Sonstige
In 2012 the fifth ESAR conference (Expert Symposium on Accident Research) was held in Hannover. ESAR is an international convention of experts, who analyze traffic accidents all over the world and discuss their results in this context, conducted at the Medizinische Hochschule Hannover every 2 years. It connected representatives of public authorities, engineers in automotive development and scientists and offers a forum with particular emphasis on In-Depth-Analyses of accident statistics and accident analyses. Special focus is placed on research on the basis of so-called "In-Depth-Accident-Investigations" [data collections at the sites of the accidents], which are characterized by extensive documentations of the sites of the accidents, of the vehicles as well as of the injuries, encompassing several scientific fields. ESAR aims at a multi-disciplinary compilation of scientific results and at discussing them on an international, scientific level. It is thus a scientific colloquium and a platform for exchanging information for all accident researchers. Experiences in accident prevention as well as in the complex field of accident reconstruction are stated and new research fields are added. Existing results of long-term research work in Europe, the US, Australia and Japan include different infrastructural correlations and give findings on population, vehicle population and driver characteristics, which offer a basis for recommendations to be derived and measures for increasing road safety.
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.
In order to improve the protection of children transported in cars, within the CHILD programme (GR3D-CT2002-00791) real world road accidents are thoroughly analysed and then reconstructed in laboratory. Prior to comparing injury severities of real victims to physical parameter values measured on the dummies, the quality of the reconstructions is evaluated by experts who use their experience based on the investigation of numerous and various accidents. This paper presents a new tool aiming at better evaluating and validating accident reconstructions. It is based on statistical evaluation of vehicle deformations which gives weighing factors for every part of the car body structure finally leading to a specific Reconstruction Quality Score (RQS indicator). Furthermore, the reliability of this score, depending on the number of measured points, can be established. This tool includes a function aiming at adjusting the speed for a further reconstruction and at defining the launching speed and the pulse shape for complementary sled tests. Finally, the functions of the RQS software and database are presented.
An approach to the standardization of accident and injury registration systems (STAIRS) in Europe
(1998)
STAIRS is a European Commission funded study whose aim is to produce a set of guidelines for a harmonised, crash injury database. The need to evaluate the effectiveness of the forthcoming European Union front and side impact directives has emphasised the need for real world crash injury data-sets that can be representative of the crash population throughout Europe. STAIRS will provide a methodology to achieve this. The ultimate aim of STAIRS is to produce a set of data collection tools which will aid decision making on vehicle crashworthiness as well as providing a means to evaluate the effectiveness of safety regulations. This paper will disseminate the up-to-date findings of the group as they try to harmonise their methods. The stage has been reached where studies into the diverse methods of the UK, French and German systems of crash injury investigation have been undertaken. An assessment has already been made of the relationships between the three current systems in order to define the areas of agreement and divergence. The conclusions reached stated that there were many areas that are already closely related and that the differences were only at the detailed level. With the emphasis on secondary safety and injury causation, core data sets were decided upon, taking into account: vehicle description, collision configuration, structural response of vehicles, restraint and airbag performance, child restraint performance, Euro NCAP, pedestrian and vehicle occupant kinematics, injury description and causation. Each variable was studied objectively, the important elements isolated and developed into a form that all partners were agreeable on. A glossary of terms is being developed as the project progresses which includes ISO standards and other definitions from the associated CAREPLUS project, which addresses the comparability of national data sets. A major consideration of the group was the data collection method to be employed. The strengths and weaknesses of each study were investigated to obtain a clear idea of which aspects offered the best way forward. The quality of this information and transference into a common format, as well as the necessary error checking systems to be employed have just been completed and are described. In tandem with this area of study the problem of the statistical relationship of each sample to the national population is also being investigated. The study proposes a mechanism to use a sample of crash injury data to represent the national and international crash injury problem
While accident statistics on a national level are provided by many countries, there is a need for international data that includes more detailed information about the accident, so called in-depth data. As a consequence, accident data projects have been emerging in different regions of the world. This creates a need for comparable and mergeable data from different countries, enabling the use of already existing accident data resources and helping to expedite the improvement of global road safety. While existing approaches focus that mostly on building a comprehensive accident database from scratch, the iGLAD project (Initiative for the Global Harmonization of Accident Data) attempts a more pragmatic approach by building on top of the work already accomplished in this area and complementing it. The target of iGLAD is to help setting up an additional dataset as a compatibility layer between already existing world wide data sets and integrating the structure of these by defining a common data scheme. This dataset is limited to the common denominator between the existing data sets and is inherently rather small and simple. Eventually, an individual converter for each participating accident investigation group will be built that enables pooling all data sets in a common repository. This not only saves costs and time, and hence makes such a target more feasible, but also creates data that is usable right from the start. This paper gives an overview of the current status of iGLAD and first steps taken. Additionally, some methodological aspects are discussed, next to a glance at other projects working currently on related issues, providing additional input for iGLAD. Finally, an overview of next steps and intended future work is given.
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.
