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Macroscopic modelling of arterial traffic: An extension to the cell transmission model

机译:宏观交通流量建模:细胞传输模型的扩展

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This paper extends the capability of the cell transmission model (CTM) to capture the complexities of the arterial network. This includes short turning lane blockages and spillbacks, shared lanes, and unbalanced lane utilisation. Moreover, queue estimation accuracy is improved through appropriate consideration of the queue discharge process.The proposed Arterial Cell Transmission Model (ACTM) has been thoroughly tested with synthetic data and further validated using real data. Compared with the CTM, the proposed ACTM improves the back of the queue estimation accuracy by 20% - 80%. The ACTM offers a more realistic simulation of densities on each lane in case of blockages or spillbacks from short turning lanes and models the interaction among movements in shared lanes including gap acceptance behaviour of permitted turns from shared lanes that are opposed by through traffic. The extension also enables the balancing of unequal lane utilisation whenever required. The ACTM is expected to improve the performance of traffic management tools by providing a more realistic simulation of arterial traffic with better queue estimations.
机译:本文扩展了细胞传输模型(CTM)的功能,以捕获动脉网络的复杂性。这包括短暂的转弯车道阻塞和溢出,共用车道以及不平衡的车道利用率。此外,通过适当考虑队列放电过程可以提高队列估计的准确性。拟议的动脉细胞传输模型(ACTM)已通过合成数据进行了全面测试,并使用实际数据进行了进一步验证。与CTM相比,建议的ACTM将队列估计的准确性提高了20%-80%。 ACTM提供了更现实的密度模拟,以防短弯道阻塞或溢出,并模拟共享车道中的运动之间的交互作用,包括与通行相对的共享车道允许转弯的间隙接受行为。该扩展还可以在需要时平衡不平等的通道利用率。预计ACTM将通过提供更真实的动脉交通模拟和更好的队列估计来改善交通管理工具的性能。

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