24 juillet 2019 | International, Terrestre

Collins Aerospace gets sixth order from U.S. Army for production of next-generation Manpack radios

CEDAR RAPIDS, Iowa (July 23, 2019) – Collins Aerospace Systems, a unit of United Technologies Corp. (NYSE: UTX), has received its sixth order from the U.S. Army to provide PRC-162 software-defined ground radios for the Handheld, Manpack and Small Form Factor (HMS) program. This sixth order was issued under a multiple award contract that the Army awarded to Rockwell Collins and two other companies in 2016. The contract, which has a $12.7 billion maximum firm-fixed-price with an estimated completion date of March 2026, moves the Army another step closer toward modernizing communications on the battlefield.

The PRC-162 is a two-channel ground radio, both man-portable and vehicle-mountable, that will enable the Army to tap into next-generation communications capabilities such as the Department of Defense's new Mobile User Objective System (MUOS) while maintaining interoperability with legacy waveforms. An open-architecture design also allows for software-upgradeable capabilities in the future.

“Success in today's multi-domain battlespace depends heavily on secure and reliable communications,” said Phil Jasper, president, Mission Systems for Collins Aerospace. “We've applied decades of proven experience in airborne communications to provide the Army with a next-generation ground radio that will give troops a heightened level of situational awareness and a tactical advantage.”

The PRC-162 is a part of Collins Aerospace's TruNet™ networked communications family of products, which includes ground and airborne radios, advanced networking waveforms, applications, and support and services that enable ground and airborne elements to exchange critical data, images, voice and video in real time.

About Collins Aerospace

Collins Aerospace Systems, a unit of United Technologies Corp. (NYSE: UTX), is a leader in technologically advanced and intelligent solutions for the global aerospace and defense industry. Created in 2018 by bringing together UTC Aerospace Systems and Rockwell Collins, Collins Aerospace has the capabilities, comprehensive portfolio and expertise to solve customers' toughest challenges and to meet the demands of a rapidly evolving global market. For more information, visit CollinsAerospace.com.

About United Technologies Corporation

United Technologies Corp., based in Farmington, Connecticut, provides high-technology systems and services to the building and aerospace industries. By combining a passion for science with precision engineering, the company is creating smart, sustainable solutions the world needs. For more information about the company, visit our website at www.utc.com or follow us on Twitter: @UTC.

https://www.epicos.com/article/449255/collins-aerospace-gets-sixth-order-us-army-production-next-generation-manpack-radios

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  • DARPA Awards Six Teams During Final Spectrum Collaboration Challenge Qualifier

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The six prize-winning teams from the second preliminary event are: Zylinium, a team of independent researchers MarmotE from Vanderbilt University Sprite from Northeastern University Erebus, a team of independent researchers Gator Wings from University of Florida SCATTER from IDLab, an imec research group at Ghent University and University of Antwerp, and Rutgers University "During the second preliminary event we witnessed a technological shift," said Paul Tilghman, the DARPA program manager leading SC2. "For the first time, we saw autonomous collaboration outperform the status quo for spectrum management." Starting in early December, each team's radio participated in 105 matches against competitors in the Colosseum, a massive RF testbed that was developed specifically for SC2. The matches were held in a round-robin fashion where each radio network – working in groups of threes, fours or fives – had multiple opportunities to compete against every other radio design in the competition. Roughly 400 matches were held in total to determine the final team rankings and the prize recipients. During the PE2 matches, teams were put through six different RF scenarios designed to mimic the challenges that collaborative, autonomous radios will face in the real world. These scenarios challenged the radios to collaboratively mitigate interfering with an incumbent radio system, sense and adapt to the spectrum demands of high-traffic environments, handle the data demands of the connected soldier of the future, and beyond. Each scenario was designed to pressure test various elements of the teams' approaches and, in particular, their ability to successfully collaborate with the other radios operating within the same environment. “The six different scenarios were closely aligned to actual situations that our defense and commercial systems face in the field. The Wildfire scenario, for example, replicates the complex communications environment that surrounds an emergency response situation, while the Alleys of Austin scenario was designed to mimic what's needed to help dismounted soldiers navigate and communicate as they sweep through an urban environment. This real-world relevance was critical for us as we want to ensure these technologies can continue to develop after the event and can transition to commercial and/or military applications,” said Tilghman. The sixth scenario of the competition was used to determine the six prize winning teams. This scenario explored the essential question of the SC2 competition: can the top teams' collaborative SC2 radios outperform the status quo of static allocation? 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