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Increasing security of supply by the use of a local power controller during large system disturbances

机译:在大系统干扰期间,通过使用本地电源控制器来提高供电安全性

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摘要

This paper describes intelligent ways in which distributed generation and local loads can be controlled during large system disturbances, using Local Power Controllers. When distributed generation is available, and a system disturbance is detected early enough, the generation can be dispatched, and its output power can be matched as closely as possible to local microgrid demand levels. Priority-based load shedding can be implemented to aid this process. In this state, the local microgrid supports the wider network by relieving the wider network of the micro-grid load. Should grid performance degrade further, the local microgrid can separate itself from the network and maintain power to the most important local loads, re-synchronising to the grid only after more normal performance is regained. Such an intelligent system would be a suitable for hospitals, data centres, or any other industrial facility where there are critical loads. The paper demonstrates the actions of such Local Power Controllers using laboratory experiments at the 10kVA scale.
机译:本文介绍了使用本地电源控制器在大系统干扰期间可以控制分布式发电和本地负载的智能方法。当分布式发电可用并且足够早地检测到系统故障时,可以调度该发电,并且其输出功率可以与本地微电网需求水平尽可能地匹配。可以实施基于优先级的减载以帮助此过程。在这种状态下,本地微电网通过减轻微电网负荷的广泛网络来支持更广泛的网络。如果电网性能进一步下降,则本地微电网可以使其自身与网络分离,并维持最重要的本地负载的电力,只有在获得更多正常性能后,才与电网重新同步。这样的智能系统将适用于医院,数据中心或其他有关键负荷的工业设施。本文通过在10kVA规模的实验室实验中演示了这种本地电源控制器的作用。

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