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Alleviate Traffic Congestion and Reduce Energy Consumption by Setting a Peak-Only Bus Lane on a Bottleneck-Constrained Highway

机译:通过在瓶颈约束高速公路上设定仅限峰的公交车道,减轻交通拥堵并降低能源消耗

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With the great popularity of the public transit which is a kind of green transportation, peak-only bus lane is gradually implemented on the corridors of large cities to make the bus runs a privilege to go through the bottleneck, then the bus runs can keep a faster speed which will definitely attract more potential commuters. And thus this will alleviate the traffic congestion caused by private cars and reduce the energy consumption and emissions to some degree. In this paper, we investigate the impact of the peak-only bus lane on alleviating traffic congestion and reducing energy consumption by using bottleneck model with auto and bus modes. The peak-only bus lane will occupy the bottleneck's capacity by a fixed amount just within a fixed peak hour period. While the capacity of the bottleneck for auto mode commuters is time-varying within the whole commuting period. It is assumed that the mode choice and the departure time choice are governed by the user equilibrium criterion and nobody can decrease his/her total cost by adjusting the mode or the departure time in the equilibrium state. The departure rates for both bus and auto modes are derived analytically. The travel cost and energy consumption are analyzed with different bus dispatch frequencies and bus lane capacities. The numerical results showed that the setting of the peak-only bus lane will descend the number of commuters who choose the auto mode, and thus decrease the system's total travel cost and energy consumption to certain degree. The optimal setting of the road resources and the frequency for peak-only bus lane was also investigated. We believe that the results are helpful to the planning and operating of peak-only bus lane, and it's useful to alleviate traffic congestion, reduce the energy consumption and protect the environment.
机译:随着公共交通的普及,这是一种绿色的运输,山顶公交车道逐渐在大城市走廊上实现,使公共汽车经营着一个特权来贯穿瓶颈,然后公共汽车运行可以保留一个更快的速度肯定会吸引更多的潜在通勤者。因此,这将减轻私家车造成的交通拥堵,并在某种程度上降低能源消耗和排放。在本文中,我们研究了仅限峰值总线车道对减轻交通拥堵和减少能源消耗的影响,通过使用自动和总线模式使用瓶颈模型来降低能量消耗。仅限峰值公交车道将在固定的高峰时段内通过固定数量占据瓶颈的容量。虽然自动模式通勤者的瓶颈的容量在整个通勤期内是时变的。假设模式选择和出发时间选择由用户平衡标准管辖,并且通过在均衡状态下调整模式或出发时间,没有人可以降低他/她的总成本。分析地推导出总线和自动模式的出发率。通过不同的总线调度频率和总线通道容量分析旅行成本和能耗。数值结果表明,仅限峰值总线车道的设置将下降选择自动模式的通勤者的数量,从而将系统的总旅行成本和能耗降低到某些程度。还研究了道路资源的最佳设置和仅限峰值总线通道的频率。我们相信,结果对山峰公交车道的规划和运营有所帮助,可缓解交通拥堵,降低能源消耗并保护环境。

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