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architectures. The aim is to develop next-generation production systems that are sustainable, data-driven, and scalable. Subject description Cyber-Physical Systems focuses on integrated software and application
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role model in secure trustworthy AI by pioneering cyber resilience across the AI lifecycle. The research program focuses on four key themes: Trustworthy and Verifiable AI, Runtime Security Assurance
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and society. The vision is to make Sweden a role model in secure trustworthy AI by pioneering cyber resilience across the AI lifecycle. The research program focuses on four key themes: Trustworthy and
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role model in secure trustworthy AI by pioneering cyber resilience across the AI lifecycle. The research program focuses on four key themes: Trustworthy and Verifiable AI, Runtime Security Assurance
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role model in secure trustworthy AI by pioneering cyber resilience across the AI lifecycle. The research program focuses on four key themes: Trustworthy and Verifiable AI, Runtime Security Assurance
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/ LLMs; Cyber-physical systems security, e.g., in the fields of robotics, industrial plants, smart grids, automotive, drones, underwater robotics; Telecommunications security, e.g., in the fields of 5G/6G
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cyber-physical systems (CPS). ESLAB’s work spans advanced system design, dependable computing, and emerging applications in autonomous and safety-critical domains. As an associate professor in Cyber
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, membership inference), cybersecurity of generative AI / LLMs; Cyber-physical systems security, e.g., in the fields of robotics, industrial plants, smart grids, automotive, drones, underwater robotics
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. Subject description Cyber Security focuses on technical security aspects as well as protection of systems that are connected to the Internet and include protection of software, data, and hardware. Project