光伏系统
零能耗建筑
网格
环境科学
电
汽车工程
屋顶光伏电站
热能储存
储能
混合动力系统
可再生能源
计算机科学
工程类
电气工程
功率(物理)
电压
最大功率点跟踪
数学
物理
几何学
逆变器
量子力学
机器学习
热力学
作者
Haoxin Dong,Chuanbo Xu,Wenjun Chen
标识
DOI:10.1007/s12273-023-1066-5
摘要
Rooftop photovoltaic (PV) systems are represented as projected technology to achieve net-zero energy building (NEZB). In this research, a novel energy structure based on rooftop PV with electric-hydrogen-thermal hybrid energy storage is analyzed and optimized to provide electricity and heating load of residential buildings. First, the mathematical model, constraints, objective function, and evaluation indicators are given. Then, the simulation is conducted under the stand-alone condition. The annual return on investment and the levelized cost of energy of the system are 36.37% and 0.1016 $/kWh, respectively. Residential building with the proposed system decreases annual carbon emission by 25.5 t. In the third part, simulation analysis under different grid-connected modes shows that building system will obtain better economics when connected to the grid, but the low-carbon performance will be reduced. Finally, the cumulative seasonal impact of the countywide rooftop PV buildings is discussed. The result indicates that the energy structure proposed in this paper can effectively reduce the grid-connected impact on the local grid. This model and optimization method developed in this paper is applicable to different climate zones and can provide management support to the investors of NZEB before the field test.
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