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Photovoltaic Systems Technology

Farhad Ilahi Bakhsh (Hrsg.), Hasmat Malik (Hrsg.), Md Waseem Ahmad (Hrsg.), P. Sanjeevikumar (Hrsg.), Mohammed Aslam Husain (Hrsg.)

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John Wiley & Sons img Link Publisher

Naturwissenschaften, Medizin, Informatik, Technik / Chemie

Beschreibung

PHOTOVOLTAIC SYSTEMS TECHNOLOGY Discover comprehensive insights into the latest advancements in solar PV technology, including power electronics, maximum power point tracking schemes, and forecasting techniques, with a focus on improving the performance of PV systems. A huge number of research articles and books have been published in the last two decades, covering different issues of PV efficiency, circuits, and systems for power processing and their related control. Books that have been published cover one or more topics but altogether fail to give a complete picture of the different aspects of PV systems. Photovoltaic Systems Technology aims to close the gap by providing a comprehensive review of techniques/practices that are dedicated to improving the performance of PV systems. The book is divided into three parts: the first part is dedicated to advancements in power electronic converters for PV systems; tools and techniques for maximum power point tracking of PV systems will be covered in the second part of the book; and the third part covers advancements in techniques for solar PV forecasting. The overall focus of the book is to highlight the advancements in modeling, design, performance under faulty conditions, forecasting, and application of solar photovoltaic (PV) systems using metaheuristic, evolutionary computation, machine learning, and AI approaches. It is intended for researchers and engineers aspiring to learn about the latest advancements in solar PV technology with emphasis on power electronics involved, maximum power point tracking (MPPT) schemes, and forecasting techniques.

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Schlagwörter

Elektrotechnik u. Elektronik, Power Electronics, Electrical & Electronics Engineering, Materialwissenschaften, Materialien f. Energiesysteme, Leistungselektronik, Materials Science, Materials for Energy Systems