控制理论(社会学)
解耦(概率)
参考坐标系
前馈
转换器
谐波
静止坐标系
稳健性(进化)
逆变器
电压基准
电容器
功率因数
三相
电压
瞬态响应
工程类
计算机科学
帧(网络)
控制工程
感应电动机
基因
电气工程
人工智能
生物化学
化学
控制(管理)
电信
作者
Mohammad Monfared,Saeed Golestan,Josep M. Guerrero
标识
DOI:10.1109/tie.2013.2238878
摘要
Control of three-phase power converters in the synchronous reference frame (SRF) is now a mature and well-developed research topic. However, for single-phase converters, it is not as well established as three-phase applications. This paper deals with the design of an SRF multiloop control strategy for single-phase inverter-based islanded distributed generation systems. The proposed controller uses an SRF proportional-integral controller to regulate the instantaneous output voltage, a capacitor current shaping loop in the stationary reference frame to provide active damping and improve both transient and steady-state performances, a voltage decoupling feedforward to improve the system robustness, and a multiresonant harmonic compensator to prevent low-order load current harmonics to distort the inverter output voltage. Since the voltage loop works in the SRF, it is not straightforward to fine tune the control parameters and evaluate the stability of the whole closed-loop system. To overcome this problem, the stationary reference frame equivalent of the voltage loop is derived. Then, a step-by-step systematic design procedure based on a frequency response approach is presented. Finally, the theoretical achievements are supported by experimental results.
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