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Evaluation of Hitachi Electric Vehicle Combined Battery System Lifespan in India

机译:印度日立电动汽车结合电池系统寿命的评价

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We have developed a drive cycle (DC) to test Hitachi’s combined battery system (CBS) for electric vehicles (EVs) having battery lifespan enhancements. Conventionally EV batteries consist of high energy density cells, and we call them as energy cells (EC). A major issue with the EVs is high operational costs mainly due to short lifespan of the ECs. CBS almost doubles the EC and thus overall battery system lifespan, as per the evaluation over a WLTP based method. We want to test the CBS under Indian conditions which has predominantly hot weather, and traffic jam scenarios. Battery deterioration and thus its lifespan is sensitive to traffic conditions and ambient temperature. Hence, it was needed to evaluate the CBS over an Indian DC and use 40°C as ambient temperature. However, it was difficult to carry out the tests since there is no standard Indian DC for small / light weight four wheelers. Hence, we decided to synthesize a DC and collected over 1.5 million OBD data samples from four cars driven along different routes within Bangalore city. We propose a novel method to synthesize DC. We evaluate our method through statistical and frequency based similarity between the synthesized DC and OBD data. Finally, using the synthesized DC it was recognized that the battery lifespan could be enhanced by a factor of 2 through CBS over EC alone, for Indian conditions also. However, lifespan under the Indian conditions is reduced by a factor of 0.72 of the corresponding WLTP based lifespan estimates.
机译:我们开发了一个驱动循环(DC),以测试Hitachi的电动汽车(EVS)的电池系统(CBS),具有电池寿命的增强功能。传统上,EV电池由高能量密度细胞组成,并且我们称为能量电池(EC)。 EVS的主要问题主要是由于ECS的短暂寿命,主要是较高的运营成本。根据基于WLTP的方法的评估,CBS几乎使EC和因此整体电池系统的寿命倍增。我们希望在印度条件下测试CBS,这些条件主要炎热天气,以及交通堵塞情景。电池劣化,因此其寿命对交通状况和环境温度敏感。因此,需要在印度DC上评估CBS,并使用40°C作为环境温度。然而,难以进行测试,因为没有标准的印度DC用于小/轻的四轮车。因此,我们决定综合DC,并从沿着班加罗尔市的不同路线推动的四辆车收集超过150万辆OBD数据样本。我们提出了一种综合DC的新方法。我们通过合成的DC和OBD数据之间的统计和频率相似性评估我们的方法。最后,使用合成的DC,认识到,对于印度条件,单独的CBS可以通过2倍通过CBS来增强电池寿命。然而,印度条件下的寿命减少了相应的WLTP的寿命估计值为0.72。

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