• Title/Summary/Keyword: 고속도로-연결로 합류부

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A Study on Assessment of Merging Volume at Freeway Merging Area (고속도로 합류부의 합류교통량 평가에 관한 연구)

  • 김상구;김유진;전경수
    • Journal of Korean Society of Transportation
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    • v.15 no.1
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    • pp.105-127
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    • 1997
  • 합류구간은 다양한 교통특성을 분석하는데 어려움으로 인하여 그 동안 체계적인 연구가 거의 수행되지 않았다. 본 연구는 고속도로 합류부의 교통특성 측면에서 연결로 교 통량의 영향을 분석하고 평가하는 것을 목적으로 한다. 선형회귀 모형식이 연결로 교통량의 영향을 평가하기 위하여 개발되었고 기존의 모형식들과 비교되었다. 이러한 모형식은 본선 교통량과 연결로 교통량과의 상호 관계로 규명하는데 사용되었고 합류교통량에 대하여 연결 로 교통량이 본선교통량보다 더 많은 영향을 나타내는 것으로 분석되었다. 또한 교통와해 시점의 교통량 자료를 추정하기 위해 사용한 교통량 누적 감산법(the Background Flow Count Reduction Method)은 직접적으로 자료를 수집하기 어려운 지점의 자료를 추정하는 데 있어 유용한 방법임을 알 수 있었다. 향후에는 연결로 교통량의 영향을 고려한 합류부 운영방안이 필요하고 이를 통한 효율적인 합류부 운영이 이루어질 수 있을 것이다.

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A Study on Characteristics of Traffic Flow in Congested Traffic at On-Ramp Influence Area (혼잡교통류 상태에서의 연결로 합류부 교통류 특성에 관한 기초 연구)

  • Kim, Sang-Gu;Kim, Young-Ho;Kim, Tae-Wan;Son, Young-Tae
    • Journal of Korean Society of Transportation
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    • v.22 no.5
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    • pp.99-109
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    • 2004
  • Most traffic congestion on a freeway occurs in the merge area, where conflicts between mainline traffic and on-ramp traffic are frequently generated. So far, research on the merge area has mainly dealt with free flow traffic and research on the congested traffic at the merge area is rare. This study investigates the relationships between mainline traffic and on-ramp traffic at three different segments of the merge area. For this purpose, new indicators based on such traffic variables as flow, speed, and density are used. The results show that a negative relationship exists between mainline and on-ramp flow. It is also found that the speed and the density of the right two lanes in the mainline traffic are significantly affected by the on-ramp flow. Based on the correlation analysis of the indicators, it is confirmed that the ramp influence area is the right two lanes of the freeway mainline. The revealed relationships between mainline and on-ramp traffic may help to analyze the capacity of the downstream freeway segment of the merging area in congested traffic. The findings of this studyalso provide a basis to develop a model that estimates the merge traffic volume in congested traffic, which is neither theoretically nor empirically sound in most other traffic flow models developed so far.

Development of Analysis Model and Improvement of Evaluation Method of LOS for Freeway Merging Areas (고속도로 합류부 분석모형 개발 및 서비스수준 평가 기법 개선 연구)

  • Lee, Seung-Jun;Park, Jae-Beom
    • Journal of Korean Society of Transportation
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    • v.24 no.7 s.93
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    • pp.115-128
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    • 2006
  • The analytic methodology of a merging area in KHCM(2004) supposes that congestion nay occur when traffic demand is more than capacity However, in many cases, congestion on merging area occurs when summation of traffic demand of main line and ramp is less than capacity, and in present methodology analysis of how main line and ramp flow effect on congestion occurrence is difficult. In this study, the model that is able to estimate traffic flow condition on merging area in accordance with the combination of main line and ramp demand flow is developed. Main characteristic of the model is estimation of maximum possible throughput rate and maximum throughput rate according to the combination of main line and ramp demand flow. Through the estimation of maximum possible throughput rate and maximum throughput rate. it was Possible to predict whether congestion would occur or not and how much maximum throughput rate and congestion would be on merging area. On one hand, in present LOS evaluation methodology on merging area, congestion state is determined as un-congested flow if demand flow is less than capacity. Therefore, to establish more reasonable In evaluation method, new criterion of LOS evaluation on merging area was searched based on the model of this study.

