14 décembre 2024 | International, C4ISR

Freeland’s FES likely to focus on border security, tariffs and economy, say insiders

“I don’t think that the coffers are overflowing with extra funds for extra spending, but I think because of president-elect Trump’s comments and the tariff threats and the comments regarding the border, we’re going to see…actual spending that probably wasn’t planned for enhanced enhanced border pressures,” said former Liberal staffer Stevie O’Brien.

https://www.ipolitics.ca/news/freelands-fes-likely-to-focus-on-border-security-tariffs-and-economy-say-insiders

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  • Romania set to choose four new corvettes, frigate upgrade

    25 octobre 2018 | International, Naval

    Romania set to choose four new corvettes, frigate upgrade

    Richard Scott, London and Luca Peruzzi, Genoa - Jane's Navy International Romania's Ministry of Defence is nearing a decision on the procurement of new multirole corvettes after receiving final bids at the beginning of October from Damen Schelde Naval Shipbuilding of the Netherlands, Italy's Fincantieri, and France's Naval Group. The EUR1.6 billion (USD1.85 billion) programme covers the acquisition of four corvettes, as well as the combat system modernisation of the Romanian Navy's two ex-UK Royal Navy Type 22 frigates Regina Maria and Regele Ferdinand . A source selection is scheduled for 26 October, although industry sources suggest this could slip by a number of weeks. Romania's requirement calls for a 2,500-tonne class multipurpose ship with capabilities across anti-submarine warfare, anti-surface warfare, anti-air warfare, electronic warfare, naval gunfire support, and search and rescue. The design is also required to provide aviation facilities suitable for an IAR 330 Puma 10-tonne helicopter and a shipborne unmanned aircraft system. In line with Romanian stipulations for local industry participation, all three contenders are proposing build and in-service support in conjunction with subsidiaries or partners based in country. Romania has asked for the first corvette to be delivered inside three years, with the programme to be completed in seven years. Damen Schelde Naval Shipbuilding is bidding a variant of its SIGMA 10514 design with sister yard Damen Shipyards Galati. To meet the Romanian requirement, Daman has specified a Thales Nederland combat management system (CMS)/sensor fit, the Raytheon Evolved SeaSparrow Missile System and Boeing Harpoon Block II anti-ship missiles. The underwater warfare suite would be provided by General Dynamics Mission Systems-Canada. Fincantieri, which owns the Vard Braila and Tulcea shipyards in Romania, is offering a customised variant of the Abu Dhabi corvette previously built for the United Arab Emirates. It is likely that Vard Braila would be the focal point for both construction and in-service support if Fincantieri is selected. https://www.janes.com/article/83937/romania-set-to-choose-four-new-corvettes-frigate-upgrade

  • DARPA Explores New Computing Architectures to Deliver Verifiable Data Assurances

