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摘要

Microgrids are becoming a significant aggregation of distributed energy resources (DERs) that improves the reliability and resilience of the power delivery system. Most of the early microgrid experience occurred in behind-themeter applications for installations with critical loads and significant backup power and load prioritization requirements. Very successful systems that include campus and utility applications have been operational for up to and exceeding a decade. For these early systems, available codes and standards consisted mostly of adapted device-level legacy emergency and standby power requirements. Grid interconnection and efficient, safe operating requirements were improvised via programmed computers, and the protection focus was the microgrids themselves. The larger microgrid installations often required qualified staff trained to monitor and operate the systems.
机译:微电网正在成为分布式能源(DER)的显着聚集,从而提高了电力输送系统的可靠性和抵御能力。 大多数早期微电网经验发生在临界负载和显着的备用电源和负载优先级要求的安装后的窗背关节仪应用中。 非常成功的系统,包括校园和公用事业申请,可为最多十年来运营。 对于这些早期系统,可用的代码和标准主要由适应的设备级遗留紧急和备用电源要求组成。 电网互连和高效,安全的操作要求通过编程的计算机进行简化,保护焦点是微电网本身。 较大的微电网安装通常需要培训的合格人员,以监视和操作系统。

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