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Hydraulic Hybrid Powertrain-In-the-Loop Integration for Analyzing Real-World Fuel Economy and Emissions Improvements

机译:用于分析实际燃油经济性和排放改进的液压混合动力系统在环集成

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摘要

The paper describes the approach, addresses integration challenges and discusses capabilities of the Hybrid Powertrain-in-the-Loop (H-PIL) facility for the series/hydrostatic hydraulic hybrid system. We describe the simulation of the open-loop and closed-loop hydraulic hybrid systems in H-PIL and its use for concurrent engineering and development of advanced supervisory strategies. The configuration of the hydraulic-hybrid system and details of the hydraulic circuit developed for the H-PIL integration are presented. Next, software and hardware interfaces between the real components and virtual systems are developed, and special attention is given to linking component-level controllers and system-level supervisory control. The H-PIL setup allows imposing realistic dynamic loads on hydraulic pump/motors and accumulator based on vehicle driving schedule. Application of fast analyzers allows characterization of the impact of dynamic interactions in the propulsion system on engine-out emissions. Therefore, the H-PIL facility allows optimization of the hybrid system for both high-efficiency and low emissions. The impetus is provided by previous work showing that more than half of the soot emissions from a conventional diesel powertrain over the urban driving schedule can be attributed to transients. The setup includes a 6.4L V-8 International diesel engine, highly dynamic dynamometer, Radial piston pump/motors supplied by Bosch-Rexroth and dSPACE real-time environment with in-house developed simulation of the virtual vehicle.
机译:本文介绍了该方法,解决了集成挑战,并讨论了用于串联/静液压混合动力系统的混合动力总成系统(H-PIL)的功能。我们描述了H-PIL中的开环和闭环液压混合系统的仿真及其在并行工程和高级监控策略开发中的使用。介绍了液压混合系统的配置以及为H-PIL集成开发的液压回路的详细信息。接下来,开发实际组件和虚拟系统之间的软件和硬件接口,并特别注意链接组件级控制器和系统级监督控制。 H-PIL设置允许根据车辆行驶时间表在液压泵/马达和蓄能器上施加现实的动态负载。快速分析仪的应用可以表征推进系统中动态相互作用对发动机排放物的影响。因此,H-PIL设施可以优化混合系统,以实现高效率和低排放。以前的工作提供了动力,表明在城市驾驶时间表上,传统柴油机动力总成产生的烟尘排放中,有一半以上可归因于瞬变。该设置包括6.4升V-8国际柴油发动机,高动态测功机,博世力士乐提供的径向活塞泵/电机以及dSPACE实时环境以及内部开发的虚拟车辆模拟。

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