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Reactive Power Management in Islanded Microgrid—Proportional Power Sharing in Hierarchical Droop Control

机译:孤岛微电网中的无功功率管理—分级下垂控制中的比例功率共享

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摘要

A microgrid (MG) is a local energy system consisting of a number of energy sources (e.g., wind turbine or solar panels among others), energy storage units, and loads that operate connected to the main electrical grid or autonomously. MGs provide flexibility, reduce the main electricity grid dependence, and contribute to changing large centralized production paradigm to local and distributed generation. However, such energy systems require complex management, advanced control, and optimization. Moreover, the power electronics converters have to be used to correct energy conversion and be interconnected through common control structure is necessary. Classical droop control system is often implemented in MG. It allows correct operation of parallel voltage source converters in grid connection, as well as islanded mode of operation. However, it requires complex power management algorithms, especially in islanded MGs, which balance the system and improves reliability. The novel reactive power sharing algorithm is developed, which takes into account the converters parameters as apparent power limit and maximum active power. The developed solution is verified in simulation and compared with other known reactive power control methods.
机译:微电网(MG)是一种局部能源系统,由许多能源(例如风轮机或太阳能电池板),能量存储单元以及与主电网连接或自主运行的负载组成。 MG提供了灵活性,减少了对主电网的依赖,并有助于将大型集中式生产模式转变为本地和分布式发电。但是,这样的能源系统需要复杂的管理,高级控制和优化。此外,电力电子转换器必须用于校正能量转换,并且必须通过通用控制结构进行互连。经典的下垂控制系统通常在MG中实现。它允许并行电压源转换器在电网连接中正确运行,以及孤岛运行模式。但是,这需要复杂的电源管理算法,尤其是在孤岛型MG中,它可以平衡系统并提高可靠性。开发了新颖的无功功率共享算法,该算法考虑了转换器参数(视在功率极限和最大有功功率)。所开发的解决方案经过仿真验证,并与其他已知的无功功率控制方法进行了比较。

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