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Das Sicherheitsaudit stellt einen wesentlichen Bestandteil des Sicherheitsmanagements von Straßen in der Planungsphase dar. Ein aktueller systematischer Überblick über die Auditpraxis in den Ländern sowie über die Verbreitung in Kommunen lag jedoch bisher nicht vor. Ziel war es daher, zunächst Wissenslücken bezüglich der tatsächlichen Anwendung und der organisatorischen Verankerung des Sicherheitsaudits zu schließen. Hierfür erfolgten zunächst eine Recherche zur Anwendung von Sicherheitsaudits auf Länder- und kommunaler Ebene sowie eine Erhebung zu durchgeführten Audits. In diesem Zusammenhang erfolgte auch ein Erfahrungsaustausch mit Auditoren von Straßenbauverwaltungen der Länder sowie mit Auditoren von Stadtverwaltungen. Darüber hinaus wurden jeweils 200 Auditberichte zu außer- und innerörtlichen Maßnahmen einschließlich der zugehörigen Stellungnahmen ausgewertet. Darauf aufbauend erfolgte die detaillierte Untersuchung ausgewählter auditierter Maßnahmen, die bereits realisiert und unter Verkehr waren und für die ein Unfallgeschehen von mindestens drei Jahren nach Verkehrsfreigabe vorlag. Während die Gespräche zum Erfahrungsaustausch weitestgehend übereinstimmende Aussagen im Hinblick auf die Auditierung von außer- und innerörtlichen Maßnahmen erbracht haben, haben die Auswertungen der jeweils 200 Audits wie auch die Detailauswertung der Audits von Außerorts- und Innerortsstraßen zu unterschiedlichen Erkenntnissen geführt. Abschließend wurden Empfehlungen zur Weiterentwicklung der Auditpraxis in Deutschland sowie zur Übernahme in die Fortschreibung der ESAS abgeleitet. Der wesentliche Baustein im Zusammenhang mit der Fortschreibung der ESAS war die Erarbeitung von Defizitlisten, die zukünftig in elektronischer Form zur Verfügung stehen sollen und anhand derer ein Audit auf Vollständigkeit überprüft werden kann. Ferner sollen sie für eine Dokumentation und Auswertung der Auditergebnisse genutzt werden können.
Im Bereich von Arbeitsstellen längerer Dauer ist es oft erforderlich, den Verkehr auf die Gegenfahrbahn überzuleiten. Neben vermehrten Verkehrsbehinderungen durch erhöhte Stauanfälligkeiten führt dies auch zu einer deutlich gesteigerten Unfallhäufigkeit. Ziel des Vorhabens war es, eine vergleichende Bewertung von verschiedenen Verkehrsführungen in Arbeitsstellen längerer Dauer mit Überleitung auf die Gegenfahrbahn vorzunehmen. Hierbei sollten die Auswirkungen von Anschlussstellen und andere Besonderheiten innerhalb der Bereiche mit Gegenverkehrstrennung mit betrachtet werden. Des Weiteren sollte die Relevanz der Zulauf- und vor allem der Überleitungsbereiche im Hinblick auf die Verkehrssicherheit in Arbeitsstellen untersucht und die Übertragbarkeit bzw. Vergleichbarkeit der Ergebnisse im Verhältnis zum Bereich der Gegenverkehrstrennung geprüft werden. Im Laufe der Bearbeitung hat sich gezeigt, dass Leitschwellen kaum noch zur Gegenverkehrstrennung in Arbeitsstellen eingesetzt werden, sondern überwiegend transportable Schutzeinrichtungen. Daher lag für das ursprüngliche Ziel " eine statistisch tragfähige Bewertung des Sicherheitspotenzials von Leitschwellen in Arbeitsstellen als Gegenverkehrstrennungsmaßnahme im Vergleich zu transportablen Schutzeinrichtungen " ein zu geringes Datenkollektiv vor. Hinsichtlich der Sicherheitsbewertung lassen sich auf Basis der Ergebnisse u. a. folgende Kernaussagen festhalten: - Arbeitsstellen mit 3+1-Verkehrsführung sind sicherer als Arbeitsstellen mit 4+0- und 4+2 Verkehrsführung, - in Arbeitsstellen mit 3+1-Verkehrsführung werden erheblich weniger Fahrzeuginsassen bei Unfällen mit Personenschaden verletzt oder getötet als in 4+0-Arbeitsstellen, - zudem sind Arbeitsstellen mit einer zulässigen Höchstgeschwindigkeit von 60 km/h geringfügig sicherer als mit einer zulässigen Höchstgeschwindigkeit von 80 km/h. Die Ergebnisse der unterschiedlichen Untersuchungen haben gezeigt, dass ein reiner Vergleich von einzelnen Verkehrsführungen " ohne Berücksichtigung von weiteren Parametern wie die Fahrstreifenbreite oder das Vorhandensein von Anschlussstellen " nicht sonderlich aussagekräftig ist. Bei der Planung von Arbeitsstellen und der volkswirtschaftlichen Bewertung dieser müssen daher neben der Einrichtungsdauer alle relevanten Parameter betrachtet werden.
