中心城市城乡交错带道路交通安全综合评价及仿真
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摘要
道路交通安全问题是现在与未来人类社会面临的重大问题之一。中国经济的高速发展使城乡交通非常活跃,道路交通安全矛盾日益突出。中心城市的规模不断扩张,城市化水平日渐提高,带动了城乡经济的发展,生产和生活对交通出行的需求近年来快速增长,尤其是城乡交错带交通量大幅提升。城乡交错带道路是连接城市道路与公路的过渡路段,兼有城市道路和公路的特征,即使是同一路段也具有不同的道路交通环境。由于城乡交错带道路条件和交通管理滞后于交通需求,导致这里的交通事故频发,特别是重大交通事故增长趋势较强。
     城乡交错带差异化道路交通环境与二元化特征使道路交通安全问题变得更加复杂。国内外研究者对城市道路交通安全和公路交通安全研究较多,但对城乡交错带交通安全的系统研究很少。
     本文针对中心城市城乡交错带道路交通安全问题,以道路条件为基础,利用试验和模拟仿真等手段,掌握车辆在城乡交错带道路行驶的加速度和速度特性,探讨对城乡交错带交通安全影响的关键因素及其作用机理,建立了基于道路条件安全评价指标体系,通过建立车辆加速度干扰模型和速度波动模型,研究加速度干扰和车速离散性与安全性的关系,研究成果将为科学评价中心城市城乡交错带道路交通安全性提供理论支持,对预防和降低该道路交通事故具有现实意义。
     本文主要内容包括以下几个方面。
     第一,阐述本论文研究的背景和意义,对国内外道路交通安全、交通事故、城乡交错带交通问题的研究进展及取得的主要成果进行综述,明确论文研究的目标和主要内容,及其研究的技术路线。
     第二,从驾驶员、车辆、道路条件及环境多方面,对城乡交错带道路交通安全性要素进行全面分析,探讨各要素与安全性的作用机理,结合已有理论研究成果与实地调查,论述城乡交错带道路交通安全特性,为后续研究奠定基础。
     第三,根据城乡交错带道路特征,利用定性分析与定量分析结合的方法,以道路基本条件、道路基础设施、道路交通管理、接入口、交叉口五类指标建立了交通安全性两级评价指标体系,综合应用德尔菲法、网络层次法和熵值法,通过极限超矩阵获得道路安全性指标总权重。以哈尔滨市城乡交错带某路段为实例进行评价分析,并将评价结果与实地调查结论比较验证。
     第四,采用光纤陀螺仪进行实验,选择车辆三向加速度干扰作为评价道路安全性的指标。基于加速度干扰概念,建立了不同道路线形的加速度干扰模型和三向加速度干扰模型。选取城乡交错带典型路段,测得不同路段车辆行驶参数,以实验结论对加速度模型进行有效性验证。
     第五,使用交通仿真软件对城乡交错带道路车速、流量、密度进行模拟仿真,并利用仿真结果,对车速离散性与道路交通安全性进行分析,通过建立车流速度波动模型,对速度波动与安全性进行研究,并采用灰关联熵法建立模型,确定各车型与车速离散性关联度。
The problem of road traffic safety is one of the major issues of present and futureof human society is facing. With China's rapid economic development, urban andrural transportation are more active and road traffic safety has become an increasinglyprominent. The scale of the central city expansion, the level of urbanization increased,driven by urban and rural economic development, production and living demand inrecent years the rapid growth of traffic traveling, urban and rural ecotone trafficvolume dramatically in particular. The urban and rural ecotone road to connect thetransition sections of the city roads and highways, both the characteristics of urbanroads and highways, even the same sections of different traffic environment. Urbanand rural ecotone road conditions and traffic management lags behind the trafficdemand, resulting in the kind of road traffic accidents frequent, especially seriousaccidents growth trend.
     The differentiated traffic environment and dual characters of urban and ruralecotone with road traffic safety problems become more complex. More studies ofdomestic and foreign researchers on the road of urban traffic safety and highwaytraffic safety, but less on the road of urban and rural ecotone.
