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Der Beitrag setzt sich mit folgenden Fragestellungen auseinander: 1. Stellen ältere Kraftfahrer ein Sicherheitsrisiko für den Straßenverkehr dar? 2. Wie wurden diese Frage und die "Fahreignung und Fahrtüchtigkeit älterer Kraftfahrer" in den vergangenen 50 Jahren wissenschaftlich bewertet - insbesondere bei Kongressen der Deutschen Gesellschaft für Verkehrsmedizin und den Deutschen Verkehrsgerichtstagen? 3. Wie haben in den vergangenen 50 Jahren Juristen, Behörden und Gesetzgeber die "Fahreignung älterer Kraftfahrer" gesehen und umgesetzt? 4. Werden morbiditäts- und altersbedingte Beeinträchtigungen der Leistungsfähigkeit rechtzeitig und richtig durch ältere Kraftfahrer erkannt? 5. Wie gehen ältere Kraftfahrer mit erkannten Leistungsmängeln um? 6. Benötigen ältere Verkehrsteilnehmer Aufklärung, Beratung, Fortbildung und Vorsorge- oder Kontrolluntersuchungen? Insgesamt kann festgestellt werden, dass allein aus normalem Altersabbau und hohem Alter kein Rückschluss auf die Fahruntauglichkeit gezogen werden kann. Das wichtigste gesellschaftliche Ziel für die Teilnahme älterer Menschen am Straßenverkehr ist - angesichts der demographischen Entwicklung - die Einsichtsfähigkeit in das altersbedingt verminderte Leistungsvermögen und den Veränderungswillen zu Kompensationsmechanismen bei älteren Verkehrsteilnehmern zu schärfen. Der behandelnde Arzt, Angehörige und sonstige Bezugspersonen sollten alles tun, um den bejahrten Kraftfahrer zu motivieren, sich seiner Selbstverantwortung bewusst zu werden und demgemäß zu handeln.
Es wird ein Überblick zur Thematik Lärm an Fahrbahnübergängen mit technischen Entwicklungen zur Lärmminderung gegeben. Dabei wird eingegangen auf die Anforderungen und Einsatzkriterien von Fahrbahnübergängen, aktuelle Forschungsvorhaben und -ergebnisse sowie auf Erfahrungen mit den verschiedenen Ausführungsarten von Fahrbahnübergängen, bei denen sich durch konstruktive Veränderungen oder Ergänzungen Lärmminderungen ergaben. Angesprochen werden auch die Inhalte und neuesten Entwicklungen bei der Europäischen Technischen Zulassungsleitlinie für Fahrbahnübergänge, die ETAG FÜ. Diese ETAG enthält Regelungen für verschiedene Familien von Fahrbahnübergängen, nämlich Unterflurübergänge, Fahrbahnübergänge aus Asphalt, Fahrbahnübergänge mit einem Dehnprofil, Mattenübergänge, Fingerübergänge, Rollverschlüsse und Lamellenübergänge. In einem Ausblick werden folgende Themen angesprochen: Überarbeitung der Regelwerke ZTV-ING und TL/TP-FÜ, Einführung der ETAG FÜ und die Berücksichtigung aus den Ergebnissen der Forschungsvorhaben, insbesondere aus dem Forschungsvorhaben "Leiser Straßenverkehr 2".
Schäden an Betonfahrbahnen sind fast immer auf das Eindringen von Wasser unter die Betonplatte zurückzuführen. Für die Erprobung von Entwässerungseinrichtungen wurden Versuchsstrecken auf den Autobahnen A5 (Frankfurt -Mörfelden), A7 (bei Dorfmark und Soltau) sowie der A 29 (Bei Sage) eingerichtet, bei denen verschiedene Maßnahmen (Längsentwässerung, Punktentwässerung, Flachdrainage) auf ihr Verhalten beobachtet werden.
