Air/Ocean Tactical Applications
Abstract
The Air Tactical Applications (AOTA) Program Element (PE) is aligned with the Navy's maritime strategy to enhance the future mission capabilities of the Navy-Marine Corps Meteorological and Oceanographic (METOC) Team supporting naval warfighters worldwide. New state-of-the art government and commercial technologies are identified, transitioned, demonstrated and then integrated into Combat Systems and programs of record to provide capabilities that provide real-time and near-real-time operational effects of the physical environment on the performance of combat forces and their new and emerging platforms, sensors, systems and munitions. The AOTA program element focuses on sensing and characterizing and predicting the littoral and deep-strike battlespace in the context of regional conflicts and crisis response scenarios. Projects in this PE transition state-of-the art sensing, assimilation, modeling and decision aid technologies from government and commercial sources. Unique project development efforts include atmospheric and oceanographic data assimilation techniques, forecast models, data base management systems and associated software for use in mainframe, desktop and laptop computers. Model data, products and services can be used by forward-deployed personnel or in a reach-back mode to optimize sensor placement and force allocation decisions. Global Geospatial Information and Services efforts within this program address the bathymetric needs of the Navy. Also developed are algorithms to process new satellite sensor data for integration into Navy and Marine Corps decision support systems and for display as part of the common operational and tactical pictures. In addition, the projects provide for demonstration and validation of specialized atmospheric and oceanographic instrumentation and measurement techniques, new sensors, communications and interfaces. Included are new capabilities to assess, predict and enhance the performance of current and emerging undersea warfare and mine warfare weapons systems. AOTA capabilities are designed to support the latest versions of the Global Command and Control System and specific unit-level combat systems. This PE develops technological upgrades for the U.S. Naval Observatory's Master Clock system to meet requirements of Department of Defense communications, cryptographic, intelligence, geolocation, and targeting systems; develops near-real-time earth orientation predictions; develops very precise determination of positions of both faint and bright stars; and supports satellite tracking and space debris studies. Major emphasis areas include the Naval Integrated Tactical Environmental System Next Generation (NITES-Next) and the METOC Data Acquisition, the METOC Data Assimilation & Modeling, the Precise Timing and Astrometry, the Fleet Synthetic Training, the Tactical Environmental Support, Decision Support Products & Dissemination, the Earth System Prediction Capability projects, and the Remote Sensing Capability Development. Due to the number of efforts in this PE, the programs described herein are representative of the work included in this PE.
Document Details
- Document Type
- R2 Budgetary Justification
- Publication Date
- Oct 01, 2020
- Source ID
- 0603207N_4_1319_PB_2020
- Change Summary Explanation
- The FY2020 funding request for project 2341 was reduced by $0.58 million to account for the availability of prior year execution balances. Funding increases for project 2341 are for the development of automated mission planning and route selection aids in support of TRITON MQ-4C hazardous weather avoidance(Priority T-1a); allowing evaluation of the utility of SPIRE ionospheric data for modeling the ionosphere. The FY2020 funding request for project 2342 was reduced by $1.685 million to account for the availability of prior year execution balances. Funding increases for project 2342 are for the global Navy Earth System Model as it transitions from Initial Operational Capability (IOC) to its Full Operational configuration and maturation of the Regional Arctic Prediction System and the Navy's Environmental Prediction sysTem Using the NUMA corE (NEPTUNE) next generation dynamic core. The FY2020 funding request for project 2344 was reduced by $0.479 million to account for the availability of prior year execution balances
- Service Agency Name
- Navy
Entities
Organizations
- United States Navy
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