This contribution introduces a number of psychological methods of analysis that are based on the practice-oriented collection of information directly at the site of an accident and that allow for an analysis and coding of the accident causes. Investigation examples and examples of the data combinations with basic medical and technical data are outlined. Objective of the collection is the inter-disciplinary investigation of human factors in the causes of accidents ("human-factor-analysis"). The psychological data are incorporated according to an integrative model for accident causes based on empiric algorithms in the data base of the accident research, where the clustered evaluation potential of comprehensive factors of the accident development can be illustrated. The central theoretical concept for the basic model of the progress of the accident from a psychological point of view comprises psychological indicators for the evaluation of the site of the accident for the analysis of the perception conditions as well as a classification of the gleaned data into the accident progress model according to chronological and local criteria. Perception conditions, action intentions and executions as well as conditions limiting perception and actions are acquired, using a questionnaire for persons involved in an accident, and are also integrated into the data structure concerning weighted feature characteristics as well as combined with other relevant features. Suitable systematization tools for the collection and coding of psychological accident development parameters have to be provided, which require primarily a model image of the corresponding processes from the persons involved in the accident (perceptions, expectations, decisions, actions). The interactive accident model contains components of the models by KÜTING 1990, MC DONALD 1972, SURREY 1969 and RASMUSSEN 1980. Based on the inter-action of the three partial systems "person", "vehicle" and "environment", the first step is the assessment of the situation by the persons involved in the accident. This is dependent on the personal attitudes and motives, on experiences and expectations concerning the progress of the situation. Subsequently, data concerning the manner of the coping with the ambiguous state as well as with the instable state (emergency reaction immediately before the accident occurs) are collected. The factors relating to the persons involved in the accident are gathered on several levels using corresponding questionnaires. The coding of the found and collected characteristics is conducted in a multidimensional evaluation relating to the technical results of the accident reconstruction and of the psychological classification, which are subsequently integrated in coded form into the data base of the accident research. The result of this analysis is a description of the development of the accident depicted on a chronological vector from a perception and decision theoretical perspective. This is explained in detail using exemplary cases.
In der Delegierten Verordnung (EU) 2015/962 (Europäische Kommission, 2015) wird von den Mitgliedsstaaten neben der Einrichtung nationaler Zugangspunkte zu Straßen- und Verkehrsdaten auch die gemeinsame Definition von Datenqualitätsindikatoren und Methoden zur Qualitätsbewertung und -kontrolle der verschiedenen Datenarten gefordert. Ziel dieses Projektes war es daher, ein Qualitätsmanagementsystems (QMS) für die Erfassung und Weiterverarbeitung von Daten für IVS-Dienste zu entwickeln und für die Datenarten Baustelleninformationen und Reisezeitinformationen zu spezifizieren. Dazu wurden - der Stand der Wissenschaft und Technik recherchiert, - Kriterien, Kenngrößen und Verfahren zur Messung der Qualität von Baustellen- und Reisezeitinformationen definiert, - ein organisatorischer Rahmen für ein Qualitätsmanagement erstellt, - ein Prozess zur Zertifizierung von bei Organisationen (i. d. R. Datengebern) eingeführten QMS entwickelt und - ein Leitfaden erstellt, der die Organisationen bei der Einführung und Anwendung eines QMS helfen soll. Durch die Einführung, Anwendung und regelmäßige Prüfung des im Rahmen dieses Projektes entwickelten und im zugehörigen Leitfaden beschriebenen QMS kann seitens der Datengeber ein Großteil der im Rahmen des Projektes identifizierten Probleme erkannt und behoben werden. Wesentliche Maßnahmen sind dabei, - die eindeutige Übertragung der Verantwortung für die Qualität der bereitgestellten Informationen auf die Datengeber, - die Bereitstellung (Finanzierung), regelmäßige Schulung und Motivation von zuständigem Personal mit ausreichendem Zeitbudget, - die bereits begonnene Überarbeitung der DATEX- II-Profile, - die Bereitstellung DATEX-II-Profilkonformer Systeme zur Eingabe und Übertragung der Meldungen und - die Lieferung von Qualitätskenngrößen mit den Informationen.
An eCall device has been mounted on some vehicles in France since 2003. It is an integrated car radio/GSM/GPS system that can be used with a SIM card. When an accident occurs, a call can be sent manually or automatically made to a telephone call centre. Knowing the geographic location, the vehicle identity and the possibility of a direct communication with the people involved enables the nearest emergency services to be called out. In this context, the LAB / CEESAR have set up a study aimed at evaluating the effectiveness of this system. The purpose of this paper is to detail the E-call system evaluation method of effectiveness used and give a global synthesis of the results.
Powered Two Wheelers (PTWs) accidents constitute one of the road safety problems in Europe. PTWs fatalities represent 22% at EU level in 2006, having increased during last years, representing an opposite trend compared to other road users" figures. In order to reduce these figures it is necessary to investigate the accident causation mechanisms from different points of view (e.g.: human factor, vehicle characteristics, influence of the environment, type of accident). SAFERIDER project ("Advanced telematics for enhancing the SAFEty and comfort of motorcycle RIDERs", under the European Commission "7th Framework Program") has investigated PTW accident mechanisms through literature review and statistical analyses of National and In-depth accident databases; detecting and describing all the possible PTW's accident configurations where the implementation of ADAS (Advanced Driver Assistance Systems) and IVIS (In-Vehicle Information Systems) could contribute to avoid an accident or mitigate its severity. DIANA, the Spanish in-depth database developed by CIDAUT, has been analyzed for that purpose. DIANA comprises of accident investigation teams, in close cooperation with police forces, medical services, forensic surgeons, garages and scrap yards. An important innovation is the fact that before injured people arrive to hospitals, photographs and explanations about the possible accident injury mechanisms are sent to the respective hospitals (via 3G GPRS technology). By this, additional information to medical staff can be provided in order to predict in advance possible internal injuries and select the best medical treatment. This methodology is presented in this paper. On the other hand, the main results (corresponding to road, rider and PTW characteristics; pre and post-accident manoeuvres; road layout; rider behaviour; impact points; accident causations;...) from the analyses of the PTW accidents used for SAFERIDER are shown. Only accident types relevant to ADAS and IVIS devices have been considered.