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Periodical
Journal of energy management and technology
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ISSN: 25883372 Year: 2017 Publisher: Tehran : Iran Energy Association (IEA),

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Book
Changing energy
Author:
ISBN: 0520962842 9780520962842 9780520287785 Year: 2017 Publisher: Oakland, California

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Abstract

Changing Energy outlines how humanity established the current energy economy through three previous transitions, and how we now stand poised for a necessary fourth transition. Human societies around the globe have received immense benefits from uses of coal, oil, gas, and uranium sources, yet we must now rebuild our energy economies to rely on renewable sources and use them efficiently. The imperative for a fourth energy transition comes from dangers related to climate change, geopolitical tensions, documented health and environmental effects, and long-term depletion of today's sources. John H. Perkins argues that a future in which current levels of energy service benefits are sustained can come only from investments in the technologies needed to bring about a fourth energy transition. Changing Energy envisions a viable post-fossil fuel economy and identifies the barriers to be overcome.


Book
Renewable and Sustainable Energy: Current State and Prospects
Authors: ---
ISBN: 3036552324 3036552316 Year: 2022 Publisher: MDPI - Multidisciplinary Digital Publishing Institute

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The renewable energy sector is one of the fastest growing branches of the economy in the world, including in Poland. Extensive investigation in research centers results in the increased efficiency of obtaining energy from renewable sources, as well as a decrease in the prices of renewable energy installations. The development of renewable energy motivates further research and the development of new technologies. Investments in renewable energy may also benefit the local community by increasing the attractiveness of the region to tourists, creating opportunities for professional activation (especially in areas with high unemployment), increasing the competitiveness of the local economy and its energy efficiency and obtaining raw materials from local producers, mainly farmers, which are an additional source of income for them. Another possible economic advantage is charging lease fees, for instance, for land under wind turbines or fees for ground easement, in order to ensure access to the construction of power lines, e.g., connecting turbines to the grid; lowering heat prices for residents of a given town; building investment plots in or near heat plants and biogas plants, with the provision of heat and electricity at competitive prices directly from these plants; investors covering the costs of modernizing local roads; and creating new transmission, power lines and supply points.


Periodical
Calibre : revista Brasiliense de engenharia e física aplicada.
Author:
ISSN: 25264192 Year: 2016 Publisher: Brasília : Centro Universitário ICESP de Brasília,


Book
Economic and Social Consequences of the COVID-19 Pandemic in Energy Sector
Authors: --- ---
ISBN: 3036560793 3036560807 Year: 2022 Publisher: Basel MDPI - Multidisciplinary Digital Publishing Institute

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The purpose of the Special Issue was to collect the results of research and experience on the consequences of the COVID-19 pandemic for the energy sector and the energy market, broadly understood, that were visible after a year. In particular, the impact of COVID-19 on the energy sector in the EU, including Poland, and the US was examined. The topics concerned various issues, e.g., the situation of energy companies, including those listed on the stock exchange, mining companies, and those dealing with renewable energy. The topics related to the development of electromobility, managerial competences, energy expenditure of local government units, sustainable development of energy, and energy poverty during a pandemic were also discussed.

Keywords

Research & information: general --- Physics --- energy manager --- competences --- labor market --- energy industry --- COVID-19 --- decarbonizing transport --- energy efficiency --- electrify transport --- zero-emissions vehicles --- sustainable transport --- electric car charging points --- novel coronavirus pandemic --- alternative energy --- stock market sectors --- stock market companies --- energy --- energy company --- efficiency --- financial analysis --- pandemic --- environmental protection --- environmental problems --- greenhouse gas --- particulate matter (PM) --- renewable energy --- corruption --- electromobility --- companies in the Transport-Shipping-Logistics Sector --- pandemic-COVID-19 --- development --- self-government units --- energy consumption --- monitoring --- energy consumption effectiveness --- sustainable energy development --- households --- OPEC --- crude price --- volatility --- storage crisis --- futures --- shale --- electric vehicles market and policy --- electric vehicles --- purchase intention --- e-mobility --- consumers preferences --- consumer decision making --- social values --- delay discounting --- cultural factors --- economic factors --- machine learning methods --- sustainability --- energy poverty --- economic uncertainty --- energy policy --- policy measures --- reducing energy intensity --- ranking of countries’ energy intensity --- multi-criteria analysis --- sectors of the economy --- economic effects of the pandemic --- social effects of the pandemic --- countries of Western Europe --- countries of Central and Eastern Europe --- mining sector --- initiatives and adaptation measures --- economic situation --- COVID-19 pandemic --- fossil fuel energy --- carbon dioxide emissions --- nonlinear autoregressive distributed lag model --- frequency domain causality test --- Markow switching regression --- photovoltaics --- pandemics --- changes in energetic balance due to COVID-19 --- renewable sources of energy during pandemics --- United States --- energy sector --- fossil fuel --- emissions --- expenditures


Book
Market Design for a High-Renewables Electricity System
Author:
Year: 2020 Publisher: Basel, Switzerland MDPI - Multidisciplinary Digital Publishing Institute

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The book provides assessments and evaluations of emerging trends in the electricity markets, with a focus on high-renewables electricity systems. Specifically, various issues are examined, such as wind and solar energy, interconnection, smart meters, smart grids of the future (including their social implications), and peer-to-peer (P2P) electricity trading, which is closely connected to the principle of a sharing economy. The book also contemplates how the market design for a high-renewables electricity system would be different from the classical post-liberalization market design.

