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January 5, 2021 | International, Aerospace

La Suisse a reçu l’approbation du Département d’État pour acheter des combattants

Le Département d'État américain a approuvé la vente potentielle d'avions de combat et du système Patriot à la Suisse.

Cette décision fait suite au référendum qui a eu lieu dimanche dernier en Suisse. Lors d'un vote national, les Helvètes ont accepté d'acheter de nouveaux avions de combat pour remplacer les machines Northrop F-5E / F Tiger II et Boeing F / A-18C / D Hornet en service.

Deux fournisseurs d'outre-mer et trois européens se sont disputés le contrat. Les États-Unis proposent à la Suisse des avions Lockheed Martin F-35A Lightning II et Boeing F / A-18 Super Hornet. En prévision d'une éventuelle décision, les Américains ont déjà accepté d'exporter lesdites armes. Dans le cas des avions F-35A, on parle de la vente potentielle de 40 machines, ainsi que de pièces détachées et d'armes, pour un montant d'environ 6,58 milliards de dollars. 40 chasseurs F / A-18E / F Super Hornet avec un package similaire ont été évalués à 7,45 milliards de dollars.

Parallèlement, le département d'État américain a également approuvé la vente de systèmes de missiles de défense aérienne et antimissile Patriot à la Suisse. Cinq batteries sont évaluées à 2,2 milliards de dollars.

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https://www.mercatoshow.com/la-suisse-a-recu-lapprobation-du-departement-detat-pour-acheter-des-combattants/

On the same subject

  • Next-gen RFID could improve how vehicles get to the battlefield

    September 5, 2018 | International, C4ISR

    Next-gen RFID could improve how vehicles get to the battlefield

    By: Adam Stone With incredible volumes of material on the move – think: arms and munitions, supplies, vehicles – the military quite simply needs a better way to track its stuff. “We hear a lot of concerns about getting in-transit visibility in the last tactical mile, from the supply point to the end user,” said Jim Alexander, product lead for automated movement and identification solutions in PEO EIS – Enterprise Information Systems. “We are working with our partners and with transportation command to gather up the requirements for the next generation of in-transit visibility for DoD.” At the heart of transit tracking today is radio-frequency identification (RFID), which allows logisticians to tag and track goods on the move. But RFID has its limitations: It's infrastructure intensive and not globally available. Military planners are looking to do better. Falling short RFID technology took a big step forward about 20 years ago with the widespread adoption of “active RFID.” Rather than scan individual items by hand, active RFID uses a fixed scanner to monitor entire lots. You'll see this equipment at airports and at the gates of military installations. But active RFID isn't an ideal solution. “It consists of a dome-shaped reader on a pole, connected to power and ethernet. So you are running power lines and communication lines, and if the reader goes down someone has to go out and physically service it,” said Rosemary Johnston, senior vice president of government at solutions provider Savi. The company is sole provider for the DoD's RFID-IV contract, which has a $102 million ceiling. “Each reader costs a couple of thousand dollars, plus the cost of hooking it up, running wires via trenches. It becomes a major construction investment project,” said Johnston, a former chief master sergeant with the U.S. Air Force. In addition, active RFID equipment isn't necessarily well-suited to today's highly agile expeditionary fighting style. “The military doesn't know where the next fight is going to be, so they use portable deployment kits rather than do this massive construction, but even those are heavy ― the lightest weighs 25 pounds ― and they require good satellite coverage. It becomes very resource constrained,” she said. With the next-gen RFID contract, the military envisions a better way of doing business. A cellular solution Satellite-readable RFID tags offer some relief, as they expand the military's reach without requiring extensive additional overhead. But satellite time is costly. Savi's emerging solution would leverage widely available cellular signals as a new means to capture and communicate RFID information. Johnston describes early trials of cellular RFID in Africa, where materials tracking has been a perennial problem. U.S. and European forces have just six fixed RFID readers on the entire continent, making supplemental coverage an urgent need, she said. “We have used cellular technology in Africa with a commercial company very successfully for the past three or four years. The networks we would use on the military side would be very similar to what this commercial customer uses, so we believe that represents a great opportunity for Africa Command,” she said. The switch to cellular isn't technically complicated: military planners would need to add a cellular module to the existing RFID tag. That module could then be programmed to automatically report location status to the military's in-transit visibility server. High-value cargo might report hourly, whereas more mundane supplies could be set to check in daily or every couple of days, in order to conserve battery life in the RFID tag. At PEO-EIS, Alexander said he sees strong potential in the technology. With a cellular system, “you could get a much more granular look, a more detailed look at where my stuff is,” as compared to relying on fixed checkpoints, he said. “If you have sensitive cargo you can know where it is every hour on the hour, as opposed to waiting for that cargo to pass by a fixed site.” Some technical details still need to be worked out in order to implement a commercial-grade cellular solution within the military. For example, “you don't want to have anything in the device that would trigger a static charge if you are working around ammunition,” Johnston noted. “We are working through that process right now.” https://www.c4isrnet.com/it-networks/2018/09/04/next-gen-rfid-could-improve-how-vehicles-get-to-the-battlefield

