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In Deutschland existieren bereits seit Jahren viele leistungsfähige Telematiksysteme und Referenzarchitekturen für Teilbereiche, z. B. TLS (BASt, 2002) und MARZ (BASt, 1999) zum Aufbau von Verkehrsbeeinflussungsanlagen an Bundesfernstraßen. Die Entwicklungen solcher Systeme in Deutschland gehen bis in die 1990er Jahre und davor zurück. Zum Teil wurden diese Ansätze auch von anderen Ländern übernommen und sind dort erfolgreich implementiert. Bislang fehlt aber in Deutschland ein nationaler Orientierungsrahmen für den Aufbau und die Vernetzung von Telematiksystemen, sodass viele Implementierungen als unvernetzte Insellösungen betrieben werden und mögliche Synergien ungenutzt bleiben. Die Vorteile einer übergreifenden ITS-Architektur wurden bereits durch zahlreiche Arbeiten seit den frühen 1990er Jahren belegt und sind heute unstrittig. In anderen Ländern liegen solche nationalen Orientierungsrahmen bereits seit Jahren vor. Die USA hat als erstes Land im Jahr 1996 eine nationale ITS-Architektur (NITSA) veröffentlicht, die bis heute bereits zur sechsten Version fortgeschrieben wurde. Im Rahmen dieser Entwicklungen wurde ein ganzes Netz an Zuständigkeiten und Organisationseinheiten eingerichtet, um eine effiziente und nachhaltige Nutzung der NITSA zu gewährleisten. Auch rechtliche Maßnahmen wurden ergriffen, um eine Verbindlichkeit für die Anwendung der ITS-Architektur in Teilen zu erreichen und deren Verbreitung zu sichern. Viele andere Länder ausserhalb und innerhalb Europas besitzen ebenfalls seit Jahren eigene nationale ITS-Architekturen. Auf europäischer Ebene gibt es bereits seit den frühen 1990er Jahren Forschungsprojekte zu einer europaweit harmonisierten ITS-Architektur. Mit KAREN wurde im Jahr 2000 die erste Version einer europäischen ITS-Rahmenarchitektur veröffentlicht. In den FRAME-Projekten, bis hin zum aktuellen Projekt E-FRAME, wurde und wird diese ITS-Architektur fortgeschrieben. In der europäischen Verkehrspolitik spielt die Telematik eine wesentliche Rolle. Mit dem Aktionsplan zur Einführung von ITS in Europa (KOM(2008) 886) oder dem Richtlinienvorschlag zur Festlegung eines Rahmens für die Einführung von ITS im Straßenverkehr (KOM(2008) 887) sind gezielte Maßnahmen, auch im Hinblick auf eine europäische ITS-Architektur, in Vorbereitung. Deutschland nimmt im Angesicht dieser Entwicklungen eine Sonderrolle ein, weil hier noch kein Orientierungsrahmen zum Aufbau einer nationalen ITS-Architektur geschaffen wurde. Dass solch ein Orientierungsrahmen anzustreben ist, wird von allen beteiligten Interessengruppen aus dem Bereich ITS gleichermaßen vertreten. Im Rahmen dieses Forschungsprojekts wurde ein Workshop durchgeführt, der dies deutlich bestätigte. Das wesentliche Ziel dieses Forschungsprojekts bestand darin, aus den Entwicklungsprozessen und Erfahrungen in anderen Ländern und den bisherigen Erfahrungen im Inland Empfehlungen für den Aufbau einer nationalen ITS-Architektur in Deutschland abzuleiten. Dazu wurden zunächst im Rahmen einer Strukturierung Begriffsbestimmungen vorgenommen und ein Beschreibungs- und Bewertungsschema für die Analyse von ITS-Architekturen entwickelt. Ein Workshop wurde durchgeführt, um einen Eindruck über die Standpunkte der beteiligten Interessengruppen zu gewinnen und festzustellen, wie der Prozess für die Entwicklung einer nationalen ITS-Architektur in Deutschland begonnen werden könnte. Im Anschluss an diese Arbeiten wurden zum einen eine Auswahl von Beispielen für ITS-Architekturen in Deutschland und zum anderen nationale ITS-Architekturen weltweit analysiert. Aus den Analysen wurden Handlungsempfehlungen für die Entwicklung einer ITS-Architektur für Deutschland abgeleitet. Diese Empfehlungen beziehen sich zum einen auf den gesamten Prozess zur Erstellung und Fortschreibung einer nationalen ITS-Architektur und zum anderen auf die Inhalte der zu erarbeiteten Dokumente wie des nationalen ITS-Leitbilds und des nationalen ITS-Rahmenplans, der Rahmenarchitektur und der Referenzarchitekturen. Als Ergebnis dieses Forschungsprojekts wurden 40 Empfehlungen für den Aufbau einer nationalen ITS-Architektur in Deutschland formuliert.
