Sonstige
In the context of this study, different data sources for accident research were examined regarding their possible data access and evaluated concerning the individual quality and extent of the data. Analyses of accidents require detailed and comprehensive information in particular concerning vehicle damages, injury patterns and descriptions of the accident sequence. The police documentation supplies the basic accident statistics and is amended in the context of the forensic treatment by further information, e.g. by medical and technical appraisals and witness questionings. As a new approach to the data acquisition for the analysis of fatal traffic accidents, the information was made usable which was collected by the police and by the investigations of the public prosecutor. The best strategy for obtaining reliable, extensive and complete data consists of combining the information from these two sources: the very complete, but elementary statistic data of the Niedersächsisches Landesamt für Statistik (Lower Saxony State Authority of Statistics), based on the police documentation as well as the very extensive accident information resulting from the investigation documentation of the public prosecutor after conclusion of the procedure, the so-called Court Records. Of all 715 fatal traffic accidents, which happened in the year 2003 in the German State of Lower Saxony, 238 cases were selected by means of a statistically coincidental selective procedure based on a statistically representative manner (every third accident). These cases cover the investigation documents of the 11 responsible public prosecutor- offices, which were requested and evaluated while preserving the data security. Of the 238 cases 202 cases were available, which were individually coded and stored in a data base using 160 variables. Thus a data base of a sample of representative data for fatal accidents in Lower Saxony was set up. The data base contains extensive information concerning general accident data (35 variables), concerning road and road surface data (30 variables), concerning vehicle-specific data (68 variables) as well as concerning personal and injury data (27 variables).
As the official German catalogue of accident causes has difficulty in matching the increasing demands for detailed psychologically relevant accident causation information, a new system, based on a "7 Steps" model, so called ACASS, for analyzing and collecting causation factors of traffic accidents, was implemented in GIDAS in the year 2008. A hierarchical system was developed, which describes the human causation factors in a chronological sequence (from the perception to concrete action errors), considering the logical sequence of basic human functions when reacting to a request for reaction. With the help of this system the human errors of accident participants can be adequately described, as the causes of each range of basic human functions may be divided into their characteristics (influence criteria) and further into specific indicators of these characteristics (e.g. distraction from inside the vehicle as a characteristic of an observation-error and the operation of devices as an indication for distraction from inside the vehicle. The causation factors accordingly classified can be recorded in an economic way as a number is assigned to each basic function, to each characteristic of that basic function and to each indicator of that characteristic. Thus each causation factor can be explicitly described by means of a code of numbers. In a similar way the causation factors based on the technology of the vehicle and the driving environment, which are also subdivided in an equally hierarchical system, can be tagged with a code. Since the causes of traffic accidents can consist of a variety of factors from different ranges and categories, it is possible to tag each accident participant with several causation factors. This also opens the possibility to not only assign causation factors to the accident causer in the sense of the law, but also to other participants involved in the accident, who may have contributed to the development of the accident. The hierarchical layout of the system and the collection of the causation factors with numerical codes allow for the possibility to code information on accident causes even if the causation factor is not known to its full extent or in full detail, given the possibility to code only those cause factors, which are known. Derived from the systematic of the analysis of human accident causes ("7 steps") and from the practical experiences of on-scene interviews of accident participants, a system was set in place, which offers the possibility to extensively record not only human causation factors in a structured form. Furthermore, the analysis of the human causation factors in such a structured way provides a tool, especially for on-scene accident investigations, to conduct the interview of accident participants effectively and in a structured way.
Im Rahmen eines Gemeinschaftsprojektes der Technischen Universität München und des ADAC, Abteilung Verkehrstechnik, wurden im süddeutschen Autobahnnetz 4 Messstellen eingerichtet, an denen seit 1976 bzw. 1977 monatliche lokale Geschwindigkeiten und Fahrzeugabstände erhoben werden. Von der Bundesanstalt für straßenwesen wurden seit 1978 sieben weitere Messstellen auf dem nord- und westdeutschen Autobahnnetz eingerichtet, an denen zweimal jährlich Messungen durchgeführt werden. Damit können Trends und Entwicklungen im Geschwindigkeits- und Abstandsverhalten erkannt werden. Der Bericht gliedert sich in die Beschreibung der Voruntersuchung, die Beschreibung der Erweiterung der Analyse auf das Autobahnnetz und die Darstellung der Ergebnisse aller Erhebungen. Ein Rückschluss auf das absolute Geschwindigkeitsniveau im Gesamtnetz kann aus den Ergebnissen der einzelnen Messstellen nicht abgeleitet werden.
