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首页> 外文期刊>Power Systems, IEEE Transactions on >Improving Primary Frequency Response to Support Networked Microgrid Operations
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Improving Primary Frequency Response to Support Networked Microgrid Operations

机译:改善主频响应以支持网络化微电网运营

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摘要

Individual microgrids have proven their ability to provide uninterrupted power to critical end-use loads during severe events. Building on the performance of individual microgrids during extreme events, there has been an increasing interest in the operations of network microgrids. By networking microgrids during extreme events, it is possible to share resources, increase the duration for which they can operate islanded, improve efficiency, and increase the resiliency of critical end-use loads. While there are benefits to networking the operations of resiliency-based microgrids, the switching operations that they require introduce transients, which can result in a loss of dynamic stability. The issue of dynamic stability is especially acute in microgrids with high penetrations of inverter-connected generation, and correspondingly low system inertia. While the low inertia of these microgrids can be increased by over-sizing the rotating generators, the increased capital and operating costs can become a barrier to deployment. This paper will present a method of augmenting primary frequency controls to support the switching transients necessary for the operation of networked microgrids, without the need to over-size rotating machines.
机译:各个微电网已证明在严重事件期间能够为关键的最终用途负载提供不间断电源的能力。在极端事件期间基于单个微电网的性能,人们对网络微电网的运行越来越感兴趣。通过在极端事件期间将微电网联网,可以共享资源,增加它们在孤岛上的运行时间,提高效率并提高关键最终用途负载的弹性。虽然使基于弹性的微电网的操作联网很有好处,但它们所需的切换操作会引入瞬态,这可能会导致动态稳定性下降。动态稳定性的问题在微电网中尤为严重,该微电网具有逆变器连接发电的高穿透力,并且系统惯性也相应较低。尽管可以通过使旋转发电机的尺寸过大来提高这些微电网的低惯性,但增加的资金和运营成本可能成为部署的障碍。本文将提出一种增强初级频率控制的方法,以支持联网微电网运行所必需的开关瞬变,而无需超大型旋转电机。

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