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U.S. Navy Tests CAMP Autonomous Mission Planning Software

The Navy’s CAMP system converts human mission plans into autonomous aircraft instructions, tested at Point Mugu in 2026.

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The U.S. Navy has successfully demonstrated software that translates human-generated mission plans directly into executable instructions for autonomous combat aircraft, a capability designed to reduce operator workload and accelerate the integration of uncrewed systems into fleet operations.

In a press release issued on September 22, 2026, the Navy announced the successful test of its Collaborative Autonomy Mission Planning (CAMP) system. The demonstration took place during the Gray Flag 2026 test event at the Point Mugu Sea Range in California, utilizing a single General Atomics Aeronautical Systems Inc. (GA-ASI) MQ-20 Avenger as a surrogate aircraft.

Bridging human planning and autonomous execution

The CAMP software allows mission planners to use the established Collaborative Mission Planning Continuum (CMPC) to direct autonomous platforms. This eliminates the requirement to manually translate operational plans into platform-specific code, a process that traditionally requires significant time and specialized technical knowledge.

Capt. Todd “Toby” Keith, Program Manager for the Navy’s Strike Planning & Execution Systems (PMX-281), stated that the demonstration connected current mission planning methods with future autonomous execution.

“CAMP is about making autonomy more usable by integrating into mission environments with both manned and unmanned platforms,” Keith said. “This demonstration showed how we can connect the way operators plan missions today in the CMPC with the way autonomous aircraft will execute those missions. That can reduce the burden on our operators, improve interoperability and help bring collaborative autonomy closer to operational use.”

Building on previous autonomous combat tests

The September 2026 demonstration builds upon the Navy’s Experimental Platform for Intelligent Combat (EPIC) initiative. In September 2025, the Navy partnered with Shield AI under the EPIC program to pilot a Kratos Defense & Security Solutions BQM-177A target drone in GPS-denied environments using the company’s Hivemind technology.

The U.S. military is actively expanding its deployment of uncrewed systems in combat scenarios. In July 2026, the U.S. 5th Fleet’s Task Force 59 utilized three Corsair unmanned surface vessels to strike a submarine and maintenance facility at the Bandar Abbas naval base in Iran. This marked the first time American forces employed sea drones in active combat operations.

The MQ-20 Avenger utilized in the Point Mugu test also serves as a testbed for the U.S. Air Force’s Collaborative Combat Aircraft (CCA) program. This dual usage highlights cross-service efforts to develop uncrewed platforms capable of operating alongside human-piloted fighters.

AirPro News analysis

The successful CAMP demonstration represents a critical step in solving one of the primary bottlenecks in autonomous warfare: the human-machine interface. While autonomous flight control has matured significantly, the administrative and technical burden of programming these aircraft for specific, dynamic missions has remained high. By allowing operators to use existing planning architectures like the CMPC, the Navy is lowering the barrier to entry for deploying uncrewed assets.

Questions remain regarding scalability and deployment timelines. The Navy has not publicly disclosed when the CAMP system will reach operational fleet units. The software has currently only been publicly tested on a single MQ-20 surrogate. We expect future testing will need to demonstrate the system’s ability to handle multiple, disparate autonomous platforms simultaneously before it can be considered ready for complex, multi-domain combat environments.

Sources: U.S. Navy

Photo Credit: U.S. Navy

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Defense & Military

Hanwha Defense USA Invests $2.2B at Pine Bluff Arsenal

Hanwha Defense USA will invest $2.2 billion over seven years to build a munitions campus at Pine Bluff Arsenal, Arkansas.

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Hanwha Defense USA (HDUSA) will invest $2.2 billion over seven years to establish a munitions manufacturing campus at the U.S. Army Pine Bluff Arsenal in Arkansas, significantly expanding its domestic production footprint.

Announced on September 21, 2026, by the Arkansas Economic Development Commission (AEDC), the Hanwha Advanced Manufacturing Campus will produce 155mm propellant charges and base bleed units. The project is expected to create approximately 400 jobs in the Arkansas Delta region and marks a substantial increase from initial investment estimates.

Expanding the domestic munitions industrial base

The new facility aims to modernize the United States munitions supply chain by establishing advanced domestic manufacturing capabilities for critical artillery components. The U.S. Army awarded HDUSA an enhanced use lease solicitation for the campus in January 2026, culminating in the official opening of the company’s administrative headquarters at the site on September 21, 2026.

Michael Coulter, CEO of HDUSA, stated that the new office will oversee local operations and manage the construction of the advanced manufacturing campus.

“Hanwha remains committed to supporting the American defense industrial base by bringing our manufacturing strength to the U.S. and creating up to 400 jobs in Arkansas,” Coulter said in the press release.

