自适应潮流控制,以减少高峰需求和最大化可再生能源的使用

S. Pholboon, M. Sumner, Petros Kounnos
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引用次数: 4

摘要

可再生能源(如太阳能或风能)的渗透增加以及高峰负荷需求可能导致电网网络安全问题。需求侧管理和能源存储设备的结合可以为这些问题提供解决方案。本文提出了一种自适应潮流控制(APFC)策略,该策略既能降低电网的峰值需求,又能提高可再生能源的自消耗,同时还能减少电力供需之间的不平衡。APFC旨在通过测量社区的瞬时电力需求,直接控制高耗电量电器和社区蓄电池的充放电。同时考虑社区日常能源消耗、可再生能源和不平衡能源的历史数据记录,对负荷和蓄电池进行管理。仿真结果表明,以一个百户社区为例,采用114 kWp的光伏阵列和350kWh的电池系统,全年平均峰值电力需求减少百分比为35%,而光伏能源自用增加百分比为64%。与仅使用光伏发电的社区相比,这可以每年节省高达2300英镑的能源成本。
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Adaptive power flow control for reducing peak demand and maximizing renewable energy usage
The increase in penetration of renewable energy sources, such as solar or wind, and high peak load demand can cause grid network security issues. The incorporation of demand side management and energy storage devices can provide a solution to these problems. This paper presents a proposed adaptive power flow control (APFC) strategy which reduces peak grid demand, increases self-consumption of renewable energy and also reduce the imbalance energy between demand and supply. The APFC aims to directly control high power consumption appliances and the charge/discharge of a community battery storage using measurement of the instantaneous power demands of the community. Historical data records of the community daily energy consumption, the available renewable energy and the imbalance energy are taken into account to manage the loads and battery storage. Simulation results show for a community of one hundred houses, with 114 kWp of PV arrays, and a 350kWh battery system that the percentage of the average peak power demand reduction over the year is 35%, while the PV energy self-consumption increases by 64%. This can produce an annual energy cost saving of up to £2300 when compared to the same community with only PV.
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