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基于三段优化法的车载锂电池的快速充电方法 被引量:4
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作者 陈德海 邹争明 +1 位作者 王超 华铭 《汽车安全与节能学报》 CAS CSCD 2019年第3期383-390,共8页
为提高车载锂电池的充电速度及充电效率,提出了一种用于恒压恒流充电(CCCV)的三段优化法。在“新一代汽车合作计划(PNGV)”电池充电模型的基础上,结合电池容量衰减过程对三段优化法进行修正;以极化电压和开路电压,来修正恒流恒压过程的... 为提高车载锂电池的充电速度及充电效率,提出了一种用于恒压恒流充电(CCCV)的三段优化法。在“新一代汽车合作计划(PNGV)”电池充电模型的基础上,结合电池容量衰减过程对三段优化法进行修正;以极化电压和开路电压,来修正恒流恒压过程的控制对象,使电流、电压随着电池的实际充电状态实时变化。基于嵌入式芯片STM32F103开发平台,设计了实施方案。进行了4组不同充电方法的实验。结果表明:对比其他3组充电方法,该三段优化法可使充电效率提高到94.25%,且充电时间可达900 s,锂电池容量衰减值较未优化前下降45%。因此,该快速充电方法效果良好。 展开更多
关键词 车载锂电池 电池充电模型 恒流恒压充电法(CCCV) 开路电压 芯片STM32
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Impact of Electric Vehicles on Travel and Electricity Demand in Metropolitan Area: A Case Study in Nagoya
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作者 Ryo Kanamori Takayuki Morikawa +2 位作者 Masaya Okumiya Toshiyuki Yamamoto Takayuki Ito 《Journal of Civil Engineering and Architecture》 2015年第3期341-349,共9页
In this study, we examine the impacts that EVs (electric vehicles) have on vehicle usage patterns and environmental improvements, using our integrated travel demand forecasting model, which can simulate an individua... In this study, we examine the impacts that EVs (electric vehicles) have on vehicle usage patterns and environmental improvements, using our integrated travel demand forecasting model, which can simulate an individual activity-travel behavior in each time period, as well as consider an induced demand by decreasing travel cost. In order to examine the effects that charging/discharging have on the demand in electricity, we analyze scenarios based on the simulation results of the EVs' parking location, parking duration and the battery state of charge. From the simulation, result under the ownership rate of EVs in the Nagoya metropolitan area in 2020 is about 6%, which turns out that the total CO2 emissions have decreased by 4% although the situation of urban transport is not changed. After calculating the electricity demand in each zone using architectural area and basic units of hourly power consumption, we evaluate the effect to decrease the peak load by V2G (vehicle-to-grid). According to the results, if EV drivers charge at home during the night and discharge at work during the day, the electricity demand in Nagoya city increases by approximately 1%, although changes in each individual zone range from -7% to +8%, depending on its characteristics. 展开更多
关键词 Electric vehicle integrated travel demand forecasting model electricity demand V2G.
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