• Title/Summary/Keyword: 포화교통류

Search Result 32, Processing Time 0.018 seconds

Traffic Signal Control for Oversaturated Diamond Interchanges (과포화 다이아몬드형 인터체인지의 교통신호제어모형의 개발)

  • 김영찬
    • Journal of Korean Society of Transportation
    • /
    • v.12 no.2
    • /
    • pp.5-30
    • /
    • 1994
  • 다이아몬드형 인터체인지는 고속도로와 노면가로가 교차할 경우 방향별 교통류를 처리하는데 보편적으로 사용하는 인터체인지이다. 인터체인지에 교통량의 부하가 과도해지 면 인터체인지내부의 교차로에서 발생한 대기차량이 종종 고속도로본선으로 역류하여 본선 의 교통소통에 문제를 야기하며 특히 고속도로의 안전에도 큰 위험요소가 된다. 본 논문은 과포화상태의 다이아몬드형 인터체인지의 교통신호제어를 다루며, 신호시간계획을 산출하는 동적 최적화모형(dynamic optimization model)을 제시한다. 최적화 모형은 지체도최소화를 목적함수로 하며, 함수계측법의 형태가 된다. 본 모형의 핵심은 신호제어에 따라 발생하는 대기차량길이를 모형화하여 대기차량길이가 정해진 상한치를 초과하지 않도록 하는 신호시 간계획을 산출하는데 있다. 제시된 동적모형은 다이아몬드형 인터체인지의 신호시간을 위하 여 널리 사용되는 PASSER III와 최적해를 상호 비교한다. TRAF-NETSIM을 통한 시뮬레이 션의 결과에 따르면 동적 모형이 우수한 결과를 보이며, 대기차량의 길이를 효과적으로 제 어하는 것으로 판명된다.

  • PDF

A Study on Roundabout Modeling and Saturation for Level Of Service (회전교차로 서비스수준 분석을 위한 모형개발 및 포화도 산정 연구)

  • Chang, Hyunho;Yoon, Byoungjo;Lee, Jinsoo
    • KSCE Journal of Civil and Environmental Engineering Research
    • /
    • v.39 no.6
    • /
    • pp.869-875
    • /
    • 2019
  • The service level of the roundabout is estimated through an analytic model using the geometrical characteristics and parameter values obtained from the observations. Although a lot of researches have been conducted on the rotational intersection through an analytical model, the case of variable combinations is enormous, suggesting the range and service level of appropriate traffic volume according to the case study or limited characteristics through simulation. Therefore, in this study, the roundabout analysis model was constructed by using Visual Basic Application to make variable adjustment more easily. The constructed model analyzes traffic conditions according to various situations and analyzes the characteristics of roundabouts. As the result of analysis, the more the ratio of left turn and U-turn, the more the traffic distribution of each approached road was biased to one side, the limit traffic volume of the roundabout decreased and congestion appeared quickly. In particular, the more uneven the distribution of traffic was, the less the Saturation traffic volume was affected by the turnover rate.

A Study on the Efficiency of Multi-Legged Intersection Through Sensitivity Analysis (Based on the Four or Five Legged Intersection) (민감도 분석을 통한 다지교차로의 효용성 분석 연구 (4지.5지 교차로를 중심으로))

  • 박창수;김정위
    • Journal of Korean Society of Transportation
    • /
    • v.20 no.5
    • /
    • pp.217-230
    • /
    • 2002
  • 본 연구는 민감도 분석을 통한 다지교차로의 효용성 분석 연구로 신호교차로, Roundabout, 그리고 Modern Roundabout의 특성을 고찰하고 교통류의 특성에 따른 민감도 분석을 통한 교차로 형태를 검토하는 것에 그 목적을 두고 있다. 이를 위해, 첫째, 신호교차로와 Roundabout의 특성과 사례를 고찰하였다. 둘째, 4지교차로와 5지교차로의 교통류 특성별로 교통량을 산정하여, TSIS Tool을 이용한 분석을 통해 교통류 특성별 신호 교차로와 Round about의 민감도를 비교하였다. 셋째, 민감도 비교를 통한 교통류 특성별 효율적인 교차로 형태를 도출하였다. 4지교차로의 경우, 첫째, 일반적으로 V/C비의 변화에 대해 V/C비가 0.7이하일 때는 Roundabout가 V/C비가 0.7을 초과할 때는 신호교차로가 효율적인 것으로 나타났다. 둘째, V/C비별 회전교통량의 변화와 회전교통량 변화별 V/C비 변화에서도 V/C비의 변화의 분석결과와 비슷한 양상을 보였다. 5지교차로의 경우, 첫째, 4지교차로와는 달리 전반적으로 신호교차로 보다는 Roundabout가 더 효율적인 교차로 형태로 나타났다. 둘째, V/C비별 회전교통량의 변화와 회전교통량 변화별 V/C비 변화에서는 V/C비가 0.8을 초과하고 우회전교통량비가 30%∼40%인 경우에 신호교차로가 조금 더 효율적인 것으로 나타났다.

