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Electret: A Remedy for Partial Discharge and Surface Flashover in Shipboard Power Applications

机译:驻防:船舶电源应用中的局部放电和表面闪络的补救措施

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Future Naval shipboard power and energy management systems must coordinate the operation of all major components with the use of power electronic converters (PECs). However, the high electric field, repetitive pulses, and fast dv/dt in the PEC-based power systems causes partial discharge (PD) and surface flashover that result in accelerated material aging and system failure. In this study, an electret-based dielectric approach is proposed to address these issues by reducing the PD magnitude and improving critical flashover voltage (CFO). The charge trapped on the electret films neutralizes the locally enhanced electric field around the triple points, sharp edges, and cavities. We experimentally demonstrate the effectiveness of the electret films in solving the dielectric issues by conducting PD measurements and surface flashover experiments under square voltage waveforms that represents PEC switching voltages.
机译:未来的海军船舶电源和能源管理系统必须使用电力电子转换器(PEC)协调所有主要组件的操作。 然而,基于PEC的电力系统中的高电场,重复脉冲和快速DV / DT导致局部放电(PD)和表面闪络,从而导致加速的材料老化和系统故障。 在该研究中,提出了一种基于驻极的介电方法来通过减小Pd幅度和改善临界闪络电压(CFO)来解决这些问题。 捕获在驻极体膜上的电荷中和在三重点,尖锐边缘和空腔周围的局部增强的电场。 我们通过在表示PEC开关电压的方形电压波形下进行PD测量和表面闪速实验,实验证明了驻极体膜在求解电介质问题时的有效性。

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