Camp_Roberts_SRD_-_20190905.pdf

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Camp Roberts TCF Federal contract opportunity
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W15QPC0001
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Department of the Army Acquisition Support Center PEO Enterprise Information Systems

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System Requirements Document - SRD

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SYSTEM REQUIREMENT DOCUMENT (SRD) FOR THE

INSTALLATION INFORMATION

INFRASTRUCTURE MODERNIZATION PROGRAM

CAMP ROBERTS MILITARY CONSTRUCTION ARMY

(MCA) TECHNICAL CONTROL FACILITY (TCF)

UPGRADE

XX September 2019

TABLE OF CONTENTS

Page

1.0 SCOPE

1.1 Background

1.2 System Requirement Document Overview

1.3 Assumptions/Constraints

1.4 System Overview

2.0 Requirements

3.0 Operational User/Stakeholder Requirements

4.0 General and Functional Requirements

4.1 General Requirements

4.2 Network Functional Requirements

4.3 Infrastructure Functional Requirements

4.4 Cyber Security Functional Requirements

4.5 Cabling Functional Requirements

5.0 System Requirements

5.1 Network System Requirements…

6.0 Training-Related Requirements

7.0 Logistics-Related Requirements

8.0 Other Requirements

Appendices

GLOSSARY. ABBREVIATIONS AND ACRONYMS.................................. GLOSSARY-1

Figures

Figure 1. Network Connectivity Diagram of Existing Camp Roberts TCF Figure 2. Existing Camp Roberts TCF Floor Plan Figure 3. Preliminary Camp Roberts New TCF Floor Plan

SYSTEM REQUIREMENT DOCUMENT (SRD)

CAMP ROBERTS MILITARY CONSTRUCTION ARMY (MCA) TCF

UPGRADE

1.0 SCOPE

This document addresses the architectural and functional requirements for the new IP/MPLS transport infrastructure that will replace the Camp Roberts ATM/SONET infrastructure. The Network demarcation is the Joint Base Customer Edge router to the DISA-SDN IPT-PE router. The Collection Router (CR) (Serial to Packet device) is also included in the network, it also provides for consolidation of IP signals of other post IP signals. The primary security for the network will be provided by the Joint Regional Security Stack at Fort Irwin, CA. The new IP/MPLS system infrastructure solution will consolidate disparate/stove-piped system networks from different transport technologies into a single converged network architecture intended for video and data delivery that is resilient and reliable. The IP/MPLS system infrastructure solution will also provide a gateway interface device for non-IP / pseudo-wire (STP/CEoIP) traffic that facilitate the ability to build next-generation, intelligent networks that deliver a wide variety of advanced, value-added services over a single IP/MPLS system infrastructure.

In support of this document, USAISEC and Program Executive Office for Enterprise Information Systems (PEO-EIS) architecture engineers have partnered with Army Network Enterprise Command (NETCOM), 21st Signal Brigade, Army Signal Activity-Camp Roberts and Defense Information Systems Agency (DISA) to develop the specification and technical requirements for Fiber, DWDM, Bulk Encryption, J-PE routers, JB-CE routers and Collection Router (CR) which are provided in this document. This document will only provide room requirements that are relative to items in the TCF room requirements for other systems are to be installed by other agencies (e.g., Defense Information System Network (DISN) Point of Presence (PoP) equipment, DISA Nodes and overall construction are not covered by this document and is the responsibility of other agencies, however, end-to-end connectivity to these systems that are in the TCF are the responsibility of the contractor.

The design requirements are limited to only those subsystems and demarcation points that are under the responsibility of the local Operations and Maintenance (O&M) organization, Army Signal Activity-Camp Roberts. However, even though the scope encompasses the O&M’s responsibility, the EFI&T prime is responsible to coordinate installation, test and cutover with various organizations through I3MP in order to complete the project.

a. Supplemental information is provided to facilitate better EIP design information.

The information provided will indicate when the work is the responsibility of others.

b. This System Requirements Document (SRD) is intended to identify requirements, replace and replicate/relocate existing TCF (Building 18000) services into the new TCF (Building 18100) at Camp Roberts, California. This includes all direct and indirect systems that are required to operate and maintain mission requirements.

c. This document defines the functional and technical requirements needed to support the operational requirements as defined in JIE CONOPS V 2.0, all sections with focus on Section 3, C2 of JIE Operations.

d. PdM I3MP requires the use of using a single contracting action with five distinct phases. These are the five phases; Phase I - Survey/design/engineering system & supporting architecture, Phase II - Procurement of cabinets, grounding, power equipment, and cabling (LOM/MILOM/BOM) necessary to install, Phase III - Installation of procured material, Phase IV - Testing necessary to achieve IOC and Phase V - Cutover to FOC and de-installation/disposal of existing facility equipment and architecture.

