What project 3001 buys
This project funds applied research; technology assessment, road mapping, and concept development; and less technologically mature projects within the Future Naval Capability (FNC) process as means to inform, enhance, enable, and invent future concepts and capabilities with new Science and Technology (S&T). This project is organized into ten activities, the core of which is represented by the eight Expeditionary Warfighting Capability Areas.
Project 3001 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 | 47.1 |
| FY2026 | Enacted | 40.4 |
| FY2027 | Request | 52.2 |
| FY2028 | Outyear | 49.0 |
| FY2029 | Outyear | 55.2 |
| FY2030 | Outyear | 55.7 |
| FY2031 | Outyear | 57.0 |
9 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. 1 of them describes FY2027 work in enough detail to have its own page; the rest are shown here in full. Coverage is partial across the corpus, so count activities, never total them.
Continue: - Research efforts into advanced software frameworks that support human decision making and planning activities at the tactical and operational levels during high tempo operations by integrating organic sensor data, incorporating faster than real-time military simulation, and conducting Artificial Intelligence (AI) and Machine…
Read the FY2027 plan →FY2027 planned work Continue: - Algorithm development research using advanced analytics techniques to generate predictions and recommend actions to improve physical readiness and performance that incorporate passive collection of wearables data at scale with Marine Corps forces. - Research and design of applications that provide information to the warfighter and commanders at the tactical edge to mitigate negative aspects of combat and reduce negative consequences of sleep stressors to improve lethality, readiness and resilience. - Research focused on expanding and extending small unit leader assessment training and education to increase learning outcomes for the warfighter and technologies to support…
FY2026 to FY2027 change The increase in funding from FY 2026 to FY 2027 is due to the initiation of an effort to leverage artificial intelligence for generating tactical vignettes that become progressively more advanced and tailored to warfighter's learning goals.
FY2026 plans — current year - Continue algorithm development research using advanced analytics techniques to generate predictions and recommend actions to improve physical readiness and performance that incorporate passive collection of wearables data. - Continue research and design of applications that provide information to the warfighter and commanders at the tactical edge to mitigate negative aspects of combat and reduce negative consequences of sleep stressors to improve readiness and resilience. - Continue research focused on expanding and extending small unit leader assessment training and education to increase learning outcomes for the warfighter. - Continue development of realistic adversary and friendly…
FY2027 planned work Continue: - Research in enabling technologies for countering unmanned aerial vehicles. This addresses both an increase in number and sophistication of threat systems to include kinetic and/or controlled interceptors with a specific focus on countering UAV swarms and scalable/low-cost approaches. - Research to counter emerging threats to expeditionary forces from directed energy weapons, including High-Powered Microwave (HPM) source or High-Energy Laser (HEL). - Design and prototyping of a compact and affordable interceptor and seeker package for kinetic force protection, both afloat and ashore. - Research of relevant mine warfare technologies that support maritime terrain shaping and area…
FY2026 to FY2027 change The increase in funding from FY 2026 to FY 2027 is due to the initiation of an effort to develop a data-driven, medically informed framework to enhance the lightweight performance of advanced personal protective capabilities for Marines, ensuring survivability against novel battlefield threats.
FY2026 plans — current year - Continue research in enabling technologies for countering unmanned aerial vehicles. This addresses both an increase in number and sophistication of threat systems to include kinetic and/or controlled interceptors with a specific focus on countering UAV swarms and scalable/low-cost approaches. - Continue research to counter emerging threats to expeditionary forces from directed energy weapons, including High-Powered Microwave (HPM) source or High-Energy Laser (HEL) - Continue design and prototyping of a compact and affordable interceptor and seeker package for kinetic force protection, both afloat and ashore. - Continue research of relevant mine warfare technologies that support maritime…
FY2027 planned work Continue: - Research effort to analyze end-to-end navigation technology developments for Global Positioning System (GPS) absent conditions, suitable for shaping trajectories of extended range, precision guided munitions in satellite and network-denied environments. - Research into real-time, multi-spectral target detection and identification technologies for expanded applications to weapons optics, aviation targeting and navigation sensors, unmanned aircraft systems, missile seekers, and naval platforms, to improve anomaly and object detection during degraded visibility and long-range day and night situations, and to improve fire-and-forget logic algorithms. - Research and experimentation…
FY2026 to FY2027 change The increase in funding from FY 2026 to FY 2027 is due to increased investments in research to analyze end-to-end navigation technology developments for GPS absent conditions, suitable for shaping trajectories of extended range, precision guided munitions in satellite and network-denied environments.
FY2026 plans — current year - Continue research effort to analyze end-to-end navigation technology developments for Global Positioning System (GPS) absent conditions, suitable for shaping trajectories of extended range, precision guided munitions in satellite and network-denied environments. - Continue research into real-time, multi-spectral target detection and identification technologies for expanded applications to weapons optics, aviation targeting and navigation sensors, unmanned aircraft systems, missile seekers, and naval platforms, to improve anomaly and object detection during degraded visibility and long-range day and night situations, and to improve fire-and-forget logic algorithms. - Continue research and…
FY2027 planned work Continue: - Research to develop Visual Integrated Tactical Logistics Battle Management Aid (VITL-BMA) investment to link a distribution plan to a ground transportation order. - Research to develop mobile alternative sensing technologies. Complete: - Research and development of an improved infrared search and track prototype for expeditionary platforms using higher efficiency imaging techniques for passive situational awareness and identification of maritime targets. - Development of extended range, area effects munitions that combine state of the art seeker and warhead technology while reducing required munition salvo sizes. - Prototyping and development of novel signal processing schemes…
FY2026 to FY2027 change There is no significant funding change from FY 2026 to FY 2027.
