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A hybrid adaptive droop control technique with embedded DC-bus voltage regulation for single-phase microgrids

机译:嵌入式直流母线电压调节的混合自适应下垂控制技术,用于单相微电网

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This paper presents a novel hybrid adaptive droop controller to simultaneously regulate both the AC-side and DC-side parameters for power electronic converters in single-phase Microgrids. The main contribution of this paper is to integrate the AC-side and DC-side controllers. Unlike previously presented control schemes, where the DC-bus is considered as an infinite bus or constant voltage bus, the proposed control method incorporates the dynamics of the DC-side while regulating voltage and frequency at the AC-side. Designing the control scheme in single-phase is challenging due to the existence of double-frequency ripples in DC-bus voltage and converter output active/reactive power signals. In order to improve the transient performance of the proposed controller, two adaptive estimators have been used to estimate the real-time values of DC-bus voltage and output active/reactive power signals without the need to add low-pass filters. This controller can provide a tightly regulated voltage required for critical loads in MGs while improving the transient response in both DC and AC side. Simulation and experimental results in a single-phase islanded Microgrid show the superior performance of the proposed control scheme in regulating the desired parameters in AC and DC side in comparison with the conventional droop-based controllers.
机译:本文提出了一种新型混合自适应下垂控制器,用于在单相微电网中同时调节电力电子转换器的AC侧和DC侧参数。本文的主要贡献是集成交流侧和直流控制器。与先前呈现的控制方案不同,其中DC总线被认为是无限总线或恒定电压总线,所提出的控制方法包括DC侧的动态,同时调节AC侧的电压和频率。设计单相中的控制方案是挑战,因为DC总线电压和转换器输出有源/无功电源信号的双频率涟漪存在。为了提高所提出的控制器的瞬态性能,已经使用了两个自适应估计器来估计DC总线电压的实时值,并在不需要添加低通滤波器的情况下输出有源/无功功率信号。该控制器可以提供MGS中临界负载所需的紧密调节电压,同时提高DC和AC侧的瞬态响应。单相孤岛微电网的仿真和实验结果显示了与传统的基于下垂的控制器相比,在调节AC和DC侧调节所需参数的卓越性能。

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