An Analysis of Breakdown Cause at Freeway Merge Area (고속도로 합류부의 교통와해 원인 분석)

  • 김상구;박창호
    • Journal of Korean Society of Transportation
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    • v.16 no.2
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    • pp.53-65
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    • 1998
  • 합류구간에 설치된 차량검지기에서 수집된 조사자료들을 이용하여 본 연구는 교통와해 발생원인과 용량감소 문제를 분석하였다. 본 연구에서는 거시적 및 미시적인 방법을 가지고 수행하였으며 거시적인 방법으로는 연결로 교통량의 상대적 비중차이를 분석하였고 미시적으로는 본선에 진입하는 차량들의 패턴을 분석하였다. 거시적인 측면에서 합류부의 교통와해는 같은 합류교통량에 대한 연결로교통량의 비중 차이레 의해 발생된다. 즉, 연결로교통량 비중이 높아질수록 교통와해 발생확률은 증가할 것이다. 또한 미시적인 측면에서는 연결로 교통량이 같을 때 본선에 진입하는 차량군의 크기 및 발생회수, 표준편차가 높아진다고 할 수 있다. 따라서 교통와해의 주요한 원인은 연결로교통량의 영향에 기인한다고 할 수 있고 이러한 영향을 감소시키기 위하여 램프미터링과 같은 고속도로 교통통제 기법이 요구된다.

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Analysis of Breakdown Characteristics by Lane Interaction at Freeway Merging Area with a View of Time and Space (차로별 교통류 상호영향에 따른 고속도로 합류부 교통와해 특성 분석에 관한 연구)

  • Kim, Sang-Gu;Kim, Yeong-Chun
    • Journal of Korean Society of Transportation
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    • v.25 no.2 s.95
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    • pp.73-81
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    • 2007
  • The purpose of this paper is to perform a basic study on the interaction between lanes, which can be achieved through analyzing traffic breakdown at the microscopic level. Using aerial photographic data for the microscopic analysis, this study analyzed the characteristics of traffic flow at a merging area. This research produced aggregated traffic data such as flows, speeds, and densities in 30 second intervals by lane for the macroscopic analysis and individual headway data by lane for the microscopic analysis. The paper contains an analysis of lane characteristics through flows, speeds, densities, and headway variations and also investigates the influence of ramp flows on mainline flows with space-time diagrams. Firstly, the merging area in this study is divided into three sections: before-merging, during-merging, and after-merging. The transition process was analyzed at each lane. Secondly, the breakdown was observed in detail with data divided in 50-foot units. The breakdown was checked through the relationships between ramp and freeway mainline flows, various techniques were proposed to analyze the breakdown, and the formation of breakdown was introduced as three stages in this study. In the near future, the findings of this study could contribute to determining the dynamic capacity on freeways by easily understanding changeable traffic breakdown patterns over time and space.

Density Predictive Model within the On-Ramp Merge Influence Areas of Urban Freeway - Based on the Beonyoungro in the Metropolitan City of Busan - (도시고속도로의 유입연결로 합류영향권내 밀도추정모형 구축에 관한 연구 -부산광역시 번영로를 대상으로 -)

  • Kim, Tae Gon;Pyo, Jong Jin;Kwon, Mi Hyun;Jo, In Kook
    • KSCE Journal of Civil and Environmental Engineering Research
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    • v.28 no.3D
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    • pp.287-293
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    • 2008
  • Density is used as the measure of effectiveness within the ramp junction influence area suggested in the KHCM 2005 in the LOS analysis of the ramp junction, and also density predictive models suggested in the KHCM 2005 is constructed based on the expressway with the speed limit of 100km/h or 110km/h in Korea. So, the density predictive models suggested in the KHCM 2005 are needed to verify if the models could be applied to the urban freeway with the speed limit of 80km/h or less, because the speed limits on most of the urban freeways in Korea are 80km/h or less. The purpose in this study is to construct and verify the appropriate density predictive model within the on-ramp merge influence area of the urban freeway by comparing with the USHCM 2000 and KHCM 2005 models.

