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.
In den vergangenen Jahrzehnten sind einige Untersuchungsstrecken mit dem Ziel angelegt worden, verschiedene Bauweisen bei gleichen Belastungs- und Umweltbedingungen in einem direkten Vergleich bezüglich ihrer Gleichwertigkeit zu beurteilen und/oder das Verhalten von Bauweisen bei unterschiedlichen Belastungs- und Umweltbedingungen langfristig zu beobachten. Die Untersuchungen an diesen Untersuchungsstrecken dauerten einige Monate bis zu mehreren Jahren. Ziel dieser Arbeit war es, die aus den seinerzeitigen Untersuchungsergebnissen der Untersuchungsstrecken mit zum Teil jahrzehntelanger Liegedauer gezogenen bemessungsrelevanten Schlussfolgerungen zu überprüfen. Ein wesentliches Kriterium für die Auswahl von zehn Untersuchungsstrecken waren der vorhandene Datenumfang und dessen Aufbereitungsgrad. Bei einer Anzahl von zehn Strecken sind die Variationsmöglichkeiten der einzelnen oben genannten Parameter nur gering. Im Zuge der Bearbeitung des Forschungsvorhabens durch elf Forschungseinrichtungen beziehungsweise Einzelpersonen wurden für die Untersuchungsstrecken örtliche Verhältnisse, Verkehrsdaten, Wetterdaten, Schicht- und Materialdaten, Bauklassen, Einsenkungen, Deflexionen, Krümmungen, Ebenheit im Längs- und Querprofil, Fahrbahnoberflächenzustand, Zustand der seitlichen Entwässerungseinrichtungen und Erhaltungsmaßnahmen ermittelt, ausgewertet und in Teilberichten dokumentiert. Die erhobenen Daten wurden in die Datenbank der Bundesanstalt für Straßenwesen (BASt) eingespeist und stehen somit allen potentiellen Nutzern zur Verfügung. Die vorhandenen und 1992 bis 1995 erhobenen Daten wurden zur Auswertung miteinander verknüpft. Teilweise wurden Abhängigkeiten nachgewiesen und teilweise, aufgrund der geringen Streckenanzahl, nur tendentielle oder vermutete Abhängigkeiten aufgezeigt.
In order to enable foreseeing or comparing the benefit of safety systems or driver assistance systems in Germany, in the United States and in Japan, the traffic accident databases in those three countries are examined. The variables used are culpable party, collision partner, accident type, and injury level and the method to re-classify the databases for comparison are proposed. The result indicates that single passenger car fatality is the most frequent in Germany and in the United States, while passenger car vs. pedestrian is the most frequent fatality scenario in Japan. When the casualty by fatality ratio is focused, the greatest difference is observed in rear-end collisions. The ratio of slight injuries in Japan yields about eighteen times as many as those in Germany, and about eight times as many as those in the United States.
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.
In der zukünftig vorgesehenen Systematik der Straßenerhaltung werden zur routinemäßigen Beobachtung und Beurteilung des Ebenheitszustandes auf unterschiedlichen Entscheidungsebenen geeignete Systeme zur Messung von Fahrbahnunebenheiten benötigt. Um die aus den Messungen resultierenden Ergebnisse vergleichbar zu machen, müssen Verfahren zur Beschreibung beziehungsweise Bewertung von Unebenheiten zur Verfügung stehen, die sich einheitlicher Entscheidungsgrundlagen bedienen und deren Ergebnisse dazu ineinander überführbar sind. Der Teil 1 der Gesamtaufgabe beschäftigt sich mit der Sammlung einer repräsentativen Anzahl von Zustandswerten für das Fahrbahnoberflächenprofil in Längsrichtung und mit dem Vergleich von Mess- und Beschreibungsverfahren für Unebenheiten des Längs- beziehungsweise des Querprofils. Im Teil 2 werden die theoretischen Grundlagen zur Beurteilung der Mess- und Beschreibungsverfahren gelegt, wobei die Betrachtung auf die Messung der Ebenheit im Längsprofil beschränkt werden sollte. Die theoretischen Untersuchungen ergaben, dass allein die folgenden Geräte sich zur Messung der Ebenheit im Längsprofil eignen: Analyseur Dynamique de Profil en Long (APL), Automatic Road Analyzer (ARAN) und High Speed-Road Monitor (HPM). Alle drei Geräte messen das Straßenlängsprofil und eignen sich zur Ermittlung der Spektralen Dichte der Profilhöhen Omega(Index 0 hoch 1), die zur Zeit die einzige Beschreibungsgröße ist, die die Längsebenheit charakterisieren kann. Um die gemessenen Spektralen Dichten bewerten zu können, wurde eine Bewertungsgröße für die Längsebenheit, der Spektrale Ebenheits-Index (SEI) entwickelt, mit dessen Hilfe auch die in Teil 1 gesammelten Ebenheitsdaten von 180 km bundesdeutschen Straßen zu einem ersten Bewertungshintergrund ausgewertet werden konnten. Mit der Einführung der Spektralen Dichte Phi(Index h)Omega als Beschreibungs- und der Schaffung des SEI als Bewertungsgröße für die Ebenheit ist die Voraussetzung für eine sachgerechte und aussagekräftige Charakterisierung für die Allgemeinunebenheit im Längsprofil gegeben. Darüber hinaus stehen repräsentative Zustandswerte der Ebenheit aus dem aktuellen Straßennetz der Bundesrepublik Deutschland zur Verfügung.
