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Off-Grid Electrification of Rural Areas using Hybrid Energy Systems: Pre-feasibility Analysis of Hybrid Renewable Energy Systems for Remote Areas Based on Simulation in HOMER Software - Softcover

 
9786206166047: Off-Grid Electrification of Rural Areas using Hybrid Energy Systems: Pre-feasibility Analysis of Hybrid Renewable Energy Systems for Remote Areas Based on Simulation in HOMER Software

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The work presented in this book is to find a technically feasible and economically viable hybrid energy system suitable for off-grid electrification of remote areas. The cost configurations of different micro-power systems to fulfil the projected energy demand are made. The three case studies covered multiple key aspects of hybrid renewable energy systems. The work is focused mainly on the technical, economic, financial, and environmental impacts of the hybrid systems. The design parameters of the system, like type of load, source of energy, availability of meteorology data, storage, etc., different optimizations and objectives, software, modelling tools, and type of application, were analyzed for three case studies using HOMER simulation software. The results indicate that hybrid systems comprising PV, wind, generators, and batteries are often feasible as they emit less CO2. The analysis in our studies shows that in order to increase the output of the hybrid system, combined use of PV and wind hybrid systems may be adopted. Therefore, the current arrangement of the diesel-powered stand-alone system can be replaced by the PV, wind, battery, or generator system.

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Ghaywat, Akshay; Sawle, Yashwant; Vijaykumar Mahamuni, Chaitanya
Published by LAP LAMBERT Academic Publishing, 2023
ISBN 10: 620616604X ISBN 13: 9786206166047
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Ghaywat, Akshay; Sawle, Yashwant; Vijaykumar Mahamuni, Chaitanya
Published by LAP LAMBERT Academic Publishing, 2023
ISBN 10: 620616604X ISBN 13: 9786206166047
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Ghaywat, Akshay; Sawle, Yashwant; Vijaykumar Mahamuni, Chaitanya
Published by LAP LAMBERT Academic Publishing, 2023
ISBN 10: 620616604X ISBN 13: 9786206166047
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Akshay Ghaywat
ISBN 10: 620616604X ISBN 13: 9786206166047
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Taschenbuch. Condition: Neu. This item is printed on demand - it takes 3-4 days longer - Neuware -The work presented in this book is to find a technically feasible and economically viable hybrid energy system suitable for off-grid electrification of remote areas. The cost configurations of different micro-power systems to fulfil the projected energy demand are made. The three case studies covered multiple key aspects of hybrid renewable energy systems. The work is focused mainly on the technical, economic, financial, and environmental impacts of the hybrid systems. The design parameters of the system, like type of load, source of energy, availability of meteorology data, storage, etc., different optimizations and objectives, software, modelling tools, and type of application, were analyzed for three case studies using HOMER simulation software. The results indicate that hybrid systems comprising PV, wind, generators, and batteries are often feasible as they emit less CO2. The analysis in our studies shows that in order to increase the output of the hybrid system, combined use of PV and wind hybrid systems may be adopted. Therefore, the current arrangement of the diesel-powered stand-alone system can be replaced by the PV, wind, battery, or generator system. 92 pp. Englisch. Seller Inventory # 9786206166047

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Akshay Ghaywat|Yashwant Sawle|Chaitanya Vijaykumar Mahamuni
Published by LAP LAMBERT Academic Publishing, 2023
ISBN 10: 620616604X ISBN 13: 9786206166047
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Condition: New. Dieser Artikel ist ein Print on Demand Artikel und wird nach Ihrer Bestellung fuer Sie gedruckt. Autor/Autorin: Ghaywat AkshayMr. Akshay Ghaywat is the main author and holds the credit for the software simulation, results analysis, and first draft of the writing.Dr. Yashwant Sawle is highly acknowledged for conceptualization and methodology fo. Seller Inventory # 891538520

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Akshay Ghaywat
ISBN 10: 620616604X ISBN 13: 9786206166047
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Taschenbuch. Condition: Neu. Neuware -The work presented in this book is to find a technically feasible and economically viable hybrid energy system suitable for off-grid electrification of remote areas. The cost configurations of different micro-power systems to fulfil the projected energy demand are made. The three case studies covered multiple key aspects of hybrid renewable energy systems. The work is focused mainly on the technical, economic, financial, and environmental impacts of the hybrid systems. The design parameters of the system, like type of load, source of energy, availability of meteorology data, storage, etc., different optimizations and objectives, software, modelling tools, and type of application, were analyzed for three case studies using HOMER simulation software. The results indicate that hybrid systems comprising PV, wind, generators, and batteries are often feasible as they emit less CO2. The analysis in our studies shows that in order to increase the output of the hybrid system, combined use of PV and wind hybrid systems may be adopted. Therefore, the current arrangement of the diesel-powered stand-alone system can be replaced by the PV, wind, battery, or generator system.Books on Demand GmbH, Überseering 33, 22297 Hamburg 92 pp. Englisch. Seller Inventory # 9786206166047

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Akshay Ghaywat
Published by LAP LAMBERT Academic Publishing, 2023
ISBN 10: 620616604X ISBN 13: 9786206166047
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Taschenbuch. Condition: Neu. nach der Bestellung gedruckt Neuware - Printed after ordering - The work presented in this book is to find a technically feasible and economically viable hybrid energy system suitable for off-grid electrification of remote areas. The cost configurations of different micro-power systems to fulfil the projected energy demand are made. The three case studies covered multiple key aspects of hybrid renewable energy systems. The work is focused mainly on the technical, economic, financial, and environmental impacts of the hybrid systems. The design parameters of the system, like type of load, source of energy, availability of meteorology data, storage, etc., different optimizations and objectives, software, modelling tools, and type of application, were analyzed for three case studies using HOMER simulation software. The results indicate that hybrid systems comprising PV, wind, generators, and batteries are often feasible as they emit less CO2. The analysis in our studies shows that in order to increase the output of the hybrid system, combined use of PV and wind hybrid systems may be adopted. Therefore, the current arrangement of the diesel-powered stand-alone system can be replaced by the PV, wind, battery, or generator system. Seller Inventory # 9786206166047

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