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Experimental investigation of a new smart energy management algorithm for a hybrid energy storage system in smart grid applications

机译:智能电网应用中混合动力储能系统新型智能能源管理算法的实验研究

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Renewable energy sources (RES) are becoming an important part of energy continuity for today's electrical power grid, since RES are intermittent and unstable. Energy storage technologies are the only solution for this energy sustainability problem. In this study, a new Smart Energy Management Algorithm (SEMA) is proposed for Hybrid Energy Storage System (HESS) supplied from 3-phase 4-wire grid connected photovoltaic (PV) power system. HESS consisting of battery and ultra-capacitor energy storage units is used for energy sustainability from solar PV power generation system. Several different operation cases in HESS have been analyzed and experimentally tested by using the proposed SEMA. In experimental tests, load status of one sunny day and PV power profile have been created and tested dynamically by using SEMA and some of the test results in eight different operation modes are given in this paper. The battery group is charged with 1320W power by the system and remaining energy is transferred to the grid with 5% current harmonic via the inverter in one of the operation modes. The HESS is the most effective energy storage system due to its high power density, fast response, and high efficiency. The proposed system has been verified simulations results and experimental tests. (C) 2016 Elsevier B.V. All rights reserved.
机译:可再生能源(RES)是当今电网中能量连续性的重要组成部分,因为RES是断续的且不稳定的。储能技术是解决此能源可持续性问题的唯一解决方案。在这项研究中,提出了一种新的智能能源管理算法(SEMA),用于由三相4线并网光伏(PV)电力系统提供的混合储能系统(HESS)。由电池和超级电容器储能单元组成的HESS用于太阳能光伏发电系统的能源可持续性。通过使用建议的SEMA对HESS中的几种不同的操作案例进行了分析和实验测试。在实验测试中,通过使用SEMA动态创建和测试了一个晴天的负载状态和PV功率曲线,并给出了八种不同操作模式下的一些测试结果。系统会以1320W的功率为电池组充电,并且在一种运行模式下,剩余的能量会通过逆变器以5%的电流谐波传输到电网。 HESS具有高功率密度,快速响应和高效率,因此是最有效的储能系统。所提出的系统已通过仿真实验和实验验证。 (C)2016 Elsevier B.V.保留所有权利。

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