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Ancillary Services Provided by Hybrid Residential Renewable Energy Systems through Thermal and Electrochemical Storage Systems

机译:混合住宅可再生能源系统通过热能和电化学储存系统提供的辅助服务

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Energy Management System (EMS) optimal strategies have shown great potential to match the fluctuating energy production from renewables with an electric demand profile, which opens the way to a deeper penetration of renewable energy sources (RES) into the electric system. At a single building level, however, handling of different energy sources to fulfill both thermal and electric requirements is still a challenging task. The present work describes the potential of an EMS based on Model Predictive Control (MPC) strategies to both maximize the RES exploitation and serve as an ancillary service for the grid when a Heat Pump (HP) coupled with a Thermal Energy Storage (TES) is used in a residential Hybrid Renewable Energy System (HRES). Cost savings up to 30% as well as a reduction of the purchased energy unbalance with the grid (about 15%–20% depending on the season) have been achieved. Moreover, the thermal energy storage leads to a more efficient and reliable use of the Heat Pump by generally decreasing the load factor smoothing the power output. The proposed control strategy allows to have a more stable room temperature, with evident benefits also in terms of thermal comfort.
机译:能源管理系统(EMS)的最佳策略已显示出巨大潜力,可将可再生能源中波动的能源生产与电力需求相匹配,这为更深层次地将可再生能源(RES)渗透到电力系统中开辟了道路。但是,在单个建筑物级别上,处理不同的能源以满足热量和电力需求仍然是一项艰巨的任务。当前的工作描述了基于模型预测控制(MPC)策略的EMS的潜力,即当热泵(HP)与热能存储(TES)结合使用时,既可以最大化RES的利用,又可以作为电网的辅助服务。用于住宅混合可再生能源系统(HRES)。节省了高达30%的成本,并减少了购买的电网能源不平衡现象(视季节而定,减少了15%–20%)。此外,通过通常减小使功率输出平滑的负载因数,热能存储导致热泵的更有效和可靠的使用。所提出的控制策略允许具有更稳定的室温,在热舒适性方面也具有明显的好处。

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