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Smart Fridge / Dumb Grid? Demand Dispatch for the Power Grid of 2020

机译:智能冰箱/哑巴? 2020年电网需求调度

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In discussions at the 2015 HICSS meeting, it was argued that loads can provide most of the ancillary services required today and in the future. Through load-level and grid-level control design, high-quality ancillary service for the grid is obtained without impacting quality of service delivered to the consumer. This approach to grid regulation is called demand dispatch: loads are providing service continuously and automatically, without consumer interference. In this paper we ask, what intelligence is required at the grid-level? In particular, does the grid-operator require more than one-way communication to the loads? Our main conclusion: risk is not great in lower frequency ranges, e.g., PJM's RegA or BPA's balancing reserves. In particular, ancillary services from refrigerators and pool-pumps can be obtained successfully with only one-way communication. This requires intelligence at the loads, and much less intelligence at the grid level.
机译:在2015年HICSS会议的讨论中,有人争辩说,负载可以提供当前和将来所需的大多数辅助服务。通过负载级别和网格级别的控制设计,可以在不影响交付给用户的服务质量的情况下获得高质量的网格辅助服务。这种用于电网监管的方法称为需求调度:负载可以连续自动地提供服务,而不会受到用户的干扰。在本文中,我们问,在网格级别需要什么智能?特别是,电网运营商是否需要与负载进行单向通信?我们的主要结论是:在较低的频率范围内风险不大,例如PJM的RegA或BPA的平衡准备金。尤其是,仅通过单向通信就可以成功获得冰箱和泳池水泵的辅助服务。这需要负载的智能,而网格级别的智能则少得多。

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