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Hybrid-electric system truth test: Energy analysis of Toyota Prius IV in real urban drive conditions

机译:混合动力系统真相测试:丰田普锐斯IV在实际城市行驶条件下的能量分析

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摘要

The experimental work, carried out through road tests in the city of Rome (Italy), assesses the energy performance of the Toyota Prius IV generation with Full Hybrid traction system under real conditions of use in the urban environment.The evaluation was carried out through a data collection campaign on a 37 km urban route, in both fast-flowing sections and traffic-congested areas of Rome. On this route, 60 driving tests were carried out by individual with different characteristics in terms of gender, age and hybrid technology driving experience.In particular, the analysis involved the operation as ZEV (Zero Emission Vehicle) vehicle, the hybrid system Power flows, fuel consumption and yields.The most relevant results relate to the high percentage (in time and space) of operation in ZEV mode: this mode is achieved both in "electric" operation, that is, with power output to the wheels by the electric motor only (with the ICE off), and in the inertial operation, i.e. without power output to the wheels (always with ICE off).Another important result concerns the high overall efficiency of the hybrid traction system, obtained thanks to the high average yield of the ICE, and especially through the very high deceleration energy recovery. The recovered energy provides a very significant contribution to the total energy needed by the wheels for the car movement purposes and, in particular, provides the vast majority of electricity required by the electric motor.
机译:通过在罗马市(意大利)进行的路试进行的实验工作,通过在城市环境中实际使用条件下,使用Full Hybrid牵引系统评估了丰田Prius IV代的能源性能。在罗马快速流动的部分和交通拥挤的地区,在一条37公里的城市路线上开展数据收集活动。在这条路线上,针对性别,年龄和混合动力技术驾驶经验的不同特征的个人进行了60次驾驶测试,尤其是分析涉及零排放车辆(ZEV)车辆的操作,混合动力系统Power flow,燃料消耗和产量。最相关的结果与ZEV模式下较高的运行百分比(在时间和空间上):此模式在“电动”运行中均实现,即通过电动机将功率输出到车轮另一个重要的结果涉及混合动力牵引系统的高总体效率,这要归功于高惯性行驶(即在ICE关闭的情况下)和惯性操作(即不向车轮输出动力)。 ICE,尤其是通过非常高的减速能量回收。回收的能量对车轮为汽车运动所需的总能量提供了非常重要的贡献,特别是提供了电动机所需的绝大部分电能。

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  • 来源
    《Sustainable Energy Technologies and Assessments》 |2020年第2期|100573.1-100573.21|共21页
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    Guglielmo Marconi Univ CARe Ctr Automot Res & Evolut DIS Dept Sustainabil Engn Via Plinio 44 I-00193 Rome Italy;

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