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OPTIMAL SIZING OF SECOND LIFE BATTERY TO REDUCE CO2 EMISSIONS

机译:优化第二生电池的尺寸以减少二氧化碳排放量

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Batteries used in electric vehicles cannot be used in the vehicle once the battery capacity falls to 70% to 80%. The remaining capacity of these batteries can be used in various applications so that they can be kept out of landfills. One of the applications is to use the second life batteries to reduce carbon dioxide (CO_2) emissions from the grid. The CO_2 emissions from the grid are high during the non-peak hours when only the base plants are operating. We charge the second life battery when the power from renewable resources is available and discharge the battery when there is peak load. With the increase in renewable generation such as photo voltaic, wind energy the carbon foot print changes with the hour of the day. The demonstrated technique optimizes the use of second life battery to reduce the emissions considering uncertainties in the load and availability of renewable power.
机译:一旦电池容量下降到70%至80%,则不能在电动汽车中使用电池。这些电池的剩余容量可用于各种应用,因此可以将其放在垃圾填埋场之外。一种应用是使用二次电池来减少电网中的二氧化碳(CO_2)排放。仅在基础工厂运行时,非高峰时段来自电网的CO_2排放量很高。当可再生资源的电力可用时,我们为第二次使用的电池充电,并在出现峰值负载时对电池放电。随着诸如光伏,风能等可再生能源发电的增加,碳足迹随着一天中的小时而变化。考虑到负载和可再生能源的不确定性,所展示的技术优化了第二次使用电池的使用以减少排放。

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