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Stability and Scalability of Homogeneous Vehicular Platoon: Study on the Influence of Information Flow Topologies

机译:均匀车辆排的稳定性和可扩展性:信息流拓扑影响的研究

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摘要

In addition to decentralized controllers, the information flow among vehicles can significantly affect the dynamics of a platoon. This paper studies the influence of information flow topology on the internal stability and scalability of homogeneous vehicular platoons moving in a rigid formation. A linearized vehicle longitudinal dynamic model is derived using the exact feedback linearization technique, which accommodates the inertial delay of powertrain dynamics. Directed graphs are adopted to describe different types of allowable information flow interconnecting vehicles, including both radar-based sensors and vehicle-to-vehicle (V2V) communications. Under linear feedback controllers, a unified internal stability theorem is proved by using the algebraic graph theory and Routh-Hurwitz stability criterion. The theorem explicitly establishes the stabilizing thresholds of linear controller gains for platoons, under a large class of different information flow topologies. Using matrix eigenvalue analysis, the scalability is investigated for platoons under two typical information flow topologies, i.e., 1) the stability margin of platoon decays to zero as 0(1/N2) for bidirectional topology; and 2) the stability margin is always bounded and independent of the platoon size for bidirectional-leader topology. Numerical simulations are used to illustrate the results.
机译:除了分散的控制器之外,车辆之间的信息流程还可以显着影响排的动态。本文研究了信息流拓扑对刚性地层移动均匀车辆夹层的内部稳定性和可扩展性的影响。使用精确的反馈线性化技术导出线性化车辆纵向动态模型,其适应动力总成动力学的惯性延迟。采用定向图来描述不同类型的允许信息流互连车辆,包括基于雷达的传感器和车辆到车辆(V2V)通信。在线性反馈控制器下,通过使用代数图论和Routh-Hurwitz稳定性标准来证明统一的内部稳定性定理。定理在大类不同信息流拓扑下明确地确定了粘盘的线性控制器增益的稳定阈值。使用矩阵特征值分析,对两个典型信息流拓扑的粘盘来研究可扩展性,即,1)分排衰减为单向拓扑的稳定性余量至零0(1 / N2); 2)稳定性裕度总是有界和独立于双向领导拓扑的排尺寸。数值模拟用于说明结果。

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