Mit der Änderung des deutschen Straßenverkehrsrechtes werden Voraussetzungen für die amtliche Anerkennung von Anbietern von Kursen zur Wiederherstellung der Fahreignung gesetzlich konkretisiert. Das Instrument einer bundeseinheitlichen Qualitätssicherung wird per Gesetz verbindlich eingeführt. Mit der Überprüfung wird die Bundesanstalt für Straßenwesen als neutrale Stelle beauftragt. Es wird davon ausgegangen, dass es sich bei den Kursen zur Wiederherstellung der Eignung von Kraftfahrzeugführern um Maßnahmen der Personalzertifizierung handelt. Das Referat beschreibt den Ablauf des Akkreditierungsverfahrens und die Anforderungen an Maßnahmenträger, die einen Antrag auf Akkreditierung gestellt haben. Bei den Anforderungen an die Kursleiter spielen die berufliche Qualifikation sowie solche Anforderungen eine Rolle, die sich aus dem jeweiligen Qualitätssicherungssystem ergeben. In der Akkreditierung der Anbieter von Kursen zur Wiederherstellung der Fahreignung durch die Bundesanstalt für Straßenwesen wird nicht nur eine Bestätigung der Qualität und Fachkompetenz gesehen, sondern zugleich auch eine Gewähr für die Durchführung der jeweiligen Kurse nach bundeseinheitlichen Kriterien.
Road transport networks are of major importance for the economy and equally for the mobility of the citizens in the European countries. In order to improve the protection of transport infrastructures and the robustness of the European road network research projects are currently in process on national and European level. A main focus of these investigations is to analyze the specific vulnerabilities of bridges and tunnels concerning structural, operational and organizational aspects and to identify critical objects. But also infrastructures, which are critical due to their location and function in a road network, must be identified. For this the resulting regional and supra-regional impacts due to the failure of certain infrastructures have to be investigated on network level. In order to increase the security of road transport infrastructures and whole road networks the most effective security measures have to be determined. This paper gives an overview about the content and first results of current European and German research projects on road transport security.
A very high service availability is important for the operator and for the user of road tunnels, too. The service availability of a structure is directly related to its quality. The earlier quality assurance measures are being considered during the life cycle, the better a structure of high quality can be guaranteed. Problems which occur during the operation period of a structure often result from design errors or from inadequate realisation during the construction phase. They may also occur as a result of wrongly planned maintenance and refurbishment works. Thus, the transfer of specific data, information and experiences through the whole life cycle is very important. In this context methods of facility management can provide efficient assistance when they have already been used throughout all three classic phases of a structure's life cycle - planning, construction and operation. Finally the tunnel drainage system of German road tunnels is considered as an example as practical application possibility.
Data concerning accidents involving personal injury which have been collected in the context of in-depth investigations on scene in the Hannover area since 1973 and in the Dresden area since 1999 represent an important basis for empirical traffic safety research. At national and international level various analyses and comparisons are carried out on the basis of "in-depth data" from the above mentioned investigations. In-depth data play a decisive role e.g. within the validation of EuroNCAP results on secondary safety (crashworthiness) of individual passenger car models. Thus, statistically sound methods of data analysis and population parameter estimation are of high importance. Since the 1st of August 1984 the "in-depth investigations on scene" in the Hannover area have been carried out according to a sampling plan developed by HAUTZINGER in the context of a research project on behalf of BASt. In the meantime a second region of in-depth investigation on scene was added with surveys in Dresden and the surrounding area. Internationally, the acronym GIDAS (German In-Depth Accident Study) is commonly used for the two above mentioned surveys. The objective of a current research project (topic of this contribution) is, among other things, to examine and adjust the previous weighting and expansion method for the two regional accident investigations to the current general conditions.
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.
Crash involvement studies using routine accident and exposure data : a case for case-control designs
(2009)
Fortunately, accident involvement is a rare event: the chance of an individual road user trip to end up in a crash is close to zero. Thus, according to general epidemiological principles one can expect the case-control study design to be especially suitable for quantifying the relative risk (odds ratio) of accident involvement of road users with a certain risk factor as compared to road users that do not have this characteristic. Ideally, of course, the database for such a case-control study should be established by drawing two independent random samples of cases (accidental units) and controls (nonaccidental units), respectively. If, however, special data collection is not an option, it is nevertheless possible to analyze routine accident and exposure data under a case-control design in order to fully exploit the information contained in already existing databases. As a prerequisite, accident and exposure data from different sources are to be combined in a single file of micro or grouped data in a way consistent with the case-control study design. Among other things, the proposed methodological approach offers the possibility to use in-depth data of the GIDAS type also in investigations of active vehicle safety by combining this data with appropriate vehicle trip data collected in mobility surveys.
