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首页> 外文期刊>IEEE Transactions on Intelligent Transportation Systems >A Decentralized Signal Control for Non-Lane-Based Heterogeneous Traffic Under V2I Communication
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A Decentralized Signal Control for Non-Lane-Based Heterogeneous Traffic Under V2I Communication

机译:V2I通信下基于非通道的异构流量的分散信号控制

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摘要

Queue- and delay-based back-pressure control algorithms are appropriate for homogeneous traffic with strict lane discipline. Every traffic movement does not form a separate queue and vehicular dimensions are highly varied in non-lane-based heterogeneous traffic conditions. In this paper, we propose a novel decentralized, area occupancy-based back-pressure control for a non-lane-based heterogeneous traffic network under V2I communication. The concept of spatial area occupancy and temporal area occupancy combined with back-pressure (SAO-BP and TAO-BP) control are appropriate for heterogeneous traffic in the absence of lane discipline. We conducted an extensive simulation study to illustrate the efficacy of the proposed algorithms using the Vissim-MATLAB simulation environment. Our results suggest that the proposed SAO-BP and TAO-BP control algorithms significantly improve the performance of traffic network compared with vehicle actuated control and aggregated queue-based back-pressure control deployed on the same network.
机译:基于队列和延迟的背压控制算法适用于严格的车道纪律的同类交通。每个交通运动不形成单独的队列,并且在基于非线的异构交通条件下高度变化的车辆尺寸。在本文中,我们提出了一种在V2I通信下的非线非均匀交通网络的分散,基于面积的基于占用的背压控制。空间面积占用和时间面积占用的概念与后压(SAO-BP和TAO-BP)控制适用于在没有车道纪律的情况下的异质交通。我们进行了广泛的仿真研究,以说明使用Vissim-Matlab仿真环境的提出算法的功效。我们的研究结果表明,与在同一网络上部署的车辆驱动控制和基于聚合的队列的背压控制相比,SAO-BP和TAO-BP控制算法显着提高了交通网络的性能。

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