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A rule-based approach for improvement of autonomous operation of hybrid microgrids

机译:基于规则的改进杂种微电网的自主操作方法

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摘要

The work presented in the article proposes a new rule-based energy management algorithm to improve the autonomy of hybrid (AC/DC) microgrids consisting of higher quantum of heating loads and renewable energy sources. The objective of the algorithm is to make the microgrids more autonomous by reducing the power import from the utility grid, during generation deficits. The heating or lighting loads in this work are considered as non-critical loads, and all other voltage sensitive loads are classified as critical loads. The presented strategy makes the AC and DC non-critical loads operate in power saving modes during generation insufficiency by controlling the electric springs based on the voltage produced by the renewables. Usage of electric springs in the microgrids consisting of AC and DC loads and a couple of renewable sources to improve the autonomous operation of microgrids is probably the first attempt. The advantage of using the suggested methodology is that it operates the voltage insensitive loads, based on the prevailing power generation condition without completely curtailing them. Further, the effectiveness of the algorithm is tested by developing suitable simulation models in MATLAB and also a scaled down laboratory setup is developed using dSPACE 1104 real-time operating system. The simulation and experimental results prove that the algorithm is effective enough in reducing the power import from the main grid.
机译:本文中提出的工作提出了一种新的基于规则的能量管理算法,以改善由更高量的加热载荷和可再生能源组成的混合动力(AC / DC)微电网的自主权。该算法的目的是通过减少从公用事业电网的电力,在生成缺陷期间使微电网更加自主。本工作中的加热或照明载荷被认为是非关键负载,并且所有其他电压敏感载荷都被归类为临界负载。所提出的策略使AC和DC非临界负载通过基于可再生能源产生的电压控制电气弹簧,在发电不足期间在省电模式中运行。在由AC和DC负载组成的微电网中的电气弹簧和几个可再生源的用途是提高微电网的自主运行可能是第一次尝试。使用建议的方法的优点是它基于普遍的发电条件,它运行电压不敏感载荷,而无需完全减少它们。此外,通过在MATLAB中开发合适的模拟模型来测试算法的有效性,并且使用DSPACE 1104实时操作系统开发了缩小的测量实验室设置。模拟和实验结果证明,该算法足以减少主电网的电力进口。

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