The so-called "seat-belt injuries" or "seat-belt syndromes", described as 2-point seat-belt injuries, contain heavy inflection injuries of the lumbal spinal column, combined with heavy abdominal injuries as rupture of the upper intestinal bold or heavy injuries of the upper entrails. With "playing" children in the font of the car, with inappropriate plant of 3-point belts, identical injuries can occur.
Die meisten der in Betracht kommenden Zwischenquerschnitte werden durch die derzeitigen Entwurfsrichtlinien nicht abgedeckt. Hinreichende Erkenntnisse über ihre Leistungsfähigkeit, die bei verschiedenen Belastungen erzielbaren Verkehrsqualitäten und vergleichende Angaben zum Sicherheitsniveau der Zwischenquerschnitte liegen nicht vor. Die Projektgruppe "Zwischenquerschnitte" der Bundesanstalt für Straßenwesen untersucht daher die Vor- und Nachteile der Zwischenquerschnitte mit dem Ziel, Einsatzbereiche für die verschiedenen Ausbildungsformen von Querschnitten zu entwickeln. Der Bericht gibt einen Überblick über bisherige Aktivitäten der Projektgruppe und stellt erste Zwischenergebnisse der Untersuchung vor. Bisherige Messungen zeigen, dass der besondere Vorteil der zwei- und dreiseitigen Zwischenquerschnitte in der Verbesserung der Überholsituation liegt. Für die Beurteilung vierstreifiger Zwischenquerschnitte kann bislang erst die Aussage gemacht werden, dass immer dann, wenn die Verkehrsbelastung tatsächlich einen Querschnitt mit 4 Fahrstreifen erforderlich macht, man die beiden Fahrrichtungen aus Gründen der Verkehrssicherheit baulich trennen sollte.
This study analyses no.39 cases in which n.41 motorcyclists were fatally injured, or 36% of total motorcycle fatalities in Northern Ireland between 2004 and 2010 (n.114). There were n.17 cases (43.6%) where the actions of another vehicle driver caused the collision, in thirteen of these cases the motorcycles had their lights switched on. The remaining n.22 collisions (56.4%) were due to the actions of the motorcyclist. In the approach to the collision scene, there were n.13 cases (31.7%) in which the approach was a right hand bend and in n.8 (19.5%) cases, the approach was a left hand bend. In the remaining n.18 (43.9%) cases, the approach was a straight road. Of the n.17 (41.4%) motorcycles that slid after falling, n.10 (24.4%) fell onto their right side and the remaining n.7 (17.1%) fell onto their left side. The information from this study identifies primary and contributory causes of motorcycle collisions.
The changed focus in vehicle safety technology from secondary to primary safety systems need to evolve new methods to investigate accidents, high critical, critical and normal driving situations. Current Naturalistic Driving Studies mostly use vehicles that are highly equipped with additional measuring devices, video cameras, recording technology, and sensors. These equipped fleets are very expensive regarding the setup and administration of the study. Due to the great rarity of crashes it is additionally necessary to have a high distribution and a homogeneous distribution of subject groups. At the end all these facts are leading to a very expensive study with a manageable number of data. Smartphones are becoming more and more popular not only for younger people. Contrary to traditional mobile phones they are mostly equipped with sensors for acceleration and yaw rates, GPS modules as well as cameras in high definition resolution. Additionally they have high-performance processors that enable the execution of CPU-intensive tools directly on the phone. The wide distribution of these smartphones enables researchers to get high numbers of users for such studies. The paper shows and demonstrates a software app for smartphones that is able to record different driving situations up to crashes. Therefore all relevant parameter from the sensors, camera and GPS device are saved for a given duration if the event was triggered. The complete configuration is independently adjustable to the relevant driver and all events were sent automatically to the research institute for a further process. Direct after the event, interviews with the driver can be done and important data regarding the event itself are documented. The presentation shows the methodology and gives a demonstration of the working progress as well as first results and examples of the current study. In the discussion the advantages of this method will be discussed and compared with the disadvantages. The paper shows an alternative method to investigate real accident and incident data. This method is thereby highly cost efficient and comparable with existing methods for benefit estimation.
