Sonstige
Filtern
Erscheinungsjahr
Dokumenttyp
- Buch (Monographie) (386)
- Konferenzveröffentlichung (151)
- Bericht (15)
- Wissenschaftlicher Artikel (13)
- Arbeitspapier (7)
- Teil eines Buches (Kapitel) (3)
Schlagworte
- Germany (575) (entfernen)
Powered Two Wheeler (Motorcycle) crashes are overrepresented in EU, England, and United States casualty statistics for both fatal and serious injuries. While regional geographic differences are evident for motorcycle size, type, and engine displacement, the casualty statistics consistently indicate significantly higher injury rates for all motorcycle riders when compared to car occupants. Accident analysis and reconstruction of these motorcycle crashes is a necessary process to gain further understanding of potential injury mitigation strategies. This paper focuses on the analysis of the rider post impact trajectory in the immediate moments following a crash. The rider and motorcycle, while loosely coupled by seating position leading up to a crash, quickly decouple as the crash forces develop. As a result, the rider moves relative to the motorcycle and relative to the collision partner. This movement, or trajectory, is primarily influenced by the type and configuration of the impact, the type and configuration of the motorcycle and collision partner, and the speeds involved. Understanding the rider's post impact trajectory will assist in the development of injury mitigation strategies. Both the free flight trajectory of the rider and the rider's trajectory as influenced by interaction with the motorcycle and collision partner are examined. Rider trajectories in full scale crash testing and real world motorcycle crashes are both studied and presented. The resulting physical evidence that can be observed by an accident analyst is discussed. The application of projectile motion physics is analyzed and the necessary input parameters, such as initial launch angle, are studied. This study will assist in understanding the post-impact dynamics of a motorcyclist, and will provide useful information to analysts evaluating real world crashes.
This work describes the results of the experimental activity, illustrating the driving behavior observed in different conditions, relating them to the different methods of ADAS intervention and comparing the driver behavior without ADAS. In the present study, driver behavior was studied in road accidents involving elderly pedestrians, with different ADAS HMIs, as a base to develop a driver model in near missing pedestrian accidents. A literature research was conducted with the aim of finding out the main influencing factors, including environment, boundary conditions, configuration of impact, pedestrian and driver information, when pedestrian fatalities occur and an analysis of frequent road accidents was conducted to get more detailed information about the driver- behavior. In order to obtain more detailed information about pedestrian accidents, real road accidents were reconstructed with multibody simulations on PC-Crash and, by the comparison between literature findings and reconstructions, a generic accident scenario was defined. The generic accident scenario was implemented on the full scale dynamic driving simulator in use at the Laboratory for Safety and Traffic Accident Analysis (LaSIS, University of Florence, Italy) in order to analyse the driving behaviors of volunteers, also considering the influence of ADAS devices. Forty-five young volunteers were enrolled for this study, resulting in forty valid tests on different testing scenarios. Two different scenarios consisted in driving with or without ADAS in the vehicle. Different kinds of ADAS, acoustic and optical, with different time of intervention were tested in order to study the different reactions of the driver. The tests showed some interesting differences between driver's behavior when approaching the critical situation. Drivers with ADAS reacted earlier, but more slowly, depending also on the type of alarm, and often with double reaction when braking. In fact, the results of the activity showed that with ADAS intervention the time to collision (TTC) increases, but the reaction time and braking modality change: a) there is a sort of "latency" time between the accelerator pedal release and the brake pressure; b) the brake pressure is initially less intense. So the driver only partially takes advance from the TTC increase. These differences were valued not only qualitatively, but quantitatively as well. This work revealed to be useful to improve the knowledge of drivers" behavior, in order to realize a driver model that can be implemented to help attaining and assessing higher levels of automation through new technology.
