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首页> 外文期刊>International journal of electrical power and energy systems >Power and energy analysis for a commercial retail refrigeration system responding to a static demand side response
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Power and energy analysis for a commercial retail refrigeration system responding to a static demand side response

机译:商业零售制冷系统对静态需求侧响应的功率和能量分析

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The paper considers the impact of Demand Side Response events on the supply power profile and energy efficiency of widely distributed aggregated loads applied across commercial refrigeration systems. Responses to secondary grid frequency static DSR events are investigated. Experimental trials are conducted on a system of refrigerators representing a small retail store, and subsequently on the refrigerators of an operational superstore in the UK. Energy consumption and energy savings during 3 h of operation pre- and post-secondary DSR, are discussed. In addition, a simultaneous secondary DSR event is realised across three operational retail stores located in different geographical regions of the UK. A Simulink model for a 3 Phi power network is used to investigate the impact of a synchronised return to normal operation of the aggregated refrigeration systems post DSR on the local power network. Results show similar to 1% drop in line voltage due to the synchronised return to operation. Analysis of energy consumption shows that DSR events can facilitate energy savings of between 3.8% and 9.3% compared to normal operation. This is a result of the refrigerators operating more efficiently during and shortly after the DSR. The use of aggregated refrigeration loads can contribute to the necessary load-shed by 97.3% at the beginning of DSR and 27% during the 30 minutes of a DSR, based on results from a simultaneous DSR event carried out on three retail stores.
机译:本文考虑了需求方响应事件对跨商业制冷系统应用的广泛分布的总负荷的供电功率和能效的影响。研究了对次级电网频率静态DSR事件的响应。实验是在代表小型零售商店的冰箱系统上进行的,随后在英国一家大型经营超市的冰箱上进行。讨论了二次DSR运转前后3小时内的能耗和节能情况。此外,在英国不同地理区域的三个运营零售商店中同时实现了第二次DSR事件。用于3 Phi电网的Simulink模型用于研究DSR之后聚合制冷系统同步返回正常运行对本地电网的影响。结果表明,由于同步恢复运行,线路电压下降了约1%。能耗分析表明,与正常运行相比,DSR事件可节省3.8%至9.3%的能源。这是因为冰箱在DSR期间和之后不久会更有效地运行。根据在三个零售商店同时进行的DSR事件的结果,使用汇总的制冷负荷可在DSR开始时造成97.3%的必要负载减少,在DSR 30分钟期间造成27%的必要负载减少。

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