manual focus adjustment for the life of the camera. The camera shall be autofocus. |
| 1.1.2.6 | Light Levels |
| Lighting in engineering compartments is provided by overhead fluorescent light fixtures. DVSS shall be able to provide a clear image (as defined and measured in the statement of work) in a compartment with fluorescent lighting and at light levels down to 1 lux. 1 lux is designed as a unit of illumination equal to one lumen per square meter or to the illumination of a surface uniformly one meter distant from a point source of one candle. The camera’s ability to adjust to various light levels shall be automatic. |
| 1.1.2.7 | Camera Size and Weight | |
| The camera, including the envelope to allow for full PTZ functionality of the camera, shall be no larger than 15 inches high by 12 inches wide by 12 inches deep. The camera and camera mount adapter shall weigh no more than 25 pounds when assembled together. |
| 1.1.2.8 | Tamper Protection | |
| The LRU camera assembly shall use commercially available tamper proof hardware where possible to prevent unauthorized access to the interior of the camera assembly. Each shipset shall include a set of drivers that match any tamper proof hardware used in the system. |
| 1.1.2.9 | Camera Mounting | |
| The material of the shipboard foundation shall be steel. The camera shall not utilize shock mounts. The mounting method shall be self locking threaded hardware in accordance with MIL-DTL-18240F. The threaded hardware size shall be 5/16 inches. The thread count shall be 18 (Course Thread UNC). All threaded hardware material that is not part of the government camera foundation shall be stainless steel. |
| 1.1.2.10 | Camera Power, Video, and PTZ Control Cable |
| Cameras shall be connected to a video encoder via one CAT-5E cable. All CAT-5E cable used shall be low smoke and shielded in accordance with MIL-DTL-24643/59A. The single CAT-5E cable shall carry power, PTZ commands and video signals for the camera. Additional cables or wireless transmission of any kind between the camera and video server is not allowed. Camera power shall be in accordance with IEEE 802.3at/af specification. | |
| The government shall install a CAT-5E cable for each camera to Video Input Recorder Output Enclosure (VIROE section 1.1.3) connection as part of the DVSS installation package. The longest camera to VIROE cable run aboard ship shall be no more than 300 feet in length. Final cable lengths will not be determined until shipcheck. The contractor shall provide an RJ45 port on the camera for the connection from the camera to the government provided CAT-5E cable. The contractor shall provide a matching commercially available, non-proprietary RJ45 connector for the camera side of the government installed CAT-5E cable for each camera. The contractor shall provide a removable camera connector housing that prevents the CAT-5E connector from being unplugged from the camera. The camera connector housing shall be secured to the camera with tamper resistant hardware. Each shipset shall include the tool required to remove the cable connector housing, quantity of 4. The time to remove the cable connector housing shall be included in the digital camera assembly Mean Time To Repair (MTTR) calculations in paragraph 1.5.2. | |
| The government furnished CAT-5E cable shall be routed so that it does not loop down below the camera after installation. The cable connector port on the camera or camera assembly shall not be permitted to be on the bottom of the camera or camera assembly. The preferred connector point is on the top of the camera or camera assembly, the side or back of the camera or camera assembly is also allowed. | |
| The government provided CAT5E cable shall be terminated on the VIROE end with a shielded RJ45 connector that is provided by the contractor. The VIROE end of the government provided CAT5E camera to VIROE cable shall be connected to the appropriate DVSS hardware inside the VIROE enclosure in accordance with section 1.1.3. |
1.1.2.11 Color
The color of the camera assembly and mounts shall be white or a shade of off white, gray or black. All cameras in a shipset shall be of the same color.
