首页> 外文期刊>Power Electronics, IEEE Transactions on >Single-Phase Inverter-Control Techniques for Interfacing Renewable Energy Sources With Microgrid—Part II: Series-Connected Inverter Topology to Mitigate Voltage-Related Problems Along With Active Power Flow Control
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Single-Phase Inverter-Control Techniques for Interfacing Renewable Energy Sources With Microgrid—Part II: Series-Connected Inverter Topology to Mitigate Voltage-Related Problems Along With Active Power Flow Control

机译:用于微电网连接可再生能源的单相逆变器控制技术-第II部分:串联逆变器拓扑,可缓解电压相关问题以及有功潮流控制

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摘要

In this paper (Part II), a control strategy for a single-phase series-connected inverter with the microgrid is proposed to interface ac loads not only to regulate the load voltage under voltage disturbances, but also to control the load power drawn from the microgrid. The inverter compensating voltage works in such a way that, irrespective of any type of disturbances in the microgrid voltage (such as sag, swell, or harmonic distortions), the load voltage is maintained at its rated voltage level with low total harmonic distortion (THD) in voltage. The proposed control strategy also facilitates a specific amount of active power flow (from renewable energy source) to the load irrespective of the microgrid voltage condition. The rest of the load power is supplied by the microgrid. To facilitate this control strategy, a spatial repetitive controller (SRC) is proposed and implemented in microgrid phase ( $theta$ ) domain to make the controller independent of the microgrid frequency. The proposed controller ensures dynamic stability of the system even if there is a sudden change in the microgrid frequency. Detailed experimental results are presented to show the efficacy of the proposed series inverter system along with the controller under different operating conditions.
机译:在本文(第二部分)中,提出了一种带有微电网的单相串联逆变器的控制策略,该控制策略不仅可以交流电负载的接口,以调节电压扰动下的负载电压,还可以控制从交流电中汲取的负载功率。微电网。逆变器补偿电压的工作方式是,不管微电网电压受到任何类型的干扰(例如骤降,骤升或谐波失真),负载电压都保持在额定电压水平,总谐波失真(THD)低)的电压。所提出的控制策略还有助于特定量的有功功率流(从可再生能源)流向负载,而与微电网的电压条件无关。其余的负载功率由微电网提供。为了促进这种控制策略,提出了空间重复控制器(SRC)并在微电网相位($ theta)域中实现,以使控制器独立于微电网频率。即使微电网频率突然变化,所提出的控制器也可确保系统的动态稳定性。给出了详细的实验结果,以显示所提出的串联逆变器系统以及控制器在不同工作条件下的功效。

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