    17 janvier 2019 | International, C4ISR, Sécurité

    DARPA Explores New Computing Architectures to Deliver Verifiable Data Assurances

    Program seeks to create new software and hardware architectures that provide physically provable assurances around data security and privacy Whether a piece of information is private, proprietary, or sensitive to national security, systems owners and users have little guarantees about where their information resides or of its movements between systems. When a user enters information on a phone, for example, it is difficult to provably track that the data remains on the phone or whether it is uploaded to a server beyond the device. The national defense and security communities are similarly left with few options when it comes to ensuring that sensitive information is appropriately isolated, particularly when it's loaded to an internet-connected system. “As cloud systems proliferate, most people still have some information that they want to physically track – not just entrust to the ether,” said Walter Weiss, DARPA program manager. “Users should be able to trust their devices to keep their information private and isolated.” Keeping a system completely disconnected from all means of information transfer is an unrealistic security tactic. Modern computing systems must be able to communicate with other systems, including those with different security requirements. Today, commercial and defense organizations often leverage a series of air-gaps, or breaks between systems, to keep the most sensitive computing devices and information secure. However, interfaces to such air-gapped systems are typically added in after the fact and are exceedingly complex, placing undue burden on systems operators as they implement or manage them. To create scalable solutions that provide safe, verifiable methods of tracking information and communications between systems, DARPA launched the Guaranteed Architecture for Physical Security (GAPS) program. The goal of GAPS is to develop hardware and software architectures that can provide physically provable guarantees around high-risk transactions, or where data moves between systems of different security levels. DARPA wants to ensure that these transactions are isolated and that the systems they move across are enabled with the necessary data security assertions. The intended outputs of this program are hardware and software co-design tools that allow data separation requirements to be defined during design, and protections that can be physically enforced at system runtime. GAPS is divided into three research areas that will address: 1) the creation of hardware components and interfaces; 2) the development of software co-design tools; and, 3) the integration of these components and tools, as well as their validation against exemplar Department of Defense (DoD) systems. The new hardware components and interfaces are designed to provide system designers with a library of hardware tools to securely isolate data during transactions. The software co-design tools could someday allow developers to easily employ GAPS hardware components without requiring changes to their existing development processes and frameworks. Finally, the integration and validation of the hardware and software architectures on DoD systems could be used to demonstrate the capability and maturity of the GAPS approach for the kinds of problems DoD system integrators currently face, and expect to see in the future. Commercializing the resulting technologies is also an objective of the program. The verifiable security properties created under GAPS may also help create safer commercial systems that could be used for preserving proprietary information and protecting consumer privacy. GAPS is part of the second phase of DARPA's Electronics Resurgence Initiative (ERI) - a five-year, upwards of $1.5 billion investment in the future of domestic, U.S. government and defense electronics systems. Under ERI Phase II, DARPA is exploring the development of trusted electronics components, including the advancement of electronics that can enforce security and privacy protections. GAPS will help address the DoD's unique requirements for assured electronics while helping to move forward ERI's broader mission of creating a more robust, secure and heavily automated electronics industry. DARPA will hold a Proposers Day on January 23, 2019 from 9:00am to 2:30pm (EST) at the DARPA Conference Center, located at 675 North Randolph Street, Arlington, Virginia 22203, to provide more information about GAPS and answer questions from potential proposers. For details on the event, including registration requirements, please visit: http://www.cvent.com/events/gaps-proposers-day/event-summary-34cbadc0ab2248bb860db3df8223a2f6.aspx. A Broad Agency Announcement that fully describes the GAPS program structure and objectives can be found here: https://www.fbo.gov/index?s=opportunity&mode=form&id=cfecfe762954149924ec59c95ec6a7b8&tab=core&_cview=1. https://www.darpa.mil/news-events/2019-01-16

  • Raytheon developing microscopic bomb detector

    13 novembre 2019 | International, Sécurité

    Raytheon developing microscopic bomb detector

    Cambridge, Mass., November 12, 2019 /PRNewswire/ - Raytheon (NYSE: RTN) is using synthetic biology science to create a new method for detecting buried explosives, using bacteria as sensors. Under a contract from the U.S. Defense Advanced Research Projects Agency, Raytheon and partner Worcester Polytechnic Institute will program two bacterial strains to monitor ground surfaces for explosive materials. The first strain will detect the presence or absence of explosives buried underground. If the first strain detects explosives, the second strain will produce a glowing light on the ground's surface. Remote cameras or unmanned aerial vehicles can then be used to survey large areas for the telltale luminescence. "We already know that some bacteria can be programmed to be very good at detecting explosives, but it's harder underground," said Allison Taggart, Ph.D. and principal investigator for the Bio Reporters for Subterranean Surveillance program at Raytheon BBN Technologies. "We're investigating how to transport the reporting bacteria to the required depth underground, and then pushing the luminescence up to the surface so it's easily visible." Synthetic biology combines principles of electrical engineering with computer science to modify DNA. The Subterranean Surveillance program is one example in which advances in synthetic biology are being used to develop sensors that can reveal a variety of subterranean phenomena at a distance. "Using bio sensors underground could help us save lives as well as detect threats to air quality and the water supply," Taggart added. "The modular design of the system we're developing will allow us to swap in different components as needed to detect various kinds of threats and contaminants." About Raytheon Raytheon Company, with 2018 sales of $27 billion and 67,000 employees, is a technology and innovation leader specializing in defense, civil government and cybersecurity solutions. With a history of innovation spanning 97 years, Raytheon provides state-of-the-art electronics, mission systems integration, C5I™ products and services, sensing, effects, and mission support for customers in more than 80 countries. Raytheon is headquartered in Waltham, Massachusetts. Follow us on Twitter. Raytheon Company Space and Airborne Systems BBN Technologies Cambridge, Mass. Media Contact Joyce Kuzmin +1.617.873.8120 joyce.kuzmin@raytheon.com SOURCE Raytheon Company View source version on Raytheon: http://raytheon.mediaroom.com/2019-11-12-Raytheon-developing-microscopic-bomb-detector

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