| 1.1.2..12 | Compression |
| The digital camera shall use Motion Pictures Group (MPEG) 4 and MPEG 4 Part 10 (H.264) for video compression. The amount of compression used for live video shall be adjustable by the system administrator from the software described in section 1.2. |
| 1.1.2.13 | Frame Rate |
| The digital camera shall be capable of providing up to 30 frames per second (fps) of MPEG4 or MPEG 4 Part 10 (H.264) video at 4CIF to the viewing software on the UCCs or RSCs. The frame rate shall be adjustable from 1 fps to 30 fps at 1 fps intervals maximum via the administrator software described in section 1.2. |
| 1.1.3 | Video Input Record Output Enclosure (VIROE) | |
| The contractor shall provide an enclosure that is capable of holding all of the required hardware that can support least four cameras but can also be configured to support up to eight cameras. This includes all hardware for video encoding, serving, PTZ control, recording, network communication with GEDMS, and associated power supplies for the cameras and video encoding, serving, and recording hardware as well as any other contractor required hardware for DVSS camera operation. |
There shall be 7 VIROE’s per shipset. VIROE locations will be in a different compartment than the cameras it serves.
| 1.1.3.1 | VIROE Construction Requirements | |
| Unless otherwise noted in this performance specification, the VIROE shall meet all of the requirements of MIL-DTL-2036E for Class 1, Dripproof (45 Degrees) Protected Electronic Enclosures. Each VIROE shall include instructions and drawings with the BIT and BITE procedures as well as instructions for removal and replacement of all LRUs inside the VIROE. The instruction sheets shall be in accordance with MIL-DTL-2036E. The instruction sheets shall be attached to the VIROE door. |
1.1.3.2 Access
All equipment inside the VIROE shall be accessible from a front access door. The VIROE shall include hasp hardware to support a padlock to prevent unauthorized access to the VIROE interior. Equipment shall be designed so that doors can be latched in an open position for maintenance and to suit internal equipment removal and replacement. Equipment shall be fabricated such that personnel will not be exposed to moving mechanical parts when the front cover is open.
1.1.3.3 Cables and Connectors
All camera, network, and power cables shall be brought into the VIROE through stuffing tubes and shall be terminated inside the enclosure to prevent unauthorized disconnection of the system. Connectors shall be configured so that they cannot be plugged into the wrong receptacle or plugged incorrectly into a receptacle. In all cases, port connections shall be clearly marked as to their appropriate use. Connectors shall be designed so that any exposed pin contacts are 30 V or less. The contractor shall provide all connectors and stuffing tubes required to install the system so that it meets all environmental requirements. All penetrations into the VIROE shall be large enough to allow all cables to be inserted or pulled out of the VIROE without having to remove or disassemble any connectors from the cable ends. The contractor shall provide all VIROE stuffing tube assemblies and hardware to seal off all unused VIROE openings.
| 1.1.3.4 | Size and Weight | |
| The VIROE shall be no larger than 22 inches wide by 18 inches tall by 10 inches deep. The assembled VIROE shall weigh less than 50 pounds. |
| 1.1.3.5 | VIROE Mounting | |
| The VIROE shall be mounted to the government provided foundation shown in |
Figure 1: DVSS Video Input Record Output Enclosure (VIROE) Required Foundation Patterns . The material of the shipboard foundation shall be steel. The VIROE shall not utilize shock mounts. The mounting method shall be self locking threaded hardware in accordance with MIL-DTL-18240F or MIL-DTL-32258. The threaded hardware size shall be 5/16 inches. The thread count shall be 18 (Course Thread UNC). All threaded hardware material shall be stainless steel.
Figure 1: DVSS Video Input Record Output Enclosure (VIROE) Required Foundation Patterns
| 1.1.3.6 | Power Switch and Status Lights | |
| The VIROE shall have one switch inside the enclosure to power down all of the hardware inside the VIROE. No switches of any kind shall be allowed on the outside of the VIROE. | ||
| The VIROE shall have an LED inside the enclosure to indicate power is available to VIROE components. The VIROE shall have a second LED inside the enclosure to indicate that the VIROE is powered up. Network components shall have LEDs to provide an indication of link status and communication status with each network connection. Indicator lights outside the VIROE are not required. |
1.1.3.7 Color
The color of the VIROE shall be in accordance with SAE-AMS-STD-595, No. 26307 light equipment gray.
