故障条件下电压源逆变器感应电机驱动的分析研究

J. Klima, M. Chomat, L. Schreier
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引用次数: 3

摘要

提高变频器系统的可靠性和容错性能对工业交流变频器的发展至关重要。本文通过分析模型研究了一种具有容错能力的感应电动机驱动。在检测到六步电压源逆变器运行中的故障分支后,电机由被称为四开关逆变器的转换器重新配置驱动,但性能降低。两种可能的操作模式,利用不同的方式(四或六次),只有四个可能的电压矢量可以使用。基于电压矢量的空间矢量分解技术,可以找到独立的对称电压矢量分量。对于这两种工作模式,导出了电机电流和电磁转矩的解析闭式解。通过实验验证了解析封闭计算波形的正确性。实验结果与理论预测吻合较好,验证了理论的正确性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analytical investigation of voltage source inverter fed induction motor drive under fault conditions
Improved reliability and fault tolerant operations of converter system are extremely important for industrial AC drives. In this paper an induction motor drive with fault tolerance capability is investigated through an analytical model. After the faulted leg in six-step voltage source inverter operation has been detected, the motor is driven by the converter reconfiguration known as the four-switch inverter, but with reduced performances. Two possible modes of operation utilizing in different ways (four or six times) only four possible voltage vectors can be used. Based on space-vector decomposition technique of the voltage vectors we can find separate symmetrical voltage vector components. For both modes of operation an analytical closed-form solution of the motor currents and electromagnetic torque is derived. Analytically closed calculated waveforms are verified by experiments. Experimental results are in good agreement with the theoretical predictions to verify the theory.
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