link : US Air Force completes successful shoot down of air-launched missiles
US Air Force completes successful shoot down of air-launched missiles
The Air Force Research Laboratory (AFRL) Self-Protect High Energy Laser Demonstrator (SHiELD) Advanced Technology Demonstration (ATD) Program successfully completed a major program milestone April 23, 2019 with the successful surrogate laser weapon system shoot down of multiple air launched missiles in flight.
The SHiELD program is developing a directed energy laser system on an aircraft pod that will serve to demonstrate self-defense of aircraft against surface-to-air (SAM) and air-to-air (AAM) missiles.
"This critical demonstration shows that our directed energy systems are on track to be a game changer for our warfighters," said Dr. Kelly Hammett, director of AFRL's Directed Energy Directorate.
During the series of tests at the High Energy Laser System Test Facility at White Sands Missile Range, the Demonstrator Laser Weapon System (DLWS) (Figure 1), acting as a ground-based test surrogate for the SHiELD system, was able to engage and shoot down several air launched missiles in flight. The demonstration is an important step of the SHiELD system development, by validating laser effectiveness against the target missiles. The final SHiELD system, however, will be much smaller and lighter, as well as ruggedized for an airborne environment.
"The successful test is a big step ahead for directed energy systems and protection against adversarial threats," said Maj. Gen. William Cooley, AFRL commander. "The ability to shoot down missiles with speed of light technology will enable air operation in denied environments. I am proud of the AFRL team advancing our Air Force's directed energy capability."
High Energy Laser technology has made significant gains in performance and maturity due to continued research and development by AFRL and others in the science and technology ecosystem. It is considered to be a game changing technology that will bring new capabilities to the warfighter.
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