In Germany averagely two million traffic accidents happen each year and emergency medical services are called to more than 400 000 patients. Even though this number is decreasing continuously (due to improvements in the fields of vehicle safety, road construction, and accident prevention) every case is yet a challenge for the rescuers and requires improvements in emergency medicine as well. Especially during diagnostics right at the accident scene, there are only limited instruments available to gain the necessary knowledge of the injuries suffered, to come to essential decisions about treatment or transport. To provide an additional diagnostic aid by scouting and estimating the situation, a software-tool calculating the likeliness of the most frequent severe injuries (AIS 3-6) of front occupants in passenger cars has been developed to deliver this necessary information about particular accident scenarios. To achieve this, logistic likelihood functions have been calculated in a multivariate regression analysis analysing all AIS 3+ injuries in the GIDAS database of the years 1999-2006 that happened more than four times
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.
Impact severity is a fundamental measure for all in-depth crash investigation projects. One methodology used in the UK is based on the US Calspan software package CRASH3. The UK- in-depth crash investigation studies routinely use AiDamage3 a software package which is based on an updated version of the original CRASH3 algorithm, including enhancements to the vehicle stiffness coefficients. Real world accident-damaged vehicles are measured and their crush is correlated with a library of stiffness coefficients. These measurements are then used, along with other parameters, to calculate the crash energy and equivalent changes of velocity of the vehicles (delta-v), which is a measure of the impact severity. UK in-depth accident studies routinely validate the crash severity methodologies applied as the vehicle fleet changes. This is achieved by analysing crash test data and using the appropriate residual crush damage and other inputs to AiDamage3 and checking the program- outputs with the known crash severity parameters. This procedure checks, at least in part, the default stiffness values in the data libraries and the reconstruction methods used.
The role of a national motor vehicle crash causation study-style data set in rollover data analysis
(2010)
On 1 January 2005, The National Highway Traffic Safety Administration, an agency of the United States Department of Transportation, implemented a new data collection strategy designed to assess crash avoidance technologies and report associated behavioral inputs and outcomes. The original goal was a six-year program, however, during the shortened data collection period; it proved a valuable resource for understanding a precrash environment previously obscured by forensic case investigation. Another unintended consequence was an overlap with infrastructure, roadway geometry, and design with the occupant and vehicle outcomes, by virtue of well-defined attributes. External to the collected data, supplementary information was extrapolated, by using manuals published in the United States, by the American Association of State Highway Transportation Officials and selected State Departments of Transportation, in conjunction with the National Motor Vehicle Crash Causation Study (NMVCCS). This provided a backdrop to the infrastructure framework of the rollover problem within which the occupant and vehicle outcomes were studied. If a NMVCCS-style data collection were to be implemented elsewhere, then complementary manuals produced by federal transportation officials might be consulted producing similar relationships. The current study uses NMVCCS data to describe vehicles travelling through diverse design geometries and the outcome for occupants involved in crashes within that system. Codified and extrapolated data form the basis for assessing NMVCCS and its value to the transportation safety community, as the protocols are applicable universally. The benefit in continuing a NMVCCS-style study is noted, as the interaction of roadway infrastructure and occupant protection agencies might find paths to better work together in solving the complex rollover problem using a common data-driven approach.
A set of recommendations for pan-European transparent and independent road accident investigations has been developed by the SafetyNet project. The aim of these recommendations is to pave the way for future EU scale accident investigation activities by setting out the necessary steps for establishing safety oriented road accident investigations in Member States. This can be seen as the start of the process for establishing road accident investigations throughout Europe which operate according to a common methodology. The recommendations propose a European Safety Oriented Road Accident Investigation Programme which sets out the procedures that need to be put in place to investigate a sample of every day road accidents. They address four sets of issues; institutional addressing the characteristics of the programme; operational describing the conditions under which data isrncollected; data storage and protection; and reports, countermeasures and the dissemination of data.rn