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Analytical model for information flow propagation wave under an information relay control strategy in a congested vehicle-to- vehicle communication environment

机译:拥塞的车对车通信环境下信息中继控制策略下信息流传播波的解析模型

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Vehicular traffic congestion in a vehicle-to-vehicle (V2V) communication environment can lead to congestion effects for information flow propagation. Such congestion effects can impact whether a specific information packet of interest can reach a desired location, and if so, in a timely manner to influence the traffic system performance. Motivated by the usefulness and timeliness of information propagation, this paper aims to characterize the information flow propagation wave (IFPW) for an information packet in a congested V2V communication environment under an information relay control strategy. This strategy seeks to exclude information that is dated in the communication buffer under a first-in, first-out queue discipline, from being relayed if the information flow regime is congested. It trades off the need to enable the dissemination of every information packet as far as possible, against the congestion effects that accrue because of the presence of multiple information packets. A macroscopic two-layer model is proposed to characterize the IFPW. The upper layer is formulated as integro-differential equations to characterize the information dissemination in space and time under this control strategy. The lower layer adopts the Lighthill-Whitham-Richards model to capture the traffic flow dynamics. Based on the upper layer model, a necessary condition is derived which quantifies the expected time length that needs to be reserved for broadcasting the information packet of interest so as to ensure the formation of an IFPW under a given density of V2V-equipped vehicles.When the necessary condition is satisfied under homogeneous conditions, it is shown that the information packet can be propagated at an asymptotic speed whose value can be derived analytically. Besides, under the proposed control strategy, only a proportion of vehicles (labeled asymptotic density of informed vehicles) can receive the specific information packet, which can be estimated by solving a nonlinear equation. The asymptotic IFPW speed, the asymptotic density of informed vehicles, and the necessary condition for the IFPW, help in evaluating the timeliness of information propagation and the influence of traffic dynamics on information propagation.In addition, the proposed model can be used to numerically estimate the IFPW speed for heterogeneous conditions, which can aid inthe design of traffic management strategies built upon the timely propagation of information through V2V communication.
机译:车对车(V2V)通信环境中的车辆交通拥堵会导致信息流传播的拥塞效应。这样的拥塞效应会影响感兴趣的特定信息包是否可以到达期望的位置,如果可以的话,会及时影响交通系统的性能。受到信息传播的实用性和及时性的推动,本文旨在表征在信息中继控制策略下拥挤的V2V通信环境中信息包的信息流传播波(IFPW)。如果信息流状况拥塞,则此策略试图从先进先出队列规则中排除通信缓冲区中过时的信息。它权衡了使尽可能分发每个信息包的需要与因存在多个信息包而产生的拥塞效应相抵触的需要。提出了宏观两层模型来表征IFPW。上层公式化为积分微分方程,以描述这种控制策略下信息在时空上的传播。下层采用Lighthill-Whitham-Richards模型来捕获交通流动态。基于上层模型,得出必要条件,该条件量化了为广播感兴趣的信息包而需要保留的预期时间长度,以确保在给定的配备V2V的车辆密度下形成IFPW。在齐次条件下满足必要条件的情况下,表明信息包可以以渐近速度传播,其值可以解析得出。此外,在提出的控制策略下,只有一部分车辆(标记为知情车辆的渐进密度)可以接收特定信息包,可以通过求解非线性方程来对其进行估计。 IFPW的渐近速度,知情车辆的渐近密度以及IFPW的必要条件,有助于评估信息传播的及时性以及交通动态对信息传播的影响。此外,该模型还可用于数值估算IFPW速度用于异构条件,可以帮助设计基于通过V2V通信及时传播信息而建立的流量管理策略。

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