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Estimation of Free-Flow Speed

机译:自由流动速度的估计

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In 2010 Highway Capacity Manual, one preferably determines free-flow speed by deriving it from a speed study involving the existing facility or on a comparable facility if the facility is in the planning stage. Many have used a 'rule of thumb' by adding 10 km/h (5 mi/h) above the posted limit to obtain free-flow speed without justification. Two team members using a radar gun and manual tally sheets collected 1668 speed observations at ten sites during several weeks. Each site had a unique posted speed limit sign ranging from 30 km/h (20 mi/h) to 120 km/h (75 mi/h). Five sites were on urban streets. Three sites were on multilane highways, and two on freeways. Goodness-of-fit test results revealed that a Gaussian distribution generally fit the speed distributions at each site at a 5% level of significance. The best-fit model had a correlation coefficient of+0.99. The posted speed limit variable was significant at 5% level of significance. Examining data by highway type revealed that average free-flow speeds are strongly associated with posted speed limits with correlation coefficients of +0.99, +1.00, and +1.00 for urban streets, multilane highways, and freeways, respectively.
机译:在《 2010年高速公路通行能力手册》中,最好通过从涉及现有设施或类似设施的速度研究中得出自由流动速度来确定自由流动速度(如果设施处于计划阶段)。许多人都采用了“经验法则”,即在规定的极限值之上增加10 km / h(5 mi / h),以获得无限制的自由流动速度。两名小组成员使用雷达炮和手动理货单在几个星期内在十个地点收集了1668个速度观测值。每个站点都有一个独特的张贴速度限制标志,范围从30 km / h(20 mi / h)到120 km / h(75 mi / h)。在城市街道上有五个地点。三个地点位于多车道公路上,两个位于高速公路上。拟合优度测试结果表明,高斯分布通常以5%的显着性水平拟合每个站点的速度分布。最佳拟合模型的相关系数为+0.99。张贴的速度极限变量的显着性水平为5%。按高速公路类型检查数据显示,平均自由流动速度与发布的速度限制密切相关,城市街道,多车道高速公路和高速公路的相关系数分别为+ 0.99,+ 1.00和+1.00。

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