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For the avoidance of traffic accidents by means of advanced driver assistance systems the knowledge of failures and deficiencies a few seconds before the crash is of increasing importance. This information e.g. is collected in the German accident survey GIDAS by an interview derived from the ACAS methodology. However to display the whole range of accident causation factors additional information is needed on enduring factors of the system components "human", "infrastructure" and "machine". On the strategic level these accident moderating factors include long term influences such as medical preconditions or a general higher risk taking behavior as well as influences on the immediate conflict level such as an aggressive response to a perceived previous traffic conflict. This study was conducted to examine the feasibility of collecting such causation information in the scope of an in-depth accident investigation like GIDAS. Due to the comprehensive amount of information necessary to estimate the moderating factors the collection of the information is distributed to different methods. 5 cases of real world crashes have been investigated where information was collected on-scene and retrospective by interviews. The identified moderating factors of the accidents and the method for collecting the information are displayed.
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.
Car occupants have a high level of mortality in road accidents, since passenger cars are the prevalent mode of transport. In 2013, car occupant fatalities accounted for 45% of all road accident fatalities in the EU. The objective of this research is the analysis of basic road safety parameters related to car occupants in the European countries over a period of 10 years (2004-2013), through the exploitation of the EU CARE database with disaggregate data on road accidents. Data from the EU Injury Database for the period 2005 - 2008 are used to identify injury patterns, and additional insight into accident causation for car occupants is offered through the use of in-depth accident data from the EC SafetyNet project Accident Causation System (SNACS). The results of the analysis allow for a better understanding of the car occupants' safety situation in Europe, thus providing useful support to decision makers working for the improvement of road safety level in Europe.
The proportion of older road users is increasing because of demographic change (in the group 65+ from current 18% to about 24% by 2030). The mobility needs of people 65+ often differ from those of younger people. Seniors (65+) are already more involved in fatal accidents than younger road users. According to the age development, the senior share of road deaths in the EU of today is increasing nearly one-fifth to one-third. From the in-depth analysis of accidents generic simulation models were developed. Attention has been paid both to psycho-physical characteristics as well as on the social and physical environment and their specifics in conjunction with seniors. By simulating the defined scenarios and varying the defined relevant parameters, accident influencing factors were examined as a basis for avoidance. In addition, the parameters were varied to show the influence from the vehicle, the pedestrian and the infrastructure to avoid the accident or to characterize the conditions for which the accident is inevitable.
In this study, the mean profile depth (MPD) that expresses roughness of road pavements was calculated using the road survey equipment vehicle and the calculated MPD was compared with the real number of traffic accidents. The analysis method used in this study was to classify the appropriate clustering in relation to traffic accidents using the K-means clustering and to compare this with the presence of traffic accidents via the MPDs to derive the result. K-means clustering was used in the analysis method and four clusters were found using the clustering analysis results. The center of each cluster was 0.627, 0.850, 1.118, and 1.237, respectively. The result of this study is expected to be utilized as foundational research in the traffic safety area.
Still correlated with high mortality rates in traffic accidents traumatic aortic ruptures were frequently detected in unprotected car occupants in the early years. This biomechanical analysis investigates the different kinds of injury mechanisms leading to traumatic aortic injuries in todays traffic accidents and how the way of traffic participation affects the frequency of those injuries over the years. Based on GIDAS reported traffic accidents from 1973 to 2014 are analyzed. Results show that traumatic aortic injuries are mainly observed in high-speed accidents with high body deceleration and direct load force to the chest. Mostly chest compression is responsible for the load direction to the cardiac vessels. The main observed load vector is from caudal-ventral and from ventral solely, but also force impact from left and right side and in roll-over events with chest compression lead to traumatic aortic injuries. Classically, the injury appeares at the junction between the well-fixed aortic arch and the pars decendens following a kind of a scoop mechanism, a few cases with a hyperflexion mechanism are also described. In our analysis the deceleration effect alone never led to an aortic rupture. Comparing the past 40 years aortic injuries shift from unprotected car occupants to today's unprotected vulnerable road users like pedestrians, cyclists and motorcyclists. Still the accident characteristics are linked with chest compression force under high speed impact, no seatbelt and direct body impact.
Causation of traffic accidents with children from the perspective of all involved participants
(2017)
In the year 2014 about 2,800 children between zero and 14 years got injured due to traffic accidents in Austria. More than 50% were taking part in traffic as active road users like cyclists or pedestrians. Within this study 46 real world traffic accidents between vehicles and children as pedestrians were analysed. In 39 cases, car drivers hit the crossing children. In the other cases, the collision opponents were busses, trucks or motorcycles. Most of the children got hit while crossing a road at urban sites. By analysing the traffic accidents from the perspectives of all involved participants, vehicle drivers and injured children, it is possible to identify factors for each participant, which led to the accident and factors that contributed the accident. The main task is to find patterns in the behaviour of crash victims (children and driver) before the collision. One important fact is that in more than 50% of the analysed cases sight obstructions were an important contributing factor for both, the driver and the child. From drivers view situations in which the child moved unexpected into the driven road lane were often found. For the injured child, factors like: no attention to the road traffic or no sufficient traffic observation were found to be relevant. Further it- possible to sensitise children and adults to possible source of critical traffic situations according to the findings of this study.
