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Set-based multi-objective control of metered ramps at ring road junctions

机译:环路交叉路口计量坡道的基于集合的多目标控制

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ABSTRACT A set-theoretical approach is presented for a multi-objective control design of the local ramp metering problem. Two control objectives are specified: first, the optimization of traffic performance, by the minimization of total time spent. Second, the emission factor of needs to be minimized. The optimal state for traffic emission, however, lies in the unstable domain of the dynamic system. To dissolve this inconsistency, the control problem is formalized for the multi-objective optimization problem by using set-theoretical methods. For this purpose, the non-linear model METANET is rewritten in a shifted coordinate frame with a parameter-varying, polytopic representation. Bounds on state-, input- and disturbance variables are expressed by convex polytopes. These sets are then used for the design of an interpolated controller that is capable of improving traffic conditions according to the prescribed multi-objective criteria.
机译:摘要提出了一种局部斜坡计量问题的多目标控制设计的设定理论方法。指定了两个控制目标:首先,通过总时间的总时间最小化优化交通绩效。其次,需要最小化排放因子。然而,交通发射的最佳状态在于动态系统的不稳定域。为了溶解这种不一致,控制问题是通过使用设定理论方法形式化的多目标优化问题。为此目的,非线性模型元类在具有参数变化的多粒子表示的移位坐标帧中被重写。状态,输入和干扰变量的界限由凸多台表示。然后,这些集合用于设计内插控制器,其能够根据规定的多目标标准改善交通状况。

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