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Novel and efficient local coordinated freeway ramp metering strategy with simultaneous perturbation stochastic approximation-based parameter learning

机译:基于同时扰动随机逼近的参数学习的新型高效局部协调高速公路匝道计量策略

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摘要

In this study, a novel and efficient fuzzy logic control (FLC) -based local coordinated ramp metering strategy is studied for networked freeway traffic control. Local traffic measurements are exchanged among neighbouring controllers. Based on both local and exchanged traffic measurement, the FLC based coordinated decision-making algorithms determine the reference mainstream densities, which are consequently tracked by local controllers using feedback control-based strategy. The parameters of the FLC algorithm are adjusted by a simple and efficient simultaneous perturbation stochastic approximation based parameter learning algorithm, which finds the optimal coordinated decision-making policies without interruption to normal freeway operations. Due to the limited communication among neighbouring controllers, communication cost is reduced compared with existing centralised control-based strategies. Furthermore, the structure of the proposed strategy is simple without involvement of complex model-based calculation. Case studies show the potential of the proposed strategy for coordinated freeway ramp metering problems with significantly improved system efficiency. In particular, using the proposed local coordinated ramp metering strategy, the system cost function is reduced by over 48% compared with no control case, and by over 18% compared with uncoordinated feedback control-based ramp metering case. The queue volumes at the on-ramp links are well balanced both temporally and spatially.
机译:在这项研究中,基于网络的高速公路交通控制研究了一种新颖有效的基于模糊逻辑控制(FLC)的局部协调匝道计量策略。本地流量测量在相邻控制器之间交换。基于本地和交换流量测量,基于FLC的协调决策算法确定参考主流密度,因此本地控制器使用基于反馈控制的策略对其进行跟踪。 FLC算法的参数通过简单有效的基于同时扰动随机逼近的参数学习算法进行调整,该算法可在不中断正常高速公路运营的情况下找到最佳的协调决策策略。由于相邻控制器之间的通信受限,与现有的基于集中控制的策略相比,通信成本得以降低。此外,所提出策略的结构很简单,而无需进行复杂的基于模型的计算。案例研究表明,所提出的策略可解决高速公路协调匝道计量问题,并显着提高系统效率。特别是,使用建议的局部协调斜坡计量策略,与无控制案例相比,系统成本函数降低了48%以上,与基于非协调反馈控制的斜坡计量案例相比,系统成本函数降低了18%以上。匝道链接上的队列量在时间和空间上都得到了很好的平衡。

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