Incorporating hardware-in-the-loop simulation and ADALINE for shunt active power filter design

R. Hong, G. Chang, C. Chao, Y. Chu, C. I. Chen
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引用次数: 1

Abstract

This paper presents an approach of incorporating hardware-in-the-loop simulation and ADALINE for shunt active power filter (APF) design. Even when the three-phase source voltages are unbalanced and/or distorted and supply to a nonlinear load, the described compensation strategy can compensate the harmonic and neutral current, and thus improve the power factor. After verifying the efficiency of compensation strategy, the APF control strategy is embedded into the digital signal processor (DSP) to verify the feasibility of the proposed strategy on hardware in the loop (HIL) structure. Results show that the proposed approach is effective for shunt APF design.
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结合硬件在环仿真和ADALINE进行并联有源电力滤波器的设计
提出了一种将半实物仿真与ADALINE相结合的并联型有源电力滤波器(APF)设计方法。即使在三相源电压不平衡和/或畸变并供电给非线性负载时,所述补偿策略也可以补偿谐波和中性电流,从而提高功率因数。在验证补偿策略的有效性后,将APF控制策略嵌入到数字信号处理器(DSP)中,在硬件在环(HIL)结构上验证所提出策略的可行性。结果表明,该方法对并联有源滤波器的设计是有效的。
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