• Title/Summary/Keyword: 정류장 수

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Development of Optimal Number of Bus-stops Estimation Model Based on On-Off Patterns of Passengers (버스승객의 승하차 패턴을 고려한 최적 정류장 수 산정 모형 개발)

  • Gang, Ju-Ran;Go, Seung-Yeong
    • Journal of Korean Society of Transportation
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    • v.24 no.1 s.87
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    • pp.97-108
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    • 2006
  • At present, Korean many cities depend on subjective judgements of experts to estimate the number of bus-stops and inter-stop space. To get reliable results by using more objective procedure, we search for old studies and models, but they don't concern alighting demands and a random demand distributions. Our study recognize and overcome these limitation. We devide the demand into boarding and alighting demands, and define the model that can estimate flexibly optimal number of bus-stop and inter-stop space on each segment by the demand distribution. Also we apply this new model to a simple example route having various demand distributions As a result, the number of bus-stop on each segment can be estimate flexibly in proportion to boarding or alighting demand by using this model.

Analytical Determination of Optimal Transit Stop Spacing (최적 정류장 간격의 해석적 연구)

  • Park, Jun-Sik;Go, Seung-Yeong;Lee, Cheong-Won;Kim, Jeom-San
    • Journal of Korean Society of Transportation
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    • v.25 no.3
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    • pp.145-154
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    • 2007
  • Determining stop spacing is a very important process in transit system planning. This study is involved in an analytical approach to decide the transit stop spacing. Transit stop spacing should be longer as 1) user access speed, 2) user travel time, and 3) dwell time increase, and shorter as 1) passengers (boardings and alightings) and 2) headway increase. In this study, a methodology is proposed to determine transit stop spacing to minimize total cost (user cost plus operator cost) with irregular passenger distribution (boardings and alightings) Without considering in-vehicle passengers, the transit stop spacing should be shorter in the concentrated sections of the passenger distribution than in others to minimize total cost. Through the conceptual analysis, it is verified that the transit stop spacing could be longer as the in-vehicle passengers increase in certain sections. This study proposes a simple practical method to determine transit stop spacing and locations instead of a dynamic programming method which generally includes a complex and difficult calculation. If the space axis is changed to a time axis. the methodology of this study could be expanded to analyze a solution for the transit service (or headway) schedule problem.

버스 운영 최적화에 관한 연구 -운행간격, 정차시간, 정류장 간격 및 버스 보유대수 등을 중심으로-

  • 이승헌;전경수
    • Proceedings of the KOR-KST Conference
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    • 1998.10b
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    • pp.465-465
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    • 1998
  • 버스운영에 관한 최적화 모형에는 총 시스템 비용의 최소화 모형과 사회적 편익의 극대화 모형이 있다. 이들 모형들은 해석적 방법에 의해서 특정 이상화된 문제를 연구했다. 특정 필요조건들을 충족시키면서 최적 버스크기, 서비스 빈도, 보유대수를 결정하려고 애썼다. 그러나 실제 버스의 운행시간은 정류장의 지체시간과 승객의 수요에 따라 변화하고 승객의 비용추정시 접근시간을 현실적으로 고려하지 못해 버스 운영의 비효율성을 초래하기 쉽다. 본 연구의 목적은 시간대별로 이용자와 운영자의 비용의 합으로 구성된 총 교통 모형을 최소화는 모형을 구축하는 것이다. 본 논문에서는 기존의 문헌에서 충분히 고려하지 않은 정류장 간격에 따른 이용자의 접근시간과 버스가 정류장에 들어가고 나올 때의 감·가속으로 인한 지체와 승객의 승·하차로 인한 지체를 고려한 버스의 정류장 정차시간을 기존의 모형에 추가시켜서 운행간격, 버스정류장의 정차시간, 정류장 간격 및 보유대수를 결정하는 방법을 제안했다. 아울러 실제 서울시에서 운행되고 있는 시내버스 노선에 대해 사례분석을 통해서 본 모형을 실제 적용해보고 기존의 운영비용과 비교하고 본 모형의 유효성을 검증할 예정이다.