FY2026 plans — current year - Continue research and development of an improved infrared search and track prototype for expeditionary platforms using higher efficiency imaging techniques for passive situational awareness and identification of maritime targets. - Continue development of extended range, area effects munitions that combine state of the art seeker and warhead technology while reducing required munition salvo sizes. - Complete research effort to design artificial intelligence (AI) algorithms to inform and support command decision making by inferring adversarial intent, plans, and tactics from sensor data. - Initiate prototyping and development of novel signal processing schemes (in spatial, spectral…
FY2027 planned work Continue: - Continue research that will focus on intelligent mobility technologies to enable greater capability in harsh off road and littoral environments, with efforts including iterative predictive and adaptive mobility. - Research to study various technologies to improve off-road and littoral mobility and trafficability and to gain a better understanding of the vehicle-ground interface through terrain characterization and researching enhanced platform effectors that allow the system to adapt to varying terrain. - Effort to provide persistent unmanned hydrographic sensing for wide-area maritime situational awareness in support of Expeditionary Advanced Base Operations. - Effort to…
FY2026 to FY2027 change The increase in funding from FY 2026 to FY 2027 is due to the initiation of efforts to (1) develop add-on autonomy software and hardware for Marines to support Expeditionary Advanced Base Operations (EABO) security with reduced manning and (2) develop disposable heterogeneous multi-domain unmanned vehicles (UxV) swarms capable of tactical employment with manned units or autonomously.
FY2026 plans — current year - Continue research that will focus on intelligent mobility technologies to enable greater capability in harsh off road and littoral environments, with efforts including iterative predictive and adaptive mobility testing and demonstration. - Continue to research and study various technologies to improve off-road and littoral mobility and trafficability and to gain a better understanding of the vehicle-ground interface through terrain characterization and researching enhanced platform effectors that allow the system to adapt to varying terrain. - Continue effort to provide persistent unmanned hydrographic sensing for wide-area maritime situational awareness in support of Expeditionary…
FY2027 planned work Continue: - Research to design a mobile, distributed, and coordinated Electronic Warfare (EW) defense system, via Space Time Adaptive Response, capable of providing scalable countermeasure solution against multiple airborne threats. - The development of AI-enabled Command, Control and Communications (C3) for planning, distribution, reaction and recovery of autonomous assets used in Enhanced Maneuver, Force Protection, and Intelligence, Surveillance and Reconnaissance (ISR) roles for Expeditionary Advanced Base Operations (EABO) support. There is an increased investments in this effort. - The development of AI-enabled Tactical Advisors for small (company and below) units that can analyze…
FY2026 to FY2027 change The decrease in funding from FY 2026 to FY 2027 is due to the completion of research effort into distributed electronic warfare technologies against advanced threats by relocatable ground systems.
FY2026 plans — current year - Continue research effort into distributed electronic warfare technologies against advanced threats by relocatable ground systems. - Complete development of survivable kinetic weapon initiation and guidance technologies able to operate in contested electromagnetic environments. - Initiate research to design a mobile, distributed, and coordinated Electronic Warfare (EW) defense system, via Space Time Adaptive Response, capable of providing scalable countermeasure solution against multiple airborne threats. - Initiate the development of AI-enabled Command, Control and Communications (C3) for planning, distribution, reaction and recovery of autonomous assets used in Enhanced Maneuver, Force…
FY2027 planned work Continue: - Research towards de-risking future resilient energy ecosystems that will rely on hybridized hydrogen-based architectures that include hydrogen production, storage, and integration with renewable energy and batteries. - Applied research on scaling and prototyping next-generation energy storage, energy optimization, energy harvesting, and/or energy generation technologies. - Effort to develop scalable, rapid manufacturing of Group 2 Unmanned Aircraft System (UAS) with blow molded airframe and hot-swappable core. Complete: - Research and development of mission planning tactical logistics predictive and analytic tools to aid in demonstration at fleet exercise. Initiate…
FY2026 to FY2027 change The increase in funding from FY 2026 to FY 2027 is due to the initiation of efforts to (1) develop a compact, man-portable TPV power source to enhance the agility and lethality of dismounted expeditionary forces. and (2) develop a suite of intelligent, compact power conversion and management technologies to enable future resilient expeditionary power distribution needs in austere environments.
FY2026 plans — current year - Continue research towards de-risking future resilient energy ecosystems that will rely on hybridized hydrogen-based architectures that include hydrogen production, storage, and integration with renewable energy and batteries. - Continue applied research on scaling and prototyping next-generation energy storage, energy optimization, energy harvesting, and/or energy generation technologies. - Complete feasibility and scaling analysis of a bio-inspired subsurface resupply vessel. - Complete the development of mission planning tactical logistics analytic tools to integrate operational level logistics planning for Naval, Joint, and coalition forces across all classes of supply linked directly…
FY2027 planned work Complete: - Assessment of technologies and technology concepts in support of future amphibious operations and the future naval warfare. - Research to develop advanced strategies for USMC small-unit swarm employment. Initiate: - Development of early technology experimentation efforts that utilize live force-on-force opportunities to explore early technology concept feasibility and future technology concepts of employment.
FY2026 to FY2027 change The increase in funding from FY 2026 to FY 2027 is due to the initiation of an effort to develop early technology experimentation that utilize live force-on-force opportunities to explore early technology concept feasibility and future technology concepts of employment.
FY2026 plans — current year - Continue the assessment of technologies and technology concepts in support of future amphibious operations and the future naval warfare. - Initiate research to develop advanced strategies for USMC small-unit swarm employment.