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Optimization of a Manual Transmission Gear Ratios for a Small Cargo Carrier using Statistics-Based Simulation Techniques

机译:利用基于统计学的仿真技术优化小型货载波的手动传动齿轮比

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This paper proposes a statistical design procedure to follow during the optimization of gear ratios for a 4-speed synchromesh transmission for a small cargo carrier application. The exercise starts with the simulation of a cargo vehicle using one of the commercially available simulation softwares. One of the reference vehicles has been simulated and then tested on chassis dynamometer to validate the simulation model. Further simulation model is adapted for the proposed vehicle. The first gear ratio is fixed based on the vehicle and the engine specifications to achieve gradeability requirements of the vehicle. The statistical technique of 'design of experiments' is used to carry out L27 experiments with 2nd, 3rd and 4th gear ratio as the three parameters and the simulation results are predicted for each of these sets of gear ratios for the fuel consumption, acceleration and the emissions. The optimum gear ratio set is then subjected to the sensitivity analysis using L8 experiment to check the robustness of this design for variation in vehicle parameters.
机译:本文提出了一种统计设计过程,在优化用于小货物载体应用的4速同步啮合传动的齿轮比期间进行遵循。使用市售的仿真软件之一开始,练习开始模拟货物车辆。已经模拟了其中一个参考车辆,然后在底盘测功机上进行测试,以验证仿真模型。进一步的仿真模型适用于所提出的车辆。第一齿轮比基于车辆和发动机规格来固定,以实现车辆的血管性要求。 “实验设计”的统计技术用于执行第二,第3和第4齿轮比的L27实验,因为这对于燃料消耗,加速度和燃料消耗,加速和仿真结果排放。然后使用L8实验进行最佳齿轮比集,使用L8实验进行灵敏度分析,以检查这种设计的鲁棒性是否有用于车辆参数的变化。

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