  • When it comes to network innovation, we must protect the data ‘pipes’

    February 24, 2023 | International, C4ISR

    When it comes to network innovation, we must protect the data ‘pipes’

    Because encryption has a shelf life, military networks still need to protect the data pipes that support the warfighter.

  • The Navy needs industry to tackle software-defined networks, data sharing

    October 8, 2020 | International, Naval, C4ISR

    The Navy needs industry to tackle software-defined networks, data sharing

    Andrew Eversden WASHINGTON — The U.S. Navy needs to quickly modernize its fleet's network in order to be prepared for future fights, but one of the “greatest impediments” to that effort is that 5frwcgydtqr5s4eathe hardware inside ships requires hull cuts to be upgraded, a top Navy IT official said Monday. “These platforms need to be water-tight which means our entry points are small. The equipment that needs to be upgraded inside the hulls often requires hull cuts,” said Rear Adm. Susan BryerJoyner, Navy cyber security division chief in the Office of the Chief of Naval Operations. “That challenges our ability to pivot quickly in order to upgrade the traditional hardware that [delivers] the capabilities we're trying to provide to the warfighter.” The key to modernization is to get around the hull cuts, BryerJoyner said Wednesday at the AFCEA NOVA Naval IT Day. This is a time-consuming process that has long irked the Navy. Instead, the service is turning to industry for help getting around the large hardware requirements of traditional networking capabilities. BryerJoyner said that the Navy's future lies in software-defined networking. Software-defined networking relies on software applications for network management. “We need to get to software defined networks. We know we need to be able to share data more seamlessly across the Navy. The challenge is, how do we come up with modular platforms that don't require hull cuts in order for us to be able to swap in and out on board the ship,” she said. “That's honestly one of the greatest impediments to modernization.” She also added that the service is seeking help from industry for data sharing. Like the other services, Navy ships must be able to pass data in denied and degraded environments, whether that's caused by the weather, adversaries or the poor satellite connection. The service, she said, must adjust to a state of operations where applications do not have constant connectivity. The Navy also needs to understand if the data needs to be shared just locally aboard a ship or if it needs to be aggregated in some form to be shared with the rest of a strike group or across a theater, she said. Data sharing capabilities across the theater will also be a critical component for Joint All-Domain Command and Control, a major push by the services to connect sensors and shooters across domains. Tactical cloud computing in remote environments will be a cornerstone piece to data sharing. Speaking on the same webinar, Navy Chief Information Officer Aaron Weis said the shift to cloud, driven in part by the ongoing COVID-19 pandemic, was currently the top priority. But for tactical cloud, Weis said, “there's no better use case for tactical cloud than a ship afloat or an expeditionary marine force.” “If the end state is ‘I'm not going to be able to securely move data from anywhere to anywhere,' well, now we're back to that modernization and the network discussion," Weis said. https://www.c4isrnet.com/battlefield-tech/it-networks/2020/10/07/the-navy-needs-industry-to-tackle-software-defined-networks-data-sharing/

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