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首页> 外文期刊>International review of electrical engineering >Three-Phase Switched Capacitor Active Power Filter with Modified Artificial Neural Network and Flexible-Band Hysteresis
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Three-Phase Switched Capacitor Active Power Filter with Modified Artificial Neural Network and Flexible-Band Hysteresis

机译:具有改进的人工神经网络和柔性带滞回功能的三相开关电容器有源电力滤波器

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摘要

This paper presents design and development of a three-phase switched capacitor active power filter (APF) to reduce line-current harmonics and operate in-phase with line voltage. Its control design combines a modified artificial neural network (ANN) harmonic detection technique and flexible-band hysteresis current control. The modified ANN with a suitable learning rate produces good and fast harmonic reference current for use in the switching algorithm, which performs flexible-band through embedded with band and without band hysteresis current control. MATLAB Simulink software verified the proposed APF's topology and controller. A laboratory-built three-phase switched capacitor APF tested its feasibility. Simulation and experimental results verified its performance. It compensated harmonic current well, and the source current waveform became almost sinusoidal with near unity power factor. The results show that the three-phase switched capacitor APF with the modified ANN and the digital flexible-band hysteresis current algorithms could reduce THD and could increase power factor of the system.
机译:本文介绍了一种三相开关电容器有源功率滤波器(APF)的设计和开发,该滤波器可降低线电流谐波并与线电压同相工作。其控制设计结合了改进的人工神经网络(ANN)谐波检测技术和柔性带磁滞电流控制。具有合适学习率的改进型人工神经网络产生良好且快速的谐波参考电流,用于开关算法,该算法可通过嵌入有频带和无频带滞后电流控制来执行灵活频带。 MATLAB Simulink软件验证了建议的APF的拓扑和控制器。实验室制造的三相开关电容器APF测试了其可行性。仿真和实验结果验证了其性能。它很好地补偿了谐波电流,并且源电流波形几乎变为正弦波,功率因数接近单位。结果表明,采用改进的人工神经网络和数字柔性带滞环电流算法的三相开关电容器APF可以降低总谐波失真并增加系统的功率因数。

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