Das Projekt Deutsche Datenbank Rettungsdienst beinhaltet die Entwicklung und Erprobung eines bundeseinheitlichen Referenzdatensatzes für den Rettungsdienst, dessen Basis die medizinisch logistische Verlaufsdokumentation rettungsdienstlicher Einsätze mittels DIVI-Protokollen bzw. alternativer Dokumentationsprotokolle darstellt. Im Anschluss an die Entwicklung eines Referenzdatensatzes für den Rettungsdienst wurden insgesamt 9.689 Einsatzprotokolle im Rahmen einer repräsentativen bundesweiten Stichprobe erfasst. Diese wurden hinsichtlich logistischer wie auch medizinischer Parameter ausgewertet. Führende Diagnosen im Einsatzspektrum waren akute Erkrankungen, insbesondere des Herzkreislaufsystems, des Zentralnervensystems und der Atmungsorgane. Unter den dokumentierten Verletzungen hatten Schädel-Traumata (ohne Berücksichtigung des Schweregrads) und Extremitätenverletzungen den größten Anteil. Analysen der Versorgungsqualität gemäß nationaler Leitlinien zeigten bei der notärztlichen Versorgung von Patienten mit akutem Koronarsyndrom überwiegend gute, bei der Versorgung vom schwer Schädel-Hirn-Verletzten unzureichende Befolgung der Therapie-Empfehlungen. Bei nicht-notärztlich versorgten Patienten werden in nennenswertem Umfang die Gabe von Infusionen und Medikamenten ohne Beteiligung eines Notarztes dokumentiert. Im Rahmen der Datenauswertung traten verschiedene Defizite hinsichtlich der Dokumentation rettungsdienstlicher Einsätze in Deutschland zu Tage, die sich überwiegend durch das Problem fehlender Angaben kennzeichnen ließen. Die Dokumentation von Rettungseinsätzen stellt demnach keineswegs eine Idealsituation dar, wie es die aktuelle Datenlage zeigt. Die Ergebnisse untermauern die Notwendigkeit eines bundeseinheitlichen Einsatzprotokolls zur Erfassung von Notfalleinsätzen mit und ohne Notarztbeteiligung, bei dem die Erkenntnisse aus diesem Forschungsprojekt eingebunden werden.
Als Ergebnis des Forschungsvorhabens wurde ein Simulationsverfahren für die Ermittlung von Streckenkapazitäten auf Bundesautobahnen (BAB) bei winterlichen Straßenzuständen erarbeitet. Der Berechnungsansatz wurde auf eine robuste Verfahrensweise ausgelegt, um die Auswirkungen von Ungenauigkeiten und Fehlern der Eingangsgrößen zu minimieren. Das Verfahren orientiert sich an den technischen Rahmenbedingungen wie z.B. die Eigenschaften der derzeit verfügbaren Daten der Wetterprognose und der Umfelddatenerfassung. Zugleich werden die Anforderungen an die Nutzung der Prognoseergebnisse berücksichtigt. Ausgehend von einer Grundkapazität der Streckenabschnitte in Anlehnung an das Handbuch für die Bemessung von Straßenverkehrsanlagen (HBS) wurden Abschlagsfaktoren für die jeweils vorherrschende Witterungssituation ermittelt. Diese Witterungseigenschaften wurden zuvor anhand charakteristischer Eingangsgrößen zusammengefasst und als Wetterklassen definiert. Das nachgeschaltete Prognoseverfahren ist als zweistufiger Ansatz mit einer Planungsprognose für die vorausschauende Disposition sowie einer Kurzfristdarstellung für die operative Durchführung der Verkehrsmanagements, des Straßenbetriebsdienstes und des Arbeitsstellenmanagements aufgebaut. Es basiert auf einem Warteschlangenmodell. Die Ergebnisse zeigen mögliche Stauereignisse auf und können als Entscheidungshilfe verwendet werden. Beide Komponenten setzen auf den gleichen grundsätzlichen Vorgehensweisen für die Prognose auf. Es bleibt offensichtlich, dass die Güte der Wetterprognose für die korrekte Auswahl der Wetterklasse entscheidend ist. Die Zuverlässigkeit der nachfolgend aufgesetzten Prognose des Verkehrsablaufs korreliert daher unmittelbar mit der Qualität der Eingangsgröße Wetterprognose. Aus diesem Grund ist der Bereitstellung hochwertiger und kleinräumiger Wetterprognosen für den Straßenbetriebsdienst die erforderliche Aufmerksamkeit zu widmen. Die im Forschungsvorhaben entwickelte modelltechnische Abbildung der witterungsbedingten Kapazitätseinschränkung und ihrer Auswirkungen auf den Verkehrsablauf durch zwei Risikostufen in Form einer "Warnung" und eines "Alarms" hat sich in der Evaluierung bewährt. Dabei ist die betriebsnahe Interpretation der Prognoseergebnisse möglich. Das Verfahren mit den Vorhersagen des Verkehrszustands Eingangsgrößen beweist, dass sie als Auslösekriterien für Maßnahmen des Verkehrsmanagements genutzt werden können.