The U.S. Army views the partnership as a method to optimize existing military installations. Jordan Gillis, Assistant Secretary of the Army for Installations, Energy and Environment, noted that the eventual lease will generate revenue for the military branch while enhancing the organic industrial base.

“By leasing underutilized land, the Army can reinvest the consideration into critical infrastructure to support quality of life of Soldiers, civilians, and their family members,” Gillis said.

State economic impact and project evolution

Arkansas state officials worked with Hanwha for 18 months to secure the location. The recruitment process included site visits and strategic meetings at both the Paris and Farnborough Air-Shows.

Arkansas Governor Sarah Huckabee Sanders described the selection of the Pine Bluff Arsenal as a major economic victory for the state, noting that the campus will bolster local economies and create hundreds of jobs in the Arkansas Delta.

The final scope of the project represents a significant expansion from early projections. Initial reports from January 2026 estimated the Pine Bluff Arsenal project would require a $1.3 billion investment and create about 200 jobs. The September 21, 2026, announcement nearly doubled those figures to a $2.2 billion capital investment and 400 jobs over the seven-year timeline.

Broader U.S. defense footprint

The Arkansas ammunition hub joins other recent U.S. expansion efforts by the Hanwha Aerospace subsidiary. The company is actively positioning itself as a primary supplier for U.S. ground forces.

On August 18, 2026, the U.S. Army awarded HDUSA a $100.3 million firm-fixed-price contract to develop and deliver six prototypes of the K9 Mobile Howitzer (K9MH) for the Mobile Tactical Cannon program. The contract includes a ceiling of $262.9 million.

To support the K9MH contract and its broader U.S. expansion, HDUSA established a Phase I integration and test facility in Opelika, Alabama. The company signed a three-year lease for the Alabama site earlier in 2026.

AirPro News analysis

We view Hanwha’s aggressive expansion into the U.S. defense market as a direct response to the U.S. Department of Defense (DoD) push to onshore critical munitions supply chains. The global demand for 155mm artillery components has surged, exposing vulnerabilities in domestic production capacity. By nearly doubling its initial investment estimate for the Arkansas facility, Hanwha is signaling strong confidence in sustained U.S. Army procurement and long-term demand for localized manufacturing. The concurrent development of the K9 Mobile Howitzer prototypes in Alabama further cements the South Korean defense giant’s strategy to embed itself deeply within the U.S. military-industrial base.

Sources: Arkansas Economic Development Commission

Photo Credit: Arkansas Economic Development Commission

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Defense & Military

Airbus U145 Uncrewed H145 Variant Details and Payload

Airbus Helicopters details the U145 uncrewed H145 variant, targeting heavy logistics and tactical missions with a maiden flight by end of 2026.

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Airbus Helicopters has detailed the structural and operational modifications for its U145, an uncrewed variant of the H145 rotorcraft designed to maximize payload capacity for heavy logistics and tactical operations in hostile environments.

In a program update published on September 22, 2026, the manufacturer outlined how removing the cockpit from the proven H145 airframe enables a zero-level flat floor and 360-degree cargo access. The U145, initially unveiled at the ILA Berlin airshow in June 2026, targets a maiden flight by the end of the year and entry into service in the early 2030s.

Structural modifications and payload capacity

The primary engineering shift for the U145 involves the complete removal of the crewed cockpit. According to Constance Pinsdorf, H145M Programme Manager at Airbus, this space is replaced by a computer system and mechanical modifications capable of autonomous flight.

“Our main motivation was to create an autonomous aircraft based on an existing platform. We want to have an autonomous platform that can carry more than the standard H145. Meaning, we increased the payload,” Pinsdorf stated.

The redesign creates a zero-level surface within the loading compartment. This flat floor allows for 360-degree access from the front, sides, and rear, ensuring that heavy cargo boxes can be secured stably for transport directly to the front line. The aircraft retains a Maximum Take-Off Weight (MTOW) of 3,800 kg, leveraging the existing power and airframe of the H145 while dedicating the saved weight to useful load.

Tactical applications and the mothership concept

While heavy logistics and cargo transport remain the primary focus for the U145, Airbus is positioning the uncrewed rotorcraft for complex tactical missions in contested airspace.

Pinsdorf noted that the platform could serve as an “air-launched effect mothership.” In this configuration, the U145 would carry smaller drones into hostile environments and launch them directly into the operational area, keeping human crews out of danger.

The development of the U145 parallels efforts by Airbus U.S. Space & Defense to field a similar autonomous platform for the United States military. Partnering with Shield AI, L3 Harris, and Parry Lab, the company is offering the MQ-72C, an uncrewed variant based on the Lakota UH-72B, to the US Marine Corps.