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A Quantitative Analysis of Effects on Enhancing Bus Shelter Infrastructure: Focusing on Contingent Valuation Method by an User's Satisfaction Survey (버스정류장 시설 개선의 정량적 효과 분석: 이용자 만족도 조사 기반 CVM을 중심으로)

  • Kyuhyuk Kim;Myounggyu Kim;Nayeon Kim;Heesoo Kim;Tai-jin Song
    • The Journal of The Korea Institute of Intelligent Transport Systems
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    • v.23 no.2
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    • pp.89-105
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    • 2024
  • Bus stop improvement conveys users their usability. It is essential that transportation jurisdictions should identify quantitative effects of a bus stop improvement to invest effectively and expand consistently. Nevertheless, there is currently no research to estimate the quantitative effect on bus stops improvement. In this study, the willingness to pay and the benefit-cost ratio for the bus stops improvement were estimated through a contingent valuation method based on user satisfaction. It was found that the bus stop improvement located in urban areas can achieve high-cost benefits, and it in suburban areas has a great impact on improving the quality of life of local residents. The results of this study will be used as a basis for expanding the bus stop facility improvement project.

Visual Preference Factor Analysis for the form of bus stop shelter (버스정류장 쉘터 형태의 시각적 선호요인 분석)

  • 유상완;온순기
    • Archives of design research
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    • v.16 no.4
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    • pp.405-412
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    • 2003
  • This research investigated the preference factor which has an effect on the forms of bus stop shelter in order to grasp the visual preference factor, which is necessary for planning and designing of bus stop shelter centering around user, starting with the question of the research regarding that a shelter is preferred by what kind of factor when the environmental conditions are regular. This research examined the relation between visual preference and preference factor which has an effect on it with Multiple Regression Analysis after evaluating visual preference for shelter form by user as applying of scoring system of Interval Scale. The result of the factor analysis by visual evaluation for the form of bus stop shelter through the said research result will have an great effect on the design of bus stop shelter centering around its user. Therefore, this research result will give a knowledge which is necessary for the plan and the installation of bus stop shelter, and contributes to shelter design and bus stop promotion which can maximize the satisfaction of user. As well, concerning the management of bus stop facilities, it will give useful guidelines for planning strategically the shelter management centering around user. In particular, It is estimated that the preference factor analysis by visual evaluation of the mass transportation user in daily life will be the cardinal point for bus stop plan.

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Algorithm for Correcting Error in Smart Card Data Using Bus Information System Data (버스정보시스템 데이터를 활용한 교통카드 정류장 정보 오류 보정 알고리즘)

  • Hye Inn Song;Hwa Jeong Tak;Kang Won Shin;Sang Hoon Son
    • The Journal of The Korea Institute of Intelligent Transport Systems
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    • v.22 no.3
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    • pp.131-146
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    • 2023
  • Smart card data is widely used in the public transportation field. Despite the inevitability of various errors occur during the data collection and storage; however, smart card data errors have not been extensively studied. This paper investigates inherent errors in boarding and alighting station information in smart card data. A comparison smart card data and bus boarding and alighting survey data for the same time frame shows that boarding station names differ by 6.2% between the two data sets. This indicates that the error rate of smart card data is 6.2% in terms of boarding station information, given that bus boarding and alighting survey data can be considered as ground truth. This paper propose 6-step algorithm for correcting errors in smart card boarding station information, linking them to corresponding information in Bus Information System(BIS) Data. Comparing BIS data and bus boarding and alighting survey data for the same time frame reveals that boarding station names correspond by 98.3% between the two data sets, indicating that BIS data can be used as reliable reference for ground truth. To evaluate its performance, applying the 6-step algorithm proposed in this paper to smart card data set shows that the error rate of boarding station information is reduced from 6.2% to 1.0%, resulting in a 5.2%p improvement in the accuracy of smart card data. It is expected that the proposed algorithm will enhance the process of adjusting bus routes and making decisions related to public transportation infrastructure investments.

Determination of the Optimal Bus-stop Location and Headway of Bus Rapid Transit Using Bus-stop-based O-D Data (급행버스 노선의 정류장 위치 및 배차간격 결정에 관한 연구 (노선별 정류장간 O-D 자료를 활용하여))

  • Cho, Hye-Jin;Lee, Young-In
    • Journal of Korean Society of Transportation
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    • v.23 no.7 s.85
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    • pp.63-74
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    • 2005
  • When we introduce the BRT systems, it is very important to decide the operating factors, such as bus-stop locations or headway. If the factors are inappropriate, unessential expenses for the operator and users of the bus line may be caused, and it leads increase of social total cost. So, it is necessary that we consider users' origin and destination of each bus line when we set location of bus-stops and the optimal headway. Meanwhile, Smart Card System was introduced of fare collection for the Public Transportation Reform in Seoul last year. This new card system makes it possible to store up the information about bus operating and passenger's trip link. With these substantial information. we can estimate bus-stop-based O-D table. So, in this thesis, it was studied a systematic methodology to find the optimal location and headway for skip-stop bus system (as a type of first step for BRT). The proposed methodology in this thesis is expected to be useful to effect analysis or setting operating factors for skip-stop bus system in each bus line.