1.1.3.8 Digital Video Recording
| 1.1.3.8.1 | Video Recording | |
| The contractor shall provide digital video recorders that are capable of continuous recording (24 hours per day, 7 days per week) of each camera at 7 fps (minimum) for 7 days (minimum). The resolution of the recordings shall be 720 lines progressive scan (minimum). The video shall be recorded without using any GEDMS bandwidth. The frame rate and resolution selection of the video recorder shall be independent of the frame rate and resolution selected for the live video display on the RSC and UCC. Multiple channel DVRs are acceptable if they can meet all of the DVR requirements for every channel. | ||
| The video shall be recorded in a secure file format that prevents alteration or tampering with the original video recording so that the recorded video can be used as evidence in a court of law. | ||
| Recorded video shall be automatically overwritten with a First In/First Out (FIFO) method when the storage device for the video recordings becomes full. The maximum segment of recorded video that can be deleted during FIFO recording is 1 hour per hour. Breaks in recorded video are not acceptable during continuous recording. | ||
| Software described in section 1.2 shall allow the user to view recorded video from the DVSS Maintenance laptop. The software shall allow the user to download a selected video clip in secure file format to the DVSS Maintenance laptop hard drive so that the video clip can be archived. |
| 1.1.3.8.2 | Administration | |
| Access to the DVR setup and configuration files shall be password protected. The DVSS Administrator shall have the ability to remotely administer the DVR from the DVSS Maintenance laptop. |
| 1.1.3.8.3 | DVR Status | |
| The viewing software shall be capable of notifying the DVSS User that a specific DVR is no longer recording video through the DVSS MultiViewer software described in section 1.2.2.2. |
| 1.1.3.8.4 | DVR Startup | |
| The DVR shall be capable of rebooting and recording video within 2 minutes of start up without user or administrator intervention, including startup after a shut down due to sudden loss of power. |
| 1.1.3.9 | GEDMS Interface – DVSS Hardware | |
| Wireless networking or data transmission of any kind is not permitted. |
| 1.1.3.9.1 | VIROE Ethernet Switch | |
| The VIROE shall include a managed Ethernet switch. The VIROE Ethernet switch shall have a 10/100/1000 Base-TX port to interface with GEDMS. Network Attached Storage (NAS) devices used to meet the video recording requirements shall connect to a port on the VIROE Ethernet switch. All cameras shall connect to a port on the VIROE Ethernet switch. | ||
| The VIROE Ethernet switch shall meet all of the IA requirements listed in section 1.2.3. The VIROE Ethernet switch shall support IEEE 802.1Q for VLAN support. The VIROE Ethernet switch shall support IEEE Standard 802.1W, Rapid Spanning Tree Protocol. The VIROE network switch shall be capable of allowing all unused ports to be disabled through the switch configuration management software. | ||
| The VIROE network switch network interface speed shall be capable of being manually set for each individual port. The speed setting shall be 10 Mbps, 100 Mbps, or 1000 Mbps. The VIROE network switch duplex setting shall be capable of being set to full duplex or half duplex for each individual port. The VIROE network interface speed and duplex shall be capable of being set to auto negotiate for each individual port. | ||
| The VIROE Ethernet switch shall allow the current configuration settings to be downloaded to a switch configuration file. The VIROE Ethernet switch shall allow for a switch configuration file to be uploaded to the switch to restore the switch settings to their previous settings. The VIROE Ethernet switch shall maintain all of its settings when the power source is removed from the switch. |
| 1.1.3.9.2 | VIROE to GEDMS Cable | |
| The VIROE shall be connected to the GEDMS network via one government installed CAT-5E cable run between each VIROE and GEDMS. The CAT-5E cable shall be low smoke and shielded in accordance with MIL-DTL-24643/59A. The contractor shall provide all connectors required to terminate the government installed CAT-5E cable inside the VIROE enclosure in accordance with section 1.1.3. Shielded RJ45 connectors and receptacles shall be used for the VIROE to GEDMS cable termination inside the VIROE. The government will terminate and connect the GEDMS end of the network cable during installation. |
| 1.1.3.9.3 | Bandwidth Requirements | |
