Design and Simulation of Low-Cost Microgrid Controller in Off-Grid Remote Areas

Tapparit Bangtit
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Abstract

This study presents the microgrid controller with an energy management strategy for an off-grid microgrid, consisting of an energy storage system (ESS), photovoltaic system (PV), micro-hydro, and diesel generator. The aim is to investigate the improved electrical distribution and off-grid operation in remote areas. The off-grid microgrid model and the control algorithms developed using MATLAB Simulink and State flow. The energy management system is focusing on the state of charge of the energy storage system. The microgrid controller controls the operation mode and power generation from the distributed generations’ local controller, i.e., PV, micro-hydro, and diesel. It also controls the smart meters of the loads to be connected or disconnected to the microgrid. The simulation results show that the proposed microgrid control can control the target off-grid microgrid in given possible scenarios. The off-grid microgrid managed to meet the energy demand with the lowest power outage and the diesel generator operation’s lowest cost.
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偏远地区低成本微电网控制器的设计与仿真
本研究提出了一种针对离网微电网的能量管理策略的微电网控制器,该微电网由储能系统(ESS)、光伏系统(PV)、微水电和柴油发电机组成。目的是调查改进后的配电和离网运行在偏远地区。利用MATLAB Simulink和State flow开发了离网微电网模型和控制算法。能量管理系统关注的是储能系统的充电状态。微网控制器控制分布式发电机组的本地控制器,即光伏、微水电和柴油的运行方式和发电量。它还控制连接或断开微电网的负载的智能电表。仿真结果表明,所提出的微网控制方法能够在给定的可能情况下控制目标离网微网。离网微电网以最低的停电和最低的柴油发电机运行成本满足了能源需求。
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