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Variable-speed IGBT gate driver with loss/overshoot balancing for switching loss reduction

机译:具有损耗/过冲平衡的可变速度IGBT栅极驱动器,用于减少开关损耗

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This paper introduces a new method of IGBT switching loss reduction on the system level, while leaving the PWM scheme completely unchanged. The switching loss reduction is achieved by designing an IGBT gate driver that dynamically sets the IGBT gate current depending on feedback signals from IGBT current, IGBT voltage, phase load current, and DC link voltage if it is not constant in the application. Factors influencing switching losses will be demonstrated for two types of output driver stages: one with discrete switching speed setting and one with continuously variable switching speed. Comparing to other gate driver types with or without feedback aimed at keeping constant dv/dt, di/dt, and overshoots of IGBT voltage and current, the proposed gate driver not only ensures the operation of an IGBT in the safe operating area (SOA), but also improves the SOA utilization density by tracking the programmed voltage and current limits using peak-detection circuitry while minimizing the switching losses. Adaptive feedback control algorithms have been developed and verified by simulations.
机译:本文介绍了一种新的IGBT开关损耗减少方法,在系统级别,留下PWM方案完全不变。通过设计IGBT栅极驱动器来实现切换损耗,该IGBT栅极驱动器根据来自IGBT电流,IGBT电压,相位负载电流和DC链路电压的反馈信号,如果在应用中不恒定,则通过IGBT电流。影响切换损耗的因素将用于两种类型的输出驱动器级:一个具有离散开关速度设置的一个,具有连续变化的开关速度。与具有或无反馈的其他栅极驱动器类型相比,旨在保持恒定的DV / DT,DI / DT和IGBT电压和电流的过冲,所提出的栅极驱动器不仅可以确保安全操作区域(SOA)中的IGBT的操作,还通过跟踪使用峰值检测电路跟踪编程电压和电流限制的同时提高SOA利用密度,同时最小化开关损耗。通过模拟开发和验证了自适应反馈控制算法。

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