| DVSS hardware shall connect to GEDMS through a User Switch Enclosure (USE) that is connected to a Gigabit Ethernet Module (GEM) Input Output Unit (IOU). The bandwidth limitation for DVSS at each GEM is 25 Mbps. Due to the scalability requirement of DVSS, the contractor shall design DVSS to operate with up to eight cameras and their associated DVRs connected to one USE and sharing one 25 Mbps connection to GEDMS. | ||
| Additional detailed information on GEDMS can be found in the Boeing Integrated Defense Systems Gigabit Ethernet Data Multiplex System (GEDMS) AN/USQ-82(V) Technical Description Revision 6, 26 January 2021. |
| 1.1.3.9.4 | Multicast | |
| The video encoder or IP Video camera shall be capable of supporting UDP/IP Multicast, specifically Internet Group Management Protocol (IGMP) v.2 Multicast - RFC 2236 per GEDMS requirements. Specific technical details of this protocol can be found in the Boeing Integrated Defense Systems IP Multicast Tutorial dated 15 August 2005. | ||
| The Time To Live (TTL) setting for DVSS Multicast packets from all DVSS video encoders or IP cameras shall be adjustable by the DVSS Configuration Manager. The TTL setting shall be set to 8. |
| 1.1.3.9.5 | Unicast | |
| Unicast connections are only allowed for playback of recorded video or download of recorded video files for archiving at the DVSS Maintenance Laptop. Playback of recorded video or download of recorded video files shall utilize the same GEDMS connection as the live video streams and shall share the 25 Mbps bandwidth connection to GEDMS with the live video streams. |
| 1.1.3.9.6 | Speed and Duplex – IP Cameras |
| The IP Camera interface network speed shall be capable of being manually set for each individual network port. The speed setting shall be capable of being set to 10 Mbps or 100 Mbps, The IP Camera interface duplex setting shall be capable of being set to full duplex or half duplex for each individual network port. The IP Camera interface network speed and duplex settings shall be capable of being set to auto negotiate for each individual network port. The camera shall maintain all of its settings when the power source is removed from the camera. |
| 1.2 | Software Requirements | |
| In addition to any hardware firmware or hardware software requirements in section 1.1, the contractor shall provide video viewing software and administrative functionality through a DVSS Graphical User Interface (GUI). DVSS GUI software shall be used by a DVSS User and a DVSS Administrator. The DVSS User functions shall be available on all RSCs and UCCs aboard ship. The DVSS Administrator functions shall only be available from the DVSS Maintenance Laptop. The software packaging and licensing shall also allow the government to replace any DVSS hardware, such as cameras, encoders, servers and DVRs, with identical components without purchasing additional software licensing or requiring a software license update. The software package and licensing shall also allow the government to install up to 28 cameras. | ||
| After the software license has been activated on a government computer, the license shall remain activated in the event of a hardware status change or OS setting change on that CPU. The DVSS license shall remain active and not require relicensing or a license update from the software vendor in the event of any change to the computer that does not involve the physical replacement of a computer component. The DVSS software license status shall remain active on the computer under the following conditions: a change in IP address(es) of the computer; change in the connection status of a Network Interface Card (NIC); the application of any software patch, service pack or other software updates to the operating system and other software on the computer; installation of other software from different vendors to the computer; a change in any of the operating system settings; applying an existing image with the license to the exact same computer the image was taken from; or any other software changes not listed here that do not involve replacement of computer hardware components. The contractor shall provide a detailed explanation of all conditions that can cause an activated DVSS software license status to change. | ||
| If an activated DVSS software license becomes invalid due to a computer hardware change, the shipboard DVSS administrator shall be able to update the license from the DVSS shipboard administrator account on the DVSS maintenance laptop without logging into the MCS consoles. | ||
| All DVSS software provided shall be able to operate concurrently on the same computer with the MCS Software loaded. Video software shall have a Declaration of Conformance with ONVIF Profile S. |
