光伏并网接口系统中电压源逆变器的各种控制方案

B. A. Suhas, V. Rajguru
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引用次数: 6

摘要

多年来,电源变流器在电网接口系统中得到了广泛的应用,包括可再生能源分布式发电。在分布式能源系统中,如太阳能、水力发电或任何柴油发电,系统的输出是直流电,预计将转换为交流电,则使用逆变器。有多种模式来控制逆变器的输出。本文对三相电压源逆变器控制方案进行了比较研究。不同的控制方法使用PI控制器,PR (P +谐振)控制器。在PI控制中,采用静止参考系传递反馈量,其中元件要求的解耦增加了复杂性。为了避免这些复杂性,采用了一种新的比例谐振控制策略,在基频上引入二阶高增益(理想情况下是无限增益)。该控制器的主要优点是减小了稳态直流误差。外环坐标采用PR控制器,避免了复杂的解耦过程。在最熟悉的双参考系中采用PI控制器。在matlab-simulink环境下对三相系统进行了仿真,给出了控制器和实验结果,证明了系统的正确性和可行性。在此基础上,对两种控制器进行了比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Various control schemes for voltage source inverter in PV grid interfaced system
Over the years, power converters have found wide application in grid interfaced systems, including distributed power generation with renewable energy sources. In distributed energy systems like solar, hydro or any diesel generation where the output of the system is DC and is expected to be converted in AC, an inverter is used. There are various modes to have a controlled output of inverter. The paper consists of the comparative study of three phase Voltage Source Inverter control schemes. The different control methods used are PI controller, PR (P + Resonant) controller. In PI control, the stationary reference frame is used to transfer the feedback quantities, where the decoupling of component requirement increases complications. To avoid these complications, a new Proportional resonant control strategy is employed, in which, a second order very high gain (ideally infinite gain) is introduced at fundamental frequency. The main advantage with this controller is the reduction in steady state DC error. PR controller is adopted in the outer loop alpha beta coordinates to avoid complicated decoupling process. The PI controller is adopted in the most familiar dqo reference frame. The three phase system is simulated in the matlab-simulink environment with both the controllers and experimental results are given to prove the correctness and feasibility of the system. On the basis of results also, these two controllers are compared.
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