Keywords

Research & information: general --- renewable energy --- sustainable development --- gross domestic product --- GDP --- electrical capacity --- energy intensity --- hierarchical cluster analysis --- energy policy --- wholesale market design --- Electricity markets --- power system --- conceptual architecture --- distributed generation --- flexible resources --- local electricity markets --- electricity market design --- direct current --- distribution system --- local market --- flexibility --- microgrids --- continuous double auction --- Q-learning algorithm --- battery energy storage system, Q-cube framework --- bidding strategy --- emissions trading --- electricity price --- econometric modeling --- time series analysis --- emission allowance --- electricity market --- speculative trading --- forward market --- integration of renewable sources --- integrated markets --- co-optimization --- reserve allocation --- biofuels --- electricity generation --- power sector --- biomass --- Jatropha curcas --- system integration --- power industry --- state policy --- smart metering --- tariff rates --- system marginal price --- renewable energy sources --- photovoltaics --- day ahead market --- merit order curve --- electricity demand --- seasonal and daily variation --- RES (renewable energy sources) surcharge --- energy market --- artificial intelligence --- digital platform --- peer-to-peer --- trading mechanism --- clearing model --- clearing algorithm --- trading platform --- sustainability --- Internet of Energy --- smart meters --- smart grid --- husk --- energy supply --- efficiency --- carbon dioxide --- emissions --- energy efficiency --- economic growth --- energy consumption --- Czech Republic --- Slovakia


Book
Market Design for a High-Renewables Electricity System
Author:
Year: 2020 Publisher: Basel, Switzerland MDPI - Multidisciplinary Digital Publishing Institute

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Abstract

The book provides assessments and evaluations of emerging trends in the electricity markets, with a focus on high-renewables electricity systems. Specifically, various issues are examined, such as wind and solar energy, interconnection, smart meters, smart grids of the future (including their social implications), and peer-to-peer (P2P) electricity trading, which is closely connected to the principle of a sharing economy. The book also contemplates how the market design for a high-renewables electricity system would be different from the classical post-liberalization market design.

Keywords

renewable energy --- sustainable development --- gross domestic product --- GDP --- electrical capacity --- energy intensity --- hierarchical cluster analysis --- energy policy --- wholesale market design --- Electricity markets --- power system --- conceptual architecture --- distributed generation --- flexible resources --- local electricity markets --- electricity market design --- direct current --- distribution system --- local market --- flexibility --- microgrids --- continuous double auction --- Q-learning algorithm --- battery energy storage system, Q-cube framework --- bidding strategy --- emissions trading --- electricity price --- econometric modeling --- time series analysis --- emission allowance --- electricity market --- speculative trading --- forward market --- integration of renewable sources --- integrated markets --- co-optimization --- reserve allocation --- biofuels --- electricity generation --- power sector --- biomass --- Jatropha curcas --- system integration --- power industry --- state policy --- smart metering --- tariff rates --- system marginal price --- renewable energy sources --- photovoltaics --- day ahead market --- merit order curve --- electricity demand --- seasonal and daily variation --- RES (renewable energy sources) surcharge --- energy market --- artificial intelligence --- digital platform --- peer-to-peer --- trading mechanism --- clearing model --- clearing algorithm --- trading platform --- sustainability --- Internet of Energy --- smart meters --- smart grid --- husk --- energy supply --- efficiency --- carbon dioxide --- emissions --- energy efficiency --- economic growth --- energy consumption --- Czech Republic --- Slovakia


Book
Market Design for a High-Renewables Electricity System
Author:
Year: 2020 Publisher: Basel, Switzerland MDPI - Multidisciplinary Digital Publishing Institute

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Abstract

The book provides assessments and evaluations of emerging trends in the electricity markets, with a focus on high-renewables electricity systems. Specifically, various issues are examined, such as wind and solar energy, interconnection, smart meters, smart grids of the future (including their social implications), and peer-to-peer (P2P) electricity trading, which is closely connected to the principle of a sharing economy. The book also contemplates how the market design for a high-renewables electricity system would be different from the classical post-liberalization market design.

