What project 1164 buys
The Surface Warfare Project focuses on the advanced technology development of new capabilities that leverage the underlying applied research investments in Program Element (PE) 0602750N, Future Naval Capabilities (FNC) Applied Research. These advanced technology investments align to acquisition programs of record. Efforts include technologies that will provide mission visualization, network analysis, and training for operators in denied and degraded environments.
Project 1164 funding, FY2025–FY2031
Prior years are actuals, the budget year is the request, and the outyears are the FYDP plan. Estimate types are colored and never summed into one figure. Projects carry the full five-year plan; the activities inside them stop at the budget year.
| Fiscal Year | Estimate Type | Amount ($M) |
|---|---|---|
| FY2025 | Actual | 46.2 |
| FY2026 | Enacted | 82.7 |
| FY2027 | Request | 92.2 |
| FY2028 | Outyear | 71.4 |
| FY2029 | Outyear | 19.6 |
| FY2030 | Outyear | 0.0 |
| FY2031 | Outyear | 0.0 |
15 accomplishments / planned programs
The R-2A exhibit — the only level of the budget that describes work that has not happened yet. Activities carry the prior, current and budget year only, no five-year plan. 4 of them describe FY2027 work in enough detail to have their own page; the rest are shown here in full. Coverage is partial across the corpus, so count activities, never total them.
Sensor and Missile Management Against Robust Threats (SMMART) - Continue development of artificial intelligence and machine learning (AI/ML) informed terminal defense algorithms that will provide robust missile/target pairing and distributed dynamic sensor resource management. - Continue development and testing of algorithms using Deep…
Read the FY2027 plan →Joint Beam Control System (JBCS) - Continue Joint Beam Control System (JBCS) development of mature beam control, pointing, stabilization, propagation, aimpoint maintenance and advanced tracking. - Continue development of mature optical systems. - Continue development of mature beam conditioning and diagnostics system. - Initiate building…
Read the FY2027 plan →Advanced Non-Kinetic Evaluation for Re-engagement (ANKER) - Complete model-based systems engineering design and operator workflows for integration into existing systems to provide naval capabilities for real-time non-kinetic effectiveness feedback with industry and government performers. - Complete development of software products to…
Read the FY2027 plan →Subarray Transmit Orthogonality for Receive Multiplexing (STORM) - Continue development of sensor support allocations and algorithms for the compact effector community. - Continue development of dynamic array segmentation algorithms for large, phased array apertures. - Begin demonstrating completed components of the sub-array level…
Read the FY2027 plan →FY2027 planned work Afloat Data Analysis and Persistent Transmission (ADAPT) - Continue the ADAPT FNC by conducting Concept of Operation and implementation studies for shipboard data collection, management, and transport. - Continue design and begin development and implementation of the system architecture to accelerate tactical sensor performance analysis and event reconstruction. - Complete selection of industry and government performers to develop, integrate, and test components of automated data analysis pipeline. - Initiate algorithm development for automated shipboard data analysis and filtering at the tactical edge.
FY2026 to FY2027 change The increase from FY 2026 to FY 2027 is due to development and implementation of the system architecture and the beginning of algorithm development for automated shipboard data analysis and filtering.
FY2026 plans — current year Afloat Data Analysis and Persistent Transmission (ADAPT) - Initiate design of system architecture to accelerate tactical sensor performance analysis and event reconstruction. - Initiate Concept of Operation and implementation studies for shipboard data collection, management, and transport. - Initiate selection of industry and government performers to develop, integrate, and test components of automated data analysis pipeline.
FY2027 planned work Joint Highly intelligent Automation to Accelerate Weapon Kills (J-HAAWK) - Continue the J-HAAWK FNC by Demonstrating and testing the Predictive Engagement Assessment algorithm (i.e., ingestion/filtering and basic target dynamic prediction). - Continue to perform demonstration of the J-HAAWK system integrated into two weapon systems in simulated engagements. - Continue and train the algorithms using datasets from real world events and test range data. - Initiate development of the second algorithm, Engagement Completion Assessment, and the demonstration of the interface/communications to the combat system.
FY2026 to FY2027 change The decrease from FY 2026 to FY 2027 is due to a small decrease in the level of software development activity in FY 2027.
FY2026 plans — current year Joint Highly intelligent Automation to Accelerate Weapon Kills (J-HAAWK) - Continue development of J-HAAWK algorithms and the demonstration of the basic Predictive Engagement Assessment (i.e., ingestion/filtering and basic target dynamic prediction). - Perform demonstration of the J-HAAWK system integrated into two weapon systems in simulated engagements. - Ingest real-time track information via the system track manager/track server module. - Initiate development of algorithms and the demonstration of the interface/communications from the Engagement Completion Assessment.
