微电网有源电力电子负荷的斜坡控制

Guangqian Ding, F. Gao, Shicong Ma
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引用次数: 1

摘要

下垂控制是孤岛交流微电网中分布式发电逆变器的一种有效的功率共享控制方案,只要分布式发电系统有足够的剩余功率,就可以使电网保持稳定。相反,很多负荷为了提高运行效率,在负荷前端设置了功率转换电路,如空调、LED照明等,实际上也可以起到暂态过程中稳定电网的调节作用。因此,本文提出了微电网中不敏感有源电力电子负荷与dg一起控制电网频率的斜坡控制理论。负荷坡道控制方法可以有效地减少微网从并网模式进入孤岛模式时的频率变化,同时坡道控制可以减轻微网快速储能系统的负担,从而降低微网的建设成本。在控制方面,负荷斜坡控制也是一种无通信控制理论,它只假设了局部信息。Matlab仿真和实验结果表明了该理论在孤岛微电网中的有效性。
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Ramp control of active power electronics loads in microgrid
Droop control is an effective power sharing control scheme of distributed generation (DG) inverters in islanding AC microgrid, which can stabilize the grid as long as the distributed generation systems have sufficient residual power. On the contrary, many loads have equipped with power conversion circuits in front to improve the operational efficiency, e.g. air conditioners and LED lighting, which in fact can also provide the regulation function for stabilizing grid during transient process. This paper therefore proposes a ramp control theory for insensitive active power electronics loads in microgrid to control grid frequency together with DGs. The load ramp control method can effectively reduce the frequency variation especially when microgrid enters islanding mode from grid-tied mode, meanwhile the ramp control can release the burden of fast energy storage systems in microgrid and then reduce the construction cost of microgrid. Control wise, load ramp control is also a communication-less control theory, which only assumes the local information. Matlab simulations and experimental results are presented to show the effectiveness of the proposed theory in islanding microgrid.
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