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首页> 外文期刊>Intelligent Transportation Systems, IEEE Transactions on >Fuel-Optimal Cruising Strategy for Road Vehicles With Step-Gear Mechanical Transmission
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Fuel-Optimal Cruising Strategy for Road Vehicles With Step-Gear Mechanical Transmission

机译:齿轮传动机械传动的公路车辆燃油优化巡航策略

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摘要

This paper studies the principles and mechanism of a fuel-optimal strategy in cruising scenarios, i.e., the pulse and glide (PnG) operation, for road vehicles equipped with a step-gear transmission. In the PnG strategy, the control of the engine and the transmission determines the fuel-saving performance, and it is obtained by solving an optimal control problem (OCP). Due to a discrete gear ratio, strong nonlinear engine fuel characteristics, and different dynamics in the pulse/glide mode, the OCP is a switching nonlinear mixed-integer problem. This challenging problem is converted by a knotting technique and the Legendre pseudospectral method to a nonlinear programming problem, which then solves the optimal engine torque and transmission gear position. The optimization results show the significant fuel saving of the PnG operation as compared with the constant-speed cruising strategy. The underlying fuel-saving mechanism of the PnG strategy is explained graphically. For a real-time implementation, a near-optimal practical rule that enables a driver and/or an automatic control system to fast select gear positions and engine torque profile is proposed with only slightly deteriorated fuel saving.
机译:本文研究了在巡航场景中采用燃油优化策略的原理和机理,即配备有齿轮传动装置的公路车辆的脉冲和滑行(PnG)操作。在PnG策略中,发动机和变速器的控制决定了节油性能,这是通过解决最佳控制问题(OCP)获得的。由于离散的齿轮比,强大的非线性发动机燃料特性以及脉冲/滑行模式下的不同动力,OCP是一个切换非线性混合整数问题。通过打结技术和勒让德伪谱方法将这个具有挑战性的问题转换为非线性编程问题,然后解决了最佳发动机扭矩和变速箱档位问题。优化结果表明,与恒速巡航策略相比,PnG运行可节省大量燃油。 PnG策略的基本节油机制以图形方式说明。对于实时实施,提出了使驾驶员和/或自动控制系统能够快速选择档位和发动机扭矩曲线的近乎最佳的实用规则,而节省的燃料仅稍微变差了。

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