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Topic temporarily posted March 2-3, 2026; removed and planned for rerelease upon SBIR program reauthorization. Not currently open for submissions.
"Autonomous Leader-Follower UAS Formation for Enhanced Mission Resilience and Reduced Operator Workload - SBIR Topic DAF26BZ01-DV002" is currently closed and not accepting applications.
Autonomous Leader-Follower UAS Formation for Enhanced Mission Resilience and Reduced Operator Workload - SBIR Topic DAF26BZ01-DV002 is sponsored by U.S. Air Force (managed by AFWERX). This grant funds the development of autonomous leader-follower drone formations, enabling a single pilot to control multiple Unmanned Aircraft Systems (UAS).
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Autonomous Leader-Follower UAS Formation for Enhanced Mission Resilience and Reduced Operator Workload - SBIR Topic DAF26BZ01-DV002 — BW&CO Autonomous Leader-Follower UAS Formation for Enhanced Mission Resilience and Reduced Operator Workload - SBIR Topic DAF26BZ01-DV002 Active specific topic DSIP This topic was temporarily posted by the Department of War SBIR Program on March 2nd 2026 and removed the following day.
We believe this topic is planned to be released once the SBIR program is reauthorized; however, this topic may ultimately be modified or withdrawn. Notify Me When This is Released The objective of this topic is to develop and demonstrate an affordable robust and reliable autonomous leader-follower UAS formation capability, enabling a single First-Person View (FPV) pilot to command and control multiple UAS effectively.
This system should incorporate: seamless pilot reassignment in case of lead UAS failure, synchronized terminal guidance capabilities, and an innovative stasis mode for follower units to conserve energy and maintain position. Furthermore, the system must include advanced target designation features, allowing the lead UAS to mark targets for autonomous execution by follower units.
The increasing complexity and scale of modern military operations demand unmanned aerial systems (UAS) capable of operating autonomously and collaboratively. Current UAS deployments often require dedicated operators for each platform, resulting in high personnel costs and increased cognitive burden on the warfighter.
There is a critical need for UAS technologies that can significantly reduce operator workload while enhancing mission effectiveness and resilience, particularly in contested environments where communication and control links may be degraded or disrupted.
The ability for a single pilot to effectively manage multiple autonomous UAS in a coordinated formation, with built-in redundancy and adaptive control, represents a significant advancement in UAS capabilities.
Offerors are encouraged to explore innovative approaches to autonomous UAS formation control, incorporating advanced AI algorithms, resilient communication networks (e.g., Neuron Mesh Networks), and robust sensor fusion techniques. The proposed solution should address challenges related to maintaining formation integrity, adapting to dynamic environments, and operating in GPS-denied or contested environments.
Innovative approaches to stasis mode are encouraged, optimizing power consumption while maintaining situational awareness. Development should include: AI-based Autonomous Control Algorithms: For leader-follower formation flight, obstacle avoidance, and target engagement.
Resilient Communication Network: A robust and secure communication network enabling seamless data sharing and control within the UAS formation (potentially leveraging Neuron Mesh Network technologies). Synchronized Terminal Guidance: Algorithms for coordinated approach and landing of multiple UAS at designated targets.
Stasis Mode: An energy-efficient mode allowing follower UAS to maintain position and situational awareness while minimizing power consumption. Target Designation System: A user-friendly interface for the pilot to designate targets for autonomous execution by follower units.
Pilot Reassignment Capability: A mechanism for automatic and seamless transfer of lead UAS control to a follower unit in case of failure or loss of communication The technology within this topic is restricted under the International Traffic in Arms Regulation (ITAR), 22 CFR Parts 120-130, which controls the export and import of defense-related material and services, including export of sensitive technical data, or the Export Administration Regulation (EAR), 15 CFR Parts 730-774, which controls dual use items.
Offerors must disclose any proposed use of foreign nationals (FNs), their country(ies) of origin, the type of visa or work permit possessed, and the statement of work (SOW) tasks intended for accomplishment by the FN(s) in accordance with section 3. 5 of the Announcement. Offerors are advised foreign nationals proposed to perform on this topic may be restricted due to the technical data under US Export Control Laws.
If you can achieve the objective above better than any other company on the market, you have a very high-likelihood of success and should apply. Who is eligible to apply? Any company that meets the following criteria: U.S.-owned and controlled.
500 or fewer employees (including affiliates) 1) End-to-end support including, strategy, writing of the full proposal, and administrative & compliance support. 2) Proposal strategy and review. 3) Administrative & compliance support.
Request to talk with a member of our team by completing the form below: Aerospace & Spacetech Robotics & Autonomous Systems Defense & Dual Use Technology Air Force Artificial Intelligence & Machine Learning https://www. bwcoconsulting. com CHORD - Collaborative Human Autonomy Operational Review - SBIR Topic DAF26BZ01-DV007 Intelligent Threat Aware Autonomy - SBIR Topic DAF26BZ01-NV006
According to the current listing, eligibility includes: Small business concerns (SBCs) organized for profit, with a place of business in the United States; at least 51% owned and controlled by one or more U. S. citizens or permanent resident aliens. Confirm the full requirements in the official notice before applying.
The current listing shows est. $140,000 (Estimated). Verify award ceilings, matching requirements, and allowable costs in the official notice.
The published deadline was April 29, 2026, which has passed. Check the official notice for any future application windows before investing time in a proposal.
Autonomous Leader-Follower UAS Formation for Enhanced Mission Resilience and Reduced Operator Workload - SBIR Topic DAF26BZ01-DV002 is funded by U.S. Air Force (managed by AFWERX). Verify program details on the funder's official page before applying.
Yes — this listing is flagged as national in scope, so applicants across the U.S. may apply, subject to the sponsor's other eligibility criteria.
Start from the official opportunity page linked in this listing — it carries the sponsor's submission instructions.
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