e. This SRD addresses I3MP’s requirement to Engineer, Furnish, Install, Secure, and Test (EFIS&T), document, migrate and cutover a turn-key solution to upgrade the existing TCF at Camp Roberts, CA using commercial best practices.

f. This document addresses the architectural and functional requirements for the new Camp Roberts MCA TCF Upgrade Project network system infrastructure that will replace the existing Camp Roberts TCF network infrastructure. The Camp Roberts MCA TCF Upgrade Project is in response to operational requirements validated through the NETCOM. PdM I3MP is responsible to program manage, Engineer, Furnish, Install, Secure and Test (EFIS&T), execute design, and cutover strategic C4I Systems in support of this effort. The project involves replacing the existing Network system infrastructure systems within the current architecture with a DODIN APL solution that is IAW the DISN Enterprise Network (DISN-EN) MPLS Outer Core Network Design & Implementation documented Architecture. The network demarcation is the Joint Base Customer Edge (JB-CE) router to the DISN ICAN.

1.1 Background

a. The U.S. Army Network Enterprise Technology Command (NETCOM) requested that PdM I3MP provide an engineering solution for their current and emerging technical control requirements. The existing TCF (Building 18000) facilities at Camp Roberts have reached End of Life (EOL) and are increasingly difficult to maintain or upgrade. The DoD is also rapidly moving toward an all-digital, Everything over IP (EoIP) Global Information Grid (GIG), which further necessitates upgrades to the TCF. The proposed solution is to build a new TCF (), housed within Building 18100 to be constructed adjacent to the existing TCF. MCA funds are used and is managed by the USACE for the building construction. The TCF infrastructure installation will be designed by the contractor and the technical oversight will be provided by USAISEC in support of the PdM I3MP. The telecommunications equipment installation, known as the Camp Roberts MCA TCF Upgrade Project is managed by PdM I3MP. The new Camp Roberts MCA TCF (Building 18100) upgrade shall replicate most of the existing TCF capabilities and services, and provide a technical control platform for a state-of-the- art, EoIP enterprise network architecture.

b. The new TCF (Building 18100) will replace the existing TCF (Building 18000) at Camp Roberts and will continue to be co-located with the Satellite Communications (SATCOM) facilities in a new SATCOM operations building (Building 18100). The existing equipment will be either relocated or functionally replicated with new equipment in the new facility. The new facility will be furnished with state-of-the-art telecommunications equipment in support of technologies such as Multiprotocol Label Switching (MPLS);

Optical Transport Network (OTN) and Dense Wavelength Division Multiplexing (DWDM);

Carrier Ethernet Service; Ethernet over fiber; Asynchronous Transfer Mode (ATM) / Synchronous Optical Network (SONET); Serial-to-Packet (STP) pseudo-wire; and Fiber Optic (FO) Matrix Switches.

c. The contractor will develop a design and engineer an upgrade to the existing Direct Current (DC) power systems for the new Camp Roberts TCF (Building 18100). The existing DC power system’s base design in building 18000, as shown in Figure 1, Existing Site DC Power configurations, consists of the application of a primary power distribution bay populated with rectifiers and circuit breaker panels, a secondary power distribution via circuit breaker and fuse panels, an emergency backup battery system, a DC power ground system where required. The upgraded DC power systems shall provide redundant systems to meet the power requirements for all services and requirements at the locations identified in this SRD. The DC system requirements are based largely upon the current equipment load, known upcoming equipment modifications and upgrades, and projected future technology upgrades.

d. PdM I3MP requires the use of a single contracting action with five distinct phases.

The Performance Work Statement (PWS) addresses I3MP’s requirement to Engineer, Furnish, Install, Secure, and Test (EFIS&T), document, migrate and cutover a turn-key solution to upgrade the existing TCF (Building 18000) at Camp Roberts, CA using commercial best practices.

1.2 System Requirement Document Overview

This SRD provides the operational, functional, design, and installation requirements for the upgrade and modernization of network, data center and DC power systems for the Camp Roberts MCA TCF Upgrade Project.