Saturation Headway of Through Movement at Signalized Intersections in Urban Area (도시부 신호교차로에서 직진이동류의 포화차두시간)

  • 이향숙;도철웅
    • Journal of Korean Society of Transportation
    • /
    • v.20 no.5
    • /
    • pp.23-31
    • /
    • 2002
  • The headway of vehicles entering an intersection is closely related with the saturation flow rate and is a basic parameter required for determining the saturation headway and the start-up lost delay. Since such headway value reflects the drivers' behaviors and features of the intersection, all intersections don't have an equal value, but are affected by number and location of their lanes, changing types, local characteristics and time zone. Accordingly, this study attempted to suggest proper values on the basis of data by investigating headway in lanes. Number of exclusive through lanes was divided into single lane, double lanes and triple lanes, the locations of lanes were divided into inside lane, central lane and outside lane. As a result of investigating the headway, single through lane, double through lanes-inside lane, and triple through lane-outside lane showed as 1.73 sec., 1.71 sec. and 1.93sec., respectively. The result of calculating the area factor of business areas by fixing 1.00 for the residental area and applying relation between headway and saturation flow rate was 0.96. In the case of start-up lost delay lead dual left turn and directional separation were 1.41 sec. and 3.27 sec., respectively, showing the great difference. Therefore, different start-up lost delay according to changing type should be applied.

Investigation of a Left-Turn Phase Time Estimation Method for TRC Operation (실시간 신호시스템의 좌회전 신호시간 추정방법에 관한 연구 (검지기 장애발생시를 중심으로))

  • An, Hye-Jin;Nam, Baek;Lee, Sang-Su
    • Journal of Korean Society of Transportation
    • /
    • v.25 no.5
    • /
    • pp.33-42
    • /
    • 2007
  • The current left-turn split model adopted in COSMOS has an inherent limitation when a loop detector in the left-turn lanes was disconnected for a period of time. In this instance, the current model always allocated minimum green time to the left-turn phase, thus optimal split and efficient signal operation for the intersection was not guaranteed. In this paper, four mathmatical models using detector information of the intersection and four empirical models using historical profiles were developed and investigated for different traffic conditions to improve the operational efficiency of the intersection. From the model evaluation test, the empirical model using a four-week historical profile produced the least error among the eight models investigated. NETSIM simulation test results also showed that the proposed model could give significantly reduced delay time as compared to the current model. From these results, the operational efficency of the signalized intersections under the real-time control can be greatly improved by using the model proposed in case of the left-turn detector failure.

Basic Studies on Development of Turn Penalty Functions in Signalized Intersections (신호교차로의 회전제약함수 개발을 위한 기초연구)

  • O, Sang-Jin;Kim, Tae-Yeong;Park, Byeong-Ho
    • Journal of Korean Society of Transportation
    • /
    • v.27 no.1
    • /
    • pp.157-167
    • /
    • 2009
  • This study deals with the turn penalty functions in the urban transportation demand forecasting. The objectives are to develop the penalty functions of left-turn traffic in the case of signalized intersections, and to analyze the applicability of the functions to the traffic assignment models. This is based on the background that the existing models can not effectively account for the delays of left-turn traffic which is bigger than that of through traffic. In pursuing the above, this study gives particular attention to developing the penalty functions based on the degrees of saturation by simulation results of Transyt-7F, and analyzing the applicability of the functions by the case study of Cheongju. The major findings are the followings. First, two penalty functions developed according to the degrees of saturation, are evaluated to be all statistically significant. Second, the results that the above functions apply to the Cheongju network, are analyzed to be converging, though the iteration numbers increase. Third, the link volumes forecasted by turn penalty functions are evaluated to be better fitted to the observed data than those by the existing models. Finally, the differences of traffic volumes assigned by two functions, which are exponential and divided forms, are analyzed to be very small.