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
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.
The Powered Two Wheelers (PTWs) accidents constitute one of the road safety targets in Europe. PTWs users' fatalities represent 15% of EU road fatalities, having increased the last few years, which is quite opposite than other road users casualties. To reduce PTW accidents is necessary to know which the accident causations are from different points of view (human factor, vehicle characteristics, environment, type of accident, situation, etc.). In TRACE project ("Traffic Accident Causation in Europe", under the European Commission 6th Framework Program, 2006-2008,) a specific task was focused on PTW users point of view, analyzing extensive databases to locate the main accident configurations (type of accident, severity, frequency), and an in-depth database to obtain the causation factors, the risk factors for each configuration founded in the extensive databases analysis and the variables associated to each causation factor in the PTW configurations.
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 an on-going project since 2005, ADAC has been analyzing accidents documented by the ADAC air rescue service. The knowledge derived from real-life accidents serves as a basis for new test configurations and assessment criteria. In 2007, ADAC began looking into the feasibility of international data collection. The idea of Global Accident Prevention was born. Three European partner clubs have begun pioneering the project (ÖAMTC, ANWB, and RACC). The aim is to set up an international accident research network to provide a steady stream of information on road accidents. The FIA Foundation supports ADAC in developing and coordinating this initiative.
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.
Road safety is a major preoccupation of the European Commission and the road transport industry and depends on numerous significant factors. In order to improve road safety and to plan effective safety improvement actions for truck transport, we must first identify the problems to be addressed, i.e. what are the main causes of truck accidents. The ETAC project, initiated by the European Commission and the IRU, was launched in order to set up a heavy goods vehicle accident causation study across European countries to identify future actions which could contribute to the improvement of road safety. The results will be based on a detailed analysis of truck accident data collected in seven European countries according to a common methodology which has been elaborated through numerous national and European projects. This paper describes the common methodology used to collect the information on the scene of the accident and to analyse the data so that the reconstruction of the crash events may be carried out. CEESAR proposes a methodology using its experience gained from over 10 years of accident data collection. This methodology is based on an in-depth investigation of the parameters involved in-an accident and linked to the driver, the vehicle, the road and their environment. In-depth investigation requires accident investigator presence on the scene of the accident in order to collect volatile information such as marks on the road, weather conditions, visibility, state and equipment of the vehicle, driver interview. Later, passive and active information is gathered, either at the hospital for the driver, at the garage for the vehicle or on the spot for the road geometry. A reconstruction carried out with the help of specific software and the analysis of the data collected and calculated enables the identification of the main causes of the accident and the future actions to plan in order to improve road safety as regards truck traffic.
Motorcycle riders are one of the most vulnerable road users. Annually, on estimate 6000 people are killed in motorcycle accidents in the former 15 EU countries. The objective of this research was to investigate and analyze the main aspects and causes of this vulnerability and the accidents in general. For this aim around 70 accidents in The Netherlands were investigated in the framework of an international research program (MAIDS). Also a control group of motorcycles with riders was investigated so that exposure could be taken into account. An important result is that human failure is in 82% of the cases the main cause of the accident, in 52% this is due the other vehicle driver. Perception and decision failures are the most common failures. The most injuries are caused by the environment but they are typically only less severe (AIS1). Injuries caused by the car (front and side) are typically severe injuries (AIS4+). Previous convictions of the MC rider seem to be related to the chance to get involved in an accident. It was shown that the Dutch and the total MAIDS accident sample are comparable.