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February 23, 2023 | International, C4ISR

How JADC2 is like a high-tech grill, according to one Marine colonel

It’s tricky to define the multibillion-dollar Pentagon initiative aimed at linking up the military’s many forces and data.

https://www.c4isrnet.com/news/your-marine-corps/2023/02/23/how-jadc2-is-like-a-grill-according-to-one-marine-colonel/

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  • Heavy robotic combat vehicles put to test in the Colorado mountains

    August 10, 2020 | International, Land

    Heavy robotic combat vehicles put to test in the Colorado mountains

    By: Jen Judson WASHINGTON — The U.S. Army grappled with the challenge of incorporating heavy robotic combat vehicles into its formations during a monthlong experiment at Fort Carson, Colorado, coming away with a clearer path to bringing robots into the fold. Still, the service is years away from ground robots seamlessly fitting in with units. The Army has been evaluating the performance and possible utility of heavy RCVs for more than a year through the use of robotic versions of M113 armored personnel carriers, but the experiment at Camp Red Devil on Fort Carson is the most complex to date. “We're taking a lot of technology, we're experimenting and this experiment was 100 percent successful,” Brig. Gen. Ross Coffman, who is in charge of the Army's combat vehicle modernization efforts, told reporters in an Aug. 6 briefing. “The whole purpose was to learn where the technology is now and how we think we want to fight with it in the future.” Coffman said that doesn't mean all of the technology was successful or that everything performed perfectly. “Some [technology] knocked our socks off, and some we've got a little bit of work to do. But that is why we do these things, so we can do it at small scales, so we can learn, save money and then make decisions of how we want to fight in the future.” Going the distance In part, the Army is tackling a physics problem as well as a technology challenge involving the distance between the robot and the controller, Coffman said. But the service has found companies that can create waveforms to get the required megabytes per second to extend the range in the most challenging environments like dense forested areas, he added. During the experimentation, Coffman said, the Army tested the waveforms. “We went after them with [electronic warfare], we saw they were self-correcting, so that if they're on one band, they can switch to another,” he said, “so we have a really good idea of what is in the realm of the possible today.” The service was also able to almost double the range between controller and robot using the waveforms available, he explained. “If you could extend the battlefield up to 2 kilometers with a robot, then that means that you can make decisions before your enemy came, and it gives you that trade space of decisions faster and more effectively against the enemy.” The Army was also very pleased with the interface for the crew. The soldiers were able to located themselves and the robots, communicate among themselves, and see the graphics that “just absolutely blows us away,” Coffman said. The software between the robot and control vehicle — a Bradley Infantry Fighting Vehicle — “while not perfect, performed better than we thought it would,” Coffman said. The software also allowed the robot move in front of the control vehicle by roughly 80-1,000 meters as well as identify hotspots and enemy locations. “I didn't know how that was going to work,” Coffman said. “There were some challenges that we had, like getting exact granularity at distance, but the ability that we could identify hotspots and enemy positions I thought was absolutely exceptional.” As a side experiment, the Army also tested a robotic version of the Stryker Dragoon infantry combat vehicle, which is equipped with a 30mm cannon and uses the same software and hardware in control vehicles, Coffman noted. The experiment included live fire. In the heavy RCV surrogates, the target recognition worked while stationary, but part of the challenge the Army is tackling is how to do that on the move while passing information to a gunner, he added. Work on stabilizing the system for multiple terrains also needs performed, but that was indicative of using clunky, old M113s and turning them into robots rather than having a purpose-built vehicle like the RCV Medium and RCV Light. The Army awarded contracts to a Textron and Howe & Howe team to build the RCV-M, and a QinetiQ North America and Pratt & Miller team to build the light version late last year and early this year. Those are being built now. Training on the system also proved to be much easier than anticipated. Coffman said he asked how long the operators need to train, and was surprised to hear they need roughly 30 minutes to learn. “I thought it was going to take them days, but our soldiers are so amazing and they grew up in this environment of gaming.” What's the Army's next step? Now that the first major experiment is done, the Army plans to build up to a company-level operation in the first quarter of fiscal 2022 at Fort Hood, Texas. The experiment will also include four medium RCV prototypes and four light RCVs. While the experimentation at Fort Carson was focused on cavalry operations where the robots served more in a scout mission and proved they could be effective in a reconnaissance and security role, the experiment in FY22 will move the robots into more of an “attack and defend” role, according to Coffman. A new radio will be added to increase range as well as a tethered UAV and more leap-ahead target recognition capability that uses algorithms trained on synthetic data that is “truly cutting-edge,” Coffman said. After each of these experiments, he added, the Army reaches a decision point where it decides how to proceed, whether that is more experimentation or a fielding decision. “We have enough information tactically and technically that I believe we can move forward to the second experiment,” he noted. Following the second experiment, the Army will reach a decision point in FY23 on whether to move the effort into an official program of record. Once that is decided, an acquisition strategy would be identified if the decision is to move forward, according to Coffman. https://www.defensenews.com/land/2020/08/07/heavy-robotic-combat-vehicles-put-to-test-in-the-colorado-mountains/

  • US OKs potential sale of 16 Assault Amphibious Vehicles to Romania

    July 28, 2023 | International, Aerospace, Naval, Land, C4ISR, Security

    US OKs potential sale of 16 Assault Amphibious Vehicles to Romania

    The U.S. State Department has approved the potential sale of 16 Assault Amphibious Vehicles and related equipment to Romania for an estimated cost of $120.5 million, the Pentagon said on Thursday.

