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Electric Power Assist Steering System Parameterization and Optimisation Employing Computer-Aided Engineering

机译:电力辅助转向系统参数化和优化采用计算机辅助工程

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The automotive industry strives to develop high quality vehicles in a short period of time that satisfy the consumer needs and stand out in the competition. Full exploitation of simulation and Computer-Aided Engineering (CAE) tools can enable quick evaluation of different vehicle concepts and setups without the need of building physical prototypes. Addressing the aforementioned statements this paper presents a method for optimising the Electric Power-Assisted Steering (EPAS) ECU parameters employing solely CAE. The objective of the optimisation is to achieve a desired steering response. The developed process is tested on three specific steering metrics (friction feel, torque build-up and torque deadband) for two function parameters (basic steering torque and active return) of the EPAS. The optimisation method enabled all metrics to fall successfully within the target range.
机译:汽车工业在短时间内努力开发高质量的车辆,以满足消费者需求并在竞争中脱颖而出。完全开发模拟和计算机辅助工程(CAE)工具可以在不需要建筑物理原型的情况下快速评估不同的车辆概念和设置。解决上述说明本文提出了一种用于优化仅采用CAE的电力辅助转向(EPA)ECU参数的方法。优化的目的是达到期望的转向响应。对于两个功能参数(基本转向扭矩和主动返回),在三个特定的转向度量(摩擦感,扭矩积聚和扭矩死区)上测试了开发的过程,用于ePA的两个功能参数。优化方法使所有度量标准都在目标范围内成功下降。

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