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December 16, 2021 | International, Aerospace, Naval, Land, C4ISR, Security

How Will The Next Pentagon Strategy Deal With China?

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  • Huntington Ingalls Industries Awarded $145 Million Advance Procurement Contract for Amphibious Assault Ship LHA 9

    June 19, 2020 | International, Naval, Land

    Huntington Ingalls Industries Awarded $145 Million Advance Procurement Contract for Amphibious Assault Ship LHA 9

    Pascagoula, Miss., June 17, 2020 -- Huntington Ingalls Industries (NYSE:HII) announced today that its Ingalls Shipbuilding division has received a third contract modification from the U.S. Navy for $145 million to provide long-lead-time material and advance procurement activities for amphibious assault ship LHA 9. This modification brings the total advance funding for LHA 9 to $350 million. “This advance procurement contract will help protect the health of our supplier base and strengthen our efforts to efficiently modernize the nation's amphibious fleet as we continue to build amphibious ships for the Navy,” Ingalls Shipbuilding President Brian Cuccias said. Ingalls is the sole builder of large-deck amphibious ships for the Navy. The shipyard delivered its first amphibious assault ship, the Iwo Jima-class USS Tripoli (LPH 10), in 1966. Ingalls has since built five Tarawa-class (LHA 1) ships, eight Wasp-class (LHD 1) ships and the first in a new class of amphibious assault ships, America (LHA 6), in 2014. The second ship in that class, Tripoli (LHA 7), was delivered to the Navy earlier this year. Bougainville (LHA 8) is under construction. About Huntington Ingalls Industries Huntington Ingalls Industries is America's largest military shipbuilding company and a provider of professional services to partners in government and industry. For more than a century, HII's Newport News and Ingalls shipbuilding divisions in Virginia and Mississippi have built more ships in more ship classes than any other U.S. naval shipbuilder. HII's Technical Solutions division supports national security missions around the globe with unmanned systems, defense and federal solutions, nuclear and environmental services, and fleet sustainment. Headquartered in Newport News, Virginia, HII employs more than 42,000 people operating both domestically and internationally. For more information, visit: HII on the web: www.huntingtoningalls.com HII on Facebook: www.facebook.com/HuntingtonIngallsIndustries HII on Twitter: www.twitter.com/hiindustries HII on Instagram: instagram.com/huntingtoningalls CONTACT INFORMATION Teckie Hinkebein Manager of Media Relations (228) 935-1323 teckie.hinkebein@hii-co.com View source version on Huntington Ingalls Industries: https://newsroom.huntingtoningalls.com/releases/huntington-ingalls-industries-awarded-145-million-advance-procurement-contract-for-amphibious-assault-ship-lha-9

  • DARPA Awards Six Teams During Final Spectrum Collaboration Challenge Qualifier

    December 20, 2018 | International, C4ISR

    DARPA Awards Six Teams During Final Spectrum Collaboration Challenge Qualifier

    On December 12, DARPA held the second preliminary event of the Spectrum Collaboration Challenge (SC2) – the world's first collaborative machine-intelligence competition to overcome spectrum scarcity. Fifteen teams represented by members from across the academic, commercial and defense landscapes gathered at Johns Hopkins University Applied Physics Laboratory (APL) to pit their intelligent radio designs against each other in a head-to-head competition. At the event's conclusion, six of the eight top-scoring teams walked away with $750,000 each in prize money. While not all competitors received interim prizes, all 15 teams have an opportunity to move on to the next stage and compete in the 2019 Spectrum Collaboration Challenge grand finale, which will be held in conjunction with MWC19 Los Angeles, in partnership with CTIA, on October 23, 2019. 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? Each of the six teams that received awards at PE2 demonstrated that their radio was capable of carrying more wireless applications without the aid of a handcrafted spectrum plan, while simultaneously ensuring four other radio networks operating in the same area had improved performance. In short, each of these six radio networks demonstrated the autonomous future of the spectrum. To aid with decision making, teams applied AI and machine learning technologies in various ways. Some leveraged the current generation of AI technologies like deep learning, while others used more conventional optimization approaches. There were also a few teams that used first wave, rule-based AI technologies. “We're very encouraged by the results we saw at PE2. The teams' radios faced new and unexpected scenarios but were still able to demonstrate smart, collaborative decision making. PE2 showed us that AI and machine learning's application to wireless spectrum management creates a very real opportunity to rethink our current century-old approach,” said Tilghman. The competition now enters its third year and moves closer to the finale, which will be held at one of the country's largest annual technology and telecommunications shows – MWC19 Los Angeles. More than 22,000 attendees from the broad mobile ecosystem and adjacent industry sectors will convene at this three-day event to discuss the current opportunities and future trends shaping the industry. The SC2 championship event will be held on the keynote stage of MWC19 Los Angeles on October 23, 2019. At the conclusion of SC2's finale, three teams will be awarded $2 million, $1 million and $750,000, respectively, for first, second and third place. The real prize, however, will be the promise of a more efficient wireless paradigm in which radio networks autonomously collaborate to determine how the spectrum should be used moment-to-moment, helping to usher in an era of spectrum abundance. For more information about DARPA's Spectrum Collaboration Challenge, please visit: https://spectrumcollaborationchallenge.com/ https://www.darpa.mil/news-events/2018-12-19

