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Modular ESS with second life batteries operating in grid independent mode

机译:带有二次电池的模块化ESS以独立于电网的模式运行

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This work is part of a bigger project which aims to research the potential development of commercial opportunities for the re-use of batteries after their use in low carbon vehicles on an electricity grid or microgrid system. There are three main revenue streams (peak load lopping on the distribution Network to allow for network re-enforcement deferral, National Grid primary/ secondary/ high frequency response, customer energy management optimization). These incomes streams are dependent on the grid system being present. However, there is additional opportunity to be gained from also using these batteries to provide UPS backup when the grid is no longer present. Most UPS or ESS on the market use new batteries in conjunction with a two level converter interface. This produces a reliable backup solution in the case of loss of mains power, but may be expensive to implement. This paper introduces a modular multilevel cascade converter (MMCC) based ESS using second-life batteries for use on a grid independent industrial plant without any additional onsite generator as a potentially cheaper alternative. The number of modules has been designed for a given reliability target and these modules could be used to minimize/eliminate the output filter. An appropriate strategy to provide voltage and frequency control in a grid independent system is described and simulated under different disturbance conditions such as load switching, fault conditions or a large motor starting. A comparison of the results from the modular topology against a traditional two level converter is provided to prove similar performance criteria. The proposed ESS and control strategy is an acceptable way of providing backup power in the event of loss of grid. Additional financial benefit to the customer may be obtained by using a second life battery in this way.
机译:这项工作是一个更大项目的一部分,该项目旨在研究将电池用于电网或微电网系统中的低碳汽车后,电池再利用的商业机会的潜在发展。主要有三种收入来源(分配网络上的峰值负载转移,以允许延后执行网络,国家电网主要/辅助/高频响应,客户能源管理优化)。这些收入流取决于当前的网格系统。但是,当电网不再存在时,也可以使用这些电池为UPS提供备用,这将带来更多的机会。市场上的大多数UPS或ESS都将新电池与两级转换器接口一起使用。在市电断电的情况下,这可提供可靠的备用解决方案,但实施起来可能会很昂贵。本文介绍了一种基于模块化多级级联转换器(MMCC)的ESS,该电池使用二次寿命电池在不依赖电网的工业工厂中使用,而无需任何额外的现场发电机作为潜在的廉价替代品。已针对给定的可靠性目标设计了模块数量,这些模块可用于最小化/消除输出滤波器。描述了一种在不依赖电网的系统中提供电压和频率控制的适当策略,并在不同的干扰条件下(例如负载切换,故障条件或大型电动机启动)进行了仿真。比较了模块化拓扑结构与传统两电平转换器的结果,以证明类似的性能标准。所提出的ESS和控制策略是在电网中断的情况下提供备用电源的可接受方法。通过以这种方式使用二次电池可以为客户带来额外的经济利益。

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