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Control of an Autonomous Hybrid Microgrid as Energy Source for a Small Rural Village

机译:自治混合微电网作为农村小村庄能源的控制

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摘要

Nowadays, the exhaustion of electricity power in rural areas is becoming an important issue for many African Nations. Moreover, challenges include the high cost of extending the power grid to these locations, the economic health of the utilities and lack of revenue in impoverished villages. Numerous new initiatives are being implemented in the countries some of them co-financed by international organizations. In this paper, the hybrid microgrid is carried out as a feasible solution for a small rural village. A model of hybrid microgrid consisting of combination of photovoltaic (PV) panels and battery energy storage (BES) and a control system for managing the components of entire system to feed the village as local load is proposed. The control system must avoid the interruptions of power delivered to the consumers (village) and, therefore, good quality and reliability of system is required. The PI controllers are used to regulate the voltage and current using three-phase dq transformation, while the parameters are determined using Ziegler-Nichols tuning method. The effectiveness of the proposed method is verified by simulation results given by the Matlab/SimPowerSystems environment.
机译:如今,农村地区电力的枯竭已成为许多非洲国家的重要问题。此外,挑战包括将电网扩展到这些位置的高昂成本,公用事业的经济状况以及贫困村庄的收入不足。这些国家正在实施许多新举措,其中一些由国际组织共同供资。本文将混合微电网作为一个农村小村庄的可行解决方案。提出了一种混合微电网模型,该模型由光伏(PV)面板和电池储能(BES)组成,以及一个控制系统,用于管理整个系统的组成部分,以当地负荷为村庄供电。控制系统必须避免中断传送给用户(村庄)的电源,因此,要求系统具有良好的质量和可靠性。 PI控制器用于通过三相dq变换来调节电压和电流,而参数则使用Ziegler-Nichols调整方法来确定。 Matlab / SimPowerSystems环境给出的仿真结果验证了该方法的有效性。

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