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Optical Modulation for High Power Systems: Potential for Electromagnetic-Emission, Loss, and Stress Control by Switching Dynamics Variation of Power Semiconductor Devices

机译:用于高功率系统的光学调制:通过切换功率半导体器件的动态变化来电磁 - 发射,损耗和应力控制的电位

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Dynamic control of electromagnetic-emission, efficiency, and stress of switching power systems using optically-modulated and galvanically isolated gate control of power semiconductor devices (PSDs) is outlined and experimentally demonstrated at a scaled power level. This is achieved by modulating the switching dynamics of a PSD using an optically triggered power transistor (OTPT), which controls the gate excitation of the PSD. An important aspect regarding scalability of the same concept towards higher power application is the controllability of the PSD onset delay (which can be optically modulated, and as demonstrated, in the proposed device concept) particularly for series/parallel connected device configurations for high voltage and current applications.
机译:使用光学调制和电流隔离栅极控制的电磁排放,效率和应力的动态控制功率半导体器件(PSDS)的电源系统(PSDS)进行了实验,并以缩放功率水平进行了实验。这是通过使用光学触发的功率晶体管(OTPT)调制PSD的开关动态来实现的,这控制了PSD的栅极激励。关于较高功率应用的相同概念的可扩展性的一个重要方面是PSD发作延迟的可控性(可以光学调制,并且如在所提出的设备概念中所示),特别是对于高电压的串联/并联连接设备配置当前应用程序。

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