1.2.1 Computer Processing Unit (CPU) Requirements
| 1.2.1.1 | Software CPU and RAM Utilization Limits |
| The primary function of the UCC is to run Machinery Control System (MCS) software packages; the primary function of the RSC is to run Damage Control Software packages. DVSS software is a secondary function that must not interfere with any other software running on a UCC or RSC at any time. The DVSS User software shall utilize no more than a maximum of 12.5% of the CPU processing and 20% of the installed DRAM of any RSC at anytime, including DVSS software initialization. | |
| The DVSS User software shall utilize no more than a maximum of 15% of the CPU processing and 20% of the installed DRAM of any UCC during DVSS software initialization. The DVSS User software shall utilize no more than a maximum of 12.5% of the CPU processing and 20% of the installed DRAM of any UCC during DVSS software operation. The DVSS User software shall utilize no more than a maximum of 15% of the CPU processing and 20% of the installed DRAM of any UCC during DVSS software shutdown. |
| 1.2.1.2 | Universal Control Console Specifications | |
| The Universal Control Console (UCC) shall be one of the three computing platforms used for DVSS user software tasks. The four UCCs installed as part of DDG Modernization shall only be used to display live or recorded video with the video viewing software. The UCCs shall not be used for the downloading and archiving of video or DVSS administrative tasks. Detailed information on the UCC can be found in the DDG-Modernization (DDG-M) Single CCS Watchstander Universal Control Console (UCC) Performance Specification. All DVSS viewing software shall be able to operate on the final UCC design without degradation of the performance of other software applications that may be run concurrently on a UCC. The contractor shall provide engineering support to ensure that the DVSS user software provided can operate on the UCC and not adversely impact other software applications that may be running concurrently on the UCC. | ||
| UCC1 and UCC2 will be located in the Central Control Station (CCS), UCC3 will be located in Main Engine Room 1 (MER1) and UCC 4 will be located in MER2. Each UCC will have four processor units, the DVSS viewing application will be run on processor 1. The requirements for UCC Processor 1 are: |
VME 6U
Processor Type – 4 Cores (minimum) Processor Speed – 3 GHz (minimum) Program Memory – 240 GigaByte (GB) hard drive (minimum) DRAM – 16 GB DDR4 SDRAM (minimum) Ethernet - 10/100/1000 Mega Bits Per Second (Mbps) Ethernet Ethernet Ports – two (2) RJ45, front panel, connected to GEDMS USB Ports - 2 ports, (USB 3.0) Video – 4 channels (front panel) Video Resolution – 1600x1200, 24 bit color Video Adapter Memory Each Display – 512MB DDR Memory Keyboard/Trackball – USB Windows 10 Enterprise LTSC 2019 (64-bit) Operating System licenses (or newer) Operating System.
| 1.2.1.3 | Repair Station Console Specifications | |
| The Repair Station Console shall be used for DVSS user and administrative software tasks. All DVSS software shall be able to operate on the final RSC design without degradation of the performance of other software applications that may be run concurrently on an RSC. The contractor shall provide engineering support to ensure that the DVSS user software provided can operate on the RSC and not adversely impact other software applications that may be running concurrently on the RSC. The DVSS administrator software shall run on the RSC but is allowed to operate with all other RSC software applications shutdown. | ||
| The RSC will be installed aboard ship with DVSS. |
1.2.1.3.1 RSC Configuration
| There shall be seven RSCs aboard each ship. The RSCs shall be located in the Central Control Station (CCS), Combat System Maintenance Center (CSMC), Combat Information Center (CIC), Repair 2, Repair3, Repair 5, and Pilot House. Minimum performance requirements of the RSC can be found in the purchase specification DDG-Modernization (DDG-M) Single CCS Watchstander Repair Station Console (RSC) Performance Specification. |
| The RSC shall be a Panel PC design. The base rugged Panel PC shall consist of a 19” (minimum) display, processor, data storage device, internal speaker, and keyboard/trackball device, that all receive power from an Uninterruptible Power Supply (UPS). The design shall have the capability to drive an additional external 19” (minimum) or 40” rugged display operated by the same Panel PC processor, UPS, data storage device, and keyboard/trackball. |
RSC Processor Requirements:
· Panel PC Processor Requirements
· The Processor shall have a minimum of 4 processing cores.