In recent years special attention has been paid to reducing the number of fatalities resulting from road traffic accidents. The ambitious target to cut in half the number of road users who are killed each year by 2010 compared with the 2001 figures, as set out in the European White Paper "European Transport Policy for 2010: Time to Decide" implies a general approach covering all kinds of road users. Much has been achieved, e.g. in relation to the safety of car passengers and pedestrians but PTW accidents still represent a significant proportion of fatal road accidents. More than 6,000 motorcyclists die annually on European roads which amounts to 16% of the EU-15 road fatalities. The European Commission therefore launched in 2004 a Sub- Project dealing with motorcycle accidents within an Integrated Project called APROSYS (Advanced PROtection SYStems) forming part of the 6th Framework Programme. In a first step, the combined national statistical data collections of Germany, Italy, the Netherlands and Spain were analysed. Amongst other things parameters like accident location, road conditions, road alignment and injury severity have been explored. The main focus of the analysis was on serious and fatal motorcycle accidents and the results showed similar trends in all four countries. From these results 7 accident scenarios were selected for further investigation via such in-depth databases as the DEKRA database, the GIDAS 2002 database, the COST 327 database and the Dutch element of the MAIDS database. Three tasks, namely the study of PTW collisions with passenger cars, PTW accidents involving road infrastructure features, and motorcyclist protective devices have been assessed and these will concentrate inter alia on accident causes, rider kinematics and injury patterns. A detailed literature review together with the findings of the in-depths database analysis is presented in the paper. Conclusions are drawn and the further stages of the project are highlighted.
Annually within the European Union, there are over 50,000 road accident fatalities and 2 million other casualties, of which the majority are either the occupants of cars or other road users in collision with a car. The European Commission now has competency for vehicle-based injury countermeasures through the Whole Vehicle Type Approval system. As a result, the Commission has recognised that casualty reduction strategies must be based on a full understanding of the real-world need under European conditions and that the effectiveness of vehicle countermeasures must be properly evaluated. The PENDANT study commenced in January 2003 in order to explore the possibility of developing a co-ordinated set of targeted, in-depth crash data resources to support European Union vehicle and road safety policy. Three main work activity areas (Work Packages) commenced to provide these resources. This paper describes some of the outcomes of Work Package 2 (WP2, In-depth Crash Investigations and Data Analysis). In WP2, some 1,100 investigations of crashes involving injured car occupants were conducted in eight EU countries to a common protocol based on that developed in the STAIRS programme. This paper describes the purposes, methodology and results of WP2. It is expected that the results will be used as a co-ordinated system to inform European vehicle safety policy in a systematic, integrated manner. Furthermore, the results of the data analyses will be exploited further to provide new directions to develop injury countermeasures and regulations.
