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Short Term Braking Capability During Power Interruptions for Integrated Matrix Converter-Motor Drives

机译:集成矩阵变频器-电动机驱动器电源中断期间的短期制动能力

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摘要

The new trend in adjustable speed drives (ASD) is to integrate the inverter and the motor into a single unit in order to reduce the production cost, the commissioning time, and the physical size of the equipment. This last issue becomes more important, making the matrix converter topology more attractive. Sinusoidal input currents and bidirectional power flow are other advantages of the matrix converter but it is less immune to power grid disturbances compared to a standard ASD. In hoisting applications, short-term braking capability during a power outage is needed until the mechanical brake engages or to perform more effective a combined braking. This paper proposes a new method to provide short-term braking capability during a power outage for matrix converters. A braking chopper is needed in the clamp circuit, which allows for a drastically reduction of the capacitor size. The power flow in the clamp circuit may be reduced by increasing the harmonic content in the motor currents, which causes higher motor losses. Experiments prove the validity of the proposed method.
机译:可调速驱动器(ASD)的新趋势是将逆变器和电动机集成到一个单元中,以降低生产成本,调试时间和设备的物理尺寸。最后一个问题变得更加重要,使矩阵转换器拓扑更具吸引力。正弦输入电流和双向功率流是矩阵转换器的其他优点,但与标准ASD相比,它对电网干扰的抵抗力较小。在起重应用中,断电期间需要短期制动能力,直到机械制动器接合或更有效地执行组合制动为止。本文提出了一种新的方法来为矩阵转换器提供断电期间的短期制动能力。钳位电路中需要制动斩波器,这可以大大减小电容器的尺寸。可以通过增加电动机电流中的谐波含量来减少钳位电路中的功率流,这会导致更高的电动机损耗。实验证明了该方法的有效性。

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