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Smart residential energy management system for demand response in buildings with energy storage devices

机译:智能住宅能源管理系统,用于具有储能设备的建筑物中的需求响应

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摘要

In the present scenario, the utilities are focusing on smart grid technologies to achieve reliable and profitable grid operation. Demand side management (DSM) is one of such smart grid technologies which motivate end users to actively participate in the electricity market by providing incentives. Consumers are expected to respond (demand response (DR)) in various ways to attain these benefits. Nowadays, residential consumers are interested in energy storage devices such as battery to reduce power consumption from the utility during peak intervals. In this paper, the use of a smart residential energy management system (SREMS) is demonstrated at the consumer premises to reduce the total electricity bill by optimally time scheduling the operation of household appliances. Further, the SREMS effectively utilizes the battery by scheduling the mode of operation of the battery (charging/floating/discharging) and the amount of power exchange from the battery while considering the variations in consumer demand and utility parameters such as electricity price and consumer consumption limit (CCL). The SREMS framework is implemented in Matlab and the case study results show significant yields for the end user.
机译:在当前情况下,公用事业公司将重点放在智能电网技术上,以实现可靠且有利可图的电网运营。需求方管理(DSM)是这样的智能电网技术之一,它通过提供激励机制来激励最终用户积极参与电力市场。期望消费者以各种方式做出响应(需求响应(DR))以获得这些好处。如今,居民消费者对诸如电池之类的能量存储设备感兴趣,以减少高峰时段的电力消耗。本文在消费者场所演示了智能住宅能源管理系统(SREMS)的使用,以通过优化调度家用电器的运行时间来减少总电费。此外,SREMS通过计划电池的工作模式(充电/浮动/放电)和来自电池的电量交换,有效地利用了电池,同时考虑了消费者需求和诸如电价和消费者消耗之类的实用参数的变化限制(CCL)。 SREMS框架在Matlab中实现,案例研究结果表明,最终用户的收益很高。

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