Causation patterns and data collection blind spots for fatal intersection accidents in Norway
(2010)
Norwegian fatal intersection accidents from the years 2005-2007 were analysed to identify any causation patterns among their underlying contributing factors, and also to evaluate whether the data collection and documentation procedures used by the Norwegian in-depth investigation teams produces the information necessary to perform causation pattern analysis. A total of 28 fatal accidents were analysed. Details on crash contributing factors for each driver in each crash were first coded using the Driving Reliability and Error Analysis Method (DREAM), and then aggregated based on whether the driver was going straight or turning. Analysis results indicate that turning drivers to a large extent are faced with perception difficulties and unexpected behaviour from the primary conflict vehicle, while at the same time trying to negotiate a demanding traffic situation. Drivers going straight on the other hand have less perception difficulties. Instead, their main problem is that they largely expect turning drivers to yield. When this assumption is violated, they are either slow to react or do not react at all. Contributing factors often pointed to in literature, e.g. high speed, drugs and/or alcohol and inadequate driver training, played a role in 12 of 28 accidents. While this confirms their prevalence, it also indicates that most drivers end up in these situations due to combinations of less auspicious contributing factors. In terms of data collection and documentation, information on blunt end factors (those more distant in time/space, yet important for the development of events) was more limited than information on sharp end factors (those close in time/space to the crash). A possible explanation is that analysts may view some blunt end factors as event circumstances rather than contributing factors in themselves, and therefore do not report them. There was also an asymmetry in terms of reported obstructions to view due to signposts and vegetation. While frequently reported as contributing for turning drivers, they were rarely reported as contributing for their counterparts in the same accidents. This probably reflects an involuntary focus of the analyst on identifying contributing factors for the driver legally held liable, while less attention is paid to the driver judged not at fault. Since who to blame often is irrelevant from a countermeasure development point of view, this underlying investigator mindset needs addressing to avoid future bias in crash investigation reports.
Für den in den vergangenen Jahren stark wachsenden Radwegebestand sollten die weitgehend noch fehlenden Verfahrensgrundlagen einer systematischen baulichen Erhaltung erarbeitet werden. Untersuchungsgegenstand waren dabei Radwege mit Asphalt-, Beton- und Pflasterdecken sowie wassergebundenen Decken in Baulast des Bundes. Die Ziele der baulichen Erhaltung bestehen bei den Radwegen ähnlich wie bei Fahrbahnen in der Gewährleistung einer angemessenen Verkehrssicherheit und Befahrbarkeit sowie in einer rechtzeitigen wirtschaftlichen Substanzerhaltung. Als Zustandsmerkmale zur umfassenden Beschreibung der für die Zielkriterien relevanten Schäden und Mängeldienen die vertikalen Schwingbeschleunigungen (Effektivwert in m/s-² pro m) oder die Höhenlängsprofile (pro cm) zur Kennzeichnung der Längsebenheit sowie Risse und sonstige Oberflächenschäden zur Beschreibung des Substanzzustands. Die Substanzmerkmale werden ebenso wie konstruktiv bedingte Mängel (überstehende/abgesackte Einbauten, Bordsteine, Wurzelhebungen) im 1-m-Raster ausgewertet. Das für die Zustandserfassung auf Basis vorliegender in- und ausländischer Erfahrungen entwickelte Messfahrrad ermöglicht mit Elektrounterstützung (Pedelec) eine weitgehend konstante Fahrtgeschwindigkeit von 25 km/h und eine Tagesbefahrungsleistung ≥ 50 km. Aufgezeichnet werden digitale Videos, GPS-Tracks, die vertikale Schwingbeschleunigung (mit Beschleunigungsaufnehmer) und Tonsignale für besondere Markierungen. Bei der Zustandsbewertung werden die für homogene Auswerteabschnitte ermittelten dimensionsbehafteten Zustandsgrößen in dimensionslose Zustandswerte (Noten von 1 bis 5) überführt, um eine Verknüpfung unterschiedlicher Merkmale zum Gebrauchs- und Substanzwert zu ermöglichen. Der Gebrauchswert, der für die Zielkriterien Sicherheit und Befahrbarkeit steht, entspricht bei Radwegen dem Zustandswert der vertikalen Schwingbeschleunigung. Beim Substanzwert werden vereinfachend nur die Risse mit den zusammengefassten restlichen Schäden ("Restschadensfläche") verknüpft. Die mitgeführten Informationen zu den konstruktiv bedingten Mängeln dienen nur zur Steuerung des Erhaltungsgeschehens. Für die Erhaltungsplanung werden zusätzlich zu den Ergebnissen der Zustandserfassung/-bewertung und den Netzkenngrößen mindestens noch die Radwegbreiten, die Deckschichtarten sowie grobe Angaben zum Befestigungsaufbau (standardisiert/nicht standardisiert) und zum Deckenalter benötigt. Derzeit müssen die Daten im Regelfall in einer lokalen Datei für die Erhaltungsplanung vorgehalten werden, die bezüglich der Netzdaten häufig mit der jeweiligen Straßendatenbank abgestimmt werden sollte. Aus den homogenen Auswerteabschnitten dieser Datei werden längere Erhaltungsabschnitte gebildet. Danach können Bereiche ausgesondert werden, für die punktuelle/kleinflächige Maßnahmen der baulichen Unterhaltung zur Beseitigung örtlicher Schäden bzw. konstruktiv bedingter Mängel oder auch Sondermaßnahmen(z. B. bei Wurzelhebungen) zweckmäßig sind. Der Bedarf an Instandsetzungen und Erneuerungen kann auf Basis von Mängelklassen, die ab Zustandswerten von 3,5 (Warnwert) mit Hilfe von Bestands- und Zustandskonstellationen abgrenzbar sind, in ein erstes einfaches, nach Dringlichkeiten sortiertes Erhaltungsprogramm überführt werden. Zuvor kann eine Zustandsfortschreibung mit pragmatisch festgelegten Verlaufsfunktionen erfolgen. Die Kostenwerte für die Instandsetzungs- und Erneuerungsmaßnahmearten für Radwege sind derzeit noch in Analogie zur Fahrbahnerhaltung abgeschätzt. Die ausgearbeiteten Verfahren zur Bewertung der Maßnahmenutzen und zur netzweiten Optimierung von Maßnahmealternativen sind auch für kleine Radwegenetze letztlich nur mit einem IT-Verfahren ("PMS-Radwege") umsetzbar. Im Projektablauf waren vielfach zeitintensive grundlegende Analysen erforderlich. Es ist jedoch gelungen, ein Verfahren zu entwickeln und durch Tests zur Anwendungsreife zu bringen, das auf dem naheliegenden Fahrzeug für die Zustandserfassung von Radwegen, dem Fahrrad, basiert. Auch aufgrund einer sehr eingeschränkten Verwendbarkeit von Daten aus vorliegenden netzweiten Erfassungen sind zur Überprüfung und Verifizierung der entwickelten Verfahren insbesondere zur Erfassung und Auswertung der vertikalen Schwingbeschleunigung wie auch zur Erhaltungsplanung weitere Untersuchungen und Sensitivitätsanalysen erforderlich.
Die Qualität der Beeinflussung und der Information des Verkehrsteilnehmers ist in hohem Maße abhängig von der Qualität der erhobenen Verkehrsdaten. Aus diesem Grunde stellt sich die Frage: welche Qualitätsanforderungen sind an die Verkehrsdatenerfassung zu stellen und wie wird sichergestellt, dass die Qualitätsanforderungen auch im laufenden Betrieb über Jahre hinweg eingehalten werden? In einem Arbeitskreis der FGSV wurden Hinweise zur Qualitätsanforderung und Qualitätssicherung der lokalen Verkehrsdatenerfassung für Verkehrsbeeinflussungsanlagen entwickelt. Das hier vorgestellte Hinweispapier, das von der FGSV veröffentlicht wurde, soll die Betreiber von Verkehrsbeeinflussungsanlagen dabei unterstützen, die Qualitätsanforderung an die lokale Verkehrsdatenerfassung zu erfüllen und im laufenden Betrieb dauerhaft sicherzustellen.
