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Decentralized optimal control of a car platoon with guaranteed string stability

机译:保证排稳定性的汽车排的分散式最优控制

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This paper presents new decentralized optimal strategies for Cooperative Adaptive Cruise Control (CACC) of a car platoon under string-stability constraints. Two related scenarios are explored in the article: in the first one, a linear-quadratic regulator in the presence of measurable disturbances is synthesized, and the string-stability of the platoon is enforced over the controller's feedback and feedforward gains. In the second scenario, H2- andH™-performance criteria, respectively accounting for the desired group behavior and the string-stability of the platoon, are simultaneously achieved using the recently-proposed compensator blending method. An analytical study of the impact of actuation/communication delays and uncertain model parameters on the stability of the multi-vehicle system, is also conducted. The theory is illustrated via numerical simulations.
机译:本文提出了在弦稳定性约束下,汽车排的协同自适应巡航控制(CACC)的新的分散最优策略。本文探讨了两个相关的场景:在第一个场景中,合成了存在可测量干扰的线性二次调节器,并通过控制器的反馈和前馈增益来增强排的弦稳定性。在第二种情况下,使用最近提出的补偿器混合方法可以同时实现分别考虑所需的组行为和排的弦稳定性的H2-和H™性能标准。还进行了致动/通信延迟和不确定的模型参数对多车辆系统稳定性的影响的分析研究。通过数值模拟说明了该理论。

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