UPS逆变器的数字控制方案,提高动态响应

Byoung-jin Kim, Jaeho Choi, Jaesig Kim, C. Choi
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引用次数: 8

摘要

本文提出了一种UPS逆变器系统的数字控制方案。逆变器输出电压波形接近正弦,谐波失真系数低,必须具有非常快的动态响应和对负载变化或参数变化的鲁棒性控制。该方案是基于电流稳压控制器的。滤波器电感电流被迫遵循从所需电容器电压和感测输出负载电流计算的电流命令。显然,被检测的输出电流信号作为扰动前馈信号,导致控制器对输出负载电流的突然变化做出快速的动态响应。为了保证系统的鲁棒性,在常规双反馈回路控制器的基础上增加了PI电容电压控制器。该控制器的自然问题,即由反馈信号的交流量引起的输出电压与其参考电压之间的相位差,通过使用输出电压相位和频率的同步控制器来补偿。介绍了该方案的算法,并给出了5kva样机的数字仿真和实验结果进行验证。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Digital control scheme of UPS inverter to improve the dynamic response
This paper presents a digital control scheme for a UPS inverter system. The inverter provides a near sinusoidal output voltage waveform with low harmonic distortion factor and must be controlled with very fast dynamic response and robustness to load changes or parameter variations. The proposed scheme is based on the current regulated voltage controller. The filter inductor current is forced to follow the current command calculated from the desired capacitor voltage and the sensed output load current. Clearly, the sensed output current signal acts as a disturbance feedforward signal which leads to a fast dynamic response of the controller to sudden changes of output load current. In order to guarantee the robustness of the system, a PI capacitor voltage controller is added as in the conventional double feedback loop controller. The natural problems of this controller, i.e. the phase difference between the output voltage and its reference caused by the AC quantity of the feedback signal, are compensated by using a synchronization controller for the output voltage phase and frequency. The algorithm of the proposed scheme is described and digital simulation and experimental results from a 5 kVA prototype are provided for verification.
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