在动力试验台对某重型柴油机进行了再生制动潜力的试验研究

Andrea Altomonte, E. Frasci, G. D. Ilio, I. Arsie, E. Jannelli
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引用次数: 0

摘要

制动过程中的动能回收是混合动力汽车的重要特性,对提高混合动力汽车的燃油经济性有着重要的作用。在这项工作中,对港口物流中使用的院子拖拉机的重型柴油发动机进行了详尽的性能分析,以估计再生制动的潜力,这可以在电动车辆配置中得到利用。为此,在动态试验台进行了实验测量,参考了从现场测量活动中检索到的特殊占空比。现场数据是通过定制的仪器收集的,该仪器被设计用于从在意大利Salerno港口运行的院子拖拉机的CAN总线系统收集实时数据,该拖拉机配备了相同的发动机。首先,在不同的稳态和瞬态工况下,在发动机试验台进行了一系列测试,以实验表征发动机在扭矩、功率输出和比油耗方面的性能与发动机转速和负载要求的关系。在对发动机特性进行分析的基础上,对现场获得的实际占空比下的发动机效率和油耗进行了评价。此外,还将发动机控制单元估算的扭矩与试验台扭矩计测量的扭矩进行了比较。最后,通过分析实测的功率和扭矩曲线,对所研究的占空比下再生制动可实现的动能回收进行了估计。结果表明,能量回收可以显著降低实现占空比所需的推进能量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Experimental testing of a heavy-duty Diesel engine at the dynamic test bench to assess the potential of regenerative braking
The kinetic energy recovery during braking is an essential feature of hybrid-electric vehicles, which significantly contributes to improve their fuel economy. In this work, an exhaustive performance analysis is conducted on the heavy-duty Diesel engine of a yard tractor used in port logistics, in order to estimate the potential of regenerative braking, which could be exploited in an electrified vehicle configuration.To this aim, experimental measurements are carried out at the dynamic test bench with reference to peculiar duty cycles, retrieved from an on-field measurement campaign. The on-field data are collected by means of a custom instrumentation, designed to gather real-time data from the CAN bus system of a yard tractor, equipped with the same engine, operating in the port of Salerno, Italy.First, a series of tests are carried out at the engine test bench in different steady-state and transient operating conditions, to experimentally characterize the engine performance in terms of torque, power output, and specific fuel consumption vs. engine speed and load request. Based on the engine characterization, the evaluation of engine efficiency and fuel consumption during the real duty cycles acquired on-field is performed. Furthermore, a comparison between the torque estimated by the engine control unit and the corresponding measurement by the test bench torsiometer is presented. Finally, the estimation of the kinetic energy recovery achievable by regenerative braking along the duty cycles under study is carried out, by analyzing the measured power and torque profiles. The results show that the energy recovery can significantly reduce the propulsion energy requested for performing the duty cycle.
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