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Integrating heterogeneous distributed energy resources to manage intermittent power at low cost

机译:集成异构分布式能源以低成本管理间歇性电力

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A power distribution feeder where a heterogeneous set of distributed energy resources is deployed is examined by simulation. The resources include PV, battery storage, natural gas genset and fuel cells, and active thermal storage for commercial buildings. The resource scenario considered is one that may exist in a not too distant future, and is based on an existing demonstration system in Albuquerque, NM (USA). The operation of individual DERs, and its effects on the global power flow on the feeder, are considered. Two cases of interaction between different resources are examined. One interaction involves a genset used to partially offset the duty cycle of a smoothing battery connected to a large PV system. The other example involves the coordination of twenty thermal storage devices, each associated with a commercial building. The storage devices are intended to provide maximum benefit to the building, but it is shown that this can have a deleterious effect on the overall system, unless the action of the individual storage devices is coordinated — in which case there is overall benefit to the system. The main finding is that it is possible to achieve synergy between DERs on a system, however this required a unified strategy to coordinate the action of all devices in a decentralized way.
机译:通过模拟检查部署异构分布能量资源集的配电馈线。该资源包括PV,电池储存,天然气发电机组和燃料电池,以及商业建筑的有源热存储器。所考虑的资源方案是一个不太遥远的未来可能存在的场景,并且基于现有的Albuquerque,NM(USA)的示范系统。考虑了各个DER的操作及其对馈线上全局电力流量的影响。检查了不同资源之间的两个互动案例。一种相互作用涉及用于部分地抵消连接到大型光伏系统的平滑电池的占空比的发电机组。另一个例子涉及与商业建筑相关联的20个热存储装置的协调。存储设备旨在为建筑提供最大的益处,但结果表明,除非协调各个存储设备的动作,否则这可能对整个系统具有有害影响 - 在这种情况下,系统总体有益。主要发现是可以在系统上的DER之间实现协同作用,但这需要一个统一的策略以分散的方式协调所有设备的动作。

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