     In this dissertation the central cities of urban and rural ecotone road traffic safety,according to road conditions, the characteristics of the different behavior of the driverin this section of road traffic, through means of test and simulation, to master thevehicles acceleration and speed characteristics interlaced with roads in urban and ruralecotone, and investigate the traffic safety impact of the urban and rural ecotone keyfactors in its mechanism of action, build road conditions of road safety evaluationindex system, through constructing vehicle acceleration interference model andvelocity fluctuation model, studying the relationship between acceleration interferenceand speed discrete, research for the scientific evaluation of the central cities urban andrural ecotone road traffic safety to provide theoretical support, and prevention and toreduce the road traffic accidents is of positive significance.
     The main content of this dissertation include the following aspects.
     Firstly, to explain the background and significance of this dissertation, domesticand foreign traffic safety, traffic accidents, traffic problems of urban and rural ecotoneof research program and the main results achieved were reviewed, to ensure the goal of the dissertation and the main content and the technology roadmap for research.
     Secondly, from the drivers, vehicles, road conditions and environmental aspects,to conduct a comprehensive analysis of road safety elements of the urban and ruralecotone, combined with the existing theoretical research and survey, discusses theurban and rural ecotone traffic safety features, and to lay the foundation for furtherresearch.
     Thirdly, according to urban and rural ecotone road features, the use of qualitativeanalysis and quantitative analysis of the method of combining, road conditions, roadinfrastructure, road traffic management, access port, the intersection of five indexes toestablish two layers traffic safety evaluation index system, comprehensive applicationof the Delphi method, network-level method and entropy method, to gain the roadsafety indexes of the total weight limit by super matrix. The road of urban and ruralecotone in Harbin as an example, for evaluating the safety of the road and verifythem.
     Fourth, the use of fiber gyroscope experiment, choice of vehicles three-directionacceleration interference as the evaluation of road safety indexes. Based on theconcept of acceleration interference, to construct different road linear accelerationinterference model and three-direction acceleration interference model, selected urbanand rural ecotone typical segments, measured at different segments of the vehicleparameters, to gain experimental results and verify the acceleration model.
     Fifth, using of traffic simulation software on road speed, vehicle flow, trafficdensity, and based on the simulation results for speed discrete and road traffic safetyanalysis. Using of velocity fluctuation coefficient, to build the models to analyze therelationship between velocity fluctuation and the safety. To make use of gray relationentropy method to model, and determining the various vehicle types with speeddiscreteness relationship.
引文
[1]世界卫生组织.预防道路交通伤世界报告[R].北京:人民卫生出版社,2004:4-9.
    [2]中华人民共和国公安部.中华人民共和国道路交通事故统计年报(2009)[R].北京:公安部交通管理局,2009:6,17-20.
    [3]吕从高,韦英娜.我国城乡结合部道路交通安全分析与对策[J].北京:交通标准化,2007(12):180-184.
    [4]刘唐志,唐伯明,凌建明,刘利.城乡结合部公路交通事故规律分析及治理对策[J].重庆:重庆交通大学学报(自然科学版),2008(27):767-783.
    [5]《中华人民共和国道路交通安全法》.第十届全国人民代表大会常务委员会第五次会议通过(2003年10月28日),2004年5月1日实施.
    [6]路明.中国交通安全形势及其对策[J].交通企业管理,2006,18(12):7-8.
    [7]广晓平,钱勇生,周波.城乡结合部道路交通安全设计研究[J].北京:交通标准化2006(5):131-135.
    [8]中华人民共和国公安部.中华人民共和国道路交通事故统计年报(2010年)[R].北京:公安部交通管理局,2010:10-14.
    [9]钱勇生,广晓平,周波.中小城市结合部交通特征与交通工程设计研究[J].北京:交通与运输,2005(12):98-101.
    [10]郭忠印,方守恩等.道路安全工程[M],北京:人民交通出版社,2002,10:81-126.
    [11]赵敏.城乡结合部交通规划与布局研究[J].彭城:彭城职业大学学报,2002,(4):76-79.
    [12]王岩,刘伟铭,道路交通事故成因的综合分析[J].长沙:湖南公安高等专科学校学报,2002,14(5):54-57.
    [13]郭忠印,方守恩等.道路安全工程[M].北京:人民交通出版社,2004:72-96.
    [14]孟清华,王保国,王瑞君.基于交通安全的人-车-环境系统的研究[J].北京:车辆与动力技术,2004(2):60-65.