FY2027 planned work Light Rider - Initiate the Light Rider FNC by defining the requirements and an architecture to meet the program objectives for the Light Rider shipboard kill chain. - Initiate maturation of existing key Artificial Intelligence (AI) and autonomy algorithms, and identify and develop new algorithms that will enable the creation of the Light Rider kill chain per defined requirements. - Initiate maturation of a specialized data link required for the operation of the Light Rider kill chain. - Initiate lab-based and live fire experimentation events to iteratively mature system prototypes towards the final system requirements. - Initiate collaboration with the Acquisition Program Office partner for…
FY2026 to FY2027 change The increase from FY 2026 to FY 2027 is due to the selection of this FNC to initiate in FY 2027 due to promising technology maturation from applied research investments previously made in BA 02 in 0602750N. This is not a new start.
FY2027 planned work Leaker Engagement with Autonomous Defenses at Extended Ranges (LEADER) - Initiate the definition of the requirements and architecture for the LEADER system, identifying Artificial Intelligence (AI) and autonomy algorithms that will enable improved efficacy of relevant shipboard weapons. - Initiate maturation of necessary AI and autonomy algorithms and rigorously verify their performance via lab-based testbeds and live fire experiments. - Initiate exploration into novel sensing technologies to further enhance weapon performance. - Initiate collaboration with the Acquisition Program Office partner for early planning in support of shipboard certification, Weapon System Explosives Safety Review…
FY2026 to FY2027 change The increase from FY 2026 to FY 2027 is due to the selection of this FNC to initiate in FY 2027 due to promising technology maturation from applied research investments previously made in BA 02 in 0602750N. This is not a new start.
FY2027 planned work Progressive, Assisted Decision-Making, Re-Planning and Execution for UxS (PADRE) - Continue requirements definition for mission autonomy to inform scalable, platform-agnostic UxS command-and-control (C2). - Continue development of C2 autonomy software to enable dynamic mission planning and execution across domains. - Continue operator-centered design efforts focused on Fleet mission-informed interfaces and enabling explainable AI for effective warfighter decision support during tactical missions. - Continue engagement with Fleet operators to shape intuitive user interfaces and validate Transfer of Tactical Control (TOTC) workflows.
FY2026 to FY2027 change There is no change to the investment in this FNC from FY 2026 to FY 2027.
FY2026 plans — current year Progressive, Assisted Decision-Making, Re-Planning and Execution for UxS (PADRE) - Initiate defining requirements for autonomy that will reside in UxS control workstations to help strike groups manage autonomous systems during tactical operations. - Initiate development of Command and Control (C2) autonomy software. - Initiate Human Machine Interface (HMI) design and development enabling UxS operators to rapidly assess Courses of Action for transfer of tactical control.
FY2027 planned work SPEIR-HELIOS Improvements Merging Environmental Response (SHIMMER) This FNC is being accelerated, FY27 will support: - Continue refinement of the prototype battle management aid based on the human-systems interface studies - Conduct field test to validate prototype end-to-end accuracy performance
FY2026 to FY2027 change The increase from FY 2026 to FY 2027 is due to the selection of this FNC in the process. It is being accelerated and leverages investments previously made in the FNC Applied Research PE 0602750N. This is not a new start.
FY2026 plans — current year SPEIR-HELIOS Improvements Merging Environmental Response (SHIMMER) - Initiate refinement of the prototype battle management aid based on the human-systems interface studies. - Initiate field test planning to validate prototype end-to-end accuracy performance.
FY2027 planned work Radar Advanced Signal Processing (RASP) - Complete the RASP FNC by incorporating GPU processing subsystems into representative hardware and characterize with hardware-in-the-loop testing, with limited over-the-air tests.
FY2026 to FY2027 change The decrease from FY 2026 to FY 2027 is due to the wind down of this FNC as it approaches completion in FY 2027.
FY2026 plans — current year Radar Advanced Signal Processing (RASP) - Continue the RASP FNC by finalizing software implementation of candidate algorithms for execution on a heterogeneous processing framework. - Conduct testing of algorithms through combination of Modeling and Simulation (M&S), hardware-in-the-loop testing, and limited over-the-air tests.
FY2026 to FY2027 change The decrease from FY 2026 to FY 2027 is due to the completion of this FNC in FY 2026.
FY2026 plans — current year Odysseus - Complete final packaging of the Odysseus source that meets size, weight, power and cooling. - Complete and deliver a Technical Data Package (TDP) level 2 with the Odysseus source. - Complete the final analysis and report of system performance.
FY2026 to FY2027 change The decrease from FY 2026 to FY 2027 is due to the completion of this FNC in FY 2026.
FY2026 plans — current year Crossbow - Complete software coding for the Maritime Dynamic Targeting (MDT) Battle Management Aid (BMA) to support prioritized kill chains. - Complete and document machine learning training data for dynamic weapons quality track custody algorithms within the MDT BMA. - Complete and conduct a demonstration of MDT BMA software with group of operators, who are representative of the end users.
FY2026 to FY2027 change The decrease from FY 2026 to FY 2027 is due to the completion of this FNC in FY 2026.
FY2026 plans — current year Multi-Spectral High Resolution Targeting Sensor (MUST HITS) - Complete this FNC originally planned to finish in FY25 by finishing integration of the camera and processing suite. - Complete the wideband optics build. - Complete shipboard installation of the advanced camera. - Complete and deliver digital drawings and model files to the acquisition program of record and conduct shipboard and field testing.