1.3 Assumptions

The following subparagraphs list the key assumptions that will drive the engineering, installation, testing, migration/cutover and de-installation for this effort.

a. All non-TCF electrical, mechanical, Heating, Ventilation, and Air Conditioning (HVAC), and plumbing requirements have been identified in the facility, and will be installed by USACE.

b. The new facility is constructed with adequate Alternating Current (AC) power, Uninterruptible Power Supplies (UPSs), HVAC, grounding, floor space, cable and duct pathways, and future expansion capacity. USACE extends AC power feeds to each row in the TCF for connection to AC Distribution Centers for in-row power to each cabinet.

c. The O&M Command has ensured that adequate fiber connectivity exists between the outlying buildings and the new TCF. They will also provide fiber connectivity between the new TCF and the old TCF to support transitioning of circuits to the new TCF. Optical time domain reflectometer (OTDR) test results through the near and far end patch panels or distribution frames will be available for review.

d. The Army Signal Activity-Camp Roberts will be responsible for ongoing O&M of the Army-owned telecommunications systems in the TCF. They will also provide consultation with USAISEC and PdM I3MP in determining the functional system requirements.

1.4 System Architecture Overview

The Architecture will be presented as a separate document. Architectural information is not addressed in detail in this document but is captured in the DOD Chief Information Officer (CIO), Department of Defense Unified Capabilities Requirements (UCR 2013), December 2013; Change 2, September 2017 and the System Design Plan, which will be developed for Camp Roberts MCA TCF Upgrade Project.

a. The Camp Roberts TCF in building 18000 will continue to provide 1-2 years of services while the new Camp Roberts TCF in building 18100 is being built and can provide the full operational capability. The functional and technical requirements described in this document provide the contractor(s) a roadmap to follow in developing a comprehensive System Design Plan (SDP) and detailed Engineering Installation Plan (EIP). Each requirement should be traceable to a proposed solution in the contractor design and EIP.

1.4.1 Existing Operational Environment

The Camp Roberts TCF in building 18000 is not able to support an expansion of equipment, systems and services within the facility. This facility shall continue to provide C4 capabilities supporting the necessary user interface ports to backhaul network and data services and provide last-mile transport of special C2 user services through the build out of the new Camp Roberts TCF (Building 18100).

1.4.2 Current System Architecture

The Current “As-Is” Architecture for Camp Roberts consists of long-haul transmission, carrier and unified services systems that provides connectivity for the camp. The long haul transmission architecture at Camp Roberts consists of satellite, Asynchronous Transfer Mode (ATM) / Synchronous Optical Network (SONET) and Dense Wavelength Division Multiplexing (DWDM) transmission systems, which provide the current connectivity.

FOR OFFICIAL USE ONLY

Figure 1: Network Connectivity Diagram of Existing Camp Roberts TCF

Figure 2: . Existing Camp Roberts TCF Floor Plan

Figure 3: Preliminary Camp Roberts New TCF Floor Plan

2.0 REQUIREMENTS

The new TCF will replace the existing TCF at Camp Roberts in Building 18000, and will continue to be co-located with the SATCOM facilities in a new SATCOM operations building, Building 18100. The existing equipment will be replaced and/or functionally replicated with new equipment in the new technical control facility. The Contractor shall Engineer, Furnish, Install, Secure and Test (EFIS&T) a new TCF that will be collocated with the new Satellite Earth Terminal Facilities, which will be collocated with the Network Enterprise Center (NEC) services.

3.0 Operational User/Stakeholder Requirements

PdM I3MP is providing program management, and is responsible for the TCF Camp Roberts project oversight function for the U.S. Army Network Enterprise Technology Command (NETCOM), the 21st Signal Brigade, 302nd Signal Battalion and the 514th Signal Company. The goal of this program is to engineer, furnish, install, secure and test (EFIS&T) a new TCF that will be located inside the new Satellite Earth Terminal Facility.

This document describes the recommended system engineering solutions that will replicate existing equipment and functionality as needed, and recommend newer technologies and their new requirements to meet the Army’s goal of migrating to an Everything over Internet Protocol (EoIP) architecture.

4.0 General and Functional Requirements

The Contractor shall provide all personnel, equipment, supplies, facilities, transportation, tools, materials, supervision and other items necessary to perform this project. The Contractor shall provide project management from award to completion of the Period of Performance (PoP). The Contractor shall coordinate all Contractor resources to assure project success, and provide guidance and coordination to all Contractor personnel to complete system requirements.

4.1 General Requirements

GEN-001 All devices and equipment with connectivity to Department Of Defense Information Network (DoDIN) infrastructure must be identified on the Defense Information Systems Agency (DISA) Unified Capabilities (UC) Approved Products List (APL), as applicable.

GEN-002 All new equipment, software, and services must be Unified Capabilities Requirements 2013 (UCR 2013), Change 2 September 2017 and UC Framework 2013 compliant.

GEN-003 All design and installation must be In Accordance With (IAW) DoDD 5000.01, Enclosure 1, Section E1.1.27, “Systems Engineering,” and the Unified Facilities Criteria (UFC) 3-580-01, Telecommunications Interior Infrastructure Planning and Design.