Die Ermittlung von Grundunfallkostenraten und Quantifizierung von Zuschlägen für Landstraßenquerschnitte sind Ziel dieses Forschungsvorhabens. Die Ergebnisse sollen eine Bewertungsgrundlage im Handbuch für die Verkehrssicherheit von Straßen (HVS) darstellen. 3.600 km Landstraße aus sechs Bundesländern liegen dem Untersuchungskollektiv zu Grunde. Neben dem mehrjährigen Unfallgeschehen bilden Daten der SIB und Erhebungen aus Streckenbefahrungen die Datengrundlage der Untersuchungen. Die Zuordnung der Streckenabschnitte erfolgte in Anlehnung an den Entwurf der Richtlinie für die Anlage von Landstraßen (RAL) in fünf verschiedene (Regel-) Querschnittsgruppen. Multivariate Modelle zur Beschreibung der Unfallhäufigkeit bilden die mathematische Grundlage der Analyse. Gegenüber monokausalen Betrachtungen weisen sie den Vorteil auf, eine Vielzahl von Einflussgrößen zu erfassen sowie mögliche Abhängigkeiten zwischen verschiedenen Variablen zu berücksichtigen. Für die verschiedenen Straßenquerschnitte und Einmündungen mit Vorfahrtregelung durch Verkehrszeichen wurden jeweils drei Modelle nach Unfallschwere erstellt. Zu Grunde liegende Merkmale wurden auf ihren signifikanten Erklärungsanteil zur Beschreibung der Unfallhäufigkeit geprüft und entsprechend im Modell als Zuschlag berücksichtigt. Auf Basis dieser Ergebnisse wurden Funktionen zum Verlauf der Unfallrate und Unfallkostenrate erzeugt. Grundunfallkostenraten beschreiben das fahrleistungsbezogene Unfallkostenniveau eines Netzelements, welches bei regelkonformem Ausbau der Strecke erreicht werden kann. Da in den Modellen auch Merkmale berücksichtigt sind, die kein Defizit im eigentlichen Sinne darstellen, entspricht die Höhe der UKR ohne jegliche Zuschläge einem Grundniveau. Diesem sind Zuschläge, unterteilt in Defizite und die Streckencharakteristik beschreibende Eigenschaften, zuzuordnen. Anhand der Modelle kann nachgewiesen werden, dass verschiedene Straßenquerschnitte ein unterschiedliches Grundsicherheitsniveau aufweisen. Zwischen Unfallhäufigkeit und DTV besteht ein nichtlinearer Zusammenhang. Die Unfallrate bzw. Unfallkostenrate stellt somit eine vom DTV abhängige Kenngröße dar. In Abhängigkeit des Querschnitts besitzen verschiedene Merkmale einen Einfluss auf die Verkehrssicherheit. Die Größenordnung der Zuschläge kann als Anteil am Grundniveau der UKR beschrieben werden. Die ermittelten Zuschläge wurden ggf. vergleichend betrachtet und im Rahmen einer plausibilisierten Bewertung der Querschnitte angepasst. In Anlehnung an das HVS erfolgt die Darstellung der Berechnung für Grundunfallkostenraten und deren Zuschläge für Landstraßenquerschnitte. Dabei werden zwei verschiedene Ansätze vorgestellt. Die Ergebnisse für Einmündungen mit Vorfahrtregelung durch Verkehrszeichen besitzen empfehlenden Charakter.
While many medical studies have dealt with the incidence, nature and treatment of polytrauma the injury-causing accident mechanisms are rarely discussed in detail, mostly due to the lack of documentation of the technical aspects. The present prospective study was started in late 2007 and collects data from traffic accidents with most severely injured in six south- German counties and two larger cities for the duration of one year. It is aimed at identifying and documenting all polytrauma cases (ISS ≥ 16) caused by traffic accidents and their crash circumstances. The data collection is based on an interdisciplinary concept to include both the police, emergency dispatch centers, hospitals and fire departments in the region and is completely anonymous. Potentially relevant cases where an emergency physician was called to the scene of a traffic accident are provided by the dispatch center. All three hospitals in the region suited for the treatment of polytraumatised patients record injuries, major diagnostic and surgery data. Data and images from the accident scene are provided by the police and by fire departments. The latter provide information which is usually not available from the police, like deployed airbags, vehicle extrication measures and detailed views of car interiors. The main objective of the study is to determine the structure of road users who sustain a polytrauma, their crash opponents and the injury patterns found in relation to the collision configuration and the protection by seat belts, air bags and other devices. With detailed documentation of vehicle damage and extrication measures the study is also intended to support the development of injury predictors for pre-hospital treatment and provide field data regarding further improvement of technical rescue.
A lack of representative European accident data to aid the development of safety policy, regulation and technological advancement is a major obstacle in the European Union. Data are needed to assess the performance of road and vehicle safety and is also needed to support the development of further actions by stakeholders. This short-paper describes the process of developing a data collection and analysis system designed to partly fill these gaps. A project team with members from 7 countries was set up to devise appropriate variable lists to collect fatal crash data under the following topic levels: accident, road environment, vehicle, and road user, using retrospective detailed police reports (n=1,300). The typical level of detail recorded was a minimum of 150 variables for each accident. The project will enable multidisciplinary information on the circumstances of fatal crashes to be interpreted to provide information on a range of causal factors and events surrounding the collisions.
