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Design and Control of Utility Grid Interfaced Wind Energy Conversion System for Bipolar DC Micro Grid

机译:二极管直流微电网公用电网界面风能转换系统的设计与控制

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This paper proposes the design and control of power flow in a utility grid interfaced wind energy conversion system for bipolar DC micro grid. The proposed system consists of two power conversion stages, such as wind energy conversion (WEC) systems connected at each pole of bipolar DC micro grid with simple boost converters and in the second stage a three level neutral point clamped (NPC) inverter to interface with the utility grid. A look-up table based maximum power point tracking (MPPT) is used to extract the maximum power from each wind energy conversion system and a voltage oriented proportional resonant (PR) controller for the control of three level NPC inverter. Performance of the proposed system is validated in detail by simulations to achieve bipolar DC bus voltage regulation and DC link capacitor voltage balance for changes in wind velocity, variation in loads on bipolar DC micro grid, and also at point of common connection (PCC).
机译:本文提出了双极DC微电网的公用电网接口风能转换系统中电流的设计和控制。 所提出的系统由两个电源转换阶段组成,例如具有简单升压转换器的双极DC微电网的每个杆处的风能转换(WEC)系统,并在第二级中载三级中性点钳位(NPC)逆变器中连接到界面 实用电网。 基于查找表的最大功率点跟踪(MPPT)用于从每个风能转换系统和用于控制三级NPC逆变器的电压导向比例谐振(PR)控制器的最大功率。 通过模拟详细验证了所提出的系统的性能,以实现双极直流母线电压调节和DC链路电容器电压平衡,用于风速变化,双极DC微电网上的负载变化,以及在公共连接点(PCC)。

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