GEN-004 All equipment and enclosures shall be grounded IAW the Unified Facilities Criteria (UFC) 3-580-01, Telecommunications Interior Infrastructure Planning and Design.

4.2 Network Functional Requirements

NET-FUNC-001 Network designs and installations of devices, equipment, and systems must be Internet Protocol Version 4 and 6 (IPv4/6) capable, as applicable.

NET-FUNC-002 Replace all network equipment nearing or at End of Life (EOL) with new solutions that meet project requirements and DOD/Army directives and, at a minimum, five years from End of Life (EOL) and two years from End of Service (EOS) at time of implementation.

NET-FUNC-003 Develop a distributed network topology including redundancy to increase reliability and survivability, and provide a means to perform network maintenance without disrupting operations.

NET-FUNC-004 Develop a viable network solution that will support the mission and allow administrators the flexibility and adaptability to support their customer requirements and needs.

4.3 Infrastructure Functional Requirements

IN-FUNC-001 Cabinets. The requirement is to populate the TCF with 32-inch-wide-by- 42-inch deep-by 87-inch-high cabinets placed in five rows of 21 each, with the center row containing 16 cabinets in order to accommodate for the structural pillar and the Direct Current (DC) rectifier and Alternating Current (AC) power.

IN-FUNC-002 AC Facility Distribution Centers (FDCs). The requirement is to provide in-row power to each of the five rows and to provide power to the DC rectifier unit. Each power unit shall provide dual power 120-Volts Alternating Current (VAC); 30-Amperes (A) to each cabinet and the cabling to handle future growth. AC power is to be designed to support Network Equipment Building Standards (NEBS) 3-compliant equipment. Power feeds to the power units are provided underfloor by the USACE at the end row. AC feeds for the AC FDC that will provide power to the DC rectifier is located at bay 3.14.

IN-FUNC-003 DC Rectifiers and Distribution Panels. Some equipment in the TCF requires a DC power source. A DC rectifier system with distribution units is required to provide the power. The rectifiers must provide power to seven dual-distribution units; two dual distribution units are located in Rows 1 and 2, and one dual distribution unit is located in Rows 3, 4, and 5. Feed cables shall be dressed using lace and wrapped in fiber paper; no tie wraps will be used. Refer to Air Force Technical Order (AFTO) 31-10-2 and 13 for securing cables using lacing.

IN-FUNC-004 DC Cable Tray. In order to provide in-row DC power to various equipment in the TCF, a DC cable tray system is required to route the cables from the DC sub-distribution unit to the DC powered equipment. The DC power cable tray (upper ladder) must be grounded to the DC pathway ground busbar and the cable trays must be electrically continuous between the cable trays in their own system. Refer to Drawing S- 537 (Sent via separate attachment) for the USACE overhead cable tray elevations.

IN-FUNC-005 AC Cable Tray. In order to support the distribution of AC power from the FDCs to each in-row cabinet, an AC cable tray system is required. Install cable ladder with supports and cable ladder grounding system. AC cable ladder requires tie-ins to the Fault Protection Ground Subsystem (FPGS) of the AC PDU. Cable ladders must be electrically continuous between the cable ladders in their own system.

IN-FUNC-006 Cabinet, Tray, and Power Grounds. All equipment and cabinets must connect to the appropriate Facility Grounding Systems which includes the Earth Electrode Subsystem (EES), Lightning Protection System, DC Reference Ground, Signal Reference Ground Subsystem, Site Grounding, and tie-ins (tie-ins to the existing FPGS).

4.4 Cyber Security Functional Requirements

IA-FUNC-001 All systems and application/software, which interfaces with the Network, to include hard wired systems and wireless technology, must have a valid Certificate of Networthiness (CoN).

IA-FUNC-002 All applicable devices and equipment shall comply with the most current DISA Security Technical Implementation Guides (STIGs).

IA-FUNC-003 All system designs and installations must be certified under the Risk Management Framework (RMF) IAW DoDI 8510.01, the current DoD and Army applicable guidance (e.g., DoDIs 8500.01 and 8510.01, and Intelligence Community Directive (ICD) 503).

IA-FUNC-004 All system designs and installations must adhere to the proper separation of equipment and cabling to prevent emissions, emanations, and crosstalk IAW Committee on National Security Systems Advisory Memorandum (CNSSAM)

TEMPEST/1-13.

4.5 Cabling Functional Requirements

CAB-FUNC-001 Cable Distribution System (CDS) shall comply with guidance in American National Standards Institute (ANSI)/Telecommunications Industry Association (TIA)-568-C.3 and CNSSAM TEMPEST/1-3.

