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Field
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can generate electromagnetic interference (EMI) that propagates through unexpected conducted and radiated paths. Conventional EMC measurements, typically performed at a single location and moment
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of society are creating increasingly complex electromagnetic environments. Fast-switching power electronics in vehicles, buildings, hospitals and farms can generate electromagnetic interference (EMI
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. Significant* experience in switching behavior, losses, and electromagnetic interference mitigation strategies for high frequency operation. Significant* experience in developing compact, thermally robust
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introduce challenges related to electromagnetic interference (EMI) and motor winding degradation. Novel converter topologies, EMI mitigation strategies, and advanced winding technologies will therefore be
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challenges related to electromagnetic interference (EMI) and motor winding degradation. Novel converter topologies, EMI mitigation strategies, and advanced winding technologies will therefore be investigated
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associated with the initial stages of AMD progression. FHRs accumulate in the blood vasculature underlying the outer blood/retinal barrier and are believed to interfere with the regulatory functions
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to how latency, interference, reliability, incomplete observations, and limited wireless resources affect sensing, inference, and decision-making, and how communication and sensing resources can be
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, without significant interference, owing to their orthogonality. These modes can therefore be modulated independently, increasing the maximum transfer rate in proportion to the number of modes used. In
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to how latency, interference, reliability, incomplete observations, and limited wireless resources affect sensing, inference, and decision-making, and how communication and sensing resources can be
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) applications. The successful candidate will contribute to advancing Canada’s national capabilities in spectrum monitoring, interference mitigation, and drone detection technologies within the National Research