    [15]裴玉龙,马骥.道路交通事故道路条件成因分析及预防对策研究[J].北京:中国公路学报,2003,16(4):77-82.
    [16]陈佑启.城乡交错带名辩[J].北京:地理学与国土研究,1995(2):47-53.
    [17]马香娟.城乡结合部交通问题与规划重点[J].哈尔滨:交通科技与经济,2008(3):114-115.
    [18] Jacobs G,Aeron-Thomas.A Estimating global road fatalities[R].TransportResearch Laboratory,2000(TRL Report,No.445).2000:3.
    [19]PIARC Technical Committee on Road Safety. Road Safety Manual[R].World Road Association.2003:67-88.
    [20]Ian Appleton. Austroads Experience with Road Safety Audits[J]. NewZealand: Transfund New Zealand,2005:111-127.
    [21] Berlyne, D.E.. Aesthetics and Psychobiology[M]. New York: AppletonCentury Crofts,1971:1–48.
    [22] Wohlwill, J.F.. Environmental aesthetics: the environment as a source ofaffect[J].. New York Human Behavior and Environment. Plenum,1976:37–86.
    [23]刘小明,任福田.论道路交通安全[M].北京:人民交通出版社,2001:1-5,1-20,66-71,72-78.
    [24]彭利人,刘小明.鉴别危险路段研究方法的进展[J].交通工程,1998(4):36-39.
    [25] Langhland J.C. Method of Evaluating Highway Safety ImprovementNational Cooperative Highway Research Program162[J], Washington,D.C.1975.
    [26] Morin D.A. Application of Statistical Concepts to Accident Data[J].Highway Research Record188.1967:72-79.
    [27] Datta T.K., Opiela K.S. and Smith R.J. Analysis of Countywide AccidentData by Rate and Frequency[J]. Transportation Research Record643.1977:12-18.
    [28] Zegeer C.V. Highway Accident Analysis Systems[J]. National CooperativeHighway Research Program91.1992:32-33.
    [29] Deacon J.A., Zegeer C.V. and Deen R.C. Identification of Hazardous RuralHighway Locations[J]. Transportation Research Record543.1975:16-33.
    [30] Norden M., Orlansky J. and Jacobs H. Application of StatisticalQuality-Control Techniques to Analysis of Highway-Accident Data[J].Highway Research Board Bulletin117.1956:17-31.
    [31] Jian-Shiuh Chen and Schih-Chueh Wang. Comprehensive Evaluation ofTraditional Techniques and Proposal of a New Method for IdentifyingHazardous Locations[J]. The International Association of Traffic and SafetyScience Research.1997,2(12):143-151.
    [32] Khaled, A.Abbas. Traffic safety assessment and development of predictivemodels for accidents on rural roads in Egypt[J]. Accident Analysis andPrevent,2002(2).
    [33] U.S. Department of Transportation. Traffic Safety Facts [M], NationalHighway Traffic Safety Administration,2006:32-38
    [34] FILDES B N, RUMBOLD G, LEENING A. Speed behavior anddrivers’attitude to speeding. Monash, Victoria, Australia; MonashUniversityAccident Research Center,1991.
    [35] FILDES B N, RUMBOLD G, LEENING A. Speed behavior and drivers’attitude to speeding. Monash, Victoria, Australia[J]. Monash UniversityAccident Research Center,1991.
    [36] KLOEDEN C N, PONTE G, MCLEAN A J. Traveling speed and the risk ofcrash involvement on rural road[J]. Adelaide Australia: Road AccidentResearch Unit, Adelaide University,2003.
    [37] Baruya A. Speed-accident relationships on different kinds of Europeanroads[J]. London: Transportation Research Laboratory,1998.
    [38] A.s.Hakkert, V. Gitelman, A. Cohen, E. Doveh, T. Umansky. The Evaluationof Effection Driver Behavior and Accidents of Concentrated GeneralEnforcement on Interurban Road is Islrael[J]. Accident Analysis&Prevention,2001.
    [39] M. Gupta. Fuzzy logic in knowledge-based systems decision[J].NHPC,Amsterdam,1998.
    [40] Robert Fuller. Introduction to fuzzy systems[J]. New York: Physical Verlag,2000.
