Der Allgemeine Deutsche Automobil-Club e.V. (ADAC) und die Bundesanstalt für Straßenwesen (BASt) veranstalteten am 13. Oktober 2006 in Baden-Baden das 6. Symposium "Sicher fahren in Europa". Die Fachvorträge befassten sich mit den Themenbereichen: Ansätze zu mehr Verkehrssicherheit, - Verbesserung der Fahrzeugsicherheit, - Besondere Zielgruppen. Die CD-ROM dokumentiert die Grußworte, die Referate und die Podiumsdiskussion.
Der Allgemeine Deutsche Automobil-Club e.V. (ADAC) und die Bundesanstalt für Straßenwesen (BASt) veranstalteten am 15. Oktober 2009 in Baden-Baden ihr 7. Symposium \"Sicher fahren in Europa\". Nach 1991, 1994, 1997, 2000, 2003 und zuletzt 2006 trafen sich auch dieses Mal wieder zahlreiche Fachleute aus Wissenschaft und Politik, Industrie, Wirtschaft und Verbänden aus dem In- und Ausland, trugen neue Forschungsergebnisse vor und erörterten aktuelle Ansätze zur Erhöhung der Verkehrssicherheit. Dabei ging es in den Referaten und Diskussionsbeiträgen und in den vier Workshops vor allem darum, die verkehrspolitischen Entwicklungen und Herausforderungen für die europäische Verkehrssicherheitsarbeit im Hinblick auf folgende Themen zu beleuchten: "Verkehrssicherheit Junger Fahrer", - Das "Auto der Zukunft", - "Demographischer Wandel", - "Landstraßensicherheit". Den Grundsatzreferaten folgten vertiefte Bearbeitungen in den Workshops. Die CD-ROM dokumentiert die Grußworte, Referate und Diskussionsbeiträge.
Cycling supports the independence and health of the aging population. However, elderly cyclists have an increased injury risk. The majority of injured cyclists is victim of a single-sided accident, an accident in which there is no other party involved. The aim of the project "Safe and Aware on the bicycle" is to develop guidelines for an advisory system that is useful in preventing single-sided accidents. This system is able to support the elderly cyclist; enabling the cyclist to timely adapt his cycling behaviour and improve cycling safety and comfort. For the development of such advisory system the causes of singles accidents and the wishes of the elderly cyclist must be known. First step to obtain this insight was a literature survey and an GIDAS research. Unfortunately accidentology research with GIDAS did not give the full understanding of the pre-crash situations and (especially the behaviour related) factors leading to the accident. The second step was consultation of elderly cyclist through a questionnaire (n=800), in-depth interviews (n=12) and focus group sessions (n=15). This offered complementary information and a much better understanding of the behavioural aspects. Results concern the behaviour in traffic and identify specific physical (i.e. problems looking backwards over the shoulder) and mental issues. Furthermore, the needs and wishes for support in specific cycling situations were identified. In conclusion; The GIDAS results together with the information obtained contacting the elderly cyclists enabled setting up requirements for an advisory system, which is useful in preventing single-sided accidents.
One main objective of the EU-Project SENIORS is to provide improved methods to assess thoracic injury risk to elderly occupants. In contribution to this task paired simulations with a THOR dummy model and human body model will be used to develop improved thoracic injury risk functions. The simulation results can provide data for injury criteria development in chest loading conditions that are underrepresented in PMHS test data sets that currently proposed risk functions are based on. To support this approach a new simplified generic but representative sled test fixture and CAE model for testing and simulation were developed. The parameter definition and evaluation of this sled test fixture and model is presented in this paper. The justification and definition of requirements for this test set-up was based on experience from earlier studies. Simple test fixtures like the gold standard sled fixture are easy to build and also to model in CAE, but provide too severe belt-only loading. On the other hand a vehicle buck including production components like airbag and seat is more representative, but difficult to model and to be replicated at a different laboratory. Furthermore some components might not be available for physical tests at later stage. The basis of the SENIORS generic sled test set-up is the gold standard fixture with a cable seat back and foot rest. No knee restraint was used. The seat pan design was modified including a seat ramp. The three-point belt system had a generic adjustable load limiter. A pre-inflated driver airbag assembly was developed for the test fixture. Results of THOR test and simulations in different configurations will be presented. The configurations include different deceleration pulