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首页> 外文期刊>IEEE Transactions on Industrial Electronics >Current-fed three-phase and voltage-fed three-phase active converters with optimum PWM pattern scheme and their performance evaluations
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Current-fed three-phase and voltage-fed three-phase active converters with optimum PWM pattern scheme and their performance evaluations

机译:具有最佳PWM模式方案的电流馈电三相和电压馈电三相有源转换器及其性能评估

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摘要

This paper describes a new approach to select the optimum sinewave pulsewidth modulation (PWM) patterns suitable for a large-capacity current-fed active PWM power converter and a practical design procedure to determine circuit constants of a low-pass filter connected to suppress higher line current harmonics flowing into the utility-grid AC power source. A feasible test is implemented by building a prototype 500 kW three-phase current-fed PWM power converter which is designed and controlled on the basis of the proposed considerations. It is verified from a practical point of view that these new conceptual considerations are more effective and acceptable to minimize higher harmonic current components flowing into the utility-grid AC power source. This experimental setup provides highly efficient steady-state characteristics of the current-fed three-phase PWM power converter under the operating condition of a unity power factor correction and sinewave line current shaping schemes. Furthermore, this unique optimum PWM pattern derived from the theoretical method proposed here is conveniently applicable to a voltage-fed three-phase PWM converter. It is verified that this optimum PWM pattern provides excellent switching performance with a lower switching frequency mode than the conventional carrier-based PWM scheme.
机译:本文介绍了一种选择适合大容量电流馈电有源PWM功率转换器的最佳正弦波脉冲宽度调制(PWM)模式的新方法,以及确定连接以抑制较高线路的低通滤波器的电路常数的实用设计程序电流谐波流入公用电网交流电源。通过构建原型500 kW三相电流馈电PWM功率转换器来实施可行的测试,该转换器是根据建议的注意事项进行设计和控制的。从实践的角度证明,这些新的概念性考虑因素对于将流入电网的交流电源中的高次谐波电流分量降至最低的做法更为有效和可以接受。该实验设置在单位功率因数校正和正弦波电流整形方案的工作条件下,提供了电流馈电三相PWM功率转换器的高效稳态特性。此外,从此处提出的理论方法得出的这种独特的最佳PWM模式可方便地应用于电压馈电的三相PWM转换器。可以证明,与传统的基于载波的PWM方案相比,该最佳PWM模式以较低的开关频率模式提供了出色的开关性能。

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