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首页> 外文期刊>Journal of Transportation Engineering >Vehicle Speed Profiles to Minimize Work and Fuel Consumption
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Vehicle Speed Profiles to Minimize Work and Fuel Consumption

机译:车速曲线可最大程度地减少工作量和燃油消耗

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摘要

This paper addresses the question of what speed profile will minimize fuel consumption of a land transport vehicle (road or rail) in traversing a path or route. Numerous previous studies, using a control theory approach applied to specific profiles, have suggested that fuel consumption is approximately minimized by operation at constant speed. This result is derived much more directly here, along with boundaries on the conditions under which this result holds. The derivation relies on: (1) the approximate proportionality between fuel consumption and propulsive work; (2) the inherent resistance of a vehicle having the usual quadratic form (of road and rail vehicles); (3) the energy conversion characteristics of on-board gasoline or diesel (or diesel-electric) propulsion systems; and (4) relatively long distances between stops. Tests, using a train performance simulator, confirm the theoretical results. The results are discussed from the standpoint of basic principles in transportation engineering, and as guidance for designing systems that conserve fuel.
机译:本文讨论的问题是,什么速度曲线将使陆路运输车辆(公路或铁路)在穿越路径或路线时的燃油消耗最小化。使用控制理论方法应用于特定轮廓的大量先前研究表明,通过以恒定速度运行可将燃油消耗降至最低。在这里,这个结果以及在该条件成立的条件下的边界,可以更直接地得出。该推导依赖于:(1)燃料消耗与推进工作之间的近似比例; (2)具有普通二次形式的车辆(公路和铁路车辆)的固有阻力; (3)车载汽油或柴油(或柴油-电力)推进系统的能量转换特性; (4)站点之间的距离相对较长。使用火车性能模拟器进行的测试确认了理论结果。从运输工程中的基本原理的角度讨论了结果,并为设计节省燃料的系统提供了指导。

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