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This work presents a layout design method for a grid-connected PV-Battery-Diesel microgrid considering the effect of the applied power management strategy among the system's components. The proposed microgrid is dedicated to those areas in the world which suffer from prolonged grid outages and depend mainly on diesel generators to cover the periods of power deficit. Conventionally, such hybrid microgrids...
Theobjectiveof this paper is to develop an optimally-sized microgrid system composed of wind turbine, diesel generator and hydrogen-based energy storage system for a remote community. The goal is to meet the instantaneous demand, while minimizing the cost of electricity and adverse impacts of burning fossil fuels on the environment. The wind turbine is the main source of energy. The electrolyser is...
This paper demonstrates that the incorporation of optimally-rated energy storage units and renewable generators into a remote microgrid, in conjunction with an optimal dispatching strategy, can result in substantial reduction in the microgrid lifetime cost and emission. The application of such a microgrid can be in the electrification of off-grid remote communities which, typically, heavily depend...
This paper demonstrates that optimal selection of renewable power generators and energy storage devices in a grid-connected micro-grid, in conjunction with an optimal dispatch strategy, can significantly reduce the micro-grid lifetime cost and emission. The paper presents a mathematical model and optimization algorithm to identify the optimal micro-grid configuration (in terms of the installed capacities...
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