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Rule Adjustment Method for Self-Organizing Control Rules Oriented to Urban Traffic Signals

机译:面向城市交通信号的自组织控制规则的规则调整方法

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In order to solve the adaptability problem of urban traffic signal self-organizing control rules brought by the complexity of urban traffic flow, which makes the adaptability of the rules mismatching with part of working conditions, a method of adjusting the rules of self-organizing control under urban traffic signals is proposed. The traffic congestion level of each lane at the current intersection are chosen as the decision information. The current intersection and its adjacent intersections are defined as a self-organizing unit under real-time. The switching of rule is based on fluid dynamics. The coordination of the green phase duration are under the traffic flow distribution principle, all above constitute the self-organizing control system of urban traffic signals. Each self-organizing control unit, which with its complexity caused by road composition, connection of the intersections and traffic flow randomness, makes the local rule with segmentation adjustment according to the traffic flow parameters to improve the adaptability of the intersection under complex traffic changes. The simulation experiment shows that the validity of the segmental adjustment of traffic flow parameters to the original local rule set is verified. It is concluded that the phase improvement effect of saturated traffic flow with larger relative traffic flow parameters is more obvious. This method is expressed in segments by self-organizing rules.
机译:为了解决城市交通流复杂性带来的城市交通信号自组织控制规则的适应性问题,使得该规则的适应性与部分工作条件不匹配,提出了一种调整自组织控制规则的方法。建议在城市交通信号下。选择当前十字路口的每个车道的交通拥堵程度作为决策信息。当前路口及其相邻路口被定义为实时自组织单元。规则的切换基于流体动力学。绿相持续时间的协调是在交通流分配原则下进行的,所有这些构成了城市交通信号的自组织控制系统。每个自组织控制单元由于道路组成,交叉路口的连接和交通流的随机性而引起的复杂性,使得局部规则根据交通流参数进行分段调整,以提高交叉路口在复杂交通变化下的适应性。仿真实验表明,验证了交通流参数分段调整对原始局部规则集的有效性。结论是,相对交通流参数较大时,饱和交通流的相位改善效果更为明显。该方法通过自组织规则分段表示。

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