The U145 is the second crewed helicopter Airbus has converted to an uncrewed system, following the VSR700, which was derived from the Cabri G2.

AirPro News analysis

We view the U145 program as a pragmatic approach to the growing demand for heavy-lift uncrewed aerial systems (UAS). By converting an established, certified airframe rather than designing a clean-sheet UAS, Airbus significantly reduces developmental risk and timeline. The H145 family already possesses a mature global supply chain and proven dynamic components. Removing the cockpit and life-support systems yields an immediate payload dividend, which is highly attractive to military operators looking to sustain forward-deployed forces without risking aircrew. The transition from the VSR700 to a medium-twin platform like the H145 indicates a strategic scale-up in Airbus Helicopters’ autonomous portfolio.

Sources: Airbus

Photo Credit: Airbus

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Defense & Military

US Space Force Plans to Double Personnel by Fiscal Year 2031

The U.S. Space Force outlines a five-year roadmap to grow to 25,000 uniformed Guardians and 12,500 civilians by FY2031.

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U.S. Space Force leaders have detailed a five-year roadmap to more than double the service’s uniformed and civilian personnel by Fiscal Year 2031 to meet exponentially growing operational demands and satellite workloads.

Outlined during a September 14, 2026, panel at the Air & Space Forces Association (AFA) Air, Space and Cyber Conference in National Harbor, Maryland, the expansion plan addresses a projected fivefold increase in workload over the next three years. The details were published in a September 22, 2026, press release by the Air Force Life Cycle Management Center.

Scaling personnel and training pipelines

The U.S. Space Force (USSF) currently operates with fewer than 11,000 uniformed Guardians and approximately 5,000 civilian employees. Under the new roadmap, the service targets a uniformed force of roughly 25,000 and a civilian workforce of 12,500 by Fiscal Year 2031, according to figures reported by Air & Space Forces Magazine.

To support this influx, the Space Training and Readiness Command (STARCOM) plans to triple its training pipeline throughput. The command aims to process roughly 3,000 new accessions in Fiscal Year 2027, up from its current capacity of 1,000. STARCOM has already condensed nearly 20 months of intelligence, cyber, and operational training into a single Officer Training Course and is establishing a dedicated Guardian Basic Military Training program.

Chief Master Sgt. of the Space Force John Bentivegna emphasized that the training standards will remain rigorous despite the increased volume.

“STARCOM is a filter, not a pump,” Bentivegna said. “Doubling the size just makes sense for the lethality we provide the Joint Force.”

Combat capacity and infrastructure development

The operational requirements driving the expansion are heavily concentrated in active space control. Aviation Week reported that two-thirds of the planned personnel growth will be allocated to the U.S. Space Force Combat Forces Command.

Lt. Gen. Gregory Gagnon, Commander of the Combat Forces Command, noted that the service is currently controlling 33% to 50% more satellites than it did two years ago. He projected that this workload will expand fivefold over the next three years.

“The demand signal is growing exponentially,” Gagnon said. “Across every geographic combatant command, requests for spacepower far outpace current availability.”

To support the combat readiness of these new units, the Space Force is addressing a significant shortfall in simulation capabilities. Currently, 60% of Combat Forces Command units lack a full simulation trainer. Gagnon stated that the service has developed a roadmap with STARCOM and Space Systems Command to reduce that gap by more than half within the next 36 months.

Physical infrastructure is also slated for rapid expansion. The Space Force is standing up an Infrastructure Delivery Authority designed to leverage private sector expertise and utilize new authorities granted in the National Defense Authorization Act for Fiscal Year 2026. This authority will accelerate the construction of launch pads, training facilities, and support infrastructure.

Kathryn Kolbe, Assistant Deputy Chief of Space Operations for Installations and Logistics, described infrastructure and sustainment as key enablers for warfighting capability, noting that the service will focus on improving these resources to provide enhanced capacity.

AirPro News analysis

The scale of this personnel and infrastructure expansion reflects a definitive shift in how the Department of Defense categorizes the space domain. For decades, military space operations were viewed primarily as a support function for terrestrial forces. The planned growth to 37,500 total personnel by Fiscal Year 2031 aligns with the reality of space as an active, contested warfighting domain.

We note that this roadmap was presented at the same September 2026 conference where Air Force Secretary Troy Meink and Chief of Space Operations Gen. Douglas Schiess publicly acknowledged the deployment of on-orbit space control weapons. The simultaneous announcement of offensive and defensive orbital capabilities alongside a massive personnel expansion indicates that the Space Force is transitioning from its initial organizational phase into a fully operational combat posture.

Sources: Air Force Life Cycle Management Center

Photo Credit: The U.S. Space Force

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