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Grid Harmonics Compensation Using High-Power PWM Converters Based on Combination Approach

机译:基于组合方法的大功率PWM变换器电网谐波补偿

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摘要

For high-power pulsewidth modulation (PWM) converters, selective harmonic elimination (SHE) modulation scheme is commonly adopted to reduce the low-order harmonics caused by a low switching frequency. However, the SHE scheme itself lacks the capability to actively compensate the grid background harmonics. To enable the active compensation ability of the SHE-modulated PWM converters, a selective harmonic compensation scheme and an SHE phase jittering method have been proposed in the previous works, and their effectiveness to actively attenuate the one grid line current harmonic was verified on a high-power PWM current-source rectifier (CSR) system application. Nevertheless, both the two methods have difficulty in compensating two harmonics simultaneously, which limits their applications with a low resonant frequency of converter system’s filter circuit. This paper extends the previous studies to enable the high-power PWM converters to actively compensate two grid background harmonics. The proposed method can not only further reduce the grid line current distortion but also make the application of the active compensation no longer limited by the filter circuit. The experimental results of its application on a high-power PWM CSR system are provided to verify the effectiveness.
机译:对于大功率脉宽调制(PWM)转换器,通常采用选择性谐波消除(SHE)调制方案来减少由低开关频率引起的低阶谐波。但是,SHE方案本身缺乏主动补偿电网背景谐波的能力。为了使SHE调制PWM转换器具有主动补偿能力,先前的工作中提出了一种选择性谐波补偿方案和一种SHE相位抖动方法,并在较高的频率下验证了它们有效衰减一个电网电流谐波的有效性。功率PWM电流源整流器(CSR)系统的应用。尽管如此,这两种方法都难以同时补偿两个谐波,这限制了它们在转换器系统的滤波电路谐振频率较低的应用。本文扩展了先前的研究,以使大功率PWM转换器能够主动补偿两个电网背景谐波。所提出的方法不仅可以进一步减小电网线电流畸变,而且可以使有源补偿的应用不再受到滤波电路的限制。验证了其在大功率PWM CSR系统上的应用实验结果。

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