· Processor shall have a minimum clock speed of 2.4 gigahertz (GHz).
· Shall have a minimum of three (3) USB (3.0 or equivalent) ports as outlined in Table 2.
· The Panel PC processor shall support an interface for one (1) Resistive touch screen display.
· The Rugged Panel PC processor shall come pre-loaded with Windows 10 Enterprise LTSC 2019 (64-bit) Operating System licenses (or newer)Operating System
· Memory Requirements
· Shall have an 32 gigabyte (GB) DDR3 SDRAM or better dedicated for CPU.
· Should have expansion capability to 64 gigabyte (GB) DDR3 SDRAM or greater.
· Data Storage Device Requirements
· Computing element shall have access to a solid state drive with a minimum capacity of 300 GB.
· The solid state drive shall contain the operating system.
· Computing elements utilizing flash architecture technology shall not be used.
· The solid state drive shall have a maximum of 0.50% Annualized Failure Rate (AFR).
· The solid state drive shall have a Serial ATA (SATA) interface with a minimum of 6 GB/s transfer rate.
RSC GEDMS Interfaces
· The RSC Panel PC interfaces to GEDMS shall be two (2) RJ45 10/100 Base T IEEE 802.3 connections on the input/output interface panel.
· The RSC Panel PC shall support IEEE 802.3 Ethernet TCP/IP and UDP/IP Multicast communications on all network interfaces.
· The RSC Panel PC shall support Internet Group Management Protocol (IGMP) v.2 Multicast – RFC 2236 on all network interfaces.
· All connections to GEDMS shall be in compliance with Gigabit Ethernet Data Multiplex System (GEDMS) AN/USQ-82(V) Technical Description Revision 6, 26 January 2021.
· Each RSC Panel PC network interface shall be connected independently to the Ship’s GEDMS.
· Each interface shall be auto-sensing.
· Each interface shall function independently to GEDMS.
· Design shall allow for simultaneous communication on both interfaces.
· Design shall allow for full communication capability through a single channel in the event a single interface fails.
· Each interface shall provide indication LEDs for Transmit and Receive.
· The Panel PC shall support IPv4 on all network interfaces.
· IPv6 support shall be disabled on all Panel PC network interfaces.
· The interface to GEDMS shall be via 100baseTX USE switch that is part of the Ship’s GEDMS system.
RSC 19” (Minimum) Display and Panel PC Video Adapter Card Requirements
· 19” LCD Flat Panel requirements:
· All screen sizes shall be measured by the diagonal viewing area.
· Each 19” (minimum) display shall have a 4:3 or 5:4 size ratio.
· Shall be Thin Film Transistor (TFT) Active Matrix LCD (or equivalent).
· Shall be Light Emitting Diode (LED) backlit.
· Shall have embedded Resistive Touch Screen technology.
· Shall have a Touch Screen disable function.
· Shall have 1280x1024 resolution.
· Shall support standard lower resolutions.
· Shall use a digital video input signal or equivalent.
· Shall display 16 million colors minimum.
· Shall have a maximum response time of 16ms.
· Shall have a minimum viewing angle of +/- 85 degrees in the horizontal direction.
· Shall have a minimum viewing angle of +/- 85 degrees in the vertical direction.
