Mechanical Hybrid Control for Heavy-Goods Vehicle

Fatin Gunes, Yixin Yang, B. Kim, M. Wellers
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Abstract

As fuel consumption and emissions regulations for heavy goods vehicles (HGV) are getting stringent, it is becoming increasingly important to develop new technologies for next generation of HGVs. A new mechanical hybrid system is developed with Kinetic Energy Recovery System (KERS) to increase fuel economy. This system is compared with a conventional system by simulating for driving cycles on AVL CRUISE. A mechanical hybrid controller has been developed and its performance assessed by fuel consumption results on driving cycles of VECTO Long-Haul (Vehicle Energy Consumption Calculation Tool) and WHVC (World Harmonized Vehicle Cycle). Driving cycle simulation result provide an insight of target customer of the new technology.
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重型货车机械混合动力控制
随着重型货车燃油消耗和排放法规的日益严格,开发下一代重型货车的新技术变得越来越重要。为了提高燃油经济性,开发了一种新型的机械混合动力系统,并与动能回收系统(KERS)配合使用。通过对AVL巡航车辆行驶工况的仿真,将该系统与传统系统进行了比较。研制了一种机械混合动力控制器,并通过VECTO Long-Haul (Vehicle Energy consumption Calculation Tool)和WHVC (World Harmonized Vehicle Cycle)两种工况的油耗结果对其性能进行了评价。驾驶循环仿真结果为洞察新技术的目标客户提供了依据。
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