An active power management strategy in a microgrid having static and rotating generators considering generation limits using water pumping loads

A. Tomar, Dushyant Sharma, S. Mishra
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Abstract

In this paper, control and operation of a microgrid having inverter based solar photovoltaic (PV) and diesel engine is presented. The microgrid is designed to meet rural applications. In the proposed microgrid, a water pumping system is considered as a dump load for ensuring economic operation of microgrid. Three scenarios i.e fully loaded, partially loaded and lightly loaded are considered to evaluate the performance of proposed microgrid. In fully loaded condition, PV operates at MPPT for extraction of maximum power and the diesel generator is operating at rated power. In second scenario, when the power demand is less, PV operates in de-rating mode to avoid operation of diesel generator below minimum operating limits; and thus ensures economical operation of the microgrid. However in lightly loaded condition or in case of low solar irradiation when PV power is already close to zero; a dump load is turned ON to ensure the operation of diesel generator in proper technical range. The paper shows the control of water pump as per the available demand and generation. To verify the performance of the proposed system, simulation in MATLAB/SIMULINK environment is performed and it is concluded that proposed microgrid with water pumping system as dump load ensures economical operation of microgrid.
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考虑抽水负荷发电限制的静态和旋转发电机微电网有源电源管理策略
本文研究了由逆变器太阳能光伏发电和柴油机组成的微电网的控制和运行。微电网是为满足农村应用而设计的。在本文提出的微电网中,将抽水系统作为保证微电网经济运行的倾卸负荷。考虑了全负荷、部分负荷和轻负荷三种情况来评估所提出的微电网的性能。在满负荷工况下,光伏发电以最大功率运行,提取最大功率,柴油发电机以额定功率运行。在第二种情况下,当电力需求较少时,光伏以降级模式运行,以避免柴油发电机低于最小运行限值运行;从而保证了微电网的经济运行。但在轻负荷或太阳辐照度低的情况下,光伏发电功率已经接近于零;为保证柴油发电机在适当的技术范围内运行,开启了卸荷。根据可用电量和发电量对水泵进行控制。为了验证系统的性能,在MATLAB/SIMULINK环境下进行了仿真,得出以水泵系统作为倾卸负荷的微电网能够保证微电网的经济运行的结论。
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