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to the specific local positive energy districts (PEDs). A PED generates more renewable energy than it consumes. But creating such a district is not just a technological task. It requires smart collaboration between
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communication capabilities for real-time monitoring of critical infrastructure. A key application area will be smart grid powerline monitoring, where you will work on: Designing and leading the development of low
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. The result is a challenging and inspiring setting in which socially relevant issues are addressed. Where to apply Website https://www.academictransfer.com/en/jobs/356811/phd-on-highly-robust-high-power
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, such as healthcare, space, mobility, human language technologies, agri-food, industry 4.0, and smart grids. This high level of knowledge transfer is achieved through both competitive research projects and
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, human-robot interaction, computer vision, sensor fusion, motion planning, drive systems, and autonomous navigation. Power Systems and Smart Grid Technologies Lead the transformation of electrical
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based at other campuses of the University About the Role This position is available under the Australian Economic Accelerator Innovate Smart Wind Turbine Blades project: Join a future-focused research
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to trick AI-based models, pay little attention to fake-normal data traffic generated by Generative Adversarial Networks (GAN). This PhD research will address a major vulnerability in AI based smart grids by
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, terahertz electronics and communications, wireless communications, cognitive radio and dynamic spectrum access, Internet of Things, big data and machine learning, smart grids and power electronics
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University of North Carolina at Charlotte | Charlotte, North Carolina | United States | about 16 hours ago
of batteries and their applications that will drive the next generation of autonomous vehicles, smart cities, and intelligence systems Vacancy Open to All Candidates Description of Work The University of North
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of cyber-physical systems is an enabler of critical technologies that potentially cause fatalities (e.g. crash of an automated vehicle) or huge economic costs (e.g. blackout of a smart grid). While there has