Nowadays, traffic accidents are recorded in historical databases. Regarding the huge quantity of data, the use of data mining tools is essential to help Experts, for automatically extracting relevant information in order to establish and quantify relations between severity and potential factors of accidents. An innovative approach is here proposed for an in depth investigation of real world accidents data base. Mutual information ratio based on conditional entropies is used to quantity the association strength between an accident outcome descriptor (injury severity) and other potential association factors. Information theoretic methods help to select automatically groups of factors mostly responsible of the severity of accident.
NASS: the glass is half full
(2007)
The National Accident Sampling System (NASS) was born in the late 1970s. It was based on a substantial amount of experience and analysis of what was needed in the United States to understand the safety challenges of our highways. This work also showed how to collect high quality and useful crash data efficiently. Unfortunately, when Ronald Reagan - a President who believed in limited government - was elected, any hope of full funding for NASS was lost. The concept of 75 teams investigating about 18,000 serious crashes in detail annually was never realized. The system got up to 50 teams, then was cut to 36, and finally to 24 teams investigating fewer than a quarter of the originally anticipated number of crashes per year. Despite this, the NASS investigations provide a rich source of data, collected according to a sophisticated statistical sampling system to facilitate detailed national estimates of road casualties on our nation- highways and their causes. In addition, changes have been made in recent years to increase the number of more serious crashes of recent model vehicles to make the results more relevant to improving vehicle safety. A recent, detailed examination of hundreds of rollovers has provided considerable insight into rollover casualties and into what can be done to reduce them. Some of these results will be presented that show the value of the NASS system. Our experience with NASS and the Fatal Accident Reporting System (FARS) suggests a number of improvements that could be made in the United States" crash data systems. It also provides justification for a doubling or tripling of our national expenditures on crash data collection.
In the context of the COST357 research project, the climatic conditions and requirements for protective helmets for motorcyclists have been examined. The extent to which these factors would influence motorbike handling and accidents in which motorcyclists are involved have also been examined. This project addresses how cognitive abilities of motorcyclists relate to helmet construction factors. In particular, the aspects of motorcycle driver helmets are to be parameterized in order that they may be used subsequently as a basis for future requirement profiles. The task of one working group of the COST357 project has been to analyse accident events and to identify helmet design issues which affect motorcycle drivers while wearing a helmet. This has been achieved by collating accident data across different countries recorded in the course of in-depth investigations at the site of accidents and by combining this with field studies of motorcyclists participating in traffic, but not involved in accidents. This paper presents the study methodology, database and first results of this international survey. The basis of the study has been a total of 424 interviews of motorcyclists and 134 motorcycle accidents, which were collected across Germany, Greece, Italy, Ireland, Portugal and Turkey and combined in a single database.
In India, heavy truck crashes on national highways account for a number of fatalities. But due to lack of in-depth crash data, detailed analysis is not possible to determine injury mechanisms, and to identify infrastructure, vehicle and human factors affecting these crashes. Over the past two years, researchers in India have established a crash investigation network, with the co-operation of the police and hospitals, to conduct crash investigations and in-depth crash data collection on national highways in the state of Tamil Nadu. This pioneering effort has resulted in the development of a heavy truck crash investigation methodology, the outcome of which is scientific and reliable crash data that has been able to provide good insight into truck crashes and their causes. This paper explains the need for truck crash investigations, the methodology, conclusions of the data analyzed up to date, and the need to focus on truck driver working conditions.
