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Integrated Modeling of Agrivoltaic Systems provides an overview of approaches to model, simulate, and optimize agrivoltaics systems, integrating modeling of PV systems, shading, microclimate, and crop yield, and enabling the reader to navigate this highly interdisciplinary area to meet their requirements and current and future policies. The book provides tools to build models that allow assessment before installation of the energy, crop, and water performances of agrivoltaics systems, considers economic aspects, and introduces other key topics such as finding suitable areas for the deployment of agrivoltaic systems and assessment of the environmental impact compared to conventional PV systems and agriculture.
This is a valuable resource for all those with an interest in agrivoltaic systems and their modeling, simulation, design, optimization, and development, including researchers, graduate students, faculty, engineers, R&D, developers, and other professionals.
Integrated Modeling of Agrivoltaic Systems provides an overview of approaches to model, simulate, and optimize agrivoltaics systems, integrating modeling of PV systems, shading, microclimate, and crop yield, and enabling the reader to navigate this highly interdisciplinary area to meet their requirements and current and future policies. The book provides tools to build models that allow assessment before installation of the energy, crop, and water performances of agrivoltaics systems, considers economic aspects, and introduces other key topics such as finding suitable areas for the deployment of agrivoltaic systems and assessment of the environmental impact compared to conventional PV systems and agriculture.
This is a valuable resource for all those with an interest in agrivoltaic systems and their modeling, simulation, design, optimization, and development, including researchers, graduate students, faculty, engineers, R&D, developers, and other professionals.
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