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首页> 外文期刊>Journal of power sources >Battery cycle life balancing in a microgrid through flexible distribution of energy and storage resources
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Battery cycle life balancing in a microgrid through flexible distribution of energy and storage resources

机译:通过灵活分配能量和存储资源来平衡微电网中的电池循环寿命

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In this paper, a microgrid consisting of four fuel cell-battery hybrid Distributed Energy Resources (DERs) is devised for an industrial crusher-conveyor load. Each fuel cell was accompanied by a Li-ion battery to provide energy storage support under islanded condition of the microgrid since the fuel cells typically have poor transient response characteristics. After carrying out extensive modeling and analysis in MATLAB®, the battery utilization was found to vary significantly based on the DER's 'electrical' placement within the microgrid. This paper presents, under such conditions, a variety of battery life balancing solutions through the use of the new framework of Flexible Distribution of EneRgy and Storage Resources (FDERS). It is based on an in-situ reconfiguration approach through 'virtual' reactances that help in changing the 'electrical' position of each DER without physically displacing any component in the system. Several possible approaches toward balancing the battery utilization are compared in this paper taking advantage of the flexibility that FDERS offers. It was observed that the estimated battery life is dependent on factors such as cycling sequence, pattern, and occurrence.
机译:在本文中,设计了一种由四个燃料电池-电池混合分布式能源(DERs)组成的微电网,用于工业破碎机-输送机负载。由于燃料电池通常具有较差的瞬态响应特性,因此每个燃料电池都配有一个锂离子电池以在微电网的孤岛状态下提供能量存储支持。在MATLAB®中进行了广泛的建模和分析后,发现电池利用率因DER在微电网中的“电气”位置而有很大差异。本文在这种情况下,通过使用灵活的能源和存储资源分配(FDERS)新框架,提出了各种电池寿命平衡解决方案。它基于通过“虚拟”电抗进行的原位重新配置方法,该方法可帮助更改每个DER的“电气”位置,而无需物理上替换系统中的任何组件。利用FDERS提供的灵活性,本文比较了几种平衡电池利用率的可能方法。据观察,估计的电池寿命取决于诸如循环顺序,模式和发生的因素。

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