CAB-FUNC-002 Copper cables shall include the manufacturer’s name or identifier, flammability rating, gauge of conductor and transmission performance rating (category designation) imprinted on the cable at regular intervals.

CAB-FUNC-003 Network FOC shall include manufacturer’s flammability rating and fiber count imprinted at regular intervals.

CAB-FUNC-004 Network FOC outlets and connectors shall be in a Lucent Connector (LC) type configuration.

CAB-FUNC-005 FOC Cabling in open user areas shall be installed in a covered distribution system to conceal and protect the cabling.

CAB-FUNC-006 Copper cables, FOC and terminations must be tested to ensure compliance with TIA/Electronic Institute Alliance (EIA) standards. USG personnel will review the testing conducted, which were maintained in electronic and/or hard copy format, at the final System Acceptance Test (SAT).

CAB-FUNC-007 Cable supports, no greater than 60 inches apart, shall suspend copper cables and FOCs not in a wire way or pathway, a minimum of 8 inches above the ceilings.

CAB-FUNC-008 Copper cables and FOC shall be plenum-rated when installed throughout the entire facility. IAW UFC 3-580-01, 01 Jun 2016, Change 1 and UFC 3- 600-1, Change 2, 25 March 2018.

CAB-FUNC-009 Cable records shall be prepared and submitted to the USG IAW ANSI/TIA-606-B. Cable records shall include a unique identifier for each outlet location in the room or facility.

CAB-FUNC-010 All cable and patch panels shall be labeled and managed IAW TIA/EIA 606-A.

CAB-FUNC-011 Patch panels for copper and FOC termination shall be mounted in equipment cabinets with sufficient ports to accommodate the installed cable plant, plus 30 percent growth.

CAB-FUNC-012 Cable pathways shall maintain a minimum of a 2-inch bend radius at all fittings and not exceed the 40-percent fill rate.

CAB-FUNC-013 Cable trays/ladders/baskets shall be bonded to the signal reference ground IAW MIL-STD-188-124B, and installed IAW TIA standards.

CAB-FUNC-014 All cabling infrastructure shall be designed IAW AR 25-2, CNSSAM TEMPEST/1-13, ICDs 705.1 and 705.2, Military Handbook (MIL-HDBK)-232A and Cable Installation at National Security Agency (NSA) Facilities, Version 1.8.

5.0 System Requirements

SYS-REQ-001 The IP/MPLS network is required to be compliant with the JIE CONOPS and the Installation Campus Area Network –Design & Implementation (ICAN-DI). The systems must be in compliance with the Unified Capabilities Approved Product List (DoDIN APL) and tested for use on the DODIN.

SYS-REQ-002 The J-PE is a provider edge router being implemented into the DISN IP/MPLS transport network. The J-PE exchange reachability information using label popping and imposition. The J-PE router provides various edge features for terminating multiple services such as Internet, L3VPN, L2VPN, and VPLS. J-PE routers exchange routing information with the JB-CE routers.

SYS-REQ-003 The JB-CE needs to support information “throughput” in two directions:

from the ICAN side to the WAN side, and from the WAN side to the ICAN side. The JB- CE also needs to support this throughput in full-duplex mode, which means that the JB- CE needs to support 10Gb throughput on the WAN-side interface for packets sent in the ICAN-to-WAN direction.

SYS-REQ-004 The Collection Router (CR) is being implemented to provide a non-IP interface solution capable of delivering IP/MPLS and pseudo-wire capabilities aggregate multiple media, service, and transport protocols onto an economical packet transport infrastructure. The CR solution should use circuit emulation over IP to create pseudo-wires over the IP/MPLS network for legacy serial/TDM services to connect end to end. All features and functions should work as they would if the two endpoints were directly connected to each other. Packet delay variation (jitter) caused by queuing delays in the IP/MPLS network should be avoided. Various timing and clocking options should be supported to ensure end-to-end synchronization across the IP/MPLS network.

SYS-REQ-005 Timing to the CE equipment will be derived from two sources, the DISA-

Service Delivery Node (SDN) and the SATCOM Unified Net-Centric System (SUNS) system.

SYS-REQ-006 Communications Equipment. Equipment in the old TCF shall be removed, replaced or replicated in the new facility. All equipment must be Trade Agreement Act (TAA) and Network Equipment-Building System (NEBS) 3 compliant.

5.1 Network System Requirements

NET-SYS-001 Network Management. A standard network management capability shall be designed into the system which, provides alarms and remote equipment configurations with multi-privilege user levels at a minimum. Must be compatible with the DISA Distributed Control Node (DCN) and the Army network management system.

