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Demand Side Management (DSM) is to be handled in a better coordinated way with the increase in the intermittency of the renewable energy sources (RES) into the power sector. With the implementation of centralized control having its own drawbacks, Microgrids are emerging as a potential entity for managing it efficiently. In this paper, an agent based approach for the implementation of the supply and...
This paper proposes a new demand-side management (DSM) scheme for autonomous DC microgrid for the future building. The DC distribution system is considered as a prospective system due to the increase of DC loads and DC power sources such as photovoltaic (PV), and battery bank (BB). The BB responds to the changes in power imbalance between PV generation and demand within an autonomous DC microgrid...
This paper presents a compressive introduction to the development of a simulation platform for smart multi-terminal DC micro-grid (sMTdc), this tool will facilitate the development of DC network to support a low-carbon sustainable electricity supply system. The simulation platform uses a compressive set of high-resolution (1-min) sub-models: generation (photovoltaic, wind power), demand (individual...
A microgrid consists of many small scale distributed energy resources, energy storage devices, loads and communication links. It customarily operates in the grid interconnected mode but is also capable of operating in an islanded mode. With the growing demand of clean energy power generation, the renewable energy generation systems mainly solar, wind and fuel cells are slowly appearing within the...
DC microgrids are desired to provide the electricity for the remote areas which are far from the main grid. The microgrid creates the open horizontal environment to interconnect the distributed generation especially photovoltaic (PV). The stochastic nature of the PV output power introduces the large fluctuations of the power and voltage in the microgrid and forced to introduce the controller for voltage...
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