考虑高频谐波的自适应和固定频带迟滞电流控制的比较

H. Vahedi, Yasser Rahmati Kukandeh, M. Kashani, Aliakbar Dankoob, A. Sheikholeslami
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引用次数: 2

摘要

并联型有源电力滤波器(APF)因其运行准确、速度快而广泛应用于电力系统中,以消除电流谐波和补偿无功功率。本文采用瞬时功率理论提取系统电流的谐波分量。然后对固定带磁滞电流控制进行了说明。针对固定频带可变频率的缺点,引入自适应磁滞电流控制(AHCC)来固定开关频率,减少源电流波形中的高频成分。由于AHCC的这些优点,开关频率和开关损耗会相应降低。在Matlab/Simulink中进行了部分仿真。讨论了源、负载电流的傅里叶变换和THD结果以及瞬时开关频率图,证明了该方法的有效性。讨论了源电流和负载电流的傅里叶变换和THD结果,证明了该方法的有效性。
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Comparison of adaptive and fixed-band hysteresis current control considering high frequency harmonics
Shunt active power filters (APF) are widely used in power systems to eliminate the current harmonics and to compensate reactive power due to their accurate and fast operation. In this paper the instantaneous power theory is used to extract the harmonic components of system current. Then fixed-band hysteresis current control is explained. Because of fixed-band variable frequency disadvantages, the adaptive hysteresis current control (AHCC) is introduced that leads to fix the switching frequency and reduce the high frequency components in source current waveform. Due to these advantages of AHCC, the switching frequency and switching losses will be diminished appropriately. Some simulations are done in Matlab/Simulink. The Fourier Transform and THD results of source and load currents and the instantaneous switching frequency diagram are discussed to prove the efficiency of this method. The Fourier Transform and THD results of source and load currents are discussed to prove the validity of this method.
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