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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.
Empirical vehicle crashworthiness studies are usually based on national or in-depth traffic accident surveys: Data on accident-involved cars/drivers are analysed in order to quantify the chance of driver injury and to assess certain risk factors like car make and model. As the cars/drivers involved in the same accident form a "cluster", where the size of the cluster equals the number of accident-involved parties, traffic accident survey data are typical multi-level data with accidents as first-level or primary and cars/drivers as secondlevel or secondary units (car occupants in general are to be considered as third level units). Consequently, appropriate statistical multi-level models are to be used for driver injury risk estimation purposes as these models properly account for the cluster structure of traffic accident survey data. In recent years various types of regression models for clustered data have been developed in the statistical sciences. This paper presents multi-level statistical models, which are generally applicable for vehicle crashworthiness assessment in the sense that data on single and multiple car crashes can be analysed simultaneously. As a special case of multi-level modelling driver injury risk estimation based on paired-by-collision car/driver data is considered. It is demonstrated that assessment results may be seriously biased, if the cluster structure inherent in traffic accident survey data is erroneously ignored in the data analysis stage.
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-®.
A means of assessing the passive safety of automobiles is a desirable instrument for legislative bodies, the automobile industry, and the consumer. As opposed to the dominating motor vehicle assessment criteria, such as engine power, spaciousness, aerodynamics and consumption, there are no clear and generally accepted criteria for assessing the passive safety of cars. The proposed method of assessment combines the results of experimental safety tests, carried out according to existing legally prescribed or currently discussed testing conditions, and a biomechanical validation of the loading values determined in the test. This evaluation is carried out with the aid of risk functions which are specified for individual parts of the body by correlating the results of accident analysis with those obtained by computer simulation. The degree of conformance to the respective protection criterion thus deduced is then weighted with factors which take into account the frequency of occurrence and the severity of the accident on the basis of resulting costs. Each of the test series includes at least two frontal and one lateral crash test against a deformable barrier. The computer-aided analysis and evaluation of the simulation results enables a vehicle-specific overall safety index as well as partial and individual safety values to be determined and plotted graphically. The passive safety provided by the respective vehicle under test can be defined for specific seating positions, special types of accident, or for individual endangered parts of the body.
Die Erkennung von Sicherheitsdefiziten im Straßennetz erfolgt zurzeit im Wesentlichen im Rahmen der örtlichen Unfalluntersuchungen. Dabei werden überwiegend punktuelle Unfallhäufungen identifiziert und analysiert. Für die Analyse von Straßennetzen wurden mit den "Empfehlungen für die Sicherheitsanalyse von Straßennetzen (ESN)" Verfahren vorgestellt, die für eine netzweite Analyse von Straßen geeignet sind und die Identifikation von Sicherheitsdefiziten in einem größeren Maßstab ermöglichen. Im Rahmen des vorliegenden Projektes wurde eine pilothafte Anwendung der Verfahren nach ESN für das Straßennetz des überörtlichen Verkehrs in Rheinland-Pfalz vorgenommen. Der Fokus der Untersuchung lag auf der Frage, ob und in welchem Umfang mit einer weitestgehend automatisierten Vorgehensweise sowie unter Verwendung der digital verfügbaren Daten eine sinnvolle Anwendung der ESN möglich ist. Die in den Straßendatenbanken geführten Abschnitte erweisen sich jedoch für die Zielsetzung der ESN als zu feingliedrig. Daher wurden vertiefende Untersuchungen zur Abschnittsbildung durchgeführt. Dabei wurden fünf Varianten der Abschnittsbildung betrachtet. Ergänzend zur Abschnittsbildung nach ESN mit mindestens 4 U(SP) pro Abschnitt wurde zusätzlich die zeitliche und räumliche Verteilung der U(P) untersucht. Bei ihrer Verwendung sind insgesamt stabilere Ergebnisse zu erwarten. Der Vergleich der sicherheitspotenziale bei einer Abschnittsbildung nach Netzstruktur mit den Unfallkostenraten von Unfallhäufungslinien zeigt in vielen Fällen Überschneidungen. aufgrund der stabileren Ergebnisse eines längeren Untersuchungszeitraums (1999 bis 2004) wird eine Verlängerung des von den ESN vorgesehenen Untersuchungszeitraums empfohlen. Es ist festzuhalten, dass die ESN-Verfahren eine Vorauswahl von auffälligen Streckenabschnitten liefern, deren Verbesserung zu einer deutlichen Steigerung der Verkehrssicherheit führen könnte. Inwiefern die ermittelten Sicherheitspotenziale tatsächlich durch geeignete Maßnahmen ausgeschöpft werden können, muss durch eine Detailanalyse geprüft werden.
