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首页> 外文期刊>Intelligent Transportation Systems, IEEE Transactions on >A New Multiobjective Signal Optimization for Oversaturated Networks
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A New Multiobjective Signal Optimization for Oversaturated Networks

机译:饱和网络的一种新的多目标信号优化

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摘要

This paper presents a new methodology for optimizing the signal timing controls of oversaturated networks based on the cell transmission model and a goal programming technique with multiple objectives. The proposed model accounts for intersection spillovers, equity in delays, and system throughputs. This new formulation is solved by genetic algorithms to obtain signal timing plans. A case study with a nine-intersection network and a comparison between the proposed model and the throughput-maximizing strategy are examined. It is found that the new method can efficiently minimize spillovers, balance delay equity, and provide reasonable system throughputs in their respective order for oversaturated networks. The result also indicates that the throughput-maximizing strategy does not always yield minimum spillovers for oversaturated networks and occasionally provides a larger difference in average link delay at a spillover intersection than the proposed model does.
机译:本文提出了一种基于信元传输模型和多目标目标规划技术的优化过饱和网络信号时序控制的新方法。提出的模型考虑了交叉口溢出,延误公平性和系统吞吐量。遗传算法解决了这一新问题,从而获得了信号时序计划。研究了一个具有九个交叉口网络的案例研究,并比较了所提出的模型和吞吐量最大化策略。发现新方法可以有效地最小化溢出,平衡延迟公平性,并为过饱和网络按其各自的顺序提供合理的系统吞吐量。结果还表明,吞吐量最大化策略并不总是产生过饱和网络的最小溢出量,并且偶尔会比所提出的模型在溢出交叉点处提供平均链路延迟更大的差异。

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