A Multi-Stage Home Energy Management System with Residential Photovoltaic Penetration
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Open Access
Type
ArticleAbstract
Advances in bilateral communication technology foster the im-provement and development of Home Energy Management Sys-tem (HEMS). This paper proposes a new HEMS to optimally schedule home energy resources (HERs) in a high rooftop photo-voltaic penetrated environment. The proposed ...
See moreAdvances in bilateral communication technology foster the im-provement and development of Home Energy Management Sys-tem (HEMS). This paper proposes a new HEMS to optimally schedule home energy resources (HERs) in a high rooftop photo-voltaic penetrated environment. The proposed HEMS includes three stages: forecasting, day-ahead scheduling, and actual opera-tion. In the forecasting stage, short-term forecasting is per-formed to generate day-ahead forecasted photovoltaic solar pow-er and home load profiles; in the day-ahead scheduling stage, a Peak-to-Average Ratio (PAR) constrained coordinated HER scheduling model is proposed to minimize the 1-day home opera-tion cost; in the actual operation stage, a Model Predictive Con-trol (MPC) based operational strategy is proposed to correct HER operations with the update of real-time information, so as to minimize the deviation of actual and day-ahead scheduled net-power consumption of the house. An adaptive thermal comfort model is applied in the proposed HEMS to provide decision-support on the scheduling of the heating, ventilating, and air con-ditioning (HVAC) system of the house. The proposed approach is then validated based on Australian real datasets.
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See moreAdvances in bilateral communication technology foster the im-provement and development of Home Energy Management Sys-tem (HEMS). This paper proposes a new HEMS to optimally schedule home energy resources (HERs) in a high rooftop photo-voltaic penetrated environment. The proposed HEMS includes three stages: forecasting, day-ahead scheduling, and actual opera-tion. In the forecasting stage, short-term forecasting is per-formed to generate day-ahead forecasted photovoltaic solar pow-er and home load profiles; in the day-ahead scheduling stage, a Peak-to-Average Ratio (PAR) constrained coordinated HER scheduling model is proposed to minimize the 1-day home opera-tion cost; in the actual operation stage, a Model Predictive Con-trol (MPC) based operational strategy is proposed to correct HER operations with the update of real-time information, so as to minimize the deviation of actual and day-ahead scheduled net-power consumption of the house. An adaptive thermal comfort model is applied in the proposed HEMS to provide decision-support on the scheduling of the heating, ventilating, and air con-ditioning (HVAC) system of the house. The proposed approach is then validated based on Australian real datasets.
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Date
2018-09-20Publisher
IEEE Transactions on Industrial InformaticsCitation
F. Luo, G. Ranzi, C. Wan, Z. Xu and Z. Y. Dong, "A Multistage Home Energy Management System With Residential Photovoltaic Penetration," in IEEE Transactions on Industrial Informatics, vol. 15, no. 1, pp. 116-126, Jan. 2019. doi: 10.1109/TII.2018.2871159Share