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February 23, 2021 | International, Aerospace, C4ISR

Thales : focus sur le système Syracuse IV

DÉFENSE

Thales : focus sur le système Syracuse IV

L'Usine Nouvelle consacre un article détaillé au nouveau contrat conclu par la DGA avec Thales, rendu public le 18 février, concernant Syracuse IV (SYstème de RAdioCommunication Utilisant un SatellitE), le réseau qui permet d'assurer l'ensemble des communications militaires entre la France et les unités déployées sur les thé'tres d'opérations 24h/24. Dans le cadre de ce contrat, d'un montant de 354 millions d'euros, Thales fournira les 200 antennes satellitaires qui équiperont les navires, les sous-marins et les véhicules blindés de l'armée française. La nouvelle technologie de transmission hautement sécurisée de Thales, baptisée « modem 21 », est au cœur du système Syracuse IV. Ce modem permet d'offrir des communications dix fois plus rapides par rapport à la génération précédente, et donnent la possibilité de réaliser des communications simultanément avec une centaine d'utilisateurs. Elles sont prévues pour résister au brouillage, aux tentatives de déchiffrement, et s'adaptent à la mobilité des militaires sur le terrain. « Les premières stations issues de ces contrats seront livrées à partir de la fin de l'année 2022 », a précisé la DGA dans son communiqué. Plusieurs sites de Thales bénéficieront des retombées liées à cette commande : Cholet (Maine-et-Loire), Gennevilliers (Hauts-de-Seine) et Brive (Corrèze). « Cela va contribuer à sécuriser 800 emplois chez Thales et autant chez nos sous-traitants », précise Marc Darmon, directeur général adjoint en charge de l'activité des systèmes d'information et de communication sécurisés pour Thales.

L'Usine Nouvelle du 23 février


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  • CAE and Rockwell Collins join forces to develop integrated Live, Virtual, Constructive training solutions

    November 27, 2017 | International, Aerospace

    CAE and Rockwell Collins join forces to develop integrated Live, Virtual, Constructive training solutions

    Companies to demonstrate integrated LVC-enabled capabilities at I/ITSEC 2017 Orlando, Florida, USA, November 27, 2017 - Today at the Interservice/Industry Training, Simulation and Education Conference (I/ITSEC), CAE and Rockwell Collins announced a collaborative agreement to develop integrated Live, Virtual, Constructive (LVC) training solutions. During I/ITSEC, CAE (Booth #1734) and Rockwell Collins (Booth #2201) will conduct several demonstrations of an integrated mission training exercise using fully connected, LVC training elements. A live-flying LVC-enabled L-29 aircraft, operated by the University of Iowa's Operator Performance Laboratory (OPL), will be networked with a variety of virtual simulators and constructive forces to demonstrate an integrated, joint, multi-dimensional mission training environment. The live, real-time LVC training exercises will take place at I/ITSEC at the following times: Tues., Nov. 28 - 12:30 to 1:15 p.m. and 2 to 2:45 p.m. Wed., Nov. 29 - 12:30 to 1:15 p.m. and 2 to 2:45 p.m. Virtual participants in the demonstration will include blue force F/A-18 aircraft simulators as well an E-2 aerial surveillance platform operated in the Rockwell Collins booth, networked to Naval Combat System Simulators (NCSS) and remotely piloted aircraft (RPA) desktop trainers running in the CAE booth. A variety of constructive elements representing enemy and friendly forces will be injected into the live and virtual training systems for the demonstration of immersive LVC training capabilities. Both CAE and Rockwell Collins will jointly conduct distributed command and control tasks during the exercise. "Integrated live, virtual, constructive training is becoming more critical as defense forces look to cost-effectively maintain readiness and prepare for operational missions," said Gene Colabatistto, group president, Defense & Security for CAE. "As a training systems integrator, we are focused on supporting our customers' training and readiness requirements and recognize that cooperation and collaboration will be necessary to deliver integrated LVC training capabilities." "As a recognized leader in aerospace solutions providing avionics for live assets and integrated virtual training systems and products, we'll be able to provide solutions to make LVC-enabled training more routine without boundaries, ultimately resulting in our military customers achieving optimal mission readiness," said Nick Gibbs, vice president and general manager of Simulation & Training Solutions at Rockwell Collins. The demonstration at I/ITSEC will showcase how synthetic environments built on different database standards can be correlated and interoperate as part of an integrated LVC training exercise. This includes the use of synthetic data onto the Rockwell Collins L-29 pilots' integrated Helmet Mounted Display (HMD). CAE and Rockwell Collins will also utilize the Distributed Interactive Simulation (DIS) and High-Level Architecture (HLA) industry standard networking protocols to link LVC assets. About CAE CAE's Defense & Security business unit focuses on helping prepare our customers to develop and maintain the highest levels of mission readiness. We are a world-class training systems integrator offering a comprehensive portfolio of training centers, training services and simulation products across the air, land, naval and public safety market segments. We serve our global defense and security customers through regional operations in Canada; the United States/Latin America; Europe/Africa; and Asia-Pacific/Middle East, all of which leverage the full breadth of CAE's capabilities, technologies and solutions. CAE is a global leader in training for the civil aviation, defense and security, and healthcare markets. Backed by a 70-year record of industry firsts, we continue to help define global training standards with our innovative virtual-to-live training solutions to make flying safer, maintain defense force readiness and enhance patient safety. We have the broadest global presence in the industry, with over 8,500 employees, 160 sites and training locations in over 35 countries. Each year, we train more than 120,000 civil and defence crewmembers and thousands of healthcare professionals worldwide. www.cae.com Follow us on Twitter: @CAE_Inc and @CAE_Defence About Rockwell Collins Rockwell Collins (NYSE: COL) is a leader in aviation and high-integrity solutions for commercial and military customers around the world. Every day we help pilots safely and reliably navigate to the far corners of the earth; keep warfighters aware and informed in battle; deliver millions of messages for airlines and airports; and help passengers stay connected and comfortable throughout their journey. As experts in flight deck avionics, cabin electronics, cabin interiors, information management, mission communications, and simulation and training, we offer a comprehensive portfolio of products and services that can transform our customers' futures. To find out more, please visit www.rockwellcollins.com. Follow us on Twitter: @RockwellCollins http://www.cae.com/CAE-and-Rockwell-Collins-join-forces-to-develop-integrated-Live-Virtual-Constructive-training-solutions/?contextualBUID=103