Neben Ermüdungsschäden an orthotropen Fahrbahnplatten sind bei Stahlbrücken auch Schäden an nicht direkt befahrenen Konstruktionsteilen der Quersysteme (Kategorie-3-Schäden) festgestellt worden. Das stetig steigende Verkehrsaufkommen führt zu einer Verschärfung des Problems, so dass die Dauerhaftigkeit betroffener Brückenkonstruktionen auch durch diese Schäden gefährdet wird. Anhand ausgewählter Beispiele aus der Literatur und Praxis der Straßenbauverwaltungen werden Kategorie-3-Schäden systematisch untersucht. Die Erfahrungen werden zusammengestellt, ausgewertet und typisiert. Die wesentlichen Ursachen sind Überbeanspruchungen, ermüdungsanfällige Konstruktionsweisen, mangelnde Ausführungsqualität und Modellierungsfehler bei den Berechnungen. Eine Verknüpfung typischer Schadensbilder mit allgemeinen Ursachen ist in gewissem Umfang möglich, so dass der Bericht eine erste Hilfestellung bei der Behandlung von Kategorie-3-Schäden sein kann. Weiterhin werden ausgeführte und weitere Instandsetzungs- und Ertüchtigungsvarianten an stählernen Balkenbrücken mit Hohlkasten- und offenem Querschnitt in allgemeiner Form mit numerischen FE Berechnungen untersucht, um Vor- und Nachteil herauszustellen. Es zeigt sich, dass eine möglichst gleichmäßige Steifigkeitsverteilung im Aussteifungssystem anzustreben ist. Aber auch mit verkehrsleitenden Maßnahmen wie eine Verlegung der Fahrstreifen ohne Eingriff in das Tragwerk lassen sich die kritischen Beanspruchungen u.U. deutlich reduzieren. Ein besonderes Augenmerk wird in diesem Bericht auf die Bauwerkserhaltungsmaßnahme, vollständig auf aussteifende Verbände zu verzichten, gelegt. Der Formerhalt des Brückenquerschnitts wird dabei ausschließlich über die Rahmenwirkung der Quersysteme realisiert. Umfangreiche numerische Untersuchungen beleuchten die Spannungsänderungen der kritischen Details, aber auch mögliche Umlagerungen im gesamten Tragwerk durch die Änderung des Aussteifungssystems. Weiterhin werden auch experimentelle Untersuchungen angestellt, um die Wirksamkeit und Effizienz dieser Variante zu bewerten. Schließlich werden die untersuchten Ertüchtigungs- und Instandsetzungsvarianten bewertet und es werden allgemeine Empfehlungen zur Behandlung von Kategorie-3-Schäden gegeben.
Rear-end collisions are the most frequent same and opposite-direction crashes. Common causes include momentary inattention, inadequate speed or inadequate distance. While most rear-end collisions in urban traffic only result in vehicle damage or slight injuries, rear-end collisions outside built-up areas or on motorways usually cause fatal or serious injuries. Driver assistance systems that detect dangerous situations in the longitudinal vehicle direction are therefore an essential safety plus. In view of this, for ADAC, systems that alert drivers to dangerous situations and initiate autonomous braking complement ESC as one of the most important active safety features in modern vehicles. The aim of ADAC is to provide consumers with technical advice and competent information about the systems available on the market. Reliable comparative tests that are based on standardised test criteria may provide motorists with important information and help them make a buying decision. In addition, they raise consumer awareness of the systems and speed up their market penetration. The assessment must focus on as many aspects of effectiveness as possible and include not only autonomous braking but also collision warning and autonomous brake assist. The work of the ADAC accident research is the development of the testing scenarios with direct link to accident situations and the identification of useful test criteria for testing.
For more than a decade, ADAC accident researchers have analysed road accidents with severe injuries, recording some 20,000 accidents. An important task in accident research is to determine the causative factors of road accidents. Apart from vehicle engineering and human factors, accident research also focuses on infrastructural and environmental aspects. To find out what accident scenarios are the most common in ADAC accident research and what driver assistance systems can prevent them, our first task was to conduct a detailed accident analysis. Using CarMaker, we performed a realistic simulation of accident scenarios, including crashes, with varying parameters. To begin with, we made an initial selection of driver assistance systems in order to determine those with the greatest accident prevention potential. One important finding of this study is that the safety potential of the individual driver assistance systems can actually be examined. It also turned out that active safety offers even much more potential for development and innovation than passive safety. At the same time, testing becomes more demanding, too, as new systems keep entering the market, many of them differing in functional details. ADAC will continue to test all driver assistance systems as realistically as possible so as to be able to provide advice to car buyers. Therefore, it will be essential to develop and improve test conditions and criteria.
The GIDAS-investigation team of Dresden (VUFO) has documented more than 11.500 accidents since 1999. The documentation of the accident includes beside vehicle-, injury- and environmental-data very detailed reconstruction data. Within this accident investigation the VUFO began to record the skid resistance of the accident site in 2009. The measurements are divided in macro- and microroughness (Sand depth method and Portable Skid Resistance Tester-SRT-by Munro-Stanley London-©). Both methods are used to determine the skid resistance for more than 1000 passenger cars. The aim of the present study is to find out a relationship between the measured skid resistance, the road conditions and the friction coefficient, which is used to calculate the maximum accelerations and decelerations during a reconstruction of an accident. Basic approach to convert the SRT-value into the friction coefficient is the calculation of the theoretical absorbed energy of the spring rubber system of the swinging arm of lever. This absorbed energy is used to get the friction coefficient by using the equations for the work of friction. To consider the road-behavior, in correlation to the friction coefficient, the results will be merged with existing literature. Last step for this study will be a comparison between actual used friction coefficients all over the GIDAS-database and the theoretical results. The study shows, if it is possible to use the SRT-Measurement for the estimation of a friction coefficient for the reconstruction of a traffic accident. As expected, the GIDAS-Database and the additional measurement of the roughness of the road directly on the spot are an enormous useful dataset.