6.0 Training-Related Requirements

The Contractor shall develop a Training Plan IAW CDRL A000, to provide technical and operating instructions for newly installed systems throughout each phase of the project.

The Contractor shall also develop training materials for up to 20 personnel. Two additional sets of Training Materials shall be provided as on-site copies. The Draft Training Plan and one set of Draft Training Materials shall be delivered to the Government for review and approval three months preceding the scheduled training class.

The Contractor shall coordinate with the local O&M to find a room if possible but if there is a lack of availability, the Contractor will provide a room near the project site that is appropriate for technical instruction.

The Contractor shall perform the technical instruction.

The instruction shall include a walk-through and instructional demonstration of installed systems.

The Contractor shall provide the training facility and all training aids to support the in-class instructions.

The Contractor shall provide a Training Report of training performed and planned, as part of the Weekly Status Report IAW CDRL A000.

7.0 Logistics-Related Requirements

a) The Contractor shall develop a Material Fielding Plan and supporting materiel fielding documents that addresses ILS elements applicable to the capability being fielded (IAW Chapter 5, AR 700-142), which shall be included in the post award Plan IAW CDRL A017.

b) The Contractor shall have a system of internal controls to manage (control, use, preserve, protect, repair, and maintain) USG property in its possession. This requirement applies to all USG property under the Contractor's accountability, stewardship, possession or control, including its vendors or Sub-Contractors.

c) The Contractor shall meet U.S. Army asset, and materiel property accountability requirements for hardware and software under their control until laterally transferred to a

GC. (IAW AR 735-5).

d) The Contractor shall provide a draft IUID Plan after draft Procurement LOM submission and a final IUID Plan. (IAW DoDI 8320.04;AR 700-145; MIL-STD- 130).

e) The Contractor shall identify, register and affix tags for equipment requiring UII for tangible USG property. All rack-mounted equipment shall have tags visible on the front or back panel while in normal operations. Tags shall not be affixed to any removable parts. (IAW AR 700-145).

f) The Contractor shall report/input CFE data into the DoD Unique Item Description (UID) registry via iRAPT NLT 72 hours after joint inventory with the GC.

g) The Contractor shall provide hardware warranty data for equipment fielded/issued to GC with Close-out documentation.

h) The Contractor shall provide software license agreement and software key data for software licenses fielded/issued to GC. Software license data shall be provided for each install with Close-out documentation.

i) The Contractor shall provide completed iRAPT MIRRs for all equipment/ hardware/ software being delivered to the USG.The Contractor shall include all fielding requirements within the project IMS. The tasks shall identify in detail the activity installation capability of being fielded period of fielding by function i.e. equipment order date; required delivery date; hardware install date; hardware/software configuration period; inspection; verification and validation; new equipment training; acceptance and handoff. (IAW AR 700-142, Chapter 5; AR 700-143, Chapter 5; DA PAM 700-142).

8.0 Other Requirements

Storage of Equipment

a) The Contractor shall secure all equipment, piece parts, and ancillary items related to the installation. The Contractor shall be responsible for physical security of all materials until USG acceptance of transfer. Any materials lost, stolen, or damaged must be investigated and reported to the USG for all incidents of property loss as soon as the facts become known. Any material lost, stolen or damaged prior to final USG acceptance, due to the negligence of the Contractor, shall remain the Contractor’s responsibility to repair or replace as required. The Contractor shall be on-site to receive, inventory, move, and store equipment at all times.

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Glossary-1

GLOSSARY. ACRONYMS AND ABBREVIATIONS

A Ampere AAP Aggregation Access Point AC Alternating Current AD Active Directory AGM Army Gold Master APL Approved Products List AoR Area of Responsibility AoS ATM over SONET AR Army Regulation ARNG Amy National Guard ARS Aggregation Routing System ASR Aggregation Services Router AT Acceptance Testing ATM Asynchronous Transfer Mode ATS Automatic Transfer Switch AutoCAD Automatic Computer Aided Design

B Base BBS Broadband Shelf BDE Brigade BE Bandwidth Expansion BER Bit Error Rate BGP Border Gateway Protocol Bldg Building BN Battalion BOD Building Occupancy Date BOM Bill of Materials

C Camp C&A Certification and Accreditation C-E Communications-Electronics C2 Command and Control CAC Common Access Card CAT Category CFE Center For Engineering CIO Chief Information Officer, U.S. Army CJCS Chairman Joint Chiefs of Staff CJCSI CJCS Instruction CL Confidentiality Level cm Centimeter CO Central Office CONUS Continental United States COOP Continuity of Operations Plan

