图书简介
Worldwide, the effects of global warming, pollution due to power generation from fossil fuels, and its depletion have led to the rapid deployment of renewable energy-based power generation. The leading renewable technologies are wind and photovoltaic (PV) systems. The incorporation of this generation of technologies has led to the development of a broad array of new methods and tools to integrate renewable generation into power system networks.
The Handbook of Renewable Energy Technology & Systems comprises 22 chapters, arranged into four sections, which present a comprehensive analysis of various renewable energy-based distributed generation (DG) technologies. Aspects of renewable energy covered include wind and photovoltaic power systems and technology, micro-grids, power electronic applications, power quality, and the protection of renewable distributed generation.
Key Feature:
o This Handbook of Renewable Energy Technology & Systems covers various aspects of renewable Energy Wind, Photovoltaic, Micro-grid, Power Electronic Applications, Power Quality, Protection of Renewable Distributed Generation, etc.
Steady State Modelling of DFIG-based Wind Energy System for Unbalance Operation; Study of Mathematical Modelling and Small-Signal Stability of a Wind-Driven DFIG-based System using Different Types of Control Approach; Voltage Stability with Wind Power Generation; Seasonal impacts of Wind Turbine Integration on the Performance of Radial Distribution Networks; A Comparative Case Study with Practical Wind Data of Southern India; Wind Power Plant System Services; Solar Thermal Electric Power Plants; Solar Energy Calculations; Parameter Estimation of Solar PV and Impact of Environmental Conditions; Power Electronics for Solar Photovoltaic System: Configuration; Topologies and Control; Design Aspects for Solar Modules, Selection of Battery and Protection Schemes; Modelling using Single-Phase Grid; Techno-Commercial Analysis of Micro Inverters as Future Technology in solar PV Power Generation; Protection of Feeders with High Rooftop PV Penetration; Design and Evaluation of Microgrids Based on Renewable Energy Technologies with a Perspective of Sustainable Development; Optimum Sizing of Hybrid Energy Systems; Techno-economic Evaluation of Hybrid Renewable Energy Sources for a University Campus; Optimal Distributed Resources Allocation in Contemporary Distribution Systems; Multi-objective Approach for the Placement of DG units with Optimum Power Factor Along with Shunt Capacitors in Distribution Systems; Control and Stability of Microgrid; Power Quality Problems and Solutions in Renewable Energy Systems; Optimal Economic Incentive for Renewable Energy in Composite Expansion Planning; Demand Dispatch for Sustainable Renewable Energy Integration in Prosumer Smart Grids;
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