2 juin 2024 | International, Sécurité

Russian Hackers Target Europe with HeadLace Malware and Credential Harvesting

Russian GRU-backed threat actor APT28 is behind campaigns targeting networks across Europe with HeadLace malware and credential-harvesting web pages.

https://thehackernews.com/2024/05/russian-hackers-target-europe-with.html

Sur le même sujet

  • BAE Systems draws on motorsport experience to revolutionise cockpit development

    5 septembre 2018 | International, Aérospatial

    BAE Systems draws on motorsport experience to revolutionise cockpit development

    Nick Brown, London Key Points Williams has built a transformable cockpit structure to help BAE Systems experiment with training approaches and assess new cockpit technologies The cockpit tool is part of a holistic approach BAE Systems is taking to improve products and training solutions, using team-based lessons from motorsport BAE Systems is completing integration work on a new cockpit simulator, which it plans to use as a “sandpit for innovation”, chief technologist Julia Sutcliffe told Jane's . The cockpit structure was designed and built by Williams Advanced Engineering using skills and methodologies honed by the Williams Formula 1 team. According to Williams' technical director, Paul McNamara, the design was influenced by the modularity of construction and heavily metricated human factors teamwork that is required for fast pit stops. This modularity will enable engineers to reconfigure the physical cockpit layout, controls, and components to replicate legacy aircraft such as the Hawk and Typhoon, swiftly tailor them for a range of pilot builds, and to experiment with innovative layouts and systems that might feed into the new Tempest future fighter programme, using live feedback from aircrew and engineers. Rather than being used in a traditional aircrew training simulator role, Sutcliffe explained that the new cockpit is designed to be an experimental “workhorse” to support BAE Systems' technology development and product roadmaps for a range of technologies and platforms. She added that “we wanted the ability to experiment with layouts that we can quickly reconfigure – front and back – without having to duck underneath [the cockpit installation] and reconnect wires and all sorts of stuff.” Stuart Olden, business development manager at Williams, told Jane's that this was underpinned by motorsport experience, with the company's whole-system design approach “enabling the maintainers and the operators of the simulator to gain access quickly to particular components to swap in, swap out, and change elements around”. https://www.janes.com/article/82764/bae-systems-draws-on-motorsport-experience-to-revolutionise-cockpit-development

  • The Corps just slapped a counter-drone system on an MRZR all-terrain vehicle

    20 septembre 2018 | International, Aérospatial, Terrestre

    The Corps just slapped a counter-drone system on an MRZR all-terrain vehicle

    By: Shawn Snow In yet another sign the Corps is becoming increasingly concerned about air defense, the Corps decided to slap a counter-drone system on a Polaris MRZR all-terrain vehicle. It's called the Light Marine Air Defense Integrated System, or LMADIS, and it's comprised of two MRZR vehicles, a command node and a sensor vehicle. The system is a “maneuverable ground-based sensor, electronic attack, C2 [ command and control] system," 1st Lt. Ariel Cecil, the commander of the Low Altitude Air Defense detachment for Marine Medium Tiltrotor Squadron 166, said in a video posted by the 13th Marine Expeditionary Unit. The LMADIS can detect, track, identify and take down drones with electronic attack, according to Cecil. The MRZR counter drone system is currently deployed with the 13th Marine Expeditionary Unit where it recently participated in the Theater Amphibious Combat Rehearsal exercise in Djibouti. The Corps has been investing heavily in counter air and drone threats. It's an issue the Marines really haven't had to focus on for some time now. But as the Corps begins to face down more sophisticated hostile actors there's no guarantee Marines will always operate on a battlefield where they own the airspace. That means enemy air or drone attacks are now a reality the Corps must plan for. And increasingly, drone technology has found its way into the hands of terrorist groups and ragtag militias. ISIS fighters in Iraq and Syria have been known to weaponize small commercial quadcopter drones, dropping small munitions and hand grenades on Iraqi and partner nation forces. Even the Taliban in Afghanistan have gotten in the game, using small drones to film attacks on remote Afghan army outposts. But the big threat, according to the Commandant of the Marine Corps Gen. Robert B. Neller, is that adversaries will eventually learn how to control these small attack drones in massive swarms. “When you think about enemy air attacks, you think about jets and bombers and stuff,” Neller said at the Atlantic Council in April. “I think the real future in enemy air attack is going to be swarming drones.” So, the Corps has embarked on an ambitious plan to field a new suite of tech to bolster the Corps' air defense and counter drone capabilities. Two such systems are the Ground Based Air Defense-Transformation, or GBAD, and the Ground/Air Task-Oriented Radar, or G/ATOR. The GBAD systems is basically a detection system with laser weapon that can track and destroy drones, and it's mountable on the Corps' new Joint Light Tactical Vehicle or Humvee. That program is still undergoing testing and evaluation. The G/ATOR system has been in the Corps' arsenal since 2013 and it can detect rockets, mortars, artillery cruise missiles, and drones. The system is highly mobile making it integral to the Corps' distributed operations plan in the Pacific should a conflict come between the U.S. and China. And the Corps is also dishing out money to modify Stinger missiles as part of Service Life Extension Program. https://www.marinecorpstimes.com/news/2018/09/19/the-corps-just-slapped-a-counter-drone-system-on-an-mrzr-all-terrain-vehicle