The advent of active safety systems calls for the development of appropriate testing methods. These methods aim to assess the effectivity of active safety systems based on criteria such as their capability to avoid accidents or lower impact speeds and thus mitigate the injury severity. For prospective effectivity studies, simulation becomes an important tool that needs valid models not only to simulate driving dynamics and safety systems, but also to resolve the collision mechanics. This paper presents an impact model which is based on solving momentum conservation equations and uses it in an effectivity study of a generic collision mitigation system in reconstructed real accidents at junctions. The model assumes an infinitely short crash duration and computes output parameters such as post-crash velocities, delta-v, force directions, etc. and is applicable for all impact collision configurations such as oblique, excentric collisions. Requiring only very little computational effort, the model is especially useful for effectivity studies where large numbers of simulations are necessary. Validation of the model is done by comparison with results from the widely used reconstruction software PC-Crash. Vehicles involved in the accidents are virtually equipped with a collision mitigation system for junctions using the software X-RATE, and the simulations (referred to as system simulations) are started sufficiently early before the collision occurred. In order to assess the effectivity, the real accident (referred to as baseline) is compared with the system simulations by computing the reduction of the impact speeds and delta-v.
Die Schätzung der Fahrleistung von Kraftfahrzeugen auf dem deutschen Straßennetz 2014 (Inlandsfahrleistung) basiert auf einer bundesweiten, automatisierten Verkehrszählung an 520 zufällig ausgewählten Straßenabschnitten während jeweils etwa 24 Stunden. In der Verkehrszählung werden alle Tages- und Jahreszeiten abgedeckt. Die Stichprobe der Straßenabschnitte ist nach Straßenklasse und Ortslage (inner-/außerorts) geschichtet, dabei werden alle Straßenklassen in der Erhebung berücksichtigt. Mithilfe der Abschnittslängen werden die empirisch erhobenen Verkehrsstärkewerte in Fahrleistungen transformiert und auf die Grundgesamtheit aller Abschnitte, d. h. das gesamte Straßennetz und das Gesamtjahr 2014 hoch gerechnet. Durch den kombinierten Einsatz von Detektoren und Videotechnik liegen die gezählten Verkehrsstärken nach Fahrzeugart und -nationalität untergliedert vor, sodass Fahrleistungen für 9 Fahrzeugarten ("8+1-Messung") und 38 Nationalitäten geschätzt werden können. Der Totalwert der Inlandsfahrleistung wird für das Jahr 2014 auf 743,82 Mrd. Fahrzeugkilometer (Fzgkm) geschätzt. Rund 81 % der Inlandsfahrleistung (ca. 601 Mrd. Fzgkm) entfallen auf Personenkraftwagen bzw. Pkw mit Anhänger. Die zweithöchste Fahrleistung findet sich bei Lieferwagen mit 51,8 Mrd. km. Im Schwerverkehr dominieren die Sattelzüge mit 26,2 Mrd. km. Aus der Hochrechnung der Daten der Verkehrszählung ergibt sich für 2014 ein Totalwert der Fahrleistung ausländischer Kraftfahrzeuge auf dem deutschen Straßennetz von knapp 42 Mrd. Fahrzeugkilometern. Der Ausländeranteil an der Inlandsfahrleistung 2014 liegt damit bei 5,6 %. Im Jahr 2002 lag die km-Summe der ausländischen Kfz auf dem deutschen Straßennetz noch bei 27,4 Mrd. km. Der aktuelle Wert von 41,8 Mrd. km entspricht somit einem Zuwachs um 53 %. Werden die amtlichen Unfallzahlen aus dem Jahr 2014 auf die entsprechenden Jahrestotale der Fahrleistungen von Kraftfahrzeugen bezogen, so lassen sich dadurch Risikokennziffern berechnen. Zum einen ist dies das Risiko der Unfallbeteiligung von Kraftfahrzeugen und zum anderen das Risiko von Kraftfahrzeugbenutzern, bei einem Unfall verletzt oder getötet zu werden. Beide Risikokennziffern lassen sich weiter nach Fahrzeuggruppe und Unfallschwere bzw. Verletzungsschwere differenzieren. Hierbei zeigt sich, dass Busse und vor allem motorisierte Zweiräder ein besonders hohes Risiko aufweisen. Eine Unterscheidung nach Straßenklasse erlaubt die Schlussfolgerung, dass die Unfallrisiken auf Bundesautobahnen mit Abstand am niedrigsten sind. Ein Vergleich der Unfallrisikokennziffern des Jahres 2014 mit denjenigen aus dem Jahr 2002 zeigt, dass zum Teil deutliche Verringerungen festzustellen sind. So ist die Gefahr einer Beteiligung an einem Unfall mit Personenschaden über alle Kraftfahrzeuge um 26 % zurückgegangen. Sogar noch stärker ist das Risiko gesunken, als Fahrzeugbenutzer in einem Straßenverkehrsunfall verletzt oder gar getötet zu werden (-29 %).
This paper gives an overview of the in-depth crash investigation activity conducted by the Centre for Automotive Safety Research (CASR) at the University of Adelaide, in South Australia. Recent changes in method include: an expansion in on-call hours for the crash investigation team, providing the option of a phone interview for crash participants to discuss the crash, and downloading objective crash data from vehicle airbag control modules. These changes have resulted in: increased representativeness of crashes by hour of day; a decrease in the over-representation of fatal crashes in our sample; an increase in the proportion of crashes that involved a pedestrian, bicycle or scooter (moped); an increase in the proportion of crash participants consenting to an interview; and an increase in the objective data available, through airbag control module downloads. Our in-depth crash investigations enabled research into road departures that found barriers were a more feasible solution than clear zones for eliminating serious and fatal injury resulting from run off road crashes.