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Flow Battery Control Strategy Implementation and Cost Benefit Analysis for Microgrid under Updated Time-of-Use Periods

机译:使用期限更新后的微电网液流电池控制策略实施与成本效益分析

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This work demonstrates the control strategy for a precommercial flow battery in a microgrid system located at the Chemehuevi Indian Tribe, in Havasu Lake CA. The control strategy aims at implementing demand reduction while handling the flow battery operational constraints under an updated time-of-use periods. Electric bill savings are analyzed under two different use cases for the microgrid system: 1) demand response savings supported by the flow battery energy storage, and 2) net metering aggregation savings from the over-produced solar generation. A cost-benefit comparison between the battery operation under the legacy and updated time-of-use periods reveals that energy storage contributes to higher benefit under the updated time-of-use rate periods.
机译:这项工作演示了位于加利福尼亚州哈瓦苏湖Chemehuevi印第安部落的微电网系统中商用水流电池的控制策略。该控制策略旨在实现需求减少,同时在更新的使用时间段内处理液流电池的运行限制。在微电网系统的两种不同使用情况下,分析了电费节省:1)液流电池储能支持的需求响应节省,以及2)太阳能生产过剩带来的净计量聚合节省。在传统和更新的使用时间段下电池操作之间的成本-收益比较显示,在更新的使用时间费率段下,储能为更高的收益做出了贡献。

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