Dynamic digital control schemes for three-phase UPS inverters

J. Uys, H. J. Beukes
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引用次数: 2

Abstract

The purpose of a voltage controller is to produce stable three-phase output voltages with low distortion under all loading conditions. This paper presents the design of such a three-phase, closed-loop voltage controller, implementing a deadbeat controller on the output voltage and the inductor current. A digital signal processor is used to implement the digital closed-loop control algorithms. This, together with delays introduced by sampling the analog quantities, introduces a delay in the control law that causes system instability. The system model is augmented to compensate for these dynamics, hereby including a third deadbeat controlled variable. System stability is then ensured. Load current feed-forward is used to compensate for changes in the load current before the output voltages get distorted, in order to improve the output voltage waveform quality. Practical results show that the designed voltage controller can produce output voltage waveforms that can meet the specifications for balanced and unbalanced loads. This is verified by using a three-phase, four-wire, 250 kW inverter, which shows that the constructed pulse-width modulated control scheme can achieve fast dynamic response as well as low total harmonic distortion. Nonlinear loads, however, produce undesirable harmonics that cause large distortion in output voltage.
三相UPS逆变器动态数字控制方案
电压控制器的目的是在所有负载条件下产生低失真的稳定三相输出电压。本文设计了一种三相闭环电压控制器,实现了对输出电压和电感电流的无差拍控制。采用数字信号处理器实现数字闭环控制算法。这与模拟量采样带来的延迟一起,在控制律中引入了导致系统不稳定的延迟。系统模型被扩充以补偿这些动态,从而包括第三个无差拍控制变量。这样就保证了系统的稳定性。负载电流前馈在输出电压畸变前补偿负载电流的变化,以提高输出电压波形质量。实际结果表明,所设计的电压控制器能够产生满足平衡负载和不平衡负载要求的输出电压波形。通过250kw三相四线制逆变器验证了这一点,表明所构建的脉宽调制控制方案能够实现快速动态响应和低总谐波失真。然而,非线性负载会产生不良的谐波,导致输出电压的大畸变。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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