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Convexity and Robustness of Dynamic Network Traffic Assignment for Control of Freeway Networks

机译:动态网络交通分配对高速公路网络控制的凸性和鲁棒性

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摘要

We study System Optimum Dynamic Traffic Assignment (SO-DTA) for realistic traffic dynamics controlled by variable speed limits, ramp metering, and routing controls. We consider continuous-time cell-based Dynamic Network Loading models that include the Cell Transmission Model with FIFO rule at the diverge junctions as well as non-FIFO diverge rules. We consider SO-DTA formulations in which the total inflow into and the total outflow from the cells are independently constrained by concave supply and demand functions, respectively, thus preserving convexity. We design open-loop controllers that guarantee that the optimal solutions are feasible with respect to realistic traffic dynamics, and we develop this methodology for two variants of the SO-DTA problem, one of which accounts for exogenous turning ratios. Robustness of the system trajectory under the proposed controllers is evaluated by deriving bounds on the deviations induced by perturbations of the initial condition and of the external inflows.
机译:我们研究了系统最佳动态交通分配(SO-DTA),以实现由变速限制,坡道计费和路线控制控制的现实交通动态。我们考虑连续时间基于信元的动态网络负载模型,其中包括在分岔路口具有FIFO规则的信元传输模型以及非FIFO分岔规则。我们考虑SO-DTA配方,其中流入和流出电池的总流量分别受凹的供求函数分别约束,从而保持凸度。我们设计了开环控制器,以保证最佳的解决方案相对于现实的交通动态是可行的,并且我们针对SO-DTA问题的两个变体开发了这种方法,其中一个考虑了外生的转向比。通过推导初始条件和外部流入扰动引起的偏差范围,来评估所提出的控制器下系统轨迹的鲁棒性。

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