Operation evaluation of BIPV public building photovoltaic system based on data analysis: case study on a high-speed railway station
Zequn Zhang, Meng Wang, Bin Xu, Chun‐Hua Dong
Abstract
Zequn Zhang, Meng Wang, Bin Xu, Chun‐Hua Dong
Abstract
Against the backdrop of global consensus on protecting the ecological environment and reducing carbon emissions, an increasing number of the Building Integrated Photovoltaic (BIPV) projects have been built around the world. Taking a high-speed railway station as an example, this paper quantitatively analyses the operating parameters and benefits of the project’s photovoltaic system based on predicted and measured data, and then obtains the actual operating effects of the photovoltaic system, thereby verifying the good benefits of BIPV technology in economic and social aspects.
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Against the backdrop of global consensus on protecting the ecological environment and reducing carbon emissions, an increasing number of the Building Integrated Photovoltaic (BIPV) projects have been built around the world. Taking a high-speed railway station as an example, this paper quantitatively analyses the operating parameters and benefits of the project’s photovoltaic system based on predicted and measured data, and then obtains the actual operating effects of the photovoltaic system, thereby verifying the good benefits of BIPV technology in economic and social aspects.
Key concepts: Building-integrated photovoltaics, Photovoltaic system, Rooftop photovoltaic power station, Computer science, Environmental science, Architectural engineering, Automotive engineering, Engineering