    [41]刘运通.道路交通安全指南[M].北京:人民交通出版社,2004:216-253.
    [42]裴玉龙.道路交通事故成因分析及预防对策研究[D].南京:东南大学交通学院,2002:5-8.
    [43]刘志强等,道路交通事故多发点鉴别[J].北京:交通运输工程学报,2003(3):113-117.
    [44]郭忠印等.道路安全工程[M].北京:人民交通出版社,2005:78-96.
    [45]肖贵平,朱晓宁.交通安全工程[M].北京:中国铁道出版社,2003:181-194.
    [46]胡宝清.模糊理论基础[M].武汉:武汉大学出版社,2004:218-222.
    [47]成卫.城市道路交通事故与交通冲突技术理论模型及方法研究[D].长春:吉林大学交通学院,2007(6):2-5.
    [48]罗石贵等.路段交通冲突技术研究[J].北京:公路交通科技,2001(1).
    [49]朱中,李淑娟.道路交通安全多层次灰关联综合评价[J].交通与计算机,1998,16(1):14-17.
    [50]马书红.中心城市与城市新区间交通协调发展理论与方法研究[D].西安:长安大学公路学院,2008(6):65-68.
    [51]袁黎,王文卿,项乔君,陆健.公路平面交叉口交通冲突分析模型研究[J].北京:公路2009(2):105-111.
    [52]徐滨.冰雪条件下城乡结合部交通事故预防研究[D].哈尔滨:哈尔滨工业大学交通学院,2011(6):18-20.
    [53]汪礼清,任松筠.城乡结合部交通事故多[N].北京:新华日报,2004(7).
    [54]马艳丽.驾驶员驾驶特性与道路交通安全对策研究[D].哈尔滨:哈尔滨工业大学交通学院,2007:35-40.
    [55]魏朗,周维新等.驾驶员道路认知特性模型[J].北京:交通运输工程学报,2005,5(4):116-120.
    [56]王武宏.道路交通系统驾驶行为理论[M].北京:科学出版社,2001:22-29.
    [57]孟妮.不同道路交通环境中驾驶员注视行为分析[D].西安:长安大学汽车学院,2009:32-34.
    [58]唐铮铮,张铁军,何勇.道路交通安全评价[M].北京:人民交通出版社,2008:329-334.
    [59]陈阳.城市道路环境中驾驶员工作负荷试验研究[D].西安:长安大学汽车学院,2009:26-29.
    [60]钱新明,陈宝智.事故致因的突变模型[J].北京:中国安全科学学报,1995(5):1-4.
    [61]魏朗,刘浩学.汽车安全技术概论[M].北京:人民交通出版社,1999.4:46-51.
    [62]余志生.汽车理论[M].北京:机械工业出版社,2000:44-48.
    [63]苏周成.车辆转弯制动稳定性动力学控制研究[D].重庆:重庆大学机械工程学院,2007:16-19.
    [64]孙凤英.汽车性能与使用技术[M].北京:机械工业出版社,2002:36-45.
    [65] Brown, I.D.. Prospects for Technology Countermeasures against DriverFatigue[J]. Accident Analysis and Prevention,1997.29(4):525-531.
    [66] A, E. and etc, Laser scanners for obstacle detection in automotiveapplicatioin[C]. Proceedings of the IEEE Intelligent Vehicle Symposium2000,Dearborn(MI), USA,2000:3-5.
    [67]邓泽英.美国汽车避撞技术的最新发展[J].北京:汽车维修,1999,(11):
    [68]贺其诚.城郊公路交通安全研究[D].重庆:重庆交通大学土木建筑学院,2008:12-15.
    [69]冯桂炎.公路设计交通安全审查手册[M].北京:人民交通出版社,2000:22-27.
    [70]徐松.城郊一级公路接入口研究[D].重庆:重庆交通大学土木建筑学院,2009:19-31.
    [71]Transportation Research Board. Access Management Manual[R].WashingtonDC: TRB,2003:5-10.
    [72] The Center for Transportation Research and Education (CTRE) IOWAACCESS MANAGEMENT HANDBOOK[M].Iowa State University,2000.
