协同自适应巡航控制
巡航控制
稳健性(进化)
控制理论(社会学)
排
计算机科学
弦(物理)
卡车
巡航
模型预测控制
燃料效率
网络数据包
汽车工程
工程类
控制(管理)
计算机网络
数学
航空航天工程
人工智能
基因
化学
生物化学
数学物理
作者
Ellen van Nunen,Joey Reinders,Elham Semsar-Kazerooni,Nathan van de Wouw
标识
DOI:10.1109/tiv.2019.2904418
摘要
Cooperative adaptive cruise control (CACC) is a potential solution to decrease traffic jams caused by shock waves, increase the road capacity, decrease fuel consumption and improve safety. This paper proposes an integrated solution to a combination of four challenges in these CACC systems. One of the technological challenges is how to guarantee string stability (the ability to avoid amplification of dynamic vehicle responses along the string of vehicles) under nominal operational conditions. The second challenge is how to apply this solution to heterogeneous vehicles. The third challenge is how to maintain confidentiality of the vehicle parameters. Finally, the fourth challenge is to find a method which improves robustness against wireless packet loss. This paper proposes a model predictive control approach in combination with a feed-forward control design, which is based on a shared vector of predicted accelerations over a finite time horizon. This approach is shown to be applicable to a heterogeneous sequence of vehicles, while the vehicle parameters remain confidential. In previous works such an approach has shown to increase robustness against packet losses. Conditions for string stability are presented for the nominal operational conditions. Experimental results are presented and indeed demonstrate string stable behavior.
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