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Book Cover
E-book
Author Tripathi, Saurabh Mani (Electrical engineer)

Title Energy Conversion
Published New York : Nova Science Publishers, Incorporated, 2022

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Description 1 online resource (358 p.)
Series Energy Science, Engineering and Technology Ser
Energy science, engineering and technology series.
Contents Intro -- Contents -- Preface -- Acknowledgments -- List of Reviewers -- Chapter 1 -- Photovoltaic Generators: Development, Simulation and Perspectives -- Abstract -- Introduction -- Principle of Photo-Electric Conversion -- Photovoltaic Conversion -- Different Photovoltaic Technologies -- Crystalline Silicon-Based Photovoltaic Modules -- High Efficiency Multi-Junction Cells -- New Photovoltaic Technologies -- Thin Film Technology -- Thin Film Silicon -- Non-Silicon Materials -- Thin Film Multi-Junctions -- Fundamental and Technological Losses in GPV -- Current Architecture of Commercial GPV
Fill Factor of GPV -- Modeling and Simulation of GPV -- Ideal Model -- Two Parameter Models -- Five Parameter Models -- Two Diode Models -- Empirical SNL Model -- Thermal Model of GPV -- Conclusion -- References -- Chapter 2 -- Performance Analysis of Solar Energy Conversion Technology -- Abstract -- Nomenclature -- Introduction -- Solar Thermal System -- Non-Concentrating Collectors -- Flat Plate Collector (FPC) -- Evacuated Tube Collector (ETC) -- Concentrating Collectors -- Linear Fresnel Reflector (LFR) -- Parabolic Trough Collector (PTC) -- Compound Parabolic Collector (CPC)
Central Receiver (CR) -- Parabolic Dish Collector (PDC) -- Photovoltaic System -- Hybrid Solar System -- PV Air Collector -- System Description -- Thermal Modeling -- Opaque Type Photovoltaic-Thermoelectric Cooler with Air Duct -- PV Module of Opaque Type -- Tedlar -- TEC -- Duct -- Result and Discussion -- Conclusion -- Appendix -- References -- Chapter 3 -- An Extended Study of Frequency-Supported Wind Energy Conversion Systems -- Abstract -- Nomenclature -- Introduction -- Literature Review -- Wind Energy Conversion System (WECS) -- Dynamics of WTG -- Operating Regions and MPPT Used for WECS
Tip-Speed-Ratio (TSR) Algorithm -- Result and Discussion -- Scenario 1 -- Scenario 2 -- Conclusion -- Acknowledgments -- References -- Chapter 4 -- RERNN-BCMO-Based Load Frequency Control in Multi-Area Power Systems Using Hybrid Renewable Energy Sources -- Abstract -- Introduction -- Multi-Area Power System for LFC -- Problem Formulation -- Proposed Approach -- Recalling-Enhanced Recurrent Neural Network (RERNN) -- Step 1: Initialization -- Step 2: Random Generation -- Step 3: Fitness Function -- Step 4: Check the Iteration -- Step 5: Find the Learning Rate -- Step 6: Calculation of New Weight
Step 7: Calculate the Direction -- Step 8: Termination -- Processing Steps of Balancing Composite Motion Optimization (BCMO) -- Step 1: Initialization -- Step 2: Random Generation -- Step 3: Fitness Function -- Step 4: Finding Instant Global Point -- Step 5: Selection -- Step 6: Updation -- Step 7: Termination -- Result and Discussion -- Conclusion -- References -- Chapter 5 -- A Review on State-of-the-Art Wind Energy Conversion Systems and Associated Control Strategies for Normal and Fault Conditions -- Abstract -- Introduction -- State-of-the-Art WECS -- WECS Control Aspects
Notes Description based upon print version of record
DFIG-Based WECS Control
Subject Energy conversion.
Energy conversion
Genre/Form Electronic books
Form Electronic book
ISBN 9798886974249