The number of injured car occupants decreases constantly. Nevertheless, they account for nearly 50% of all fatalities and about 44% of all seriously injured persons in German traffic accidents. Further reductions of casualties require multiple efforts in all parts of traffic safety. In this paper a detailed analysis of the important pre-hospital rescue phase was done. The basis for future improvements is the knowledge about injury causation of car occupants in combination with other corresponding influence factors. For that reason more than 1.200 severe (AIS3+) injuries of frontal car occupants were analyzed. For the most relevant injuries of car occupants multivariate analysis models were created to predict the probability of these injuries in a real crash scenario. In addition to the collision severity different influence factors like impact direction, seat belt usage, age of the occupant, and gender were analyzed. Furthermore, the models were checked regarding the goodness of fit and all results all results were checked concerning their robustness. The prediction models were created on the basis of 5.000 car accidents. Afterwards, the models were validated using 4.000 different car accidents. The prediction of the probability of severe injuries could be used for different applications in the field of traffic safety. One possibility is the implementation of the models in a tool for the on-the-spot diagnosis. The background for the development of such applications is the fact, that there are only limited diagnostic possibilities available at the accident scene. Nevertheless, the rescue forces have to make essential decisions like the alerting of the necessary medical experts, appropriate treatment, the type of transportation and the choice of an adequate hospital. These decisions quite often decide between life and death or influence the long-term effects of injured persons. At this point, indications of expectable injuries could help enormously. To enable even persons with limited technical knowledge to use the tool, a procedure was developed that facilitates the assumption of the given crash severity. Another important possibility for the application of the prediction models is the use for the qualification of information sent by e-call systems.
Over the last decades the number of traffic accident fatalities on German roads decreased by 77% down to 4968 in the year 2007. This positive development is due to optimisations of vehicle safety, roads and infrastructure and medical rescue issues. Up to now mostly the optimisations of secondary safety measures lead to this effect on vehicle safety. Since some years more and more driver assistance systems are available and lead to a further reduction of all accidents. These new systems are often comfort systems and have not primarily been developed to increase vehicle safety. In contrast to secondary safety systems primary safety systems are able to mitigate and avoid accidents. So in the future it is important to estimate the benefit of these systems in reducing accident numbers as well. Current benefit estimation methods mostly focus on a single system only and not on the combination of systems. In this paper a new method for a multivariate benefit estimation based on real accident data is developed. The paper describes the basic method to estimate the benefit of primary and secondary safety systems in combination. With the presented method the benefit will not be overestimated as it would be by a simple addition of the benefits of single systems. The model will be validated by a multivariate prospective benefit estimation of different vehicle safety systems in comparison to single benefit estimations of the same systems. For this the German In-Depth Accident Database is used. The results show the importance to implement the interactions of safety systems in the estimation process and rate the overestimation by a simple addition of the single system benefits. The validation includes primary and secondary safety systems in combination. The validation is done using more than 3500 real accidents which were initiated by cars. This sample out of the GIDAS database is representative for the current accident situation in Germany. The paper shows the necessity of a multivariate estimation of the benefit for existing and future safety systems.
In the last years various new driver information and driver assistance systems made their way into modern vehicles and there are yet countless systems underway. However, expenses for both, the development and the construction of these systems are tremendous. Therefore the interest of evaluating systems keeps growing steadily, not only regarding the results of systems developed in the last years but also regarding system ideas. Only if at least a rough benefit estimation is given, the industry can decide which development should be supported. However, there is still a lack of transparency of possible and useful methods for these kinds of estimations. These were analyses and structured in this study.
The accident research project in Dresden was founded in July 1999. To date over 6.000 crash investigations have been undertaken. About 10.000 vehicles have been documented and over 13.000 participants have been debriefed. But there is much more than this scientific success. Because of the interdisciplinary character between the medical and technical focus, the project affords an important contribution for the education of the involved students. Over 200 students of different fields of study have got experiences not only for the occupational career. This lecture describes the additional effects of the accident research project regarding the education of the students, the capacity for teamwork and learning about dealing with accident casualties.
