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Cruising with a Battery-Powered Vehicle and Not Getting Stranded

机译:用电池供电的车辆巡航而不是搁浅

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The main hindrance to a widespread market penetration of battery-powered electric vehicles (BEVs) has been their limited energy reservoir resulting in cruising ranges of few hundred kilometers unless one allows for recharging or switching of depleted batteries during a trip. Unfortunately, recharging typically takes several hours and battery switch stations providing fully recharged batteries are still quite rare - certainly not as widespread as ordinary gas stations. For not getting stranded with an empty battery, going on a BEV trip requires some planning ahead taking into account energy characteristics of the BEV as well as available battery switch stations. In this paper we consider very basic, yet fundamental problems for E-Mobility: Can I get from A to B and back with my BEV without recharging in between? Can I get from A to B when allowed to recharge? How can I minimize the number of battery switches when going from A to B? We provide efficient and mathematically sound algorithms for these problems that allow for the energy-aware planning of trips.
机译:电池供电电动车(BEV)广泛的市场渗透的主要障碍是它们有限的能量储层,导致距离几百公里的巡航范围,除非允许在旅行期间再充电或切换耗尽的电池。不幸的是,充电通常需要几个小时,提供完全充电电池的电池开关站仍然非常罕见 - 肯定不会像普通气体站一样普遍存在。由于没有用空电池滞留,以贝夫行程进行,需要一些规划,考虑到BEV的能量特性以及可用的电池开关站。在本文中,我们考虑了对电子移动的非常基本,但基本问题的问题:我可以从A到B,并在没有充电之间的情况下与我的ev一起回来吗?允许充电时,我可以从A到B获取吗?从a到b时,如何最小化电池开关的数量?我们为这些问题提供高效和数学的声音算法,允许旅行的能量感知计划。

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