Keywords

Research & information: general --- renewable energy --- sustainable development --- gross domestic product --- GDP --- electrical capacity --- energy intensity --- hierarchical cluster analysis --- energy policy --- wholesale market design --- Electricity markets --- power system --- conceptual architecture --- distributed generation --- flexible resources --- local electricity markets --- electricity market design --- direct current --- distribution system --- local market --- flexibility --- microgrids --- continuous double auction --- Q-learning algorithm --- battery energy storage system, Q-cube framework --- bidding strategy --- emissions trading --- electricity price --- econometric modeling --- time series analysis --- emission allowance --- electricity market --- speculative trading --- forward market --- integration of renewable sources --- integrated markets --- co-optimization --- reserve allocation --- biofuels --- electricity generation --- power sector --- biomass --- Jatropha curcas --- system integration --- power industry --- state policy --- smart metering --- tariff rates --- system marginal price --- renewable energy sources --- photovoltaics --- day ahead market --- merit order curve --- electricity demand --- seasonal and daily variation --- RES (renewable energy sources) surcharge --- energy market --- artificial intelligence --- digital platform --- peer-to-peer --- trading mechanism --- clearing model --- clearing algorithm --- trading platform --- sustainability --- Internet of Energy --- smart meters --- smart grid --- husk --- energy supply --- efficiency --- carbon dioxide --- emissions --- energy efficiency --- economic growth --- energy consumption --- Czech Republic --- Slovakia


Book
Microgrids
Author:
ISBN: 3039218697 3039218689 Year: 2020 Publisher: MDPI - Multidisciplinary Digital Publishing Institute

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Electrical power systems are evolving at the generation, transmission, and distribution levels. At distribution level, small generating and storage units—the so-called distributed energy sources (DERs)—are being installed close to consumption sites. The expansion of DERs is empowering renewable energy source integration and, as a consequence, new actors are appearing in electrical systems. Among them, the prosumer is a game-changer; the fruit of the behavior transformation of the consumer who has not only the ability to consume power but also to produce it. Microgrids can be understood as DER installations that have the capability of both grid-connected and grid-isolated operation. During the last decades, there has been a significant deployment of microgrids (e.g., in countries like the United States, Switzerland, and Denmark) and a consequent increase in renewable energy generation. This is contributing to the decarbonization of electrical power systems. However, the variability and intermittency of renewable sources introduce uncertainty, which implies a more complex operation and control. Taking into account that existing and future planned microgrids are being/going to be interconnected to the current electrical network, challenges in terms of design, operation, and control at power system level need to be addressed, considering existing regulations.

Keywords

energy management system --- buck-boost converter --- generic object oriented substation event (GOOSE) communication --- stochastic optimization --- optimal dispatch --- decision tree --- coordinated control --- optimization --- congestion problems --- distributed optimization --- IEC 61850 Standard --- distributed energy resources (DERs) --- technical and economic optimization --- reliability evaluation --- power quality disturbances --- renewable --- DC microgrid --- HESS --- ruleless EV --- extension theory --- network planning --- integrated electrical and thermal grids --- reliability --- photovoltaic feasibility --- flexibility --- microgrid test facility --- microgrid --- multiresolution --- small-scale standalone microgrid --- IEC 61850 --- direct search method (DSM) --- maximum electrical efficiency --- load frequency control (LFC) --- droop control --- flexible generation --- grid independence --- frequency control --- particle swarm optimization --- battery storage --- microgrid stability controller (MSC) --- doubly fed induction machine --- coordinative optimization of energy --- power distribution --- hierarchical control scheme --- grounding --- operation --- electric energy market --- nonlinear programming --- cost and life --- total sliding-mode control --- distributed energy resource --- vehicle information system --- peak-cut --- smoothing wind power --- genetic algorithm --- medium-voltage networks --- vehicle-to-grid --- devices scheduling --- microgrids --- energy storage --- electric vehicle --- energy efficiency --- active filter --- embedded system --- multivariable generalized predictive control (MGPC) --- load power sharing --- flywheel energy storage (FES) --- renewable sources --- telecommunication power management --- micro-grid --- smart inverter --- distributed generation --- storage systems --- electric vehicle (EV) --- microgrid (MG) --- mesh configuration --- residential users --- renewable energy source --- radial configuration --- S-transform --- optimal power flow --- solid oxide fuel cell --- vehicle-to-grid (V2G) --- communication delay --- current harmonic reduction --- smart grids --- inrush current --- flexible and configurable architecture --- optimal capacity --- ESS effective rate --- smart grid --- multi-agent --- distributed energy resources --- regular EV --- peak-shift --- datacenter --- deterministic optimization --- plug and play --- chaos synchronization detection --- residential power systems --- power quality --- combined power generation system --- DC distribution --- isolated grid --- coordinated control strategy --- DC architectures --- predictive control --- demand-side management --- distributed generation (DG) --- curtailment

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