用于电网仿真的三相四线制逆变器在宽电感变化下评估分布式发电机性能

IF 7.9 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC IEEE Open Journal of Industry Applications Pub Date : 2023-02-27 DOI:10.1109/OJIA.2023.3250027
Tsai-Fu Wu;Yun-Hsiang Chang;Chien-Chih Hung;Jui-Yang Chiu
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引用次数: 0

摘要

本文提出了一种三相四线制逆变器,用于在宽滤波器电感变化下产生电压源。具有失真和不平衡的电压源用于模拟电网电压。畸变包括电压骤降、电压膨胀和谐波分量,不平衡包括电压差和相位角差。在传统的PI控制和直接数字控制(DDC)的情况下,由于控制不当,电压失真无法精确实现。而采用改进的DDC(PDDC)和谐波角度调整算法,可以分别考虑软核饱和和谐波电压失真。此外,所提出的控制方案可以实现快速的瞬态响应。推导了控制律,并详细描述了具有产生电网电压控制的逆变器。10kW样机的仿真和实验结果验证了分析和讨论的正确性。
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Three-Phase Four-Wire Inverter for Grid Emulator Under Wide Inductance Variation to Evaluate the Performance of Distributed Generator
This article presents a three-phase four-wire inverter to generate voltage sources under wide filter inductance variation. The voltage sources with distortion and unbalance are to emulate grid voltages. The distortion includes voltage sags, voltage swells, and harmonic components, and the unbalance includes voltage and phase-angle differences. With a conventional PI control and direct digital control (DDC) only, the voltage distortion cannot fulfill precisely because of the improper controls. While with the proposed modified DDC (PDDC) and harmonic-angle adjustment algorithm, the soft core saturation can be taken into account and the harmonic voltage distortion can be accurately emulated, respectively. Moreover, the proposed control scheme can achieve a fast transient response. The control law is derived and the inverter with the control to generate grid voltage is described in detail. Simulated and experimental results from the 10-kW prototype have verified the analyses and discussions.
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