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Design Development of Advanced 48 V Electrified Powertrain for Meeting Future CO_2 Emission Requirements

机译:设计与开发高级48 V电气技术,以满足未来的CO_2排放要求

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Environmental Protection Agency (EPA) study indicates that a typical passenger vehicle emits about 4.6 metric tons of carbon dioxide per year. ICCT (International Council on Clean Transportation) establishing fleet-average emissions targets of 95 g & 175 g CO_2 per kilometer for passenger cars & light commercial vehicles respectively. In view of the same, extensive work has been executed for implementation of 48 V electrified drivetrain technology, which plays an important role to meet stringent CO_2 emission norms. A 3-phase permeant magnet Electric Motor and associated inverter, including the Packaging of the battery, for a P3 hybrid rear drive vehicle was developed. The requirements, relating to design of 48 V drivetrain technology, power and duty cycle has been extensively addressed in the paper. The Objective of paper to propose low cost, lightweight & compact solution to Global Automotive industry, which will play an important role to mitigate stringent CO_2 emission norms defined by EPA agency. The permanent magnet compact size Electric motor having rated capacity of 28 kW & torque of 74 Nm supplied by a 48 V link by dc-ac convertor has been proposed for hatchback segment of passenger cars. The major focus of the work presented in this paper is complete mechanical design to transfer power from Electric motor to secondary shaft of transmission with minimum frictional losses by belt drive mechanism. The final test results in the lab after implementation of 48 V electrified drivetrain technology to meet fuel economy targets presented in this paper.
机译:环境保护局(EPA)研究表明,典型的乘用车每年发出约4.6公吨二氧化碳。 ICCT(国际清洁运输委员会)分别为乘用车和轻型商用车辆建立了95克/克/毫克每公里95克/ 175克/2级的车队平均排放目标。鉴于相同的是,已经执行了广泛的工作,以实现48 V电热传动系统技术,这起到了满足严格的CO_2排放规范的重要作用。为P3混合后驱动车辆开发了三相渗透磁电动机和包括电池的包装的相关逆变器。有关48 V动力传动系统技术,权力和占空比的设计的要求已被广泛解决。纸张为全球汽车行业提出低成本,轻巧和紧凑的解决方案,这将发挥重要作用以减轻EPA机构定义的严格CO_2排放规范。已经提出了由DC-AC转换器提供的28 kW额定电量为28kW的永磁体紧凑型电动机,并通过DC-AC转换器提供的74 nm,用于乘用车的掀背车段。本文提出的工作的主要重点是完整的机械设计,可通过带驱动机构的最小摩擦损耗从电动机转移到次级轴的电力。在实施48V电热传动系统技术后,实验室的最终测试结果以满足本文提出的燃油经济目标。

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