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Estimation of Effectiveness of a Vehicle-Actuated Signal Control System on Work Zone Operations for a Two-Lane Highway

机译:机动车信号控制系统对两车道高速公路工作区操作的有效性评估

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Korean two-lane highways take charge of a function to connect arterial roads with major national roads and provide efficient mobility.However,the number of work zones for road construction and expansion is constantly increasing owing to increment of traffic volume.Therefore the number of maintenance projects is also growing to meet the increased need for road maintenance,All projects that require full or partial closure of a two-lane highway create safety problems,because of two-way delays and poor traffic control,especially at night.Flagging is typically used to control traffic in work zones on two-lane highways by closing one lane and alternating traffic movements.Generally,there is a flagger or Time of Day (hereinafter TOD) control and a one-or two-way delay occurs.Poor safety control in work zones can result in a serious accident if a driver has poor visibility.In this study,to diminish these problems,some alternative traffic control systems are indicated such as actuated signal control with fixed all red (hereinafter AFAR) and actuated signal control with dynamic all red (hereinafter ADAR).And the comparison with each traffic control methods is analyzed focused on average control delay and the number of conflicts which take into account various situations as the length of work zone and traffic volume.The signal control methods under investigation were TOD,AFAR,and ADAR.The average control delay per vehicle was used to evaluate the effectiveness of each method,and work zone conflict was used to evaluate safety.ADAR was found to be the most efficient signal control method under most conditions examined,in terms of safety and mobility in work zones on two-lane highways.
机译:韩国的两车道高速公路负责连接主干道与主要国道并提供有效的机动性。但是,由于交通量的增加,用于道路建设和扩建的工作区数量在不断增加。为了满足不断增长的道路维护需求,这些项目也在不断增长。所有需要完全或部分关闭两车道高速公路的项目都会产生安全问题,这是因为两路延误和交通控制不佳,尤其是在夜间。通过关闭一条车道并交替进行交通变动来控制两车道高速公路上的工作区中的交通。通常,存在标志或日间(以下简称TOD)控制,并且会发生单向或双向延误。如果驾驶员视线不佳,则可能会导致严重的事故。在本研究中,为了减少这些问题,提出了一些替代的交通控制系统,例如驱动信号灯。固定全红(以下称为AFAR)的控制信号和动态全红(以下称为ADAR)的控制信号控制。针对每种流量控制方法的比较,着重​​分析了平均控制延迟和考虑到各种情况的冲突数量。所研究的信号控制方法是TOD,AFAR和ADAR。使用每辆车的平均控制延迟来评估每种方法的有效性,并使用工作区冲突来评估安全性。在两车道高速公路的工作区中,就安全性和机动性而言,在大多数情况下都被认为是最有效的信号控制方法。

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