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Charge timing choice behavior of battery electric vehicle users

机译:电池电动汽车用户的充电时间选择行为

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This paper aims to examine choice behavior in respect of the time at which battery electric vehicle users charge their vehicles. The focus is on normal charging after the last trip of the day, and the alternatives presented are no charging, charging immediately after arrival, nighttime charging, and charging at other times. A mixed logit model with unobserved heterogeneity is applied to panel data extracted from a two-year field trial on battery electric vehicle usage in Japan. Estimation results, obtained using separate models for commercial and private vehicles, suggest that state of charge, interval in days before the next travel day, and vehicle-kilometers to be traveled on the next travel day are the main predictors for whether a user charges the vehicle or not, that the experience of fast charging negatively affects normal charging, and that users tend to charge during the nighttime in the latter half of the trial. On the other hand, the probability of normal charging after the last trip of a working day is increased for commercial vehicles, while is decreased for private vehicles. Commercial vehicles tend not to be charged when they arrival during the nighttime, while private vehicles tend to be charged immediately. Further, the correlations of nighttime charging with charging immediately and charging at other times reveal that it may be possible to encourage charging during off-peak hours to lessen the load on the electricity grid. This finding is supported by the high variance for the alternative of nighttime charging. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本文旨在研究关于电动汽车用户为汽车充电的时间的选择行为。重点是一天的最后一次出行后的正常充电,介绍的替代方法是不充电,到达后立即充电,夜间充电以及其他时间的充电。将具有未观察到的异质性的混合logit模型应用于从日本两年的电动汽车使用现场试验中提取的面板数据。使用商用和私家车的单独模型获得的估算结果表明,充电状态,下一个旅行日之前的天数间隔以及下一个旅行日要行驶的车辆公里数是用户是否对汽车收取费用的主要预测指标不论是否使用汽车,快速充电的经历都会对正常充电产生负面影响,并且在试验的后半段,用户倾向于在夜间充电。另一方面,在工作日的最后一次旅行之后正常充电的可能性对于商用车辆增加,而对于私人车辆则降低。商用车在夜间抵达时往往不收费,而私家车则倾向于立即收费。此外,夜间充电与立即充电和在其他时间充电的相关性揭示出,有可能在非高峰时段鼓励充电以减轻电网负荷。夜间充电替代方案的高差异性支持了这一发现。 (C)2015 Elsevier Ltd.保留所有权利。

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