标题: | 壅塞交织路段之驾驶行为分析与最佳化之匝道仪控模式 Driver behaviors analysis and optimal ramp metering control on congested weaving sections |
作者: | 蔡肇鹏 Tsai, Chao-Peng 卓训荣 Cho, Hsun-Jung 运输与物流管理学系 |
关键字: | 容量分析;匝道仪控;动态车流理论;Capacity analysis;Ramp metering contro/;Dynamic traffic flow theory |
公开日期: | 2008 |
摘要: | 高速公路入口匝道之车流管制理论应用自1960年代开始,已经具有数十年之实际执行经验,并获有一定成效,包括交通壅塞之纾解与旅运时间之节省等。本文即针对高速公路分离式连接集散道路 (Separated connecting collector- distributor roadway) 单一交流道路段分析其车流特性与研究建立最佳匝道仪控模式。其影响匝道仪控成败因素包括有车道变换行为(Lane-changing behavior)、车间距离 (Headway)、车流量、车流速率、车流密度、交织率 (Weaving rates)、主线下游车流状况及入口等待车辆长度等。本研究之交织路段容量预估模式系应用可接受间距 (Gap acceptance) 透过Renewal Processes寻求临界间距 (Critical gap) 及最佳线性规划原则等建立动态容量预估模式并作为最佳化匝道仪控容量控制之依据。匝道仪控模式最佳号志时制之建立,系假设于匝道仪控期间任何时间变化之交通需求 (Traffic demand) 是处在均一壅塞情况下,应用需求-容量模式 (Demand-capacity model) 于本研究之分离式连接集散道路交织路段进行模拟与实证。经应用现场实际调查之交通资料加以分析得知本研究之行车特性系包括100%之车道变换行为及49.29%之交织行为 (Weaving activities) 下进行,所得最佳匝道仪控率 (Metering rates) 及号志时制,能获得高速公路主线车流量与行车速率提升及总等候长度最少之效果,并可纾解已壅塞之车流。 This dissertation examines the conditions for which ramp metering can be beneficial to the overall system in terms of travel time savings for a simple traffic corridor that consists of a freeway and a set of parallel arterial connected by separated connecting collector-distributor (C-D) roadway and entrance ramps and/or loop-ramps. The purpose of this study focused on the traffic flow characteristics and capacity analysis, and ramp metering control for the separated connecting C-D roadway and freeway on freeway systems. As the performance of ramp metering control is concerned, it depends on various factors, such as the headway, traffic flow rate, density, speed, and flow ratios between each lane, and downstream traffic conditions, etc., and the key factor to the capacity on the interchange systems, is the lane changing activity of traffic operation in freeway weaving sections. This study developed a model to estimate the weaving capacity for the separated connecting C-D roadway on freeway systems based on the renewal processes of gap acceptance and linear optimization. Ramp metering has been emerged as an effective freeway control measure to ensure efficient freeway operations. It focuses on analyzing dynamic and control relationships to arrive at general analytical results regarding optimal metering policies. The analysis assumes that time-varying traffic demands are uniformly congested throughout the control period. The control model is using demand-capacity model to produce the optimal metering rates and the minimizing total queue length. This study investigates the development macroscopic equation models of ramp metering control signal timing on the separated connecting C-D roadway and freeway systems. It focuses on field data based on these driver behaviors including 50.71% of lane-changing and 49.29% of weaving activities to analyze. The ramp metering control is capable of optimizing mainline traffic by providing metering rates for accesses within the control segments. These results of this study including the ramp metering can increase the freeway mainline traffic flows and speeds, reach minimizing total queue length, and prevent a traffic breakdown by adjusting the metering rate. |
URI: | http://140.113.39.130/cdrfb3/record/nctu/#GT008832803 http://hdl.handle.net/11536/68112 |
显示于类别: | Thesis |
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