During the last 5 years, the number of cars fitted with side airbags has dramatically increased. They are now standard equipment, even on many smaller cars or less luxurious vehicles. While some side airbags offer thoracic protection alone, there are those that combine thoracic and head protection (of which most deploy from the seat). Other systems employ separate airbags for head and thorax protection, which are designed to be effective noticeably in a crash against a pole. This paper proposes an evaluation of the effectiveness of side airbags in preventing thoracic injuries to passenger car occupants involved in side crashes. First, the target population (who can take benefit of side airbag deployment and in what circumstances) is defined. Side airbags can be especially effective in cases of impacts on the door with intrusion at a certain impact speed. Then, an example case of a side impact with side airbag deployment is given were side airbag deployment is thought to have had a positive effect on injury outcome. A further case is presented where the impact configuration is likely to have reduced the effect of side airbag deployment on injury outcome. Finally, the estimation of side airbag effectiveness (in terms of additional occupant protection brought exclusively by the airbag) is proposed by comparing injury risk sustained by occupants in (more or less) similar cars (fitted or non fitted with airbags) because, during these years, car structure, and side airbag conception have considerably evolved. In-depth accident data from France, the UK and Germany has been collected. Out of 2,035 side impact accident cases available in the databases, we selected 435 occupants of passenger cars (built from 1998 onwards) involved in an injury accident between year 1998 and year 2004 for EES (Energy Equivalent Speed) values between 20km/h and 50km/h. The occupants, belted or not, were sat on the struck side, whatever the obstacle and type of accidents (intersection, loss of control, etc.). For multiple impact crashes, the side impact is assumed to be the more severe one. Passenger cars were fitted with (96) or without (339) side airbags. Most of the potential risk explanatory variables were correctly and reliably reported in the databases (velocity " impact zone " impact angle " occupant characteristics, etc.). The analysis compared injury risks for different levels of EES and different types of side airbags. A logistic regression model was also computed with injury variables (such as thoracic AIS 2+ or AIS 3+) as the dependant variable and other variables (including airbag type and EES) as explanatory injury risk factors. Results revealed statistically non-significant reductions in thoracic AIS 2+ and AIS 3+ injury risk in side airbag equipped cars in the impact violence range selected (odds ratio between 0.84 and 0.98 depending on types of airbags). The results are discussed. The non-significance is assumed to be due to a low number of cases. Statistical analysis for head injuries was not possible due to the low number of accident cases with passenger cars fitted with head airbags in the databases. Moreover, the discrepancies between the data coming from different countries (especially calculation of EES) might have introduced instability in the analysis.
In Germany, in-depth accident investigations are carried out in the Hannover area since 1973. In 1999 a second region was added with surveys in Dresden and the surrounding area. Internationally, the acronym GIDAS (German In-Depth Accident Study) is commonly used for these surveys. Compared to many other countries, the sample sizes of the GIDAS surveys are much larger. The goal is to collect 1.000 accidents involving personal injuries per year and region. Data collection takes place by using a sampling procedure, which can be interpreted as a two-stage process with time intervals as primary units and accidents as secondary units. An important question is, to what extend these samples are representative for the target population from which they are drawn. Analyses show, for example, that accidents with persons killed or seriously injured are overrepresented in the samples compared to accidents with slightly injured persons. This means, that these data are subject to biases due to uncontrolled variation of sample inclusion probability. Therefore, appropriate weighting and expansion methods have to be applied in order to adjust or correct for these biases. The contribution describes the statistical and methodological principles underlying the GIDAS surveys with respect to sampling procedure, data collection and expansion. In addition, some suggestions regarding potential improvements of study design are made from a methodological point of view.
Pedestrian accidents are one of the major concerns related with road accidents around the world. Portugal has one of the highest rates of pedestrian fatalities in Europe. In this paper an overview conditions were the pedestrian accidents occurred in Portugal is presented. In the last years, a project related with the pedestrian accidents has run in Portugal for the period 2004-2006 where 603 people died, 2097 have been severely injured and about 17000 slightly injured. Within this project all the pedestrian accidents in this period have been analysed providing global information about a wide range of aspects, since location, driver and pedestrian characteristics, weather and road conditions, among others. In addition, 50 in-depth accidents have been investigated and the data collected according the Pendant methodology. For this in-depth methodology detailed information about the accident has been collected, including injuries, vehicle damage, road conditions and road user- behaviour and actions. An accident reconstruction has been carried for each case including the determination of the speeds and driver actions, and the analysis of the contributing factors for the accident. Depending of the accident complexity, different methodologies have been used to analyse these accident, from the classical analytical equations such as Simms and Woods, to the use of detailed computational pedestrian models as those included in the commercial software- PC-Crash-® or Madymo-®. Also one of the goals of our investigation is the development of multibody models and methodologies for the reconstruction of pedestrian accidents. Some of these tools integrated in the commercial software Cosmos Motion-® are presented. The advantages of the different approaches are compared and discussed for some of the accidents investigated. With these tools the impact speed can be determined from the projection distance with analytical tools or PC-Crash-®, but more complex tools should be used to determine speed from the injuries, what is especially important for fatal accidents. The influence of the vehicle geometry and stiffness characteristics is another aspect analysed, where the influence of the vehicle stiffness has been determined using a combined multibody-finite elements approach within the software Madymo-®.