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Title Smart Grid Design With Hybrid Renewable Energy Management Systems For Smart Cities
ID_Doc 50960
Authors Pravinth Raja S.; Vidhya Banu B.; Sapna R.
Year 2023
Published Applications of 5G and Beyond in Smart Cities
DOI http://dx.doi.org/10.1201/9781003227861-9
Abstract The input resource, switching states, and changing load are all factors in the design of a grid-connected system in a smart city. On a smart grid circuit, we propose combining solar modules and wind generators as a hybrid renewable energy system. In this case, a blend of solar and wind energy provides a constant supply to meet energy requirements. By providing the required power, the switching state decreases power loss and improves performance. The switching state is activated based on energy demand, and it employs the grid distribution system. When the photovoltaic module uses the wind generator module, it can deliver electricity during the day and at night. If there are no sunny days, the photovoltaic module will not give the required energy. Whenever power is needed, the wind turbine supplies an alternate source. Users benefit from a constant supply offered by a hybrid design with a smart grid circuit. By utilizing efficient hybrid resources, a variable load and an effective energy management system can be developed. By minimizing power losses and the computing time to use the power, an improved switching strategy allows a better energy management system. By comparing previous approaches, our study shows that a superior result is achieved by ensuring a constant supply of energy. © 2023 selection and editorial matter, Ambar Bajpai and Arun Balodi; individual chapters, the contributors.
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