One of the major problems of road safety in Europe is the powered two wheelers accidents. One of the European countries with one of the highest rates is Portugal where in 2006, mopeds and motorcycles fatalities represented 27% of all road users deaths. In this work, a deep analysis and overview of the current state of mopeds and motorcycles accidents for the 2004-2006 period is presented. Within this period 830 PTW occupants die, 2958 have been severely injured and 25000 suffer slight injuries. A detailed analysis of the conditions of these accidents has been carried out, using the data of the national accident database. This analysis provides global information, about geographic environmental conditions, driver- characteristics among others. From this data detailed information is obtained allowing to know when, where and who. In order to answer the question why more a widely collection of data has been collect for 70 accidents. The data has been collected using OECD methodology. For these accidents a detailed reconstruction has been carried out, what is especially important for fatal accidents where for instance speed in an important factor. From these collection and analysis of data a wider overview of facts and measures are extracted. Among them, some are emphasized such as that the quality and non-use of helmets plays an important role in severe and fatal accidents especially for accidents involving moped vehicles, or speed is the most important factor in fatal accidents involving motorcycles. Concerning motorcycle accident reconstruction, different tools can be used depending of the accident scenario and complexity. For simple cases, with specific characteristics, analytical formulation based in vehicle crash dynamics can be use in order to determine the impact speed of the vehicles impact, analysing the skid marks, deformations, victims rest position and considering parameters (EES, vehicle deceleration, etc). Aspects such as the energy absorption capability of motorcycles are also discussed. In the general cases the accident reconstruction software Pc-Crash has been used for the reconstruction of the accident. In very complex cases, has for instance the impact between motorcyclist and barriers, Madymo software is used especially to determine speed from injuries. An example of the impact of a motorcyclist and a motorcyclist-friendly barrier is present to illustrate the benefits and limitations of such systems.
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.
Ziel des Forschungsvorhabens war es zu untersuchen, ob in verschiedenen Prüfstellen mit dem Walzsektor-Verdichtungsgerät hergestellte Asphalt-Probeplatten gleiche Eigenschaften aufweisen, damit z.B. verträgliche Ergebnisse für Performance-Prüfungen ermittelt werden können. Dazu wurde in 12 Prüfstellen ein Verfahrens-Audit durchgeführt, um eine einheitliche Vorgehensweise bei der Herstellung dieser Platten zu gewährleisten. Anschließend wurden aus verschiedenen Asphaltvarianten WSV-Platten hergestellt und an daraus gewonnenen Probekörpern umfangreiche Performance-Prüfungen durchgeführt. Die ermittelten Ergebnisse zeigen, dass es möglich ist WSV-Platten mit verträglicher Raumdichte in unterschiedlichen WSV-Geräten sowie verschiedenen Prüfstellen herzustellen. Die Ergebnisse der Spurbildungs-, Druck-Schwell- und Zugversuche haben gezeigt, dass die WSV-Platten trotz ähnlicher Raumdichten nicht zwangsläufig verträgliche Ergebnisse im Versuch aufweisen und sich daher in verschiedenen Prüfstellen keine vergleichbaren Ergebnisse für diese Versuche ermitteln lassen. Lediglich bei den Abkühl- und Spaltzug-Schwellversuchen konnten verträgliche Ergebnisse erzielt werden. Für keine der ermittelten Kenngrößen der Performance-Prüfungen ließen sich Zusammenhänge mit der Raumdichte ermitteln. Somit lässt sich die Größe der Ergebnisse bei den Versuchen nicht auf unterschiedliche Größen der Raumdichten der Probekörper zurückführen. Da sich trotz geringer Unterschiede in den Raumdichten nur in ausgewählten Performance-Untersuchungen Unterschiede zeigen, ist davon auszugehen, dass die Streuungen in den Performance-Untersuchungen vornehmlich auf die Sensitivität dieser Versuche zurückzuführen sind. Das Verfahren zur Herstellung von Probekörpern für Performance-Prüfungen aus WSV-Platten scheint aufgrund der Gesamtheit der ermittelten Kenngrößen (Raumdichte, etc.), deren Aussehen, den Erkenntnissen aus dem Verfahrensaudit sowie der Performance-Prüfungen das richtige Verfahren zu sein.
