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One-Cycle-Controlled Three-Phase Grid-Connected Inverters and Their Parallel Operation

机译:一周期控制的三相并网逆变器及其并联运行

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Grid-connected inverters are necessary for converting the dc power generated by photovoltaic or fuel cells to the ac power of the utility grid. Parallel operation of these inverters extends the power range to a much higher level and allows modular design. This paper studies current sharing and circulating current among paralleled inverter modules and proposes a new parallel operation method based on one-cycle control (OCC) with combined vector operation and bipolar operation. With some minor additions to the original OCC circuit and a simple add-on communication path among the individual modules, the current is properly shared among all the inverters and the circulating current is limited to an acceptable range, while OCC advantages such as constant switching frequency, no multipliers, and simple circuitry are preserved. Two OCC inverters of 1.5 kW each were built and tied together using the proposed parallel operation. Experiments were conducted to demonstrate the simplicity and effectiveness of this method.
机译:并网逆变器对于将光伏电池或燃料电池产生的直流电转换为公用电网的交流电是必不可少的。这些逆变器的并联运行将功率范围扩展到更高的水平,并允许模块化设计。本文研究了并联逆变器模块之间的电流共享和循环电流,并提出了一种基于矢量控制和双极运行相结合的单周期控制(OCC)的并联运行新方法。通过对原始OCC电路进行一些少量添加,并在各个模块之间建立简单的附加通信路径,可以在所有逆变器之间正确共享电流,并将循环电流限制在可接受的范围内,同时OCC的优势(例如恒定的开关频率) ,没有乘法器,并且保留了简单的电路。使用建议的并行操作,制造了两个每台1.5 kW的OCC逆变器,并将它们绑在一起。进行实验以证明该方法的简单性和有效性。

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