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Analysis, Design, and Experimental Verification of A Synchronous Reference Frame Voltage Control for Single-Phase Inverters

机译:单相逆变器同步参考系电压控制的分析,设计与实验验证

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摘要

Control of three-phase power converters in the synchronous reference frame 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 a synchronous reference frame multi-loop control strategy for single phase inverter-based islanded distributed generation (DG) systems. The proposed controller uses a synchronous reference frame PI (SRFPI) 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 multi-resonant harmonic compensator to prevent low-order load current harmonics to distort the inverter output voltage. Since, the voltage loop works in the synchronous reference frame, 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.
机译:现在,在同步参考系中控制三相功率转换器是一个成熟且发展完善的研究主题。但是,对于单相转换器,它不如三相应用程序完善。本文研究了基于单相逆变器的孤岛分布式发电(DG)系统的同步参考系多环控制策略的设计。拟议的控制器使用同步参考框架PI(SRFPI)控制器来调节瞬时输出电压,在固定参考框架中使用电容器电流整形环路来提供主动阻尼并改善瞬态和稳态性能,并使用电压去耦前馈来改善系统的坚固性,以及多谐振谐波补偿器,可防止低阶负载电流谐波使逆变器输出电压失真。由于电压环路在同步参考系中工作,因此微调控制参数并评估整个闭环系统的稳定性并非易事。为了克服这个问题,导出了电压回路的静态参考系。然后,提出了一种基于频率响应方法的逐步系统设计程序。最后,理论成果得到了实验结果的支持。

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