    [73]李超,荣建等.一级公路出入口密度对交通安全的影响[J].2004国际公路安全研讨会国际公路安全研讨会论文集,(2004):32.
    [74] Jerome Gluck, Herbert S. Levinson and Vergil Stover. Impacts of AccessManagement Techniques[R]. Washington.DC: Transportation ResearchBoard, National Research Council,1999.
    [75]李江等.交通工程学[M].北京:人民交通出版社,2002:33-36.
    [76]裴玉龙,王炜.道路交通事故成因及预防对策[M].北京:科学出版社,2004:65-69.
    [77] B.F.巴布可夫著,景天然译.道路条件与交通安全[M].上海:同济大学出版社,1990.
    [78]曾伟良,龚峻峰,何兆成,朱倩茹,陈晓翔.降雨对城市道路交通行驶速度的影响分析[J].北京:环境科学与技术,2011:201-205.
    [79]王超.降雨环境下交通因素辨析与驾驶可靠性评价建模[D].长春:吉林大学交通学院,2011:17-18.
    [80]陈伟立.雾对高速公路交通安全的影响分析与研究[D].西安:长安大学环境工程学院,2005:12-15.
    [81]孙凤英,阎春利.冬季冰雪路面行车速度与安全隐患分析[J].哈尔滨:森林工程,2010(26):44-46.
    [82]徐吉谦,赵同安,杨涛.大城市城乡结合部交通规划研究[J].上海:城市道桥与防洪,1994(2):1-8.
    [83]万美强,廖启鹏.中心城市边缘区经济特性研究[J].北京:中华建设,2009(2):62-63.
    [84]吕新江,吴伟航,邱建峰.浅谈城乡结合部的道路管理[J].西安:各界文论,2007(4):61-62.
    [85] Saaty T L. Decision Making with Dependence and Feed-back [M]. RWSPublication, Pittsburgh, PA,1996.
    [86] Saaty T L.Fundamentals of the ANP-dependence and feedback indecision-making with a single network[J].Journal of Systems Science andSystems Engineering,2004,13(2).
    [87] Saaty T L.Decision making-the AHP and ANP[J].Journal of SystemsScience and Systems Engineering,2004,13(1).
    [88]王莲芬.网络分析法的理论与算法[J].北京:系统工程理论与实践,2001(3):43-50.
    [89]郑峰,王巧芝,高学辉,张序萍.MATLAB与熵值法在综合评价中的应用
    [C].无锡:Proceedings of2010National Vocational Education ofCommunications and Information Technology Conference (2010NVCIC),2010.
    [90]崔洪军,魏连雨,庞建勋.道路条件与交通安全的研究方法[J].西安公路交通大学学报,2001,21(4):89-92.
    [91]高增礼,张玉芬,王均利.路面性质对乘坐舒适性影响的主观评价[J].中国公路学报,1995,8(1):51-55.
    [92]张洪亮,王秉纲,杨万桥.基于人-车-路三自由度振动模型的路面平整度评价方法[J].重庆交通大学学报(自然科学版),2009(6):69-73.
    [93]田晟.基于加速度干扰和AHP的车辆行驶安全型评价模型[J].中国安全科学学报,2008,18(9):131-134.
    [94]李林,徐建闽,叶凡.基于道路平面线形的加速度干扰模型研究[J].中外公路,2010,30(2):18-21.
    [95]许伦辉,周静.基于道路结构的加速度干扰模型及行车安全舒适性评价[J].公路,2007(3):102-106.
    [96]杨少伟.可能速度与公路线性设计方法研究[D].西安:长安大学公路学院,2004.
    [97]杨少伟,王海君,张驰.可能速度与交通事故的关系[J].长安大学学报(自然科学版),2009,29(4):34-37.
    [98]杨少伟,张驰,王海君.公路线形设计中的可能速度预测模型[J].长安大学学报(自然科学版),2008,28(2):36-40.
    [99]吴敏金,白治江.关联嫡及其应用[J].上海:华东师范大学学报(自然科学版),1998(6):28-36.
    [100]水乃翔,董太亨,沙震.关于灰关联度的一些理论问题[J].北京:系统工程,1992,10(6):23-26.
    [101]张岐山,郭喜江.灰关联熵分析方法[J].北京:系统工程理论与实践,1996(8):7-12.

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