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Performance Enhancing of Grid-Connected DC Microgrid

机译:电网连接的DC微电网的性能增强

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DC microgrids operate either in standalone mode or grid-connected mode. In order to control the DC microgrid, the droop control is commonly used. However, voltage deviation as well as the error in current sharing are the main problems associated with the droop method. Conventional rating-based control schemes are developed to overcome the droop technique drawbacks. But, these control schemes do not consider the economic operation of the microgrid. Thus, in this paper a control strategy is proposed to overcome the problems introduced by the droop method and consider the economic operation of the committed distributed generators (DG) in the DC microgrid. The proposed controller is adopted in a distributed scheme to avoid challenges accompanied by the centralized schemes, such as single point of failure. Simulation results provided concludes the effectiveness of the proposed controller to enhance the performance of the DC microgrid.
机译:DC Microgrids在独立模式或网格连接模式下操作。为了控制DC MicroGrid,通常使用下垂控制。然而,电压偏差以及当前共享中的错误是与下垂方法相关的主要问题。开发了传统的基于额定值的控制方案以克服下垂技术缺点。但是,这些控制方案不考虑微电网的经济运行。因此,在本文中,提出了一种控制策略来克服下垂方法引入的问题,并考虑DC Microgrid中犯下的分布式发电机(DG)的经济运行。所提出的控制器采用分布式方案采用,以避免伴随着集中方案的挑战,例如单点故障。仿真结果提供了拟议控制器增强DC微电网的性能的有效性。

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