Mitigation of Insufficient Capacity Problems of Central Bus Stops by Controlling Effective Green Time (유효녹색시간 조정을 활용한 중앙버스정류장 용량 부족 완화 방안 연구)

  • Koo, Kyo Min;Lee, Jae Duk;Ahn, Se Young;Chang, Iljoon
    • The Journal of The Korea Institute of Intelligent Transport Systems
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    • v.21 no.1
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    • pp.35-50
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    • 2022
  • After the introduction of the central bus lane system, bus traffic was prioritized. This resulted in improved trust from bus users. However, the low capacity at the central bus stop reduces traffic speed and punctuality. In addition, physical constraints are inevitable because the construction of central bus lanes and bus stops considers the city's road geometry. Therefore, this study attempted to optimize the effective green time of the traffic signal system at the entrance and exit of the central bus stop to remedy its insufficient operational capacity. The Transit Capacity and Quality of Service Manual and Korea Highway Capacity Manual were used as the analysis methodologies. The number of stop areas for central bus stops to be built was determined by excluding variable physical factors, and field survey data collected from nine randomly selected central bus stops currently installed in Seoul were used. A scenario analysis was conducted on the central bus stops with insufficient capacity by adjusting the effective green time, and the capacity of the central bus stop was set as the dependent variable. According to the results, 26.7 percent of the central bus stops with insufficient capacity can solve the problem of insufficient capacity. Therefore, the results of this study can be verified by improving the operation level, and it can be effective even if the number of central bus stops calculated by engineering is not guaranteed during the planning stage of the central bus stop. As the number of central bus stops is expected to increase further as the number of central bus stops increases, it is necessary to improve the number of central bus stops. Therefore, it is hoped that the results presented in this study will be used as basic data for the improvement plan at the operational level before introducing the physical improvement plan.

Types of Smart Bus Stop and Their Impacts on Reducing Fine Dust Concentrations in Seoul (스마트버스정류장 유형에 따른 미세먼지 농도 저감효과)

  • Seo, Jeongki;Kim, Hyungkyoo
    • Land and Housing Review
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    • v.12 no.3
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    • pp.39-50
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    • 2021
  • This research aims to provide guidelines with the appropriate type of smart bus stop to reduce the concentration of fine dust. To this end, we divided smart bus stops into two types: closed and open bus stops. The estimated reduction effect was compared and analysed by measuring the estimated PM10 and the estimated PM2.5 at five locations inside and outside a smart bus stop located in Gangnam gu, Seoul. The effect of reducing the amount of the fine dust concentration in external space was insignificant for both types of bus stops. The different effect of reducing the concentration of the amount between in internal space was relatively significant: the fine dust concentration was 26.0 ㎍/m3 for PM10 and 20.2 ㎍/m3 for PM2.5 at open-type bus stops; whilst was 2.4 ㎍/m3 for PM10 and 1.8 ㎍/m3 for PM2.5 at closed type bus stops. Based on the findings, a closed type bus stop is recommended when considering the cost of reducing fine dust. In addition, due to the ineffectiveness of reducing the amount of fine dust from the outside of the bus stop, additional provision of smart bus stops is required particularly in locations where demand exceeds the capacity of the inside. A clear definition of smart bus stop and it's minimum standard should also be considered.

A Design and Implementation of Bus Information Notification Application (버스 정보 알림 애플리케이션 설계 및 구현)

  • Lee, Won Joo;Lee, Tae Hyeon;Kang, A Yeon;Lee, Na Kyung
    • Proceedings of the Korean Society of Computer Information Conference
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    • 2020.07a
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    • pp.319-320
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    • 2020
  • 본 논문에서는 스마트 폰의 GPS 센서와 Google Map, OPEN API 기반의 버스 정보 제공을 하며 연동이 자유로운 어플리케이션을 설계하고 구현한다. 이 어플리케이션은 안드로이드의 GPS센서를 이용하여 현재 사용자의 위치를 기준으로 반경 200m 안의 버스 정류장을 확인할 수 있다. 그리고 공적마스크를 판매하는 약국/농협/우체국의 위치를 확인할 수 있다. 또한, 사용자의 위치 주변이 아닌 곳의 버스와 정류장을 검색할 수 있고 내릴 정류장 혹은 위치를 저장하여 내리기 전 알람을 받을 수 있다.

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