The Traffic Accident Research Institute at University of Technology Dresden investigates about 1,000 accidents annually in the area around and in Dresden. These datasets have been summarized and evaluated in the GIDAS (German Accident In-Depth Study) project for 13 years. During the project it became apparent that the specific traffic situation of a covert exit of a passenger car and an intersecting two-wheeler involves a high risk potential. This critical situation develops in a large part due to the lack of visibility between the driver and the intersecting bike. In this paper the accident avoidance potential of front camera systems with lateral field of view, which allows the driver to have an indirect sight into the crossing street area will be presented.
Im Rahmen des 12-monatigen Forschungsprogramms "Intelligente Straßenverkehrsinfrastruktur durch 3D-Modelle und RFID-Tags", aufgesetzt von der Bundesanstalt für Straßenwesen, entwickelte die HOCHTIEF Solutions AG ein Konzept für ein Infrastruktur-Informationssystem. Ziel dieses Forschungsvorhabens war es, das bestehende System der öffentlichen Anstalt für den Betrieb und Erhalt von Brückenbauwerken, sowie die dazugehörigen Workflows mithilfe neuer Technologien zu optimieren. Das entwickelte Konzept für ein Infrastrukturinformationssystem ISIS, kurz für Intelligente StraßenverkehrsInfraStruktur, wurde als eine Schale um die bereits vorhandene Straßeninformationsbank-Bauwerke (SIB-BW) herum konzipiert. Alle Prozesse und Datenflüsse, die rund um diese Datenbank bestehen, bleiben damit unverändert. Zusätzliche Informationen und Dokumente, die an die vorhandenen Datensätze angefügt werden sollen, werden in dem neuen System abgelegt und mit dem Bestandsdatensatz verknüpft. Ziele: - Informationsbereitstellung optimieren, - 3D unterstützte Dokumentation des Bauwerksprüfprozesses, - Anlehnung an bestehende Prozesse, - Einbindung mobiler Endgeräte und Zustandssensoren. ISIS gründet sich auf folgende Komponenten: - Bauwerksmodelle: -- 2D-Platzhalter für Bestandsbauten, -- 3D-Modelle für Neubauten, - mobile Schadensaufnahme via mobiler Endgeräte, - Frühwarnsysteme auf Basis von RFID-Technologie (Feuchtigkeit und Korrosion), - 3D-Pins für die Markierung relevanter Punkte (RFID-Detektoren, Schäden, etc.), - Hardware mit hoher Verfügbarkeit und Akzeptanz (iPads). Um allen Beteiligten den Zugriff zu dem Informationssystem zu ermöglichen, wird das System zur Ausführung auf einer Online-Plattform konzipiert. Alle relevanten Informationen eines Straßenverkehrsinfrastrukturprojektes können in konsolidierter Form bereitgestellt werden. Die bisher dezentrale und inkompatible Datenhaltung in mehreren Teilsystemen wird unterbunden und eine einfache und durchgängige Nutzung des Datenbestandes in Planung, Bau und Betrieb wird ermöglicht. Um den Prozess der Bauwerksprüfung effizienter zu gestalten, sollen Informationen zum Bauwerkszustand mithilfe der 3D-Pin-Markierung und dem Einsatz von Radiofrequenz-Technologie (RFID) regelmäßig überprüft werden, um Bauwerksschäden frühzeitig erkennen zu können.
This paper will outline ETSC's contribution to the European Union's road safety policy 2011-2020. It will present some of the main recommendations from ETSC's Blueprint for the 4th Road Safety Action Programme and will introduce the response to the European Commission's Road Safety Policy Orientations 2011-2020 (published July 2010). The second framework document presented is the Transport White Paper (published March 2011). The paper will focus on new targets and the new vision set for Europe's Road Safety policy picking out some issues in particular such as traffic law enforcement and the protection of vulnerable road users. It will argue that by reinforcing the current Road Safety Policy Orientations, the EU will be better placed to reach its new ambitious goal of halving road deaths by 2020 and the longer term zero casualty vision.
The Decision Support System (DSS) is one of the key objectives of the European co-funded research project SafetyCube in order to better support evidence-based policy making. Results will be assembled in the form of a DSS that will present for each suggested road safety measure: details of risk factor tackled, measure, best estimate of casualty reduction effectiveness, cost-benefit evaluation and analytic background. The development of the DSS presents a great potential to further support decision making at local, regional, national and international level, aiming to fill in the current gap of comparable measures effectiveness evaluation. In order to provide policy-makers and industry with comprehensive and well-structured information about measures, it is essential that a systems approach is used to ensure the links between risk factors and all relevant safety measures are made fully visible. The DSS is intended to become a major source of information for industry, policy-makers and the wider road safety community.