Contamination Avoidance (Op Sys Dev)
Abstract
The project supports technology upgrade and refresh of fielded dismounted reconnaissance and detection systems that minimize chemical, biological, and The project supports technology upgrade and refresh of fielded dismounted reconnaissance and detection systems that minimize chemical, biological, and radiological (CBR) contamination and prevent further cross-contamination during operations. Efforts included in this project are: (1) Chemical Biological Radiological Nuclear Dismounted Reconnaissance Systems (CBRN DRS) (2) Expeditionary Analytic Modernization (EXANA MOD) (3) Modernization Sensors (MOD SEN) (4) Enhanced Maritime Biological Detection (EMBD) (5) Joint Chemical Agent Detector (JCAD), and (6) Reactive Chemistry Orthogonal Surface and Environmental Threat Ticket Array (ROSETTA) The CBRN DRS program effort provides the technology upgrade and refresh for the CBRN DRS system supporting Dismounted Reconnaissance, Surveillance, CBRN Sensitive Site Assessment, and CBRN Sensitive Site Exploitation missions, which enables more detailed and near real-time CBRN information flow for the Warfighter. The program will be moved into the MOD SEN program starting in FY22. The EXANA MOD effort supports the evaluation of analytical components for technical refreshment and upgrades of key components of the analytical laboratory systems that have become obsolete or are no longer being supported by the manufacturer. This allows the Common Analytical Laboratory System (CALS) and Analytical Laboratory System Modification (ALS MOD) users to maintain their operational capability and operational effectiveness. The program will be moved into the MOD SEN program starting in FY22. The MOD SEN program will address critical analytical equipment obsolescence and system functionality issues for the Services by establishing a time phased modernization plan to integrate and incorporate advancements in technology for the ALS MOD, CALS Field Confirmatory Analytical Capability Set (FC ACS), CALS Theater Validation Integrated System (TV IS) and CBRN DRS. This program consolidates the efforts previously included in the EXANA MOD and CBRN DRS program efforts. In FY22 MOD SEN supports the evaluation of components for technical refreshment of the CBRN DRS, CALS and ALS MOD. The EMBD is the Navy's automated biological point detection, collection and identification system. EMBD replaces/upgrades the 135 Joint Biological Point Detection Systems (JBPDS) currently fielded to the Navy and provides 40 systems for new construction ships. EMBD improves detection sensitivity providing the Navy the ability to detect to inform reducing the number of contaminated ships during a biological warfare agent attack and minimizing sailor casualties. EMBD reduces false alarm rates, modernizes the computing architecture and increases reliability and sailors confidence in the system. These improvements decrease fleet O&S costs and reduce the obsolescence issues with current biological detection capability. In FY22 the EMBD program plans to execute Full Rate Production contract options for Obsolescence Support in Production (OSIP). OSIP will address obsolescence concerns that may arise during the production of the EMBD kit. The JCAD Solid Liquid Adaptor (SLA) effort is an Additional Authorized List (AAL) item that extends the capability of the JCAD M4A1 from a vapor-only capability to generate vapors from non-volatile liquids and solids. JCAD SLA continues the development of the JCAD CED, which was an Next Generation Chemical Detection (NGCD) acceleration effort for USSOCOM. The SLA interfaces with the fielded M4A1 JCAD to allow for solid and liquid sampling of Non-Traditional Agents (NTAs), Pharmaceutical Based Agents (PBAs), and explosives off surfaces. In addition, JCAD SLA is an explosive detector candidate for CBRN DRS. The ROSETTA is a modernization effort to provide the General Forces a low-cost, easy to use surface and/or vapor hazard detection ticket for a wide range of Chemical Warfare Agents (CWAs) and NTAs. These highly-selective, multiplexed array tickets will enable accurate hazard identification in the presence of common battlefield interferents at the tactical-level. ROSETTA is based on colorimetric technology and will be eye-readable and has potential for integration onto unmanned platforms especially micro-sized unmanned aerial sensors. In addition, the ROSETTA tickets will provide improved hazard detection performance with reduced false alarm rate, potential for increased number of chemicals detected, reduced detection time especially for compounds of interest (CWAs, PBAs, NTAs and Toxic Industrial Chemicals (TICs)), and potential for integration onto unmanned platforms especially micro-sized unmanned aerial sensors. In FY22 ROSETTA will initiate contract award, and Contractor Preliminary Design Review for a Vapor Detector.
Document Details
- Document Type
- Project
- Publication Date
- Oct 01, 2022
- Source ID
- CA7_0607384BP_7_0400_PB_2022
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- Root: CHEMICAL/BIOLOGICAL DEFENSE (OP SYS DEV)
- Child Accomplishment: 1) CBRN Dismounted Reconnaissance System (CBRN DRS) - Obsolescence
- Child Accomplishment: 2) CBRN DRS - Development of System Modernization Packages
- Child Accomplishment: 3) EXANA MOD
- Child Accomplishment: 4) MOD SEN
- Child Accomplishment: 5) EMBD
- Child Accomplishment: 6) Joint Chemical Agent Detector (JCAD) Solid Liquid Adapter (SLA)
- Child Accomplishment: 7) ROSETTA
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