Proposal for a test procedure of assistance systems regarding preventive pedestrian protection
(2011)
This paper is showing a proposal for a test procedure regarding preventive pedestrian protection based on accident analysis. Over the past years pedestrian protection has become an increasing importance also during the development phase of new vehicles. After a phase of focusing on secondary safety, there are current activities to detect a possible collision by assistance systems. Such systems have the task to inform the driver and/or automatically activate the brakes. How practical is such a system? In which kind of traffic situations will it work? How is it possible to check the effectiveness of such a system? To test the effectiveness, currently there are no generally approved identifiable procedures. It is reasonable that such a test should be based on real accidents. The test procedure should be designed to test all systems, independent of the system- working principle. The vFSS group (advanced Forward-looking Safety Systems) was founded to develop a proposal for a technology independent test procedure, which reflects the real accident situation. This contribution is showing the results of vFSS. The developed test procedure focuses on accidents between passenger cars and pedestrians. The results are based on analysis results of in-depth databases of GIDAS, German insurers and DEKRA and added by analysis of national and international statistics. The in-depth analysis includes many pre-crash situations with several influencing factors. The factors are e. g. speed of the car, speed of the pedestrian, moving direction and a possible obscuration of the pedestrian by an object. The results comprise also the different situations of adults and children. Furthermore, they include details regarding influence of the lighting conditions (daylight or night) especially with respect to the accident consequences. In fact, more accidents happen at daylight, but fatal accidents are more often at night. A clustering of parameter combinations was found which represents typical accident scenarios. There are six typical accident scenarios which were merged in four test scenarios. The test scenarios are varying the starting position of the pedestrian, the pedestrian size (adult or child) and the speed of the pedestrian, whereas the speed of the car will not be varied. To ensure the independency from used sensing technologies it is necessary to use a suitable dummy. For example, if sensors are based on infrared, the dummy should emit the temperature of a human being. The test procedure will identify the collision speed as the key parameter for assessing the effectiveness of the tested system. The collision speed is defined as the reduction between initial test speed of the car and impact speed. The assessment of the speed reduction value regarding the safety benefit, however, will be part of a separate procedure.
Zentrale Zielsetzung dieses Forschungsvorhabens ist die Ableitung einer Grundlage für die quantitative Abschätzung der Sicherheitswirkungen verschiedener Bau-, Gestaltungs- und Betriebsformen von Landstraßen. Hierzu wurden erreichbare Unfallraten und Unfallkostenraten von Landstraßen differenziert nach Ausbaustandard und Betriebsformen abgeleitet. Die Unfallkenngrößen wurden dabei getrennt für die drei Teilbereiche eines Landstraßenzuges (freie Streckenabschnitte, Einflussbereiche von Knotenpunkten, Knotenpunkte) ermittelt. Während die mittlere Unfallkostenrate eines Untersuchungskollektives von Straßenabschnitten nur eine Aussage über die durchschnittlichen Unfallkosten in Bezug auf die Fahrleistung dieses Kollektives treffen, soll die Grundunfallkostenrate die bei richtliniengerechter Anlage einer Straße (Gestaltung und Betrieb) möglichen fahrleistungsabhängigen Unfallkosten widerspiegeln. Bei der Ermittlung der Grundunfallkostenraten dürfen prinzipiell nur richtliniengerecht ausgebildete Straßen Berücksichtigung finden. Aus der zugrunde liegenden Datenbasis war allerdings nicht erkennbar, ob es sich im Einzelfall um richtliniengerechte oder nicht richtliniengerechte Straßen handelt. Es war davon auszugehen, dass das Untersuchungskollektiv auch nicht richtliniengerechte Anlagen umfasst. Dabei ist zusätzlich das Maß der Abweichung von einer richtliniengerechten Straße unbekannt, sodass keine Aussage darüber getroffen werden kann, inwieweit sich der "Grad der Unsicherheit" auch auf das Unfallgeschehen auswirkt. Bislang existiert kein Verfahren, um aus einem inhomogenen Untersuchungskollektiv, das sowohl richtliniengerechte Straßen als auch nicht richtliniengerechte Straßen umfasst, Grundunfallkostenraten abzuleiten. Daher wurde ein Verfahren entwickelt, das durch statistische Analysen eine Abschätzung der Grundunfallkostenraten aus einem inhomogenen Untersuchungskollektiv ermöglicht. Anhand des entwickelten Verfahrens wurden anschließend die Grundunfallkostenraten für alle im Rahmen der vorliegenden Untersuchung betrachteten Straßen (differenziert nach Querschnittstypen und Knotenpunktarten) abgeleitet.