Department of Systems Engineering and Automation, School of Industrial Engineering, University of Vigo, 36310 Vigo, Spain.
Sensors (Basel). 2018 Jul 9;18(7):2204. doi: 10.3390/s18072204.
An intelligent vehicle must face a wide variety of situations ranging from safe and comfortable to more aggressive ones. Smooth maneuvers are adequately addressed by means of linear control, whereas more aggressive maneuvers are tackled by nonlinear techniques. Likewise, there exist intermediate scenarios where the required responses are smooth but constrained in some way (rise time, settling time, overshoot). Due to the existence of the fundamental linear limitations, which impose restrictions on the attainable time-domain and frequency-domain performance, linear systems cannot provide smoothness while operating in compliance with the previous restrictions. For this reason, this article aims to explore the effects of reset control on the alleviation of these limitations for a lane change maneuver under a set of demanding design conditions to guarantee a suitable ride quality and a swift response. To this end, several reset strategies are considered, determining the best reset condition to apply as well as the magnitude thereto. Concerning the reset condition that triggers the reset action, three strategies are considered: zero crossing of the controller input, fixed reset band and variable reset band. As far as the magnitude of the reset action is concerned, a full-reset technique is compared to a Lyapunov-based error minimization method to calculate the optimal reset percentage. The base linear controller subject to the reset action is searched via genetic algorithms. The proposed controllers are validated by means of CarSim.
智能车辆必须面对各种情况,从安全舒适到更具侵略性的情况。线性控制足以应对平稳的机动动作,而非线性技术则可应对更具侵略性的机动动作。同样,存在一些中间场景,其中所需的响应是平稳的,但在某种程度上受到限制(上升时间、稳定时间、超调)。由于存在基本的线性限制,这些限制对可达的时域和频域性能施加限制,因此线性系统在遵守先前限制的情况下无法提供平稳性。出于这个原因,本文旨在探讨重置控制对缓解这些限制的影响,以实现一套苛刻的设计条件下的换道操作,从而保证合适的乘坐质量和快速响应。为此,考虑了几种重置策略,确定了要应用的最佳重置条件及其幅度。关于触发重置动作的重置条件,考虑了三种策略:控制器输入的过零、固定重置带宽和可变重置带宽。就重置动作的幅度而言,将全重置技术与基于 Lyapunov 的误差最小化方法进行比较,以计算最佳重置百分比。通过遗传算法搜索受重置动作影响的基础线性控制器。通过 CarSim 验证所提出的控制器。