Glossary-2

CPB Central Patching Bay CRAC Computer Room Air Conditioning CRL Cable Running List CSD Computing Services Division CSU Channel Switching Unit CTP Circuit-to-Packet CWDM Coarse Wavelength Division Multiplexing

DATMS DISA ATM Service DC Direct Current DCATS Defense Communications and Army Transmission Systems DCE Data Communications Equipment DCN Designing Cisco Networks DF Distribution Frame DIACAP DoD Certification and Accreditation Process DISA Defense Information Systems Agency DISAC DISA Circular DISN Defense Information Systems Network DMS Digital Multiplex System DNS Domain Name Service DoD Department Of Defense DoDD Department of Defense Directive DoDI DoD Instruction DS Digital Service DS Digital Signal DSCS Defense Satellite Communication System DSN Defense Switched Network DSU Data Service Unit DSX Digital Signal Cross Connect DTE Data Terminal Equipment DWDM Dense Wavelength Division Multiplexing DWG Drawing DWTS Defense Wide Transmission Systems

E-1 E-Carrier (2.048-Mbps) EEB Electronic Equipment Building EES Earth Electrode Subsystem EFI&T Engineer, Furnish, Install and Test EIA Electronic Industries Alliance EIP Engineering Implementation Plan EN Enterprise Network EOL End of Life EoIP Everything Over Internet Protocol EP Engineering Publication

F/U/W For/Use/With

Glossary-3

FDC Facility Distribution Center FIPS Federal Information Processing Standard FO Fiber Optic FOC Fiber Optic Cable FOC Full Operational Capability FODF Fiber Optic Distribution Frame FOPP Fiber Optic Patch Panel FPGS Fault Protection Ground Subsystem Fr. Fractional FW Firewall

Gb Gigabit GbE Gigabit Eternet Gbps Gigabits per Second GBS Grounding, Bounding, and Shielding GFE Government-Furnished Equipment GIG Global Information Grid GPS Global Positioning System GPSW GPS Wing GPUG GPS Wing User Equipment Group GUI Graphical User Interface

HA High Availability HDLC High-level Data Link Control HQ Headquarters HQDA Headquarters, Department of the Army HS High Speed HVAC Heating, Ventilation, Air Conditioning Hz Hertz

I/O Input/Output I3A Installation Information Infrastructure Architecture I3MP Installation Information Infrastructure Modernization Plan IA Information Assurance IAW In Accordance With IBOM Installation Bill of Materials ICAN Installation Campus Area Network ICF Interconnect Facility ICP Interface Control Processor ILOM Installation List of Materials IOC Initial Operational Capability IP Internet Protocol ISP Inside Plant IT Information Technology IATO Interim Approval to Operate

Glossary-4

IEEE Institute of Electrical and Electronics Engineers IETF Internet Engineering Task Force

JFCOM Joint Forces Command JIEO Joint Interoperability and Engineering Organization JITC Joint Interoperability Test Command JRSS Joint Regional Security Stack JWICS Joint Worldwide Intelligence System JWIT Joint Warfighter Interbase Telecommunications

KaSTARS Ka-Band Satellite Transmit and Receive System kbps Kilobits per Second KMM Keyboard, Monitor, and Mouse kVA Kilovolt Ampere KVM Kernel-based Virtual Machine

L1 Layer 1 L2 Layer 2 L3 Layer 3 L-C Line Conditioning LAN Local Area Network LLC Line Load Control LOS Line of Sight LP Lightning Protection m Meter M&C Monitor and Control MAC Media Access Control MAC Mission Assurance Category MB Megabyte Mbps Megabits Per Second MCA Military Construction Authority MCU Multipoint Control Unit MH Manhole MIL-STD Military Standard MILOM Major Items List of Materials MLOS Microwave Line Of Sight MM Multimode MOA Memorandum Of Agreement MPLS Multiprotocol Label Switching MPNTP Master Positioning, Navigation, and Timing Plan ms Millisecond MSPP Multi-Service Provisioning Platform MSTP Multi-Service Transport Platform MTX Matrix Mux Multiplexer

Glossary-5

MW Microwave

NEC Network Enterprise Center NEMA National Electrical Manufacturers Association NET Network Equipment Technologies NETCOM U.S. Army Network Enterprise Technology Command NIPR Non-classified Internet Protocol Router NIPRNet NIPR Network NIU Network Interface Unit NMS Network Management System NOC Network Operations Center NSA National Security Agency NTP Network Time Protocol

