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A Novel Two-Stage Photovoltaic Grid-Connected Inverter Voltage-Type Control Method with Failure Zone Characteristics

机译:具有故障区特性的新型两级光伏电网连接逆变电压型控制方法

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摘要

This paper investigates how to develop a two-stage voltage-type grid-connected control method for renewable energy inverters that can make them simulate the characteristics of a synchronous generator governor. Firstly, the causes and necessities of the failure zone are analyzed, and thus the traditional static frequency characteristics are corrected. Then, a novel inverter control scheme with the governor’s failure zone characteristics is proposed. An enabling link and a power loop are designed for the inverter to compensate fluctuations and regulate frequency automatically. Outside the failure zone, the inverter participates in the primary frequency regulation by disabling the power loop. In the failure zone, the droop curve is dynamically moved to track the corrected static frequency characteristic by enabling the power loop, resisting the fluctuation of grid frequency. The direct current (DC) bus voltage loop is introduced into the droop control to stabilize the DC bus voltage. Moreover, the designed dispatch instruction interface ensures the schedulability of the renewable energy inverter. Finally, the feasibility and effectiveness of the proposed control method are verified by simulation results from MATLAB (R2016a).
机译:本文调查了如何为可再生能源逆变器开发两级电压型电网连接控制方法,可以使它们模拟同步发电机调速器的特性。首先,分析失败区的原因和必需品,因此校正了传统的静态频率特性。然后,提出了一种具有调速器故障区特性的新型逆变器控制方案。启用链路和电源环是为逆变器设计的,以补偿波动和自动调节频率。在故障区外,逆变器通过禁用电源循环参与初级频率调节。在故障区中,通过使电网频率的波动能够动态地移动以跟踪校正的静态频率特性以跟踪校正的静态频率特性。将直流(DC)总线电压环引入下垂控制以稳定直流母线电压。此外,设计的调度指令界面确保了可再生能量逆变器的调度性。最后,通过MATLAB(R2016A)的模拟结果验证了所提出的控制方法的可行性和有效性。

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