  • Defexpo 2020: UVision Announces a Joint Venture with Aditya Precitech for the Manufacture and Marketing of its Loitering Munitions in India

    January 31, 2020 | International, Aerospace

    Defexpo 2020: UVision Announces a Joint Venture with Aditya Precitech for the Manufacture and Marketing of its Loitering Munitions in India

    January 29, 2020 UVision Air Ltd. - a global leader in the area of Loitering Munitions Systems of all sizes for a variety of missions‒ strengthens its presence in India and announces a joint venture with Aditya Precitech, an Indian company, for the manufacture and marketing of loitering munitions under the brand PALM (Precision Attack Loitering Munition) Hero Systems. These systems are already in service and combat-proven. AVision, the company formed under the joint venture agreement, addresses the needs of the Indian defense and paramilitary sectors. AVision will explore various opportunities in India for Loitering Munitions Systems with the intention of initiating a full range of activities including the design, manufacture, sales, maintenance, support, upgrading, and lifecycle management. The partners will also maintain a supply of spare parts for the warranty and post-warranty periods for current and future versions of the smart munitions systems. AVision will be responsible for and will provide the following: design, development manufacture and maintenance support for all PALM Hero series, marketing strategy development and implementation; facilities for the new company's operations; human resources and personnel; supply chain creation and implementation; platform integration; and, after-sale training and customer support services. Commenting on the Joint Venture, Shane Cohen, VP Sales & Marketing at UVision and AVision Board Member, said, “We are very pleased to have partnered with Aditya, a highly respected company with extensive experience as development partner for many of India's Defense Research and Development Organization's (DRDO) most important projects. Aditya has a skilled team able to produce a wide range of complex components, and is an ideal partner for our innovative, cost-effective loitering munitions systems designed for the battlefield of the future.” Regarding this partnership, Aditya's representative and Avision's CEO, Col. (ret.) Anil Yadav, remarked, “This Joint Venture is a major step forward enabling India to achieve significantly higher levels of self-sufficiency in the defense sector with the transfer of state-of-art cutting-edge technologies for the futuristic loitering munitions. We look forward to producing the full range of loitering munitions, which will be offered to India's military, paramilitary forces as an effective response to multiple threats with minimal collateral damage.” The PALM HERO Series and Simulation System will be showcased at the AVision booth Hall 1 R48 At Defexpo, we will also display the entire PALM HERO Series of Lethal Loitering Systems highlighting the high-precision PALM Hero-30 and the Long-Range PALM Hero-400EC as well as the recently launched PALM Hero-120 a modular, customizable loitering weapon system fitted for a variety of missions. The company will also demonstrate its advanced, user-friendly simulation system, allowing a hands-on experience for visitors. The PALM HERO Simulator is used for training forces on the HERO systems, thus avoiding the costs, risks and constraints inherent in live-fire missions. About UVision Air Ltd. UVision Air Ltd. designs and manufactures innovative, cost-effective, unmanned loitering munition systems for customers worldwide. With cutting-edge technology and 30 years of extensive field experience by a professional management team, UVision delivers highly unique aerodynamic platform configurations. The Hero series is comprised of advanced loitering munitions systems (Hero-20, Hero-30, Hero-70, Hero-120, Hero-250, Hero-400EC, Hero-900, Hero-1250), designed for different missions at various ranges using warheads of various types. The company's solutions are tailored for unique flight qualities, precision attack munitions, advanced airborne guidance and navigation systems, and C4 stations fully integrated with communication links. Extensive R&D has yielded a versatile series of loitering munitions systems that are suitable for tactical and strategic targets ‒ whether for short, medium or long ranges – and with a variety of warheads to ensure maximum mission effectiveness. With units deployed and field-proven by the Israel Defense Forces and other customers – including leading NATO countries – UVision is fully committed to providing its extensive network of partners and customers located around the world with high quality and fast-response support. About Aditya Precitech Aditya Precitech Pvt. Ltd. is an Indian MSME company which has been involved in almost all missile projects of the DRDO as a development partner to provide prototypes of critical subsystems and undertake serial production of the same. Over the years, Aditya has developed a core design and development team capable of independently developing components based on customer specifications in mechanical, electro-mechanical and electronic segments. Some of the innovative products from Aditya include Electro-Mechanical Actuators (Rotary as well as Linear), DC – DC convertors and Brushless DC Motors, apart from a whole range of fins, wings, control surfaces and motor casings for all types of missiles and rockets as well as some satellites. For more information on AVision, please visit www.avisionsystems.com Contact Details: Ms. Ronit Konfidan Marketing Communications Manager UVision Air Ltd. Email: ronit.k@uvisionuav.com Mobile: +972-52-3786665

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