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A review of battery exchange technology for refueling of electric vehicles

机译:电气汽车加油电池交换技术综述

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The limited energy storage and long recharge time and of electric vehicle batteries have motivated several alternatives to in-vehicle slow charging. Solutions generally fall into three categories: (1) fast charging, in which batteries are charged in-vehicle at an accelerated rate, (2) battery material reloading or refueling, in which the energy-carrying elements of the battery are physically replaced or replenished, and (3) battery interchange, involving the complete exchange of the battery pack, usually with the aid of some semi- automated mechanism. Among these options, the last, battery interchange, has tended to receive the least industry attention, but has been an expansive topic of invention and novel deployment. This paper reviews battery interchange technology, including discussion of advantages and limitations, the history of battery exchange concepts and implementations, the many possible interchange configurations, novel automation mechanisms, key patents, safety and regulatory considerations, and the economics of fleet and public deployments. Selected case histories will be presented dating from the late 1800s through the mid-1990s. Commercial and technical impediments will be identified. The full cost of battery interchange, including incremental vehicle costs and infrastructure costs will be assessed, and this will serve as a basis for comparison with slow and fast charging options for fleet and private vehicle operations. Battery interface and configuration standards will be discussed as possible means for facilitating wider-scale deployment. The results of a survey of the EV industry and user community on the perceived viability and acceptability of EV battery interchange will be presented.
机译:有限的能量存储和长的充电时间和电动车辆电池具有若干替代车辆的车载缓慢充电。解决方案通常分为三类:(1)快速充电,其中电池以加速的速率充电,(2)电池材料重新加油或加油,其中电池的能量搬运元件物理更换或补充(3)电池交换,涉及电池组的完全交换,通常借助一些半自动机制。在这些选择中,最后一个电池交换,往往会受到最少的行业关注,但一直是发明和新型部署的广泛课题。本文介绍了电池交汇技术,包括讨论优势和局限,电池交换概念和实现的历史,许多可能的交换配置,新的自动化机制,关键专利,安全和监管考虑,以及舰队和公共部署的经济学。选定的案例历史将于1990年代中期从18世纪后期提供约会。将确定商业和技术障碍。将评估电池交换的全部成本,包括增量车辆成本和基础设施成本,这将作为与舰队和私人车辆运营的缓慢和快速充电选项进行比较的基础。将讨论电池接口和配置标准,以便促进更广泛的部署。将介绍对EV行业和用户社区对EV电池交换的感知生存能力和可接受性的调查结果。

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