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首页> 外文期刊>Journal of Modern Power Systems and Clean Energy >Evaluation of Feasible Interlinking Converters in a Bipolar Hybrid Microgrid
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Evaluation of Feasible Interlinking Converters in a Bipolar Hybrid Microgrid

机译:双极性混合微电网中可行的互连转换器的评估

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A bipolar hybrid microgrid is a new topology which benefits from the advantages of both alternating current (AC) and direct current (DC) microgrids. Interlinking AC/DC converter is the key of this topology which has the following characteristics: being able to provide two equal pole voltages in DC side; complying with the standards of current quality at AC side; being able to control active and reactive power independently in AC side, and transmitting bidirectional power. In this paper, two categories of power converters including single-stage and two-stage converters are proposed for this topology. A new cost-effective control strategy is added to the control of general grid-connected converter for each interlinking converter, and the control of autonomous DC-link pole voltage for both candidates is achieved. Detailed simulations based on the designed control strategies are conducted to validate the function of control strategies under the operation conditions of different DC sides. The performances of two selected interlinking converters with balanced and unbalanced DC loads are analyzed. Suggested power quality of microgrid and total harmonic distortion (THD) analysis are demonstrated in grid-tied and islanded modes. Eventually, semiconductor power loss simulations based on a closed-loop thermal network simulation are conducted. Thereby, the mutual effects of power loss and initial junction temperature are investigated.
机译:双极混合微电网是一种新的拓扑结构,它受益于交流(AC)和直流(DC)微电网的优势。交/直交转换器是这种拓扑结构的关键,它具有以下特点:能够在直流侧提供两个相等的极电压;符合交流侧当前质量标准;能够在交流侧独立控制有功和无功功率,并传输双向功率。本文针对该拓扑提出了两类功率转换器,包括单级和两级转换器。对于每个互连转换器,在通用并网转换器的控制中添加了一种新的具有成本效益的控制策略,从而实现了对这两种候选转换器的自主直流链路极电压的控制。根据设计的控制策略进行了详细的仿真,以验证控制策略在不同直流侧的工作条件下的功能。分析了两个选定的具有平衡和不平衡直流负载的互连转换器的性能。建议的微电网功率质量和总谐波失真(THD)分析以并网和孤岛模式进行演示。最终,进行了基于闭环热网络仿真的半导体功率损耗仿真。因此,研究了功率损耗和初始结温的相互影响。

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