Because of actual developments and the continuous increase in the field of drive assistant systems, representative and detailed investigations of accident databases are necessary. This lecture describes the possibility to estimate the potential of primary and secondary safety measures by means of a computerized case by case analysis. Single primary or secondary safety measures as well as a combination of both are presented. The method is exemplarily shown for the primary safety measure "Brake Assist" in pedestrian accidents. Regarding accident prevention only the primary safety measure is determined.
Bei Schrägseilbrücken und Hängebrücken ist die Tragfähigkeit und die Betriebsfestigkeit der Seile von entscheidender Bedeutung. Da in Deutschland seit einigen Jahren wieder verstärkt Schrägseilbrücken gebaut werden, kommt den neueren Entwicklungen auf diesem Gebiet eine besondere Bedeutung zu. Diese neuen Entwicklungen werden im Bericht beschrieben. An erster Stelle steht dabei die Anwendung von Litzenbündeln (LBS) in Deutschland bei der fertiggestellten Ziegelgrabenbrücke im Brückenzug der Rügenbrücke und der im Bau befindlichen Niederrheinbrücke Wesel. Diese im Ausland schon seit vielen Jahrzehnten angewendete Bauart stieß in Deutschland bisher auf Bedenken, insbesondere wegen der Prüfbarkeit und des Korrosionsschutzes. Litzenbündel bestehen im Wesentlichen aus 7-drähtigen Spannstahllitzen und speziellen Verankerungsteilen. Auf der freien Länge des Seils sind die Litzen durch ein HDPE-Rohr gegen äussere Beschädigungen und Umwelteinflüsse geschützt. Da Seile aus Litzenbuendeln bisher nicht bauaufsichtlich geregelt sind, war eine Zustimmung im Einzelfall erforderlich. Die Prüfung der Seile bei den regelmäßig durchzuführenden Bauwerksprüfungen ist verbunden mit einem großen technischen Aufwand, hohen Kosten und Beeinträchtigungen des Verkehrs. Der Bericht geht ausführlich auf mögliche Methoden der Seilprüfung ein. Bei der Ziegelgrabenbrücke wurde die magnetinduktive Prüfung, die sich bei vollverschlossenen Seilen seit vielen Jahren bewährt hat, zum Feststellen von Schäden an den Seilen aus Litzenbündeln angewendet. Neue Entwicklungen bei vollverschlossenen Seilen betreffen insbesondere die Korrosionschutzsysteme und die Ausführung der Ankerköpfe. In beiden Bereichen beschreibt der Bericht die Neuerungen. Bei den Instandsetzungen der vollverschlossenen Seile werden angespochen: dauerhafte Seilspreizung zur Verbesserung der Zugänglichkeit bei der visuellen Prüfung, Seilaustausch am Beispiel der Rheinbrücke Düsseldorf-Flehe und die Instandsetzung des Korrosionschutzes mit verschiedenen Methoden. Wegen der neueren technischen Entwicklungen entsprechen die derzeit gültigen einschlägigen Regelwerke teilweise nicht mehr dem Stand der Technik. Sie müssen daher überarbeitet oder gänzlich neu erstellt werden.
Accident simulation and reconstruction for enhancing pedestrian safety: issues and challenges
(2015)
The enhancement of pedestrian safety represents a major challenge in traffic accidents. This study allows a better understanding of the issues in pedestrian protection. It highlights the potential of in-depth studies in identifying relevant crash parameters interfering in the pedestrian safety. A computational simulation tool was developed to reconstruct pedestrian real-world crashes. A sample of 100 in-depth accident cases was reconstructed from two sources: 40 crashes provided by IFSTTAR-LMA and 60 crashes from CASR. To exemplify the methodology, two accident cases from each database were illustrated. A description of the sample of crashes was presented including the travel and impact speed of the vehicle, the driver reaction, the pedestrian walking speed, the scene configuration with the eventual obstacles, etc. This detailed description is pointing to the major factors affecting the limits of pedestrian safety systems.