O&M Operations and Maintenance OADM Optical Add-Drop Multiplexer OC Optical Carrier OOBM Out-of-Band Management Ops Operations OSI Open Systems Interconnection OSP Outside Plant OTAR Over-The-Air Rekeying OTDR Optical Time Domain Reflectometer OTN Optical Transport Network

P Post P2P Point-to-Point PC Personal Computer PCU Port Concentrator Unit PD Project Director PdM Product Manager PDU Power Distribution Unit PM Program Manager POA&M Plan of Action and Milestones PoC Proof of Concept POC Point of Contact PoP Point Of Presence PPP Point-to-Point Protocol PTP Precision Time Protocol Pwr Power PWS Performance Work Statement

QA Quality Assurance QC Quality Control QoS Quality of Service

Glossary-6

RF Radio Frequency RFC Request for Comments

RFP Request For Proposal RHN Regional Hub Node RJ Registered Jack RPP Remote Power Panel RS Registered Standard RTS Real Time Services RU Rack Unit

S Station S/DMS SONET/Digital Multiplex System SAASM Selective Availability Anti-Spoofing Module SATCOM Satellite Communications SAToP Structure Agnostic TDM-over-Packet SBU Sensitive But Unclassified SCLX Standard Connector Long Transmission SDH Synchronous Digital Hierarchy SDP System Design Plan SIG Signal SIPR Secret Internet Protocol Router SIPRNet SIPR Network SM Single Mode SNMP Simple Network Management Protocol SONET Synchronous Optical Network SOP Standard Operating Procedure sq Square SRGS Signal Reference Ground Subsystem SRP Site Requirements Package SRP Standard Review Plan SSE-O Senior Systems Engineer - Operations SSE-T Senior Systems Engineer - Technical SSO Single Sign-On STE Secure Terminal Equipment STIG Security Technical Implementation Guides STN SATCOM and Transport Networks STP Serial-To-Packet

T&S Timing and Synchronization T-1 T-Carrier (1.544-Mbps) TACLANE Tactical Local Area Network Encryptor TAR Technical Acceptance Report TBPS Terabits per Second TCF Technical Control Facility

TDM Time Division Multiplexing TIA Telecommunications Industry Association TLA Top Level Architecture TMDE Test, Maintenance and Diagnostics Equipment TNDS T-1 Network Diagnostics System TR Termination Room TRANSEC Transmission Security TS Top Secret TSD Transmission Systems Directorate UC Unified Capabilities UCR 2013 Unified Capabilities Requirements 2013 UI User Interface UPS Uninterruptible Power Supply USACE U.S. Army Corps of Engineers USAISEC U.S. Army Information Systems Engineering Command USG U.S. Government USNO U.S. Naval Observatory

V Volt VAC Volts Alternating Current VDC Volts Direct Current VoIP Voice over Internet Protocol VoSIP Voice over Secure Internet Protocol VPN Virtual Private Network VTC Video Teleconference w/ with W/W Wire Wrapped WAN Wide Area Network WWTCIP World Wide Tech Control Improvement Program

XX September 2019
Appendices
Figures
1.0 SCOPE
1.1 Background
1.2 System Requirement Document Overview
1.3 Assumptions
The following subparagraphs list the key assumptions that will drive the engineering, installation, testing, migration/cutover and de-installation for this effort.
a. All non-TCF electrical, mechanical, Heating, Ventilation, and Air Conditioning (HVAC), and plumbing requirements have been identified in the facility, and will be installed by USACE.
b. The new facility is constructed with adequate Alternating Current (AC) power, Uninterruptible Power Supplies (UPSs), HVAC, grounding, floor space, cable and duct pathways, and future expansion capacity. USACE extends AC power feeds to each row in ...
c. The O&M Command has ensured that adequate fiber connectivity exists between the outlying buildings and the new TCF. They will also provide fiber connectivity between the new TCF and the old TCF to support transitioning of circuits to the new TCF. ...
d. The Army Signal Activity-Camp Roberts will be responsible for ongoing O&M of the Army-owned telecommunications systems in the TCF. They will also provide consultation with USAISEC and PdM I3MP in determining the functional system requirements.
1.4 System Architecture Overview
1.4.1 Existing Operational Environment
1.4.2 Current System Architecture
Figure 1: Network Connectivity Diagram of Existing Camp Roberts TCF
2.0 REQUIREMENTS
3.0 Operational User/Stakeholder Requirements
4.0 General and Functional Requirements
4.2 Network Functional Requirements
4.3 Infrastructure Functional Requirements
4.4 Cyber Security Functional Requirements
4.5 Cabling Functional Requirements
5.0 System Requirements
5.1 Network System Requirements
6.0 Training-Related Requirements
7.0 Logistics-Related Requirements
8.0 Other Requirements

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