· Video Adapter Requirements for each 19” (minimum) Display:
· Shall have a minimum of 1GB DDR memory shared between the 19” (minimum) display and additional display.
· Shall support 1280x1024 resolution.
· Shall support standard lower resolutions.
· Shall use a digital video output or equivalent to drive display.
· Shall support 16 million colors minimum.
RSC 40” (Minimum) Display and Panel PC Video Adapter Card Requirements
· 40” (Minimum) LCD Flat Panel requirements:
· All screen sizes shall be measured by the diagonal viewing area.
· 40” (Minimum) flat panel shall have a 16:9 size ratio.
· Shall be Thin Film Transistor (TFT) Active Matrix LCD (or equivalent).
· Shall be Light Emitting Diode (LED) backlit.
· Shall have 1920x1080 resolution.
· Shall support standard lower resolutions.
· Shall use a digital input signal or equivalent.
· Shall display 16 million colors minimum.
· Shall have a maximum response time of 30ms.
· Shall have a minimum viewing angle of +/- 85 degrees in the horizontal direction.
· Shall have a minimum viewing angle of +/- 85 degrees in the vertical direction.
· Video adapter requirements for 40” (Minimum) LCD Flat Panel:
· Shall have a minimum of 1GB DDR memory shared between the 19” (minimum) display and secondary display.
· Shall support 1920x1080 resolution.
· Shall support standard lower resolutions.
· Shall use a digital output or equivalent to drive display.
· Shall support 16 million colors minimum.
1.2.2 Multiviewer Software Requirements
The DVSS Multiviewer software shall have three types of user accounts, the DVSS User, the DVSS Administrator and the DVSS Configuration Manager. The DVSS User shall be prevented from accessing the DVSS Administrator and DVSS Configuration Manager functions. The DVSS Administrator shall be prevented from accessing the DVSS Configuration Manager functions.
| 1.2.2.1 | DVSS User Functions | |
| The contractor shall provide software that shall allow a user to view live video streams on any RSC or UCC. All software provided shall be capable of being automatically launched by the Machinery Controls Software (MCS). The vendor shall provide a method for MCS software to start the DVSS software and to provide the user name and password to the server for software launch. |
| 1.2.2.1.1 | Camera Viewing and Selection | |
| The viewing software shall be capable of displaying at least 6 different video streams simultaneously on a RSC or UCC with a total system latency of less than 0.5 second. The viewing software shall have an intuitive method for selecting any available camera for viewing in a viewing window. The viewing software shall also be capable of switching between one enlarged video stream and the 4 view display with a double mouse click. Switching between the single and multi view options shall not increase the amount of space DVSS takes up on the UCC or RSC desktop. The DVSS viewing window size shall be adjustable by the user and shall not be expandable beyond one monitor on workstations with multiple monitor configurations. |
| 1.2.2.1.2 | Camera Tours | |
| Every UCC and RSC shall have a capability of displaying a minimum of one independent video tour at the same time. A video tour is defined as a single viewing window that automatically changes video streams on a preset time interval. The DVSS Viewing software shall allow either the DVSS User or DVSS Administrator to select the number of cameras and the order in which they are to be displayed. The viewing software shall also allow DVSS Administrator to set the time interval that each selected camera shall be shown before the next camera in the tour is displayed. The DVSS Administrator shall also have the capability to lock out the DVSS User from changing cameras or the time interval of the camera tours. |
| 1.2.2.1.3 | Camera Groups | |
| The user shall be able to configure cameras into groups for quick access to several cameras at once. The user shall be able to create a group name and select any available camera for insertion into the group. When the user selects a group for viewing, all cameras in that group shall be displayed. The quantity of cameras that can be inserted into a group shall be limited to the maximum number of cameras that can be displayed on an RSC or UCC. This final number shall be determined during LBES Integration Testing described in the SOW. |
| 1.2.2.1.4 | PTZ Control |
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