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Traffic Conflict Analysis of Motor Vehicles and Nonmotor Vehicles Based on Improved Cellular Automata

机译:基于改进的细胞自动机的机动车辆和非热载体交通冲突分析

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In recent years, with the rapid development of China’s logistics industry and urban service industry, electric bicycles have gradually become an important means of transportation in cities due to their flexibility, green technology, and low operating costs. Because electric bicycles travel though motor vehicle lanes and nonmotor vehicle lanes, the conflict between motor and nonmotor vehicles has become increasingly prominent, and the safety situation is not optimistic. However, most theories and models of mixed traffic flow are based on motor vehicles and bicycles and few involve electric bicycles. To explore the traffic safety situation in an urban mixed traffic environment, this paper first uses cellular automata (CA) to establish a three-strand mixed traffic flow model of motor vehicles, electric bicycles, and bicycles and verifies the reliability of the model by using a MATLAB simulation based on the actual survey data. Then, using the technology of traffic conflicts and the conflict rate as the index to evaluate the traffic safety situation, the change in the conflict rate with different road occupancies and different proportional coefficients of motor vehicles is studied. In the end, the conflict rate is compared between the mixed traffic flow and the setting of a physical isolation divider, which provides some suggestions on when to set a physical isolation divider to separate motor vehicles from nonmotor vehicles. The results show that in a mixed traffic environment, the conflict rate first increases and then decreases with increasing road occupancy and reaches a peak when the road occupancy is 0.6. In addition, in mixed traffic environments, the conflict rate increases with an increasing proportional coefficient of the motor vehicle. When the road occupancy rate is within the range of [0.6, 0.9] or when the proportional coefficient of motor vehicle is between [0.8, 0.9], a physical isolation divider can be set to separate motor vehicles and nonmotor vehicles from the space to improve traffic safety.
机译:近年来,随着中国物流行业和城市服务业的快速发展,电动自行车由于其灵活性,绿色技术和低运营成本,电动自行车逐渐成为城市交通的重要手段。由于电动自行车旅行虽然虽然机动车辆车道和非摩托车车道,但电机和非运动车之间的冲突变得越来越突出,安全情况并不乐观。然而,大多数混合交通流量的理论和模型都基于机动车和自行车,很少有涉及电动自行车。为了探讨城市混合交通环境中的交通安全情况,本文首先使用蜂窝自动机(CA)来建立机动车辆,电动自行车和自行车的三股混合交通流量模型,并通过使用验证模型的可靠性基于实际测量数据的Matlab仿真。然后,利用交通冲突技术和冲突率作为指数评估交通安全情况,研究了与不同的道路占用和不同比例系数的冲突率的变化。最后,在混合业务流程和物理隔离分频器的设置之间比较冲突率,这提供了一些关于何时设置物理隔离分频器以将机动车辆与非异常车辆分离的建议。结果表明,在混合交通环境中,冲突率首先增加,随后随着道路占用的增加而减少,当道路占用率为0.6时达到高峰。另外,在混合交通环境中,冲突率随着机动车辆的比例系数增加而增加。当道路占用率在[0.6,0.9]的范围内或当机动车辆的比例系数在[0.8,0.9]之间时,可以将物理隔离分配器设置为将机动车辆和非等车辆与空间分开以改善交通安全。

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