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The Future of Decentralized Electricity Distribution Networks assesses the evolution of the services delivered by the distribution network as demands placed on it proliferates from distributed, self-generating, power storing and power sharing ‘consumers’ – which Sioshansi terms ‘prosumagers’. The work outlines the processes by which passive and homogeneous electricity consumers become prosumers and prosumagers, the nature of their service needs, and dependence on the services delivered by the distribution network diverges. Contributors assess how consumers are discovering and exercising options to migrate away from total reliance on upstream generators to produce electricity and on the delivery network for its transmission.
Distributed generation of electric power --- Electric power systems --- Electric utilities --- Electric companies --- Electric light and power industry --- Electric power industry --- Electric industries --- Energy industries --- Public utilities --- Power systems, Electric --- Systems, Electric power --- Electric power production --- Decentralized generation of electric power --- Generation of electric power, Distributed --- Distributed resources (Electric utilities) --- Economic aspects. --- Government policy.
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The future of the distributed energy generation market is promising, with opportunities in the residential, commercial, and industrial sectors driven by increasing awareness of clean energy, greenhouse gas (GHG) emission reduction targets, and rising global demand for energy. This book focuses on UN Sustainable Development Goal 7, which aims to "ensure access to affordable, reliable, sustainable, and modern energy for all." It provides research results, applications, and case studies on the potential of distributed energy resources as a solution to building a low-carbon society. Coverage includes modeling and evaluation of distributed power systems, system maintenance and reliability, economic potential and implications of hydrogen energy systems, grid stabilization and carbon emission reduction, smart design, and the impact of energy penetration on public power grids. Case studies include the effects of renewable energy policies on solar photovoltaic energy in China, Germany, Japan, and the United States of America and a feasibility assessment of distributed energy systems in Shanghai. Distributed Energy Resources: Solutions for a Low Carbon Society will be a valuable resource for postgraduate students and researchers in energy systems, urban energy management, and renewable energy technologies and a reference guide for practicing engineers, urban energy planners, and energy system managers. Discusses the future of the distributed energy generation market Examines residential, commercial, and industrial energy sectors Includes case studies. .
Renewable energy sources. --- Energy policy. --- Energy and state. --- Electric power distribution. --- Hydrogen as fuel. --- Sustainability. --- Renewable Energy. --- Energy Policy, Economics and Management. --- Energy Grids and Networks. --- Hydrogen Energy. --- Sustainability science --- Human ecology --- Social ecology --- Hydrogen energy --- Fuel --- Electricity --- Power distribution, Electric --- Electric power systems --- Power transmission --- Electric power transmission --- Electrification --- Energy and state --- Power resources --- State and energy --- Industrial policy --- Energy conservation --- Alternate energy sources --- Alternative energy sources --- Energy sources, Renewable --- Sustainable energy sources --- Renewable natural resources --- Agriculture and energy --- Distribution --- Government policy --- Distributed generation of electric power. --- Decentralized generation of electric power --- Generation of electric power, Distributed --- Distributed resources (Electric utilities) --- Electric power production
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