首页> 外文期刊>IEEE Transactions on Power Electronics >Power Decoupling Control for Capacitance Reduction in Cascaded-H-Bridge-Converter-Based Regenerative Motor Drive Systems
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Power Decoupling Control for Capacitance Reduction in Cascaded-H-Bridge-Converter-Based Regenerative Motor Drive Systems

机译:基于级联H桥变换器的再生电动机驱动系统中降低电容的功率去耦控制

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摘要

A cascaded H-bridge (CHB) converter-based medium or high-voltage motor drive system, that consists of three single-phase CHB chains, may suffer a severe second-harmonic ripple power issue. Oversizing dc capacitors and using active power decoupling control with additional active or passive components are the two possible ways to address this issue, but this is achieved at the expense of increased system cost and complexity. This paper proposes a power decoupling control to tackle this issue without using any extra components for regenerative CHB-based converters. By introducing a set of negative-sequence decoupling currents to the front-end pulsewidth-modulated rectifier of each submodule, the second-harmonic ripple power can be removed from the submodule dc capacitors, and all the ripple power in the transformer core legs can be counteracted without affecting the magnetic flux and the grid current. The decoupling current is derived from the input and output measurements of the CHB converter. It gives the minimal increase of the modulation index and has no impacts on the input and output power quality. The effectiveness of the proposed control is verified in simulations and a 72-kW experimental prototype.
机译:由三个单相CHB链组成的基于层叠的H桥(CHB)转换器的中型或高压电动机驱动系统可能会遭受严重的二次谐波纹波功率问题。解决此问题的两种可能方法是使直流电容器过大,并使用有源功率去耦控制以及其他有源或无源组件,但这是以增加系统成本和复杂性为代价的。本文提出了一种电源去耦控制来解决此问题,而无需为基于CHB的可再生转换器使用任何额外的组件。通过向每个子模块的前端脉宽调制整流器引入一组负序去耦电流,可以从子模块直流电容器中消除二次谐波纹波功率,并且可以将变压器铁芯臂中的所有纹波功率在不影响磁通量和电网电流的情况下抵消。去耦电流是从CHB转换器的输入和输出测量得出的。它使调制指数的增加最小,并且对输入和输出功率质量没有影响。仿真和72 kW实验原型验证了所提出控制的有效性。

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