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Modeling Traffic Accident Occurrence Involving Child Pedestrians at School Zone

공간적 특성을 고려한 어린이 교통사고 모형 개발

  • BEAK, Tea Hun (Department of Urban Engineering, Chungbuk University) ;
  • Son, Seulki (Department of Urban Engineering, Chungbuk University) ;
  • PARK, Byung Ho (Department of Urban Engineering, Chungbuk University)
  • Received : 2015.12.22
  • Accepted : 2016.12.26
  • Published : 2016.12.30

Abstract

The objective of this study is to develop road traffic accident model involving child pedestrian especially at school zones and its surrounding area. The analysis is based upon traffic accident data collected near sixty elementary schools in City of Cheongju during 2012 and 2014. This study results in two statistical models ; one is to predict the number of road traffic accidents involving children, and the other is to predict EPDO(Equivalent Prperty Damage Only). These models are represented as Poisson models. which are statistically significant with the likelihood ratios of 0.533 and 0.273. The common explanatory variables of these models are the ratio of road section with more than 4 lanes, the number of entrance and exit, the number of signalized crosswalk in school zone, the number of school zone signage including road surface marking, and the number of speed limit signs. The specific variables are the length of road stretch in school zone, the number of reflector mirrors, and the number of signalized crosswalk outside school zone. It is concluded that these types of road safety facilities can reduce the number of traffic accidents involving children at school zones and its surrounding area.

이 연구는 어린이 보호구역과 인근지역의 교통사고를 다루고 있다. 이 연구의 목적은 공간적 특성을 고려한 어린이 교통사고모형을 개발하는데 있다. 이를 위해 이 연구는 2012-2014년 동안 청주시 초등학교 60개소에서 발생한 어린이 교통사고 자료를 수집하였다. 연구의 주요 결과는 다음과 같다. 첫째, 통계적으로 유의한 두 개의 어린이 교통사고(사고건수 및 EPDO) 모형이 개발된다. 가산자료 모형 중 포아송 모형이 선택되며, 모형의 우도비는 0.533 및 0.273로 분석 된다. 둘째, 모형의 공통변수로는 4차로 이상의 도로 비율, 진출입구 수, 어린이 보호구역내 신호 횡단보도 수, 어린이 보호구역 표지판 수, 어린이 보호구역 노면표지 수 및 속도제한 표지 수인 것으로 분석된다. 특정변수는 대상지 내 도로 연장, 도로 반사경 및 어린이 보호구역 외 신호 횡단보도 수로 평가된다. 마지막으로 이 연구는 어린이가 많은 도로에서는 운전자의 주의 및 인지를 향상시킬 수 있는 시설이 필요하다는 것을 보여준다.

Keywords

References

  1. Chang M. S., Park J. Y., Kim M. J., Jeong D. J. (2010), Improvement Measures for Traffic Safety at School Zone by Roadway and Accident Characteristics, Transportation Technology and Policy, 7(5), Korean Society of Transportation, 91-98.
  2. Choi E. R., Ahn Y. K., Lim Y. S. (2011), Problems Related to Establishment and Management of School Zone and its Improvement Measures, Korean Association of Public Safety and Criminal Justice Review, 20(4), 238-266.
  3. Hidayati N., Liu R., Montgomery F. (2012), The Impact of School Safety Zone and Roadside Activities on Speed Behaviour: The Indonesian Case, Procedia-Social and Behavioral Sciences, 54, 1339-1349. https://doi.org/10.1016/j.sbspro.2012.09.848
  4. Kang S. J. (2013), A Study on the Improvement of School Zones Based From the Analysis of Land Use and Road Function Characteristics, Master's Degree Dissertation, Kongju National University.
  5. Korean National Policy Agency (2015), Regular Report of School Zone.
  6. KoROAD (2015), Traffic Accident Analysis System (TAAS)(http://taas.rota.or.kr).
  7. Lee H. W., Joo D. H., Hyun C. S., Kim D. H., Park B. H., Lee C. K. (2012a), An Analysis of Effects of Travel Speed Using the Safety Facilities in the School Zones, The Journal of The Korea Institute of Intelligent Transport Systems, 11(3), 124-132. https://doi.org/10.12815/kits.2012.11.3.124
  8. Lee K. J., Kim G. S. (2008), A Study on DFS Beneficial for Reduction on Speed and Traffic Accidents (based on school zones of Buchon), Journal of Korean Society of Hazard Mitigation, 8(4), 31-38.
  9. Lee S. B., Jung D. Y., Kim D. G. (2008), The Effects of a School Zone Improvement Project on Crash Reduction Regarding Land Use Characteristics, J. Korean Soc. Transp., 26(3), Korean Society of Transportation, 109-117.
  10. Lee S. I., Kim S. H., Kim J. W., Hu E. (2012b), A Development of the Integrated Evaluation Criteria for Safety of School Zones, Journal of the Korean Society of Safety, 27(1), 117-122. https://doi.org/10.14346/JKOSOS.2012.27.1.117
  11. Park J. Y., Kim D. G. (2010), The Characteristics of Vehicle Speed Violation in School Zones, International Journal of Highway Engineering, 12(2), 63-69.
  12. Park K. S. (2011), Development of Traffic Accident Models by Type of Circular Intersection, Ph.D. Dissertation, Chungbuk National University.
  13. Strawderman L., Rahman M. M., Huang Y., Nandi A. (2015), Driver Behavior and Accident Frequency in School Zones: Assessing the Impact of Sign Saturation, Accident Analysis & Prevention, 82, 118-125. https://doi.org/10.1016/j.aap.2015.05.026