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On the feasibility of providing power system spinning reserves from thermal storage

机译:关于从蓄热器提供电力系统旋转储备的可行性

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As power systems integrate more intermittent renewable generation, and as extreme weather events become more frequent with climate change, power systems are likely to require increasing amounts of spinning reserves in order to maintain reliable operation. While traditionally spinning reserves have been supplied by generators, demand-side resources can also provide reserves by increasing or decreasing consumption in response to system needs. As a major contributor to peak system loads, air conditioning equipment is a promising source of demand-side spinning reserves. Through building energy modeling and simulation, this paper demonstrates, for the first time, the technical feasibility of providing spinning reserves by curtailing air conditioning systems in commercial buildings, while maintaining occupant comfort by providing cooling from thermal storage. The economic benefits to the building owner are shown to be attractive, primarily due to capacity payments in the spinning reserves market. Furthermore, it is possible for a building equipped with thermal storage to participate in both frequency regulation and spinning reserves markets for more economic benefits as spinning reserves are less frequently deployed. (C) 2015 Elsevier B.V. All rights reserved.
机译:随着电力系统集成更多间歇性可再生能源发电,以及随着气候变化极端天气事件变得越来越频繁,电力系统可能需要增加旋转储备,以维持可靠的运行。尽管传统上旋转的储备是由发电机提供的,但需求方资源也可以通过响应系统需求增加或减少消耗来提供储备。作为峰值系统负荷的主要贡献者,空调设备是需求侧旋转储备的有希望的来源。通过建筑能耗建模和仿真,本文首次展示了通过减少商业建筑中的空调系统来提供旋转​​储备的技术可行性,同时通过提供蓄热冷却来保持居住者的舒适度。已显示出对建筑物所有者的经济利益具有吸引力,这主要是由于旋转储备市场中的产能支付所致。此外,配备有蓄热器的建筑物可能会参与频率调节和旋转储备市场,从而获得更大的经济利益,因为旋转储备的使用频率较低。 (C)2015 Elsevier B.V.保留所有权利。

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