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Use of dominant harmonic active filters in high power applications.

机译:在高功率应用中使用优势谐波有源滤波器。

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摘要

The application of power electronics equipment is increasing rapidly. It is estimated that 60% of electrical power will be processed by power electronics equipment by year 2000. These equipments typically require rectifiers for AC-DC power conversion. Due to their nonlinear nature, most rectifiers draw harmonic current from the utility grid. The harmonic current causes higher energy losses, and may excite resonance conditions in the utility grid. Harmonic standards such as IEEE 519 and IEC 1000-3-2 have been proposed to regulate the harmonic current and voltage levels.; This work is to develop a dominant harmonic active filter (DHAF) to realize a cost-effective active filtering solution for nonlinear loads in the range of megawatt and above. The DHAF system achieves harmonic isolation at dominant harmonic frequencies, e.g. the 5th and 7th. This approach allows use of low switching frequency and small rating active filter inverters (1%–2% of the load MVA rating) for implementation. Review of conventional passive filters and various active filters based on high bandwidth PWM inverters is provided. The control theory of the DHAF system is presented. Comparison of the DHAF system and other dominant harmonic filtering approach is provided. Simulation results and laboratory prototype test results are presented to validate the effectiveness of the proposed DHAF system.
机译:电力电子设备的应用正在迅速增加。据估计,到2000年,电力电子设备将处理60%的电力。这些设备通常需要整流器以进行AC-DC电源转换。由于其非线性特性,大多数整流器从公用电网汲取谐波电流。谐波电流会导致更高的能量损耗,并可能激发公用电网中的共振条件。已经提出了诸如IEEE 519和IEC 1000-3-2之类的谐波标准来调节谐波电流和电压水平。这项工作是要开发一种主导谐波有源滤波器(DHAF),以实现针对兆瓦及以上范围内的非线性负载的经济有效的有源滤波解决方案。 DHAF系统在主要谐波频率(例如)上实现了谐波隔离。第5个 和第7个 。这种方法允许使用低开关频率和小额定值有源滤波逆变器(占负载MVA额定值的1%–2%)来实现。回顾了传统的无源滤波器和基于高带宽PWM逆变器的各种有源滤波器。介绍了DHAF系统的控制原理。比较了DHAF系统和其他主要谐波滤波方法。仿真结果和实验室原型测试结果被提出来验证所提出的DHAF系统的有效性。

著录项

  • 作者

    Cheng, Po-Tai.;

  • 作者单位

    The University of Wisconsin - Madison.;

  • 授予单位 The University of Wisconsin - Madison.;
  • 学科 Engineering Electronics and Electrical.; Energy.
  • 学位 Ph.D.
  • 年度 1999
  • 页码 212 p.
  • 总页数 212
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无线电电子学、电信技术;能源与动力工程;
  • 关键词

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