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Optimal use of second life battery for peak load management and improving the life of the battery

机译:最佳使用二次电池来管理峰值负载并改善电池寿命

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Impact of petroleum based vehicles on the environment, cost and availability of fuel has led to an increased interest in electric vehicle as a means of transportation. Battery is a major component in an electric vehicle. Economic viability of these vehicles depends on the availability of cost-effective batteries. Subsidies provided by the government will be instrumental in the initial success of electric vehicles. However, in the long run for the commercial success of electric vehicles the economics have to be self-sustained. Batteries used for transportation purpose cannot be used once the energy capacity reaches 70%-80%. The remaining capacity of the battery can still be utilized for secondary purpose like powering a building during peak load hours and reducing the carbon foot print. Owner of an electric vehicle would be benefited if a market for the used electric vehicle batteries is created. These batteries are called second life batteries. Commercial building peak load reduction is considered in this study. This work deals with using second life battery for peak load management and to analyze the cost effectiveness of the second life battery to be used for powering a commercial building. Battery is the main component in this study and increasing the life of the second life battery using Battery Life Estimator (BLE) is discussed. An optimal solution for incorporating peak load management, cost saving from the use of second life battery and lifetime of the second life battery is achieved using a rule-based control for the parameters.
机译:石油基车辆对环境,成本和燃料可用性的影响导致人们对电动汽车作为一种交通工具越来越感兴趣。电池是电动汽车的主要组成部分。这些车辆的经济可行性取决于成本效益高的电池的可用性。政府提供的补贴将有助于电动汽车的初步成功。然而,从长远来看,电动汽车的商业成功必须自给自足。一旦能量容量达到70%-80%,就不能再使用用于运输目的的电池。电池的剩余容量仍可用于次要目的,例如在高峰负荷时段为建筑物供电并减少碳足迹。如果建立了二手电动汽车电池市场,电动汽车的所有者将受益。这些电池称为二次电池。这项研究考虑了商业建筑的峰值负荷降低。这项工作涉及使用二次生命电池进行峰值负载管理,并分析用于为商业建筑供电的二次生命电池的成本效益。电池是这项研究的主要组成部分,并讨论了使用电池寿命估算器(BLE)来延长二次电池的寿命。使用参数的基于规则的控制,可以实现最佳的解决方案,该方案结合了峰值负载管理,通过使用二次电池来节省成本以及二次电池的寿命。

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