An energy management system for hybrid microgrids in remote communities

S. A. Helal, R. J. Najee, Maria O. Hanna, M. Shaaban, A. Osman, Mohamed S. Hassan
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引用次数: 35

Abstract

A new energy management system is proposed in this paper to optimally schedule different generation technologies in hybrid AC/DC microgrid for remote communities. The proposed scheme relies on a microgrid controller (MGC), which minimizes the operational costs for different distributed generation (DG) units in the islanded microgrid by sending droop characteristics parameters to the DG units to ensure optimum power sharing for each time slot. Moreover, the MGC controls the customers' appliances and water desalination units to ensure optimal utilization of the system assets with minimum operational costs while satisfying the customer requirements. In addition, the MGC sends operational parameters for the interlinking converters between the AC and DC subsystems to ensure stable operation of the microgrid by controlling power exchange between the AC and DC sides. The energy management problem is formulated as a mixed-integer non-linear programming, which is solved by the MGC. Optimal decisions are sent to local controllers and smart meters to be implemented. Simulation results on an islanded hybrid AC/DC microgrid are provided. The results demonstrate the effectiveness and robustness of the proposed approach.
一种用于偏远社区混合微电网的能源管理系统
针对偏远社区交直流混合微电网中不同发电技术的优化调度问题,提出了一种新的能源管理系统。该方案基于微电网控制器(MGC),通过向各分布式发电机组发送下垂特性参数,实现孤岛微电网中各分布式发电机组的运行成本最小化,保证各时隙的最佳电力共享。此外,MGC还控制客户的设备和海水淡化装置,以确保在满足客户要求的同时,以最低的运营成本最佳地利用系统资产。此外,MGC还为交直流子系统间的互联变流器发送运行参数,通过控制交直流侧的功率交换,保证微电网的稳定运行。将能量管理问题表述为一个混合整数非线性规划问题,并利用MGC进行求解。最优决策被发送到本地控制器和智能电表执行。给出了孤岛型交直流混合微电网的仿真结果。结果表明了该方法的有效性和鲁棒性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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