Mean square stability conditions for platoons with lossy inter-vehicle communication channels

Marco A. Gordon, Francisco J. Vargas, A. Peters
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引用次数: 2

Abstract

This paper studies the mean-square stability of heterogeneous LTI vehicular platoons with inter-vehicle communication channels affected by random data loss. We consider a discrete-time platoon system with predecessor following topology and constant time-headway spacing policy. Lossy channels are modeled by Bernoulli processes allowed to be correlated in space. We make use of a class of compensation strategies to reduce the effect of data loss. Necessary and sufficient conditions are derived to guarantee the convergence of the mean and variance of the tracking errors, which depend not only on the controller design but also on the compensation strategy and the probabilities of successful transmission. Through numerical simulations, we illustrate the theoretical results, describing different platoon behaviors. We also provide insights on the mean-square stability as a necessary condition for string stability in this stochastic setting.
具有有耗车辆间通信信道的排的均方稳定性条件
研究了车辆间通信信道受随机数据丢失影响的异构LTI车辆排的均方稳定性问题。我们考虑了一个具有前代车辆跟随拓扑和恒时距策略的离散时间排系统。有损信道是由伯努利过程建模的,允许在空间中相关。我们利用了一类补偿策略来减少数据丢失的影响。导出了跟踪误差均值和方差收敛的充分必要条件,跟踪误差均值和方差收敛不仅取决于控制器的设计,还取决于补偿策略和成功传输的概率。通过数值模拟,我们说明了理论结果,描述了不同的排行为。我们还提供了关于均方稳定性作为该随机设置中弦稳定性的必要条件的见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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