Bus or heavy vehicle passenger accidents are rare events, compared with car accidents, but sometimes leads to a large number of victims especially in rollover crash scenarios. Two accidents occurred in Portugal in 2007 and 2013 in which 28 people died and more than 50 are injured, shown the importance of the investigation of such accidents. For the investigation of these accidents multidisciplinary teams are constituted with engineers and police officers. All the factors involved are taken into consideration including road design, traffic signs, maintenance and hardware, human factors, and vehicle factors. In this work a methodology to an accurate collection of the data is proposed. From the information collected the accident is reconstructed using the PC-CrashTM software. From this all the contribution factors are determined and recommendations to mitigate these crashes are listed. These two accidents are rollover accidents and the analysis of the injuries and its correlation with the use of retention systems is very important. From the medical data and with the dynamics of the accident determined simulations of the occupants with biomechanical models are carried out in order to evaluate the effect of the retention systems in the injuries. This analysis is based on injury criteria (such as Abbreviated Injury Score (AIS) or Injury Severity Scale (ISS)). With this it is possible to determine if the seat belt was worn or not.
Since its creation in 2011 the Pre-Crash-Matrix (PCM) offers the possibility to observe the pre-crash phase until five seconds before crash for a wide range of accidents. Currently the PCM contains more than 8.000 reconstructed accidents out of the GIDAS (German In-Depth Accident Study) database and is enlarged continuously by more than 1.000 cases per year. Hence, a detailed investigation of active safety systems in real accident situations has been made feasible. The PCM contains all relevant data in database format to simulate the pre-crash phase until the first collision of the accident for a maximum of two participants. This includes the definition of the participants and their characteristics, the dynamic behavior of the participants as time-dependent course for five seconds before crash as well as the geometry of the traffic infrastructure. The digital sketch of the accident and information from GIDAS as well as from supplementary databases represent the main input for the simulation of the pre-crash phase of an accident with the VUFO simulation model VAST (Vufo Accident Simulation Tool). This simulation in turn embodies the foundation of the PCM. The PCM underlies continual improvements and enhancements in consultation with its users. In addition to collisions of cars with other cars, pedestrians, bicycles and motorcycles the PCM now also covers car to object and car to truck collisions. The paper illustrates car to truck collisions as a showcase and explains perspectives for further developments. In 2016 a more detailed definition of the contour of the vehicle was added. Furthermore, the geometrical surroundings of the accident site will be provided in a new structure with a higher level of detail. Thus, a precise classification of road marks and objects is possible to further improve the support of developing and evaluating ADAS. This paper gives an overview about the latest developments of the PCM with its innovations and provides an outlook to upcoming enhancements. Besides potential areas of application for the development of ADAS are shown.
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.
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.
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 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.
Twenty-eight percent of traffic accidents in Japan are rear-end collisions, and of these, 13% are multiple collisions (three or more vehicles and/or roadside objects). A post-crash braking system enables the driver to stop the vehicle in a short distance after a rear-end collision to prevent secondary collisions. In this study, the effectiveness of a post-crash braking system was examined using a drive recorder database. In 64% of rear-end collisions, the driver's braking was interrupted after the collision. The stopping distance was estimated with time data from the drive recorder. We predict that the brake assist would be effective in preventing secondary collisions in 21% of cases.
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.