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Failures-tolerance and remedial strategies of a PWM multicell inverter

机译:PWM多单元逆变器的容错和补救策略

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The aim of this paper is to explain the intrinsic short-circuit tolerance of an IGBT multicell inverter when a commutation failure occurs. Such a failure may either be a wrong gate voltage (malfunctioning of the driver board, auxiliary power supply failure, dv/dt disturbance) or an intrinsic IGBT failure (over-voltage/avalanche stress, temperature overshoot). IGBT stresses are studied and show that no opening of the bonding can appear and consequently no risk of explosion. That is why, owing to the imbricated cells structure, an IGBT short-circuit failure may be withstood for a few switching periods, with nevertheless nonoptimized output waveforms. The design, the lab-test of a sensor able to perform monitoring as well as the failure diagnosis are also presented. This real-time diagnosis allows either a safe stop or a remedial control strategy based on the reconfiguration of the PWM modulator. The reconfiguration strategy enables decrease of internal stresses and optimization of the output shape. A fail-safe operating may be gained for high power applications.
机译:本文的目的是解释发生换向失败时IGBT多单元逆变器的固有短路容限。此类故障可能是栅极电压错误(驱动板故障,辅助电源故障,dv / dt干扰)或IGBT固有故障(过电压/雪崩应力,温度过冲)。研究了IGBT应力,结果表明不会出现键合断开的情况,因此没有爆炸的危险。因此,由于采用蜂窝状结构,在几个开关周期内仍可承受IGBT短路故障,但输出波形仍未优化。还介绍了能够进行监控以及故障诊断的传感器的设计,实验室测试。这种实时诊断可基于PWM调制器的重新配置实现安全停止或补救控制策略。通过重新配置策略,可以减少内部应力并优化输出形状。对于大功率应用,可以实现故障安全操作。

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