基于分散高阶屏障证书的队列协调

M. Sharifi, Dimos V. Dimarogonas
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引用次数: 0

摘要

提出了基于时变收敛高阶控制障碍函数的队列网络协调控制策略。该网络可以通过一类领导者-追随者多智能体系统建模,其中领导者了解相关任务并控制其排相关车辆的性能。追随者不知道这些任务,也没有任何控制权限来到达它们。他们听从排长的命令,以满足任务的要求。定义了信号时序逻辑(STL)任务,用于排间协调。提出了基于领队对跟随车辆状态可达性的任务满意度鲁棒解。此外,利用高阶障碍函数的概念,提出了在编队动态结构中演化的车辆的分散障碍证书。我们的方法找到了保证独立于智能体初始条件的STL任务的满足的解决方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Platoons Coordination Based on Decentralized Higher Order Barrier Certificates
This paper presents control strategies based on time-varying convergent higher order control barrier functions for the coordination of networks of platoons. This network could be modelled by a class of leader-follower multi-agent systems, where the leaders have knowledge on the associated tasks and control the performance of their platoon involved vehicles. The followers are not aware of the tasks, and do not have any control authority to reach them. They follow their platoon leader commands for the task satisfaction. Signal temporal logic (STL) tasks are defined for the platoons coordination. Robust solutions for the task satisfaction, based on the leader’s accessibility to the follower vehicles’ states are suggested. In addition, using the notion of higher order barrier functions, decentralized barrier certificates for each vehicle evolving in a formation dynamic structure are proposed. Our approach finds solutions to guarantee the satisfaction of STL tasks independent of the agents’ initial conditions.
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