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Survey on Wheel Slip Control Design Strategies, Evaluation and Application to Antilock Braking Systems

机译:防滑控制设计策略调查,评估和应用于防姑式制动系统

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Since their introduction, anti-lock braking systems (ABS) have mostly relied on heuristic, rule-based control strategies. ABS performance, however, can be significantly improved thanks to many recent technological developments. This work presents an extensive review of the state of the art to verify such a statement and quantify the benefits of a new generation of wheel slip control (WSC) systems. Motivated by the state of the art, as a case study, a nonlinear model predictive control (NMPC) design based on a new load-sensing technology was developed. The proposed ABS was tested on Toyota & x2019;s high-end vehicle simulator and was benchmarked against currently applied industrial controller. Additionally, a comprehensive set of manoeuvres were deployed to assess the performance and robustness of the proposed NMPC design. The analysis showed substantial reduction of the braking distance and better steerability with the proposed approach. Furthermore, the proposed design showed comparable robustness against external factors to the industrial benchmark.
机译:自从他们的介绍以来,防抱死制动系统(ABS)主要依赖于基于启发式的规则的控制策略。然而,由于许多最近的技术发展,可以显着改善ABS性能。这项工作介绍了对现有技术的广泛审查,以验证此类声明并量化新一代轮滑控制(WSC)系统的益处。作为本领域的激励,作为一个案例研究,开发了一种基于新负载传感技术的非线性模型预测控制(NMPC)设计。该拟议的ABS在丰田和X2019; S高端车辆模拟器上进行了测试,并与目前应用的工业控制器进行了基准测试。此外,部署了一套全面的机动,以评估所提出的NMPC设计的性能和鲁棒性。分析显示制动距离的显着降低以及具有所提出的方法的更好的排列性。此外,拟议的设计表现出对工业基准的外部因素的相当稳健性。

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