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首页> 外文期刊>Control Engineering Practice >A Non-Convex Control Allocation Strategy as Energy-Efficient Torque Distributors for On-Road and Off-Road Vehicles
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A Non-Convex Control Allocation Strategy as Energy-Efficient Torque Distributors for On-Road and Off-Road Vehicles

机译:一种非凸面控制分配策略,作为公路和越野车辆的节能扭矩分配器

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摘要

A Vehicle with multiple drivetrains, like a hybrid electric one, is an over-actuated system that means there is an infinite number of combinations of torques that individual drivetrains can supply to provide a given total torque demand. Energy efficiency is considered as the secondary objective to determine the optimum solution among these feasible combinations. The resulting optimisation problem, which is nonlinear due to the multi-modal operation of electric machines, must be solved quickly to comply with the stability requirements of the vehicle dynamics. A theorem is developed for the first time to formulate and parametrically solve the energy-efficient torque distribution problem of a vehicle with multiple different drivetrains. The parametric solution is deployable on an ordinary electronic control unit (ECU) as a small-size lookup table that makes it significantly fast in operation. The fuel-economy of combustion engines, load transformations due to longitudinal and lateral accelerations, and traction efficiency of the off-road conditions are integrated into the developed theorem. Simulation results illustrate the effectiveness of the provided optimal strategy as torque distributors of on-road and off-road electrified vehicles with multiple different drivetrains.
机译:具有多种动力传动系统的车辆(如混合动力电动车辆)是一种过度驱动的系统,这意味着各个动力传动系统可以提供无限数量的扭矩组合,以提供给定的总扭矩需求。能源效率被视为在这些可行组合中确定最佳解决方案的次要目标。由于电机的多模式运行而导致的非线性优化问题必须迅速解决,以符合车辆动力学的稳定性要求。首次开发出一个定理,以公式化并参数化地解决具有多个不同传动系的车辆的节能扭矩分配问题。该参数化解决方案可以作为小型查找表部署在普通的电子控制单元(ECU)上,从而使其运行非常快。内燃机的燃油经济性,由于纵向和横向加速度引起的负载转换以及越野条件下的牵引效率已集成到已开发的定理中。仿真结果说明了所提供的最佳策略作为具有多种不同传动系的公路和越野电动车辆的扭矩分配器的有效性。

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