  • NATO’s ‘startup’ charts a bold future in maritime unmanned systems

    May 6, 2020 | International, Aerospace, Naval

    NATO’s ‘startup’ charts a bold future in maritime unmanned systems

    By: Michael D. Brasseur , Rob Murray , and Sean Trevethan Last December, at their meeting in London, NATO leaders declared: “To stay secure, we must look to the future together. We are addressing the breadth and scale of new technologies to maintain our technological edge, while preserving our values and norms.” These two sentences were, in part, a nod to a significant piece of work the alliance is undertaking within the broader mandate of alliance innovation — NATO's Maritime Unmanned Systems Initiative. Granted, on its own this sounds both technical and narrow within the context of emerging technology, a context that includes: artificial intelligence, data, space, hypersonic weapons, bio technologies, quantum research, autonomy and more. So why are maritime unmanned systems relevant now? Simply put, developing the numbers of manned submarines, aircraft and ships required to keep pace with potential adversaries is simply not economically viable (almost $3 billion per Virginia-class U.S. submarine). Not since the Cold War has NATO needed the volume of maritime forces to protect our seas and oceans from would-be foes. NATO's areas of interest are expanding. As climate change affects the Arctic, new maritime routes are being created, which Russia in particular is exploiting with its submarines and ships. This matters because it exposes a new flank on NATO's high-north periphery, and if left unchecked is a potential vulnerability whilst also being a potential opportunity; this, coupled with an increasing need to protect our undersea data infrastructure means NATO's geostrategic responsibilities continue to grow. Therefore, if allies are to reinforce NATO's maritime posture, deter Russian aggression, guard against Chinese activity, and protect both critical national infrastructure and our sea lines of communication, NATO must do things differently and at the speed of relevance. NATO's Maritime Unmanned Systems Initiative was agreed by 13 defense ministers in October 2018. Since then, the initiative's success has attracted the participation of three more allies and garnered significant interest from all of NATO's maritime nations. The political agreement struck in 2018 provided the mandate for NATO to bring together disparate strands of common work ongoing within nations. NATO, acting as a network, enabled allies to become greater than the sum of their parts. The focus is threefold: utilize world-leading research to increase allied interoperability between conventional forces and unmanned drones; establish new tactics for our sailors to truly leverage these technologies; and develop secure digital communications for military drones across all domains (air, sea and land). Addressing these priorities together will enable this effort to be scaled across the alliance, at pace. To date, the speed of this effort has been breathtaking. So much so that even the United States and the United Kingdom — two allies who have invested the most in this area — are using the NATO initiative as a catalyst for their own national efforts. The last 12-plus months has seen the creation of a NATO project office, a governance body, as well as the planning and successful execution of the world's largest and most complex maritime unmanned systems exercise off the Portuguese coast in September 2019. This event brought together the very best from our navies, industry, scientific institutes and academia. The results were hugely impressive, with many “world firsts” including maritime unmanned systems augmenting conventional forces through multiple scenarios. We now have vast swaths of insight and information to start achieving those three goals of improving interoperability, enhancing our tactics and developing secure communications. The goal of improving allied interoperability is actually about enhancing standards. A topic often overlooked at the policy level but critical to the DNA of the NATO alliance. Standards drive interoperability, which in turn drives readiness, which ultimately aids deterrence. As NATO leads the development of new technologies, so too must come new standards that our industries and military can implement. Open architectures will be key, but allies and industry need to realize that we need to solve problems — not address requirements. No perfect solution will ever be delivered on the first attempt. The alliance will need to both innovate and iterate on operations in order to maintain advantage. This may be a cultural shift to some acquisition purists who are used to developing complex warships over 20-plus-year time frames. However, the challenge remains our ability to scale. With this project we have an agile global team functioning across multiple national and allied bureaucracies, each with their own culture and ways of working. Through engagement and investment, this team is yielding disproportionate results. Indeed, 2019 demonstrated what can be done with some imagination, effort and focus. But continual growth at speed will require faith by allies to maintain the course. Such is the nature of true change and innovation. There is a lot to do, and the stakes are high. Near-peer competitors are once again very real. Despite the global lockdown caused by the new coronavirus, COVID-19, the initiative continues to progress through synthetic networks and simulation, driven by passion and intent. Our economy, our data and its infrastructure still need protecting, now more than ever. This effort strives to accelerate maritime unmanned systems into NATO's arsenal to patrol the vast swaths of ocean and offset evolving threats. Success will be seen because it is being built on allied nations' shared values and norms, the same values and norms that NATO leaders recognized in London last year. Michael D. Brasseur is the director of naval armaments cooperation for the U.S. mission to NATO. He is also the first director of NATO's “startup,” the Maritime Unmanned Systems Innovation and Coordination Cell. Rob Murray is the head of innovation at NATO Headquarters. Sean Trevethan is the fleet robotics officer of the British Royal Navy, working in the future capability division at Navy Command Headquarters in Portsmouth, England. https://www.defensenews.com/opinion/commentary/2020/04/20/natos-start-up-charts-a-bold-future-in-maritime-unmanned-systems