Development of a Cycle-free Based, Cooridinated Dynamic Signal Timing Model for Minimizing Delay (Using Genetic Algorithm) (지체도 최소화를 위한 주기변동기반 동적신호시간 결정모헝 개발)

  • 이영인;최완석;임재승
    • Journal of Korean Society of Transportation
    • /
    • v.19 no.1
    • /
    • pp.115-129
    • /
    • 2001
  • The purpose of this study is to develop a cycle-free signal timing model for minimizing delays based on Third-generation control concept using Genetic Algorithm. A special feature of this model is its ability to manage delays of turning movements on the cycle basis. The model produces a cycle-free based signal timing(cycles and green times) for each intersection to minimize delays of turning movements on the cycle basis. The performance of cycle-free signal timings was evaluated on normal (v/c = 0.7) and oversaturated (v/c=1.0) conditions. The performance measures are throughput and the number of queued vehicles at the end of green time. The result shows that the cycle free signal timing is superior to the fixed signal timing to manage traffic flows of intersections; (1) the proposed model accomplishes the basic objective of the research, producing cycle free signal timings on the cycle basis, (2) on normal conditions, cycle free signal timings produce less queued vehicles at the end of green time, and (3) on oversaturated conditions, the cycle free signal timing is superior to the fixed signal timing to manage saturated traffic flows of intersections.

  • PDF

Development of A System Optimum Traffic Control Strategy with Cell Transmission Model (Cell Transmission 이론에 근거한 시스템최적 신호시간산정)

  • 이광훈;신성일
    • Journal of Korean Society of Transportation
    • /
    • v.20 no.5
    • /
    • pp.193-206
    • /
    • 2002
  • A signal optimization model is proposed by applying the Cell-Transmission Model(CTM) as an embedded traffic flow model to estimate a system-optimal signal timing plan in a transportation network composed of signalized intersections. Beyond the existing signal-optimization models, the CTM provides appropriate theoretical and practical backgrounds to simulate oversaturation phenomena such as shockwave, queue length, and spillback. The model is formulated on the Mixed-Integer Programming(MIP) theory. The proposed model implies a system-optimal in a sense that traffic demand and signal system cooperate to minimize the traffic network cost: the demand departing from origins through route choice behavior until arriving at destinations and the signal system by calculating optimal signal timings considering the movement of these demand. The potential of model's practical application is demonstrated through a comparison study of two signal control strategies: optimal and fixed signal controls.

Assessment of Bicycle Left-turn Traffic Control Strategies at Signalized Intersections (신호교차로의 자전거 좌회전 운영방안 평가에 관한 연구)

  • Lee, Chung Min;Lee, Sang Soo;Cho, Hanseon;Nam, Doohee
    • Journal of Korean Society of Transportation
    • /
    • v.32 no.6
    • /
    • pp.579-588
    • /
    • 2014
  • In this study, three signal control strategies such as Bike box, Hook-turn, and 6-phase were assessed for various traffic conditions at signalized intersections incorporating bicycle left-turn traffic. Results showed that the size of a waiting zone mainly affected the performance of signal control in both Bike box and Hook-turn. Both Bike box and Hook-turn yielded an identical vehicle delay, but Bike box produced less bicycle delay than Hook-turn by 2.5~29.9 sec/veh for undersaturated traffic conditions. For saturated traffic condition, Bike box produced less vehicle delay than Hook-turn and 6-phase strategies, but bicycle delay was found to increase at the 700 vph of bicycle traffic compared to 6-phase. Bicycle delay was greatly increased under Hook-turn and Bike box strategies when bicycle traffic was greater than 300 vph and 500 vph, respectively. It was also shown that bicycle delay could be significantly reduced by providing appropriate size of queueing space. In addition, Bike box was likely to yield less vehicle and bicycle delay than Hook-turn for traffic volume patterns investigated in this study.

Determination Method of Signal Timing Plan Using Travel Time Data (통행시간 자료를 이용한 신호시간계획의 결정 방법)

  • Jeong, Young-Je
    • The Journal of the Korea Contents Association
    • /
    • v.18 no.3
    • /
    • pp.52-61
    • /
    • 2018
  • This research suggested the traffic signal timing calculation model for signal intersections based on sectional travel time. A detection system that collects sectional travel time data such as Urban Transport Information System(UTIS) is applied. This research developed the model to calculate saturation flow rate and demand volume from travel time information using a deterministic delay model. Moreover, this model could determine the traffic signal timings to minimize a delay based on Webster model using traffic demand volume. In micro simulation analysis using VISSIM and its API ComInterface, it checked the saturation conditions and determined the traffic signal timings to minimize the intersection delay. Recently, sectional vehicle detection systems are being installed in various projects, such as Urban Transportation Information System(UTIS) and Advanced Transportation Management System(ATMS) in Korea. This research has important contribution to apply the traffic information system to traffic signal operation sector.