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首页> 外文期刊>Transportation Research Procedia >Adaptive traffic signal control for real-world scenarios in agent-based transport simulations
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Adaptive traffic signal control for real-world scenarios in agent-based transport simulations

机译:基于代理的传输模拟中针对现实场景的自适应交通信号控制

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摘要

This study provides an open-source implementation of a decentralized, adaptive signal control algorithm in the agent-based transport simulation MATSim, which is applicable for large-scale real-world scenarios. The implementation is based on the algorithm proposed by L?mmer and Helbing (2008), which had promising results, but was not applicable to real-world scenarios in its published form. The algorithm is extended in this paper to cope with realistic situations like different lanes per signal, small periods of overload, phase combination of non-conflicting traffic, and minimum green times. Impacts and limitations of the adaptive signal control are analyzed for a real-world scenario and compared to a fixed-time and traffic-actuated signal control. It can be shown that delays significantly reduce and queue lengths are lower and more stable than with fixed-time signals. Another finding is that the adaptive signal control behaves like a fixed-time control in overload situations and, therefore, ensures system-wide stability.
机译:这项研究在基于代理的传输仿真MATSim中提供了一种分布式,自适应信号控制算法的开源实现,该算法适用于大规模现实场景。该实现基于L?mmer和Helbing(2008)提出的算法,该算法具有令人鼓舞的结果,但不适用于已发布形式的现实场景。该算法在本文中得到了扩展,以应对各种实际情况,例如每个信号的通道数不同,过载时间短,无冲突流量的相位组合以及最短的绿灯时间。针对实际情况分析了自适应信号控制的影响和局限性,并将其与固定时间和流量启动的信号控制进行了比较。可以看出,与固定时间信号相比,延迟显着减少,队列长度更短且更稳定。另一个发现是,自适应信号控制在过载情况下的行为类似于固定时间控制,因此可确保整个系统的稳定性。

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