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Impact of Buses, Taxis, Passenger Cars, and Traffic Infrastructure on Average Travel Speed

机译:公共汽车,出租车,乘用车和交通基础设施对平均旅行速度的影响

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It is known that many variables influence traffic, yet very little is known about the weight of each factor in the dynamics of traffic in cities of developing countries, in many cases due to their peculiar traffic regulations. In this work, we search for the variables that have the most significant impact on the average travel speed of three distinct types of vehicles: passenger cars, taxis, and buses. First, we developed a tool featuring algorithms that simulate ordinary overtaking and car-following behaviors, along with controls for setting vehicles’ actions, particularly buses’ and taxis’ stops. Then, we chose a particular zone to study, based on its common geometry and the particular traffic infrastructure (speed bumps, traffic lights, and bus stops) inside it. Later on, three experiments were carried out, with the following results. (1) Both the buses’ arrival frequency and curbside bus stops affect the passenger cars’ average travel speed. The buses’ response was affected by the bus bay and curbside bus stops. The buses’ speed tendency influenced neither the passenger cars’ nor buses’ response. (2) Taxis’ arrival frequency, stopping frequency, and speed tendency were found to influence the passenger cars’ response. Taxis’ response was altered by taxis’ speed tendency, while buses’ response was affected by taxis’ arrival frequencies. (3) The number of speed bumps, the arrival frequency of passenger cars, and their speed conditions (homogeneous and heterogeneous) affect the passenger cars’ response. We expect that the findings presented in this study, along with the recommendations made from the results, may pave the way for better road design public policies.
机译:众所周知,许多变量影响流量,但很少有关于发展中国家的城市交通动态的每种因素的重量,因为他们的特殊交通规则在许多情况下。在这项工作中,我们搜索了对三种不同类型的车辆的平均旅行速度产生最大影响的变量:乘用车,出租车和公共汽车。首先,我们开发了一种工具,具有模拟普通超车和跟踪行为的算法,以及控制车辆的行为,特别是公共汽车的行为,尤其是公共汽车的停止。然后,我们选择特定区域来研究,基于其公共几何和特定的交通基础设施(速度凸起,交通灯和总线)内部。后来,进行了三个实验,具有以下结果。 (1)公交车的到达频率和路边巴士站都会影响乘用车的平均旅行速度。公共汽车的响应受公共汽车湾和路边巴士站的影响。公共汽车的速度倾向影响乘用车的“或巴士”的反应。 (2)出租车的到达频率,停止频率和速度倾向,影响乘用车的回应。出租车的速度倾向改变了出租车的响应,而公交车的响应受到出租车的抵达频率的影响。 (3)速度凸起的速度,乘用车到达频率及其速度条件(均匀和异构)影响乘用车的回应。我们预计本研究中提出的调查结果以及由结果所提出的建议可能会为更好的道路设计公共政策铺平道路。

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