  • Here are the biggest weaknesses in America’s defense sector

    July 2, 2019 | International, Security, Other Defence

    Here are the biggest weaknesses in America’s defense sector

    By: Aaron Mehta WASHINGTON — Production of a component vital to protecting American troops from chemical attacks that can't keep up with need. Key suppliers of aircraft parts that could go bankrupt at any time. A key producer of missile components that closed for two years before the Pentagon found out. These are just some of the key findings of an annual report from the Pentagon judging the greatest risks to the defense industrial sector, underlining that while the overall defense industry continues to bring in massive profits, not all is well among the suppliers of key components that, while small pieces of larger systems, could impact America's ability to wage war. The annual “Industrial Capabilities” report, quietly released May 13 by the Defense Department's Office of Manufacturing and Industrial Base Policy, found that despite total dollars spent by the department on weapons and ammunition increasing year over year since 2016, the number of vendors supplying them has decreased. In addition, while the report found generally positive trends for the U.S. defense sector, it did warn that in certain areas, foreign weapon sales are decreasing. For instance, the U.S. saw its market share of global naval weapon exports go from 63 percent in 2007 to just 17 percent in 2017. And from 2008-2017, two reliable buyers of U.S. defense goods — Pakistan and South Korea — saw their U.S. procurement percentages drop. Pakistan went from 31 percent to 12 percent, while South Korea went from 78 percent to 53 percent. This is the first Industrial Capabilities report to be published since the October release of a White House-mandated study on the defense-industrial base. That study concluded, in part, that the government needs to increase use of its Defense Production Act Title III authorities, which allows the government to expend funds to support key production lines that might now otherwise survive. The latest report says that through March 2019, seven presidential determinations were issued to address “key industrial base shortfalls in lithium sea-water batteries, alane fuel cell technology, sonobuoys production, and critical chemicals production for missiles and munitions.” However, details of those agreements, such as how much funding might go toward fixing the issues, were pushed into a nonpublic appendix. Here are the biggest concerns, broken down by sector: Aircraft: The report cites long product and system development timelines, high costs for development and qualification, and limits on production as broad issues in the aircraft sector. Those issues are inherent in major defense programs, but the report also calls out the aging workforce and consolidation among the industrial base, which “has expanded into the sub-tiers of the supply chain, creating additional risks for single or sole source vendors.” As an example, the report notes there are only four suppliers with the ability to manufacture “large, complex, single-pour aluminum and magnesium sand castings” needed to make key parts of military aircraft. These four suppliers face “perpetual financial risk and experience bankruptcy threats” due to the insecure nature of Pentagon funding. “The single qualified source for the upper, intermediate, and sump housing for a heavy-lift platform for the Marines has experienced quality issues and recently went through bankruptcy proceedings,” the report adds. “Without a qualified or alternate qualified source for these castings, the program will face delays, impeding the U.S. ability to field heavy-lift support to Marine Corps expeditionary forces.” Finding qualified software engineers is another issue identified, with the report warning it is “increasingly difficult to hire skilled, cleared, and capable software engineers. As aircraft continue to increase in software complexity, it will become even more important for the sector to hire skilled software engineers.” Ground systems: The report says the Pentagon's plan of incremental updates to existing systems rather than wholesale new designs has created “a generation of engineers and scientists that lack experience in conceiving, designing, and constructing new, technologically advanced combat vehicles.” But the same issues of consolidation and lack of budget stability that showed up in the aircraft sector impact the ground vehicle sector. “Legislation and DoD industrial policy requires DoD to manufacture all large-caliber gun barrels, howitzer barrels, and mortar tubes at one organic DoD arsenal,” the report cites as an example. “There is only one production line at the arsenal for all of these items, and policy modifications to meet demand and surge from overseas have led to a lack of