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An optimization modeling of coordinated traffic signal control based on the variational theory and its stochastic extension

机译:基于变分理论及其随机扩展的协同交通信号控制优化模型

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This study considers an optimal coordinated traffic signal control under both deterministic and stochastic demands. We first present a new mixed integer linear programming (MILP) for the deterministic signal optimization wherein traffic flow is modeled based on the variational theory and the constraints on a signal control pattern are linearly formulated. The resulting MILP has a clear network structure and requires fewer binary variables and constraints as compared with those in the existing formulations. We then extend the problem so as to treat the stochastic fluctuations in traffic demand. We here develop an accurate and efficient approximation method of expected delays and a solution method for the stochastic version of the signal optimization by exploiting the network structure of the problem. Using a set of proposed methods, we finally examine the optimal control parameters for deterministic and stochastic coordinated signal controls and discuss their characteristics.
机译:这项研究考虑了确定性和随机性需求下的最优协调交通信号控制。我们首先提出一种用于确定性信号优化的新混合整数线性规划(MILP),其中,基于变分理论对交通流进行建模,并对信号控制模式的约束条件进行线性表述。与现有公式相比,生成的MILP具有清晰的网络结构,并且需要较少的二进制变量和约束。然后,我们扩展问题以处理交通需求的随机波动。在这里,我们通过开发问题的网络结构,开发了一种精确,有效的预期延迟近似方法,以及一种针对随机优化信号优化的解决方法。使用一组建议的方法,我们最终检查确定性和随机协调信号控制的最佳控制参数,并讨论它们的特性。

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