5 mai 2023 | International, Naval

Major contract for Rheinmetall: Australian Navy orders MASS ship protection systems worth ?125 million

Total sales volume could potentially come to A$1 billion (approx. ?610 million), as the contract includes an option for equipping Australia?s entire fleet

https://www.epicos.com/article/761413/major-contract-rheinmetall-australian-navy-orders-mass-ship-protection-systems-worth

Sur le même sujet

  • DARPA: Five Teams of Researchers Will Help DARPA Detect Undersea Activity by Analyzing Behaviors of Marine Organisms

    18 février 2019 | International, C4ISR

    DARPA: Five Teams of Researchers Will Help DARPA Detect Undersea Activity by Analyzing Behaviors of Marine Organisms

    Goliath grouper, black sea bass, and snapping shrimp, along with bioluminescent plankton and other microorganisms, are set to be the unlikely heroes of DARPA's Persistent Aquatic Living Sensors (PALS) program. Five teams of researchers are developing new types of sensor systems that detect and record the behaviors of these marine organisms and interpret them to identify, characterize, and report on the presence of manned and unmanned underwater vehicles operating in strategic waters. This new, bio-centric PALS technology will augment the Department of Defense's existing, hardware-based maritime monitoring systems and greatly extend the range, sensitivity, and lifetime of the military's undersea surveillance capabilities. DARPA first announced the PALS program in February 2018 with the goal of incorporating biology into new solutions for monitoring adversary movements across the seemingly endless spaces of the world's oceans and seas. Ubiquitous, self-replicating, self-sustaining sea life is adaptable and highly responsive to its environment, whereas maritime hardware is resource intensive, costly to deploy, and relatively limited in its sensing modalities. According to PALS program manager Lori Adornato, “Tapping into the exquisite sensing capabilities of marine organisms could yield a discreet, persistent, and highly scalable solution to maintaining awareness in the challenging underwater environment.” The DARPA-funded PALS teams must develop or apply technologies to record stimulus responses from observed organisms, and develop combined hardware and software systems that interpret those responses, screen out false positives, and transmit analyzed results to remote end users. The teams' solutions will incorporate technologies such as hydrophones, sonar, cameras, and magnetic, acoustic, and kinetic sensors. The team led by Northrop Grumman Corporation, under principal investigator Robert Siegel, will record and analyze acoustics from snapping shrimp and optical activity by bioluminescent organisms. The team led by the Naval Research Laboratory, under principal investigator Lenny Tender, will integrate microbial organisms into a sensing platform to detect and characterize biological signals from natural microorganisms that respond to the magnetic signatures of underwater vehicles. The team led by Florida Atlantic University, under principal investigator Laurent Cherubin, will record and analyze vocalization cues from goliath grouper in tropical and subtropical environments. The team led by Raytheon BBN Technologies, under principal investigator Alison Laferriere, will use snapping shrimp as sources of opportunity for long-range detection, classification, and tracking of underwater vehicles. The team led by the University of Maryland Center for Environmental Science, under principal investigator David Secor, will tag black sea bass with sensors to track the depth and acceleration behaviors of schools of fish that are perturbed by underwater vehicles. DARPA is also funding the Naval Undersea Warfare Center, Division Newport, under principal investigator Lauren Freeman, to develop a seafloor system that uses a hydrophone array and acoustic vector sensor to continuously monitor ambient biological sound in a reef environment for anomalies. The system will analyze changes in the acoustic signals radiated by the natural predator-avoidance response of coral reef ecosystem biota, which could offer an indirect mechanism to detect and classify underwater vehicles in near-real time. DARPA conceived of PALS as a four-year research program with the expectation that researchers will be able to publish results for review by the broader scientific community. However, if DARPA identifies any of the data, results, or technical specifications as controlled unclassified information, DARPA will require the PALS researchers to protect them to prevent proliferation outside of official channels. https://www.darpa.mil/news-events/2019-02-15

  • Scorpion : Griffon Command Post is qualified

    2 décembre 2020 | International, Terrestre

    Scorpion : Griffon Command Post is qualified

    Satory, France, November 26, 2020 - On 13 November 2020, the French Delegation for Armaments (DGA) qualified the command post vehicle (EPC) variant of the GRIFFON vehicle. At the same time, the first examples are being submitted for acceptance by the DGA's quality department at the Roanne site. Therefore, the three first GRIFFON EPC have been delivered to the Army technical section (STAT) which will continue the operational evaluation of this equipment with its rapid deployment within the regiments in sight. The GME (temporary grouping of companies) EBMR (Engins Blindés Multi-Rôles) comprised of Nexter, Arquus and Thales is fully mobilized on the production of the first 35 series GRIFFON EPCs to be presented to verification operations by the end of 2020. Ultimately, the SCORPION program calls for the acquisition of 333 units of this variant, half of which will be delivered by 2025. As a reminder, the SCORPION program aims to modernize the Army's combat capabilities and in particular to improve command through new information resources. The GRIFFON EPC can accommodate a pilot and a gunner in the front, and five soldiers in the rear of the vehicle. From an external point of view, the silhouette of the EPC does not differ from the VTT Félin variant (troop transport vehicle). Only the armament changes, with the integration on the roof of a new-generation T2 remotely operated turret armed with a 7.62mm caliber. Inside, on the other hand, the GRIFFON EPC is fully equipped to accommodate a command post: communication means, large screens, a board and a printer. This variant is designed to accommodate latest-generation electronic equipment for collaborative combat: the vetronics common to the SCORPION platforms, the CONTACT joint radio, the SCORPION Combat Information System (SICS), the ANTARES optronic system offering the crew a 360° vision of the environment, as well as a gunfire location detector (or SLA, for Acoustic Localization System). In addition, the air-conditioning system adapts to all environments to guarantee crew's comfort and the proper functioning of onboard electronics. Thanks to its level of protection and mobility, the EPC variant of the GRIFFON enables a command post to be deployed quickly at the heart of operations. The force commander can thus conduct an engagement or monitor the progress of a regimental or brigade-level action. The arrival of the GRIFFON EPC is complementary to the GRIFFON VTT Félin, with the goal of projecting a joint battle group (GTIA) into a foreign theatre of operations by 2021. Stéphane Mayer is delighted, on behalf of the GME formed by the three companies Arquus, Thales and Nexter (of which he is Chairman and CEO), that this new milestone has been reached on time: "this qualification marks a new stage in the modernization of the French Army's equipment". View source version on Nexter : https://www.nexter-group.fr/en/actualites/nos-dernieres-actualites/scorpion-griffon-command-post-qualified.html

  • The opposite of Silicon Valley: How Feds expect to use AI/ML

    2 mars 2023 | International, C4ISR

    The opposite of Silicon Valley: How Feds expect to use AI/ML

    The government is buying AI technology experimentally with the focus on research-based deals as opposed to hardware or software contracts.

Toutes les nouvelles