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The Use of Hybrid Energy Storage Devices for Balancing the Electricity Load Profile of Enterprises

机译:使用混合能量存储装置来平衡企业的电力负荷曲线

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摘要

In this article, the authors consider the possibility of using a hybrid energy storage system to even out the load profile of the enterprise. Solving the problem of rational use of energy storage taking into account the initial variable load schedule will significantly reduce not only the cost of electricity consumption by the enterprise, but also the costs of its production. Detailed characteristics of batteries with various types of electrolytes and supercapacitors are given. A model of the active scheme of a hybrid electric energy storage system consisting of a lithium-ion battery and a supercapacitor unit with the corresponding characteristics is presented. The model was carried out by using the SimPowerSystems software in MatLab. During the simulation, the temperature and the aging effects and of the batteries were not taken into account. The self-discharge parameter of the battery was also not presented. As a result of the simulation, discharge characteristics of supercapacitors and batteries were obtained based upon which the expediency of their combined use for leveling load profiles of various types was substantiated. The paper presents the results of the simulation of operating modes of a hybrid energy storage device, combining the advantages of two types of energy storage devices, as well as a diagram of delivered power to the network, corresponding to the specified parameters. The paper provides a mathematical description of the increasing power by hybrid storage system resulting from the combined use of supercapacitors and batteries. The paper presents the dependence of the power increase ratio on the frequency and the pulse current duty ratio, which proves that the maximum possible output power of the hybrid storage system can be several times greater than the power of a single battery having the same parameters.
机译:在本文中,作者考虑了使用混合能量存储系统甚至输出企业的负载轮廓的可能性。解决了考虑到初始变量负荷时间表的合理使用能量存储的问题,而且将显着降低企业的电力消耗成本,也是其生产的成本。给出了各种类型电解质和超级电容器的电池的详细特性。呈现由锂离子电池组成的混合电能存储系统的主动方案和具有相应特性的超级电容器单元的模型。该模型是通过使用Matlab中的SimPowersystems软件进行的。在仿真过程中,不考虑温度和老化效果和电池。也没有提出电池的自放电参数。由于模拟,基于该模拟,基于该模拟,超级电容器和电池的放电特性,其基于其组合用于调平各种类型的载荷剖面的组合使用。本文介绍了混合能量存储装置的操作模式的模拟结果,组合了两种类型的能量存储装置的优点,以及对应于指定参数的网络传送电力的图。本文提供了通过组合使用超级电容器和电池而导致的混合储存系统增加功率的数学描述。本文介绍了电力增加率对频率和脉冲电流占空比的依赖性,这证明了混合存储系统的最大可能输出功率可以大于具有相同参数的单个电池的功率的数倍。

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