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Coordinated Control of the Energy Router-Based Smart Home Energy Management System

机译:基于能源路由器的智能家居能源管理系统的协调控制

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Home area energy networks will be an essential part of the future Energy Internet in terms of energy saving, demand-side management and stability improvement of the distribution network, while an energy router will be the perfect choice to serve as an intelligent and multi-functional energy interface between the home area energy network and power grid. This paper elaborates on the design, analysis and implementation of coordinated control of the low-voltage energy router-based smart home energy management system (HEMS). The main contribution of this paper is to develop a novel solution to make the energy router technically feasible and practical for the HEMS to make full use of the renewable energy sources (RESs), while maintaining “operational friendly and beneficial” to the power grid. The behaviors of the energy router-based HEMS in correlation with the power grid are investigated, then the coordinated control scheme composed of a reference voltage and current compensation strategy and a fuzzy logic control-based power management strategy is developed. The system model is built on the MATLAB/Simulink platform, simulation results have demonstrated that the presented control scheme is a strong performer in making full use of the RES generations for the HEMS while maintaining the operational stability of the whole system, as well as in collaboration with the power grid to suppress the impact of RES output fluctuations and load consumption variations.
机译:就节能,需求侧管理和配电网络的稳定性改善而言,家庭区域能源网络将是未来能源互联网的重要组成部分,而能源路由器将成为智能多功能的理想选择。家庭区域能源网络和电网之间的能源接口。本文详细阐述了基于低压能源路由器的智能家居能源管理系统(HEMS)的协调控制的设计,分析和实现。本文的主要贡献是开发一种新颖的解决方案,使HEMS在充分利用可再生能源(RESs)的同时,使HEMS在技术上可行且实用,同时保持对电网的“运行友好和有益”。研究了基于能量路由器的HEMS与电网的相关行为,然后提出了由参考电压和电流补偿策略以及基于模糊逻辑控制的电源管理策略组成的协调控制方案。系统模型建立在MATLAB / Simulink平台上,仿真结果表明,所提出的控制方案在充分利用RES生成的HEMS的同时,还保持了整个系统的运行稳定性,在控制性能方面表现出色。与电网合作,以抑制RES输出波动和负载消耗变化的影响。

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