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A study on motorcycle-rider system simulations

机译:摩托车骑手系统模拟研究

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It is necessary to predict motorcycle performance at an early stage of development to minimize the period for designing, experimenting, and tuning. In order to do that, we have developed a motorcycle model with a mechanical dynamic simulation program. This model includes the bodies of a motorcycle, aerodynamic forces, tire forces, engine characteristics, simplified gear trains and driving chains, and rider operations. With this program, we have conducted motion simulation on steady- state turn and disturbance response tests with two kinds of tire stiffness. We have also conducted experiment on the steady-state turn and disturbance response tests to validate the program. In this paper, we analyze the results of the simulation and experiment. As a result, it is confirmed that the simulation results accord with the experimental results, and we have found that the steer angle and bank angle at the steady-state turn depend on tire stiffness. The frequencies and damping ratios at the disturbance response tests are also affected by tire stiffness. We have also conducted simulations on disturbance response tests with different crankshaft rotating directions and found that the stability is affected by the direction. In this case, simulations are effective because these tests cannot easily be experimented.
机译:有必要在开发的早期阶段预测摩托车性能,以最大限度地减少设计,试验和调整的时期。为此,我们开发了一种具有机械动态仿真程序的摩托车模型。该模型包括摩托车,空气动力,轮胎力,发动机特性,简化的齿轮训练和驱动链,以及骑手操作的体。通过该计划,我们对两种轮胎刚度进行了稳态转弯和干扰响应试验进行了运动仿真。我们还在稳态转弯和干扰响应测试上进行了实验,以验证该计划。在本文中,我们分析了模拟和实验的结果。结果,证实模拟结果符合实验结果,我们发现转向角和稳态转弯的银行角度取决于轮胎刚度。干扰响应试验处的频率和阻尼比也受到轮胎刚度的影响。我们还对具有不同曲轴旋转方向的扰动响应试验进行了模拟,发现稳定性受方向的影响。在这种情况下,仿真是有效的,因为这些测试不能轻易进行实验。

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