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A Control Strategy to Compensate the Reaction Torque of Active Front Steering System

机译:一种控制活性前转向系统的反应扭矩的控制策略

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摘要

Recently steering technology focuses on not only driver's convenience, fuel efficiency, environment friendliness but also improved vehicle stability. Therefore Active Front Steering (AFS) has been widely studied as latest technical trend in steering system. This system can enhance vehicle stability by making additional road wheel angle (called "superimposed angle") based on the vehicle state information such as vehicle speed, steering angle, yaw rate and lateral acceleration. While occurring superimposed steering angle, driver may feel the reaction torque which is caused from abnormal changes of steering effort with AFS mechanism installed. To solve this problem it is required to reduce steering output load in case of superimposed steering by increasing steering assist of rack assist type electric power steering. This paper describes the control method that is compensated reaction torque. And its effect of compensation is validated from test results.
机译:最近,转向技术不仅侧重于驾驶员的方便,燃油效率,环境友好性,而且还改善了车辆稳定性。因此,主动前转向(AFS)已被广泛研究转向系统的最新技术趋势。该系统可以通过基于车辆速度,转向角度,横摆率和横向加速度的车辆状态信息制造额外的道路角度(称为“叠加角度”)来提高车辆稳定性。在发生叠加转向角度的同时,驾驶员可以感受到反应扭矩,这是由安装的AFS机构的转向努力的异常变化引起的反应扭矩。为了解决这个问题,需要通过增加齿条辅助型电力转向的转向辅助,减少转向转向的情况下。本文介绍了补偿反应扭矩的控制方法。其补偿的效果是从测试结果中验证的。

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