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Energy return factor analysis of lithium polymer battery during charge/discharge cycles

机译:锂聚合物电池充放电循环过程中的能量返回系数分析

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Electricity is the most convenient form of energy. Conversion to other form of energy from electricity is very easy. Unfortunately during the energy conversion process, there will be an energy loss. Most electricity in the Indonesia is generated at power plants that consumed coal and natural gas. These are fossil fuels that emit carbon dioxide that will contribute significantly to global warming. With the national policy to produce electric vehicle, it is necessary to analyse the energy return factor of the battery as a source for electric energy for the electric vehicle. Preliminary study using a commercial lithium polymer battery have showed that the energy return factor is 80.5% and dropping to 80.4% after 100 cycle of 1C charge and 2C discharge regime. Increasing the energy return factor by understanding the effect of charge/discharge regime will be a benefit for the nation reduction use of coal and natural gas consumption. The EIS study also revealed the mechanism reaction in the charge process and its shows that the trend of electrolyte resistance is decreasing within the raise of SOC.
机译:电是最方便的能源形式。从电转换为其他形式的能源非常容易。不幸的是,在能量转换过程中,会损失能量。印尼的大部分电力来自消耗煤炭和天然气的发电厂。这些是排放二氧化碳的化石燃料,将大大助长全球变暖。根据国家生产电动汽车的政策,有必要分析作为电动汽车电能来源的电池的能量返回系数。使用商用锂聚合物电池的初步研究表明,能量返回系数为80.5%,在1C充电和2C放电方案的100个循环后下降到80.4%。通过了解充电/放电方式的效果来增加能量返回系数将对国家减少煤炭和天然气消耗的使用带来好处。 EIS研究还揭示了充电过程中的机理反应,它表明,随着SOC的增加,电解质电阻的趋势正在减小。

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