  • Massive simulation shows the need for speed in multi-domain ops

    13 septembre 2019 | International, Aérospatial

    Massive simulation shows the need for speed in multi-domain ops

    FORT BENNING, Ga. – The Army tested its current and future equipment and warfighting methods for the potential next war in a massive, weeks-long simulated experiment that wrapped up recently. The Unified Challenge 19.2 experiment in August involved more than 400 participants working with 55 formations, 64 concepts and 150 capabilities, said Col. Mark Bailey, chief of the Army's Futures and Concepts Center's Joint Army Experimentation Division. The exercise ran Aug. 5-23. The simulation allowed Army leaders to “understand some of the complex patterns” that come out of the very complex systems that the United States and its adversaries are using, or developing to use, in future scenarios, Bailey told reporters this week. Much of what was tested couldn't be done in the real world because it hasn't been invented yet. For example, the Army's priorities in the Cross Functional Teams, from Future Vertical Lift to the Next Generation Combat Vehicle, are years away from fielding their platforms to the force, but through mathematical models and algorithms, researchers can plug in the day and play out a very detailed set of events. And the scope of the experiment dove deeper than what a typical tabletop exercise or wargaming scenario might. It allowed experimenters to see down to the small unit level and all the way up to the division and corps level what would likely play out if those formations collided with a near-peer competitor on foreign turf in a battle for territory. Chris Willis, the chief of the Maneuver Battle Lab's Model and Simulations Branch, said that for the first time, experimenters were able to use “nonlethal effects” in a simulation — electronic jamming, cyber-attacks and other methods — to support maneuver warfighting. That helped them gather data on concepts that Army leaders have been considering and theorizing about for years. But the multi-domain operations tools that were used in simulation were not being flung about the simulated battle space by random privates. Currently, the experiments look at having commanders below the brigade level aware of what MDO tools are at their disposal and how to get access to them when needed from higher echelons, which would likely house them. “The brigade would get access to some effects but those wouldn't rest inside of the brigade proper,” said Col. Chris Cassibry, director of the Maneuver Capabilities Development and Integration Directorate's Concepts Development Division. Cassibry emphasized that at this stage it's more important for the brigade commander to understand what's happening across the battlefield and use those effects to execute maneuver. For instance, the idea is that by enabling space and cyber assets, ground forces can have more freedom to maneuver. That was assumed to be the case but the complex simulation has put some data behind the concept for researchers to now analyze. A lot of what presented challenges that will consume commanders of the future was creating “windows of domain superiority,” Bailey said. Converging effects The basic plan is to converge effects, fires or non-kinetic or other types, which create that window. Commanders can plan for that and they do. But to do that at the speed that leaders believe MDO will unfold presents a whole other set of challenges. “Things happen so fast you must have this flexibility to do that in a moment's notice so that when you identify a target on a battlefield and don't have the artillery tube in range you have to quickly identify what else you have in range to hit that target,” Bailey said. And also, to understand that even if you switch “guns” quickly enough to another asset, drone, missile, electronic warfare, that means the new tool you've chosen will now not be used on another quickly emerging target or threat. That's where artificial intelligence must fill the gap, by offering up those menus of options for commanders and identifying the targets so that the human can then fire. Unified Challenge is a twice a year event; this was the second. Though it provides a lot of data, it's not something easily replicable. That means that in the near term, smaller experiments will unfold using some of the lessons learned from the larger experiment, further refining concepts and next steps on many of the ways in which the Army goes after MDO. The next step will be for the Futures and Concepts Center to compile a report of lessons learned and recommendations moving forward with some of the platforms, capabilities and doctrine. That will be delivered to the center director in the coming months, and once approved, spread across the Army to inform smaller scale experiments with portions of the larger effort to develop MDO doctrine and materiel, Bailey said. https://www.armytimes.com/news/your-army/2019/09/12/massive-simulation-shows-the-need-for-speed-in-multi-domain-ops

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