  • Air Force looks to use fleet’s largest cargo plane for medical evacuations

    December 31, 2018 | International, Aerospace

    Air Force looks to use fleet’s largest cargo plane for medical evacuations

    By WYATT OLSON | STARS AND STRIPES The Air Force is moving ahead to certify the cargo hold of its largest plane, the C-5M Super Galaxy, for use in medical evacuations for both casualties of war and victims of natural disasters. Nearly as long as a football field, the Super Galaxy has significantly more capacity than the C-17, the largest aircraft used by the Air Force for aeromedical evacuations in the cargo area. The Super Galaxy is certified for such evacuations using its passenger area, not its cargo hold. This month, the Air Force completed a two-year initiative to prepare, equip and test the Super Galaxy for the broader certification. Its cargo floor can accommodate 89 unstacked litters, twice as many as the C-17, which can fit 48 unstacked litters, according to a statement provided to Stars and Stripes by the Air Mobility Command. A C-130 can move only 15 patients on its cargo floor. A final proof-of-concept test for the Super Galaxy was recently successfully completed at Scott Air Force Base, Ill., and certification to support aeromedical evacuations could come as early as this summer. About 100 personnel were involved in the culminating test, with the C-5M and crew flying in from Travis Air Force Base, Calif. For the purposes of certification, the Super Galaxy was configured with a proprietary litter-stacking system that reduces the maximum number of stretchers its bare cargo area could hold. Under this configuration, the Super Galaxy “can safely move 244 ambulatory patients and has space for 40 litters,” Air Mobility Command said. The aeromedical evacuation squadron brought aboard its standard in-flight kits used for medical care, and a transportable galley and lavatory were also added. The Super Galaxy can carry a payload of nearly 135 tons, with enough cargo space to carry, say, two tanks, 16 Humvees and three Black Hawk helicopters. Without cargo, it has a range of 7,000 miles without the need for refueling. The Super Galaxy is an upgraded version of the legacy C-5, which was introduced in the 1960s. Its more powerful engines provide more thrust, shorter takeoffs and longer range. Full article: https://www.stripes.com/news/us/air-force-looks-to-use-fleet-s-largest-cargo-plane-for-medical-evacuations-1.562170

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