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A novel hysteresis current controller to reduce the switching frequency and current error in D-STATCOM

机译:一种新颖的磁滞电流控制器,可降低D-STATCOM中的开关频率和电流误差

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This paper presents a study on a novel hysteresis current controller of a STATCOM (static synchronous compensator) used for reactive power compensation on a distribution network. Hysteresis controllers are intrinsically robust to system parameters, exhibit very high dynamic response and are suitable for simple implementation. But the current control using a conventional hysteresis controller in D-STATCOM has the disadvantage that high switching frequency may happen due to lack of coordination among individual hysteresis controllers of three phases. This will of course increase the switching loss. In addition, the current error is not strictly limited. So, in this paper to reduce the switching frequency and current error, a novel hysteresis current controller in synchronous rotating reference frame is proposed. The presented control system was tested with digital simulation in the Borland C++ program and demonstrates the advantage of the novel hysteresis current controller.
机译:本文提出了一种用于配电网无功功率补偿的新型STATCOM(静态同步补偿器)磁滞电流控制器的研究。磁滞控制器本质上对系统参数具有鲁棒性,展现出很高的动态响应,并且适合于简单的实现。但是,在D-STATCOM中使用常规磁滞控制器进行电流控制的缺点是,由于各个三相磁滞控制器之间缺乏协调,可能会出现高开关频率。当然,这将增加开关损耗。另外,当前误差没有严格限制。因此,为降低开关频率和电流误差,本文提出了一种新型的同步旋转参考系中的磁滞电流控制器。所介绍的控制系统已在Borland C ++程序中通过数字仿真进行了测试,并证明了新型磁滞电流控制器的优势。

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