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Optimization of drivability control functions with two-stage rate limiters

机译:两阶段速率限制器的驾驶性控制功能优化

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Load changes in automotive drivelines may cause uncomfortable vibrations. A suitable motor torque control is able to remedy this problem. Often, a two degrees of freedom structure is used in these drivability control functions. In this structure, the desired motor torque is pre-filtered by a multi-stage rate limiter. However, those functions are still parametrized experimentally by laborious test drives or on the test-bench. This paper addresses the model-based optimal parametrization of these rate limiters in automotive drivability functions. For this, a recently published gear specific model is identified and validated for another gear position. In addition, a linear transfer function of multi-stage rate limiters is approximated by the transient input describing function method. The characteristics of this transfer function are used to reduce the number of design variables for the multi-objective optimization of a two-stage rate limiter for drivability control.
机译:汽车驾驶中的负载变化可能导致振动不舒服。合适的电动机扭矩控制能够解决这个问题。通常,在这些驱动性控制功能中使用两度自由度结构。在该结构中,通过多级速率限制器预过滤所需的电动机扭矩。然而,这些功能仍然通过实验起来通过艰苦的测试驱动器或在测试台上进行参数化。本文解决了汽车驾驶功能函数中这些速率限制器的基于模型的最佳参数化。为此,识别最近公开的齿轮特定模型并验证了另一个档位。另外,多级速率限制器的线性传递函数由描述功能方法的瞬态输入近似。该传递函数的特性用于减少用于为驱动性控制的两级速率限制器的多目标优化的设计变量的数量。

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