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ANALYSIS AND MODELING OF PLUG-IN HYBRID ELECTRIC VEHICLE CHARGINGEFFICIENCY

机译:插电式混合动力汽车充电分析与建模 r n效率

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摘要

Based on 2007 data, the average energy consumption of an American household could increase by 23% with the addition of one Plug-In Hybrid Electric Vehicle (PHEV); this "sticker-shock" may impact the adoption of all PHEVs due to the unanticipated cost and time associated with vehicle charging. Furthermore, very few automotive standard work practices could identify and quantify this effect on the end consumer. To alleviate consumer reservations, vehicle plug-in charging must be designed to maximize the percentage of grid energy supplied to the battery and reduce the extra cost and time required to charge. Maximum efficiency can only be obtained through a systematic view of the charging process. Thus, the approach reviewed in this report considers not only the charger and EVSE (Electric Vehicle Supply Equipment) but also the RESS (Rechargeable Energy Storage System), the thermal management system, and the vehicle control modules. This report will outline a progression in charger system modeling techniques in the early vehicle development process and compare the results to empirical data. The goal of the report is to demonstrate the merit of including charging modeling as a portion of PHEV standard development work and stimulate discussion on systematic charging efficiency.
机译:根据2007年的数据,如果增加一辆插电式混合动力汽车(PHEV),美国家庭的平均能源消耗可能会增加23%。由于与车辆充电相关的意外成本和时间,这种“冲击波”可能会影响所有PHEV的采用。此外,很少有汽车标准工作实践能够识别和量化这种对最终消费者的影响。为了减轻消费者的保留,必须设计车辆插入式充电,以最大程度地提高提供给电池的电网能量的百分比,并减少充电所需的额外成本和时间。只有通过系统地了解充电过程才能获得最大效率。因此,本报告中介绍的方法不仅考虑了充电器和EVSE(电动汽车供应设备),还考虑了RESS(可充电能量存储系统),热管理系统和车辆控制模块。该报告将概述早期车辆开发过程中充电器系统建模技术的进展,并将结果与​​经验数据进行比较。该报告的目的是证明将充电建模作为PHEV标准开发工作的一部分的优点,并激发有关系统充电效率的讨论。

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