capacity to meet current production requirements.” Shipbuilding sector: When it comes to maritime vessels, the “most significant risks found were a dependence on single and sole source suppliers, capacity shortfalls, a lack of competition, a lack of workforce skills, and unstable demand,” the report found. The lack of competition goes from the highest levels, where four companies control the seven shipyards building military vessels, to the lowest components, such as “high-voltage cable, propulsor raw material, valves, and fittings.” Workforce concerns also dominate the shipbuilding sector. The report cites statistics from the Department of Labor predicting that between 2018 and 2026, there will be a 6–17 percent decrease in U.S. jobs in occupations critical to Navy shipbuilding projects, “such as metal layout (ship-fitting), welding, and casting.” If that is not addressed, a lack of skilled workers “will significantly impact the shipbuilding industry's ability to meet the Navy's long-term demand.” Munitions sector: A major concern in last year's annual report was the future of the U.S. munitions sector, and many of those issues remain in the 2019 version. The report identified “multiple risks and issues, including material obsolescence and lack of redundant capability, lack of visibility into sub-tier suppliers causing delays in the notification of issues, loss of design and production skill, production gaps and lack of surge capacity planning, and aging infrastructure to manufacture and test the products.” As an example, the report points to a voltage control switch, used in ignition devices and flight termination systems for Department of Defense missiles. Several years ago, the foundry that made a key component for the switch was purchased by another foundry, which then decided to close the factory. The Pentagon was not informed until two years after the foundry was closed, at which point “it became evident that the end-of-life buy, which was designed to last from three to five years, would only last six months.” In another case, two key chemicals in solid-fuel rocket motors became obsolete, requiring the DoD to scramble for potential replacements. Chemical, biological and radiological sector: The chemical, biological, radiological and nuclear defense sector provides protection for war fighters through items like respirators, masks and vaccines. But the report found serious issues regarding the industrial base's ability to provide that capabilities, indicating that Title III authorities might be needed in the near future to maintain production. As an example, the report points to production of ASZM‑TEDA1 impregnated carbon, a defense-unique material with only a single qualified source that, as a result, “precludes assurances for best quality and price.” The carbon is used in 72 chemical, biological and nuclear filtration systems, and the report notes that current sourcing arrangements “cannot keep pace with demand.” The DoD is already using Title III to modernize the production line and try to establish a second source for the material. Soldier systems: The collapse of the American textile market over the last three decades has left the department depending on single sources or foreign suppliers for soldier systems. Additionally, battery production is identified as a potential future issue. “Lack of stable production orders has resulted in lost capability and capacity, increased surge lead times, workforce erosion, and inhibited investments by remaining suppliers. Surge-capacity-limiting constraints occur at several points along the value chain, from raw material to final battery assembly,” the report says. Space systems: Aside from major issues around future threats to space assets from near-peer competitors, the report identifies major industrial base concerns for space as including “aerospace structures and fibers, radiation-hardened microelectronics, radiation test and qualification facilities, and satellite components and assemblies.” Other areas include solar panel development — “There is not enough space business for companies to justify R&D to improve cells without [government] help,” the report says — the erosion of the traveling-wave tube industry, and a lack of suppliers for key parts needed to produce precision gyroscopes needed for spacefaring systems. Electronics: The Pentagon has been sounding the alarm about China's growing power in the printed circuit board market, and this report continues that trend. The United States now accounts for only 5 percent of global production, representing a 70 percent decrease from $10 billion in 2000 to $3 billion in 2015, per the report. Meanwhile, almost half of global production comes from China. https://www.defensenews.com/pentagon/2019/06/27/here-are-the-biggest-weaknesses-in-americas-defense-sector/

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