Analysis on Propagation of Highway Traffic Flow Turbulence at Entrance-Ramp Junctions (교통류 난류현상을 이용한 고속도로 합류부의 영향권 분석)

  • Lee, Ki Yoon;Roh, Chang Gyun;Son, BongSoo;Chung, Jin-Hyuk
    • KSCE Journal of Civil and Environmental Engineering Research
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    • v.29 no.2D
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    • pp.167-173
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    • 2009
  • In general, an influenced area of merging section is defined as 500 m including 100 m upstream and 400 m downstream. However, from an observation of the actual traffic flow, it is found that merging effect influences more on downstream than upstream. In this study, an influenced area of merging section on freeway is analyzed by using turbulence which is defined as conflicts between vehicles. In order to overcome the limits of existing traffic flow detection system established with intervals of about 500 m, this study uses raw data collected from the detectors which are established in entrance ramps with similar road conditions. To divide data of each point into similar road conditions, the data of total 72 hours is sorted by Level of Service. An influenced area analyzed by standard deviation of speed is 700 m section of highway, including 300 m upstream and 400 m downstream, for both right and left ramps. It is the result including upstream 200 m more than previous studies.

Longitudinal Control of Acceleration Lanes and its Impact on Congestion Alleviation (가속차로의 길이 제어와 고속도로 접속부 혼잡저감 효과)

  • Shin, Chi-Hyun;Kim, Kyu-Ok
    • Journal of Korean Society of Transportation
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    • v.23 no.5 s.83
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    • pp.169-176
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    • 2005
  • This paper introduces the dynamic control of acceleration lanes at freeway-ramp junctions. The feasibility of operation with flexible length of acceleration lane was tested with most possible traffic conditions. The operational qualify was also evaluated using average speed and total thru-put at both ramp section and freeway section. A CORSIM microscopic simulation model was used to evaluate the operation quality with a variety or volume conditions and three acceleration lanes, each representing different length categories. In addition, tollgate O-D data including travel times were obtained for two sections on the Gyeong-bu Freeway where an effective merging distance has been largely reduced. Its effect was analyzed and compared to the simulation results. Finally, the effects of acceleration lane are discussed and operational improvement at junctions is presented as research findings.

The Effect of Single-Entry Metering and Platoon Metering on Mainstream under the Same Metering Rate with Pre-timed Metering (정주기식 동일 미터링율 제어에서 차량진입방식에 따른 효과분석)

  • Kim, Sang-Gu;Ryu, Ju-Hyeon
    • Journal of Korean Society of Transportation
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    • v.28 no.3
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    • pp.29-37
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    • 2010
  • Ramp metering control is the most representative strategy of uninterrupted flow control and management system. Ramp metering is to adjust vehicles entering an expressway in such a way that expressway mainline maintains flow stability by regulating ramp vehicles. The effect of two metering strategies, single-entry metering and platoon metering, on mainstream under the same metering rate with pre-timed metering are analyzed by micro-simulation. Platoon metering shows lower performance than single-entry metering under the same metering rate in terms of speed, density, and delay, causes earlier breakdown than single-entry metering. It indicates that the selection of metering type has critical importance as the flow of mainline is high.

Analysis of Critical Time Headway and Capacity for Freeway Merging Area (고속도로 합류부 임계차두간격 및 용량 산정에 관한 연구)

  • 최재성;이승준
    • Journal of Korean Society of Transportation
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    • v.19 no.6
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    • pp.195-205
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    • 2001
  • The objective of the paper is to analyze the traffic characteristics for freeway merging area. Freeway merging area is different from basic section due to ramp vehicles. Therefore, to understand the traffic characteristics of (leeway merging area, this study focused on two factors including critical time headway required in merging maneuver and maximum possible merging volume. In this paper, new model that adopts critical time headway instead of critical time gap in calculating the maximum possible merging volume based on probability function was developed In previous studies, for calculating the maximum possible merging volume, it was considered that merging vehicles could merge freely if a given time gap was greater than the critical time gap. Also, the critical time gap was used as the same value in all traffic flow conditions. But, a time gap required in merging maneuver could be changed, even to the same driver, because difference of relative speed varies in different traffic flow conditions. So, in some cases, the critical time gap could be insufficient value in merging maneuver. Therefore, in this study. a calculating procedure for critical time headway in all traffic flow conditions was presented. Also, the maximum possible merging volume and capacity for freeway merging area were calculated by using the previously found critical time headway.

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