8 avril 2024 | International, C4ISR

CISO Perspectives on Complying with Cybersecurity Regulations

Navigating cybersecurity compliance just got easier. Our latest blog taps into the wisdom of CISOs to share strategies for managing data security requ

https://thehackernews.com/2024/04/ciso-perspectives-on-complying-with.html

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  • Musk Tells USAF Fighter Era Is Over

    2 mars 2020 | International, Aérospatial

    Musk Tells USAF Fighter Era Is Over

    Lee Hudson ORLANDO, Florida—Billionaire entrepreneur and SpaceX founder Elon Musk has told the U.S. Air Force the fighter era is over. “The really dangerous future” is autonomous drone warfare, Musk said Feb. 28 during the annual Air Warfare Symposium here. Musk said he does not necessarily like this idea but it will become reality. Another controversial opinion he offered is that the Lockheed Martin F-35 should have a competitor. A few hours after his presentation, Musk elaborated on Twitter: “The competitor should be a drone fighter plane that's remote controlled by a human, but with its maneuvers augemented by autonomy. The F-35 would have no chance against it.” Over the next five years, artificial intelligence will be the most transformative technology to shape the space industry, Musk says. Accordingly, he encourages young people to study physics and computer science. The Pentagon continues to invest in this technology and is proposing that a substantial amount of its research and development dollars go toward artificial intelligence. Musk warns if the U.S. does not invest heavily in space it will fall behind adversaries, but said establishing a Space Force is a step in the right direction. The nation must rapidly innovate and instill the idea that failure is acceptable, he added. If the U.S. military does not let its people innovate and fail, Musk cautions, the nation may fall behind when developing future technology. For example, when SpaceX developed its Starlink constellation it started manufacturing satellites while still evolving the design. This helped the team discover what parts were difficult to build and redesign those sections for easier production. https://aviationweek.com/shows-events/air-warfare-symposium/musk-tells-usaf-fighter-era-over

  • The US Air Force Is Adding Algorithms to Predict When Planes Will Break

    16 mai 2018 | International, Aérospatial

    The US Air Force Is Adding Algorithms to Predict When Planes Will Break

    The airlines already use predictive maintenance technology. Now the service's materiel chief says it's a “must-do for us.” The U.S. Air Force has started to use algorithms to predict when its aircraft will break, part of an effort to minimize the time and money they consume in the repair shop. The use of predictive analytics has been blazed by airlines, which monitor their fleets' parts in an effort to replace broken components just before — and crucially, not after — they break. “I believe it is a must-do for us,” said Gen. Ellen Pawlikowski, the head of Air Force Materiel Command, the arm of the Air Force that oversees the maintenance of its planes. She spoke Tuesday at a Defense Writers Group breakfast in Washington. “We see this as a huge benefit.” If the Air Force could reduce the risk of unexpected breakage — and the attendant need to fly replacement parts and repair crews around the globe — it could reduce costs and boost mission effectiveness. It could also increase the usefulness of the current fleet by reducing the number of aircraft that need to be be held in reserve as backups. It starts with gathering data, such as the temperature of engine parts or the stresses on the airframe. “We are trying to leverage what we already get off of airplanes, as opposed to trying to go in and put instruments in places,” Pawlikowski said. “It turns out there's quite a bit that's there, but it may not be a direct measurement. In order to measure the temperature in this one particular spot, I'm getting information somewhere else.” Artificial intelligence and machine learning can then determine patterns. The general said the Air Force has been learning a lot from Delta, the world's second-largest commercial airline. “Delta has demonstrated the effectiveness of predictive maintenance in dramatically reducing the number of delays to flights due to maintenance,” she said. Over the past three years, Air Mobility Command — the arm of the Air Force that oversees all of its large cargo planes and aerial refueling tankers — has been organizing the data it collects on some of its planes. It has started using the predictive maintenance technology on its massive C-5 airlifters. The Air Force is also using the technology on the B-1 bomber. “The B-1 is an airplane that we actually bought with a whole bunch of data that we weren't using,” Pawlikowski said. “We started to take that data in and start to analyze it....We're very excited about this because we see huge potential to improve aircraft availability and drive down the cost.” She said she “was impressed when I saw some of the data that they were showing me.” The Air Force Lifecycle Management Center, which reports to Pawlikowski, has been funding these trials “by finding the loose change in the seat cushions,” she said. “As we have now shown some things ... we're seeing more and more interest in it and we're looking at increasing the investment in that to bring it further,” Pawlikowski said of the predictive maintenance. Last September, Gen. Carlton “Dewey” Everhart, head of Air Mobility Command, stressed his desire to use predictive maintenance, but warned it would cost money to get the datafrom the companies that make the planes. “In some cases, we'll be working this collaboratively with our industry partners,” Pawlikowski said Tuesday. “In other cases, we'll be doing it completely organically.” Air Mobility Command is also using predictive maintenance technology on the C-130J airlifter. The latest version of the venerable Lockheed Martin cargo plane — the J model — collects reams of data as it flies. In April, the Lockheed announced it was teaming with analytics firm SAS to crunch that data. “Everything we've been doing up to a certain point has been looking in the rear-view mirror with the data,” said Lockheed's Duane Szalwinski, a senior manager with his company's sustainment organization who specializes in analytics. “We're going to be able to look forward.” Lockheed is working on a six-month demonstration for Air Mobility Command; officials hope to be able to predict when certain parts will break before a flight. “If we're able to do that, it kind of changes the game in how you maintain and operate a fleet,” Szalwinski said. The data will give military planners a wealth of information about their aircraft that could help determine the best aircraft to deploy. “All those things you now know you have insights as to what you will need at the next flight, so you act accordingly,” he said. “Once we prove that we understand the probability of failure of these parts ... all things then become possible,” Szalwinski said. “Now it's not a matter of if, it's a matter of when. And if you know when, you can start acting accordingly. It would be a gamechanger in the way you manage a fleet.” Lockheed also wants to use the predictive maintenance tech on the F-35 Joint Strike Fighter. “The beauty of this is that the toolsets that we're developing, the models, how we clean the data, how we build the models, how we build the algorithms, all of that is not unique to a platform,” Szalwinski said. Still, instituting predictive maintenance practices fleet-wide is not going to happen overnight, particularly as since it will take time to understand the data, Pawlikowski said. Using this technology will require a cultural shift among maintenance crews because they'll be replacing parts before they actually fail, Pawlikowski said. “One of the big benefits is the reduction in the amount of time the airmen on the flightline spends troubleshooting a broken part” because “we will take them off before they break,” she said. https://www.defenseone.com/business/2018/05/us-air-force-adding-algorithms-predict-when-planes-will-break/148234/

