Back to news

September 11, 2024 | International, C4ISR, Security

Experts Identify 3 Chinese-Linked Clusters Behind Cyberattacks in Southeast Asia

Chinese-linked cyber espionage targets Southeast Asian governments, using sophisticated malware to infiltrate and steal sensitive data.

https://thehackernews.com/2024/09/experts-identify-3-chinese-linked.html

On the same subject

  • 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

  • B-21 Avionics Testbed Aircraft Now Operating, USAF Official Says

    August 14, 2020 | International, Aerospace

    B-21 Avionics Testbed Aircraft Now Operating, USAF Official Says

    Steve Trimble The U.S. Air Force has commissioned a flying testbed aircraft to test the avionics system and software for the Northrop Grumman B-21 bomber, a senior official said on Aug. 13. The first B-21 test aircraft is still being assembled in Palmdale, California, but the flying testbed allows the stealth bomber program to “buydown risk,” said Randall Walden, director of the Air Force's Rapid Capabilities Office, which is managing the program. “We have a flight test aircraft that we've been hosting some of these subsystems on,” Walden said. “We're doing it kind of in a parallel approach, working out some of the bugs with the software as well as the subsystems.” Walden, speaking to the Air Force Association's Mitchell Institute, did not identify the flying testbed, but his remarks come two months after the appearance of a green Boeing 737 owned by the Air Force with registration N712JM. The Lockheed Martin F-35 program also used a 737 to check out avionics and mission systems before test flights of the stealth fighter started in 2006. “When you can buydown risk with subsystems on even another platform, no matter what it is like you get into the air and use some of the software and work those bugs out it goes a long way,” Walden said. The Air Force expects to field the B-21 in the mid-2020s, about a decade after awarding the engineering and manufacturing development contract to Northrop in 2015. The development program remains on track, but Walden is eager to begin testing as soon as possible. “All of the tough critical designs, all of the hard engineering, is behind us,” Walden said. “I know we're not going to be immune from design flaws. We're going to have to work through those, and we're doing some of that today. I want to find out what those design deficiencies are as fast as I can to get on with the solution.” https://aviationweek.com/defense-space/aircraft-propulsion/b-21-avionics-testbed-aircraft-now-operating-usaf-official-says

  • Researchers Reveal ConfusedFunction Vulnerability in Google Cloud Platform

    July 25, 2024 | International, C4ISR, Security

    Researchers Reveal ConfusedFunction Vulnerability in Google Cloud Platform

    Tenable discloses a vulnerability in Google Cloud Functions, allowing unauthorized access to sensitive data and services

All news