Emerging Technologies for the Energy Systems of the Future
Energy systems are transiting from conventional energy systems to modernized and smart energy systems. This Special Issue covers new advances in the emerging technologies for modern energy systems from both technical and management perspectives. In modern energy systems, an integrated and systematic...
Format: | eBook |
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Language: | English |
Published: |
Basel, Switzerland
MDPI - Multidisciplinary Digital Publishing Institute
2021
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Online Access: | Open Access: DOAB: description of the publication Open Access: DOAB, download the publication |
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720 | 1 | |a Mohammadi-ivatloo, Behnam |4 edt | |
720 | 1 | |a Mohammadi-ivatloo, Behnam |4 oth | |
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245 | 0 | 0 | |a Emerging Technologies for the Energy Systems of the Future |
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520 | |a Energy systems are transiting from conventional energy systems to modernized and smart energy systems. This Special Issue covers new advances in the emerging technologies for modern energy systems from both technical and management perspectives. In modern energy systems, an integrated and systematic view of different energy systems, from local energy systems and islands to national and multi-national energy hubs, is important. From the customer perspective, a modern energy system is required to have more intelligent appliances and smart customer services. In addition, customers require the provision of more useful information and control options. Another challenge for the energy systems of the future is the increased penetration of renewable energy sources. Hence, new operation and planning tools are required for hosting renewable energy sources as much as possible. | ||
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653 | |a 100% renewable power generation | ||
653 | |a 100% renewable power system | ||
653 | |a Africa and energy security | ||
653 | |a ancillary services | ||
653 | |a ARMAX | ||
653 | |a balancing market | ||
653 | |a battery energy storage systems | ||
653 | |a bidirectional long short-term memory (Bi-LSTM) | ||
653 | |a black widow optimization | ||
653 | |a CO2 environmental assessment | ||
653 | |a deep learning | ||
653 | |a domestic hot water production | ||
653 | |a dynamic simulation | ||
653 | |a economic outcomes | ||
653 | |a electricity price forecasting (EPF) | ||
653 | |a energy | ||
653 | |a energy economics | ||
653 | |a energy management | ||
653 | |a energy storage | ||
653 | |a energy transition | ||
653 | |a food | ||
653 | |a fractional integrator | ||
653 | |a greenhouse gas emission | ||
653 | |a grid code | ||
653 | |a hybrid power plants | ||
653 | |a hybrid systems | ||
653 | |a individual and collective solar water heater systems | ||
653 | |a island power systems | ||
653 | |a marine microgrid | ||
653 | |a microgrid | ||
653 | |a Morocco | ||
653 | |a n/a | ||
653 | |a NARX-ANN | ||
653 | |a nexus | ||
653 | |a non-linear fractional integrator | ||
653 | |a photovoltaic | ||
653 | |a photovoltaic parks | ||
653 | |a power management | ||
653 | |a renewable energy sources | ||
653 | |a RES investments | ||
653 | |a residential and commercial loads | ||
653 | |a secondary voltage control | ||
653 | |a short-term load forecasting | ||
653 | |a solar hot waters | ||
653 | |a solar system | ||
653 | |a solar water heaters | ||
653 | |a spot market | ||
653 | |a supplementary control | ||
653 | |a tertiary voltage control | ||
653 | |a thermal performance | ||
653 | |a thermosyphon | ||
653 | |a tidal generation system | ||
653 | |a TRNbuild | ||
653 | |a TRNSYSstudio | ||
653 | |a water | ||
653 | |a wind energy | ||
653 | |a wind farms | ||
653 | |a wind power forecasting (WPF) | ||
653 | |a wind turbines | ||
653 | |a Zimbabwe | ||
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