提高重型卡车燃油经济性的新型优化策略

A. M. Ari, S. Koskie, Yaobin Chen
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引用次数: 4

摘要

重型柴油机在控制和标定方面取得了很大的进步。很少有解决方法,以提高燃油消耗在公路巡航。由于巡航控制系统在长途旅行中大部分时间都处于激活状态,因此它应该被视为提高燃油经济性的可行选择。如果能够预测环境变化和由此导致的发动机负载变化,巡航控制操作就可以在燃油效率方面进行优化。为了提高发动机效率和降低卡车公路巡航油耗,提出了三种巡航控制参考整形策略。这些策略将使用GPS和计算机化的地形图来预测即将到来的发动机负载变化,以提高燃油经济性。确定了各种假设,并对燃料消耗、车辆速度和标称任务时间加以适当限制。三种成形策略的算法对扭矩进行预测,以防止发动机后倾,提高燃油经济性。通过Matlab仿真,在5条路线上对算法进行了验证。平均而言,这些航线的燃油效率提高了1.77%。
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Novel optimization strategy to improve fuel economy for heavy-duty trucks
Many fuel consumption improvements for heavy-duty diesel engines have been achieved in the area of control and calibration. Few have addressed methods of improving fuel consumption during highway cruising. Since cruise control is activated most of the time during long trips, it should be seen as a viable option for improving fuel economy. If environmental changes and resulting engine load changes can be anticipated, the cruise control operation can be optimized with respect to fuel efficiency. We propose three cruise control reference-shaping strategies to improve engine efficiency and reduce truck on-highway cruising fuel consumption. These strategies would use GPS and computerized terrain maps to predict upcoming engine load changes in order to improve fuel economy. Assumptions are identified and appropriate constraints imposed on the fuel consumption, vehicle speed and nominal mission time. The algorithms of the three shaping strategies predict torque in order to prevent engine lug back and improve fuel economy. The algorithms were tested using a Matlab simulation on five routes. On average over the routes, fuel improvement of 1.77% was achieved.
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