  • U.S. Army Awards BAE Systems $318 Million for Next Generation M88A3 Recovery Vehicle

    18 septembre 2019 | International, Terrestre

    U.S. Army Awards BAE Systems $318 Million for Next Generation M88A3 Recovery Vehicle

    STERLING HEIGHTS, Mich.--(BUSINESS WIRE)--The U.S. Army has awarded BAE Systems a $318 million contract to upgrade M88 recovery vehicles to the M88A3 configuration designed for single-vehicle recovery of the latest version of the Abrams tank. The new M88A3 configuration eliminates the necessity of using two vehicles to raise and move the tanks, which have increased in weight in recent years. “As the U.S. Army's primary recovery vehicle, the M88 plays a critical role in the Army's Armored Brigade Combat Team,” said Dennis Hancock, recovery programs director for BAE Systems' Combat Vehicles business. “We have partnered closely with the Army and industry partners to develop a solution that addresses the single-vehicle recovery gap. We are proud to continue to support the Army's recovery needs by providing a next-generation solution to effectively rescue disabled tanks from the battlefield.” The M88A3 configuration features an upgraded powertrain, suspension and tracks, increasing the vehicle's speed, survivability and reliability. The M88A3 also features a seventh road wheel to reduce ground pressure and new hydropneumatic suspension units (HSUs) that enable the track to be locked out for greater control when recovering vehicles. The contract is being awarded under an Other Transactional Authority (OTA) acquisition model for upgrading the M88A2 Heavy Equipment Recovery Combat Utility Lift Evacuation System (HERCULES) to the next generation M88A3 HERCULES. BAE Systems' M88 family of recovery vehicles has provided the Army with unprecedented capability for recovering stranded or disabled combat vehicles since the 1960s. Due to incremental weight increases of the Army's Main Battle Tank over the years, the M88A3's predecessor, the M88A2, is currently unable to safely perform single-vehicle recovery of the Abrams. BAE Systems has invested Independent Research and Development to develop the M88A3 for three years in an effort to identify, understand, and provide solutions to return to single-vehicle recovery of the tank. The work will be performed at BAE Systems' facilities in York, Pennsylvania; Aiken, South Carolina, Anniston, Alabama, and Sterling Heights, Michigan. https://www.businesswire.com/news/home/20190917006045/en/

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