Design and evaluation of an engine-in-the-loop environment for developing plug-in hybrid electric vehicle operating strategies at conventional test benches

Maximilian Dietrich, Kunxiong Ling, Roland Schmid, Zhao Song, Christian Beidl
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Abstract

Due to a large number of degrees of freedom and connected powertrain functionalities, the development of operating strategies for plug-in hybrid electric vehicles is an especially complex task. Besides optimizations of drivability, noise, vibrations and harshness as well as energy efficiency, the main challenge lies in ensuring emissions conformity. For this purpose, test vehicles are typically applied to achieve a realistic test and validation environment. However, operating strategy calibration using test vehicles has the drawbacks, that (i) it is very time consuming and cost intensive, (ii) it can only be conducted in late development phases and (iii) cannot be applied to reproducing driving loads for a valid comparison. To overcome these issues, this paper presents a consistent engine-in-the-loop approach combining real engine hardware and multiple software elements to represent PHEV behavior at the engine test bench. Thereby, an environment is created, which allows for realistic, flexible, cost efficient and reproducible testing. The effectiveness of the presented framework is evaluated by comparing relevant on-road measurements with their reproduction at the engine test bench. The results show that the vehicle on-road behavior can be replicated using the described testing environment. Particularly engine start/stop behavior and load levels—the core functionalities for operating strategy calibration—are matched. The proven level of realism in powertrain behavior enables further use cases beyond on-road measurement reproduction, i.e. varying individual component properties and observing real-world consequences at the test bench without the need for vehicle tests.

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用于开发插电式混合动力电动汽车操作策略的发动机在环环境的设计和评估
由于具有大量的自由度和连接的动力系统功能,开发插电式混合动力电动汽车的操作策略是一项特别复杂的任务。除了优化驾驶性能、噪音、振动和不平顺性以及能源效率外,主要挑战在于确保排放一致性。为此,测试车辆通常用于实现真实的测试和验证环境。然而,使用测试车辆的操作策略校准具有缺点,即(i)它非常耗时且成本密集,(ii)它只能在后期开发阶段进行,以及(iii)不能应用于再现驾驶载荷以进行有效比较。为了克服这些问题,本文提出了一种结合真实发动机硬件和多个软件元素的一致性发动机在环方法,以在发动机测试台上表示PHEV的行为。从而,创造了一个环境,允许进行现实的、灵活的、成本效益高的和可重复的测试。通过将相关的道路测量结果与发动机试验台上的再现结果进行比较,对所提出的框架的有效性进行了评估。结果表明,使用所描述的测试环境可以复制车辆在道路上的行为。特别是发动机的启动/停止行为和负载水平——操作策略校准的核心功能——是匹配的。动力传动系统行为中已证明的真实性水平使其能够在道路测量再现之外实现进一步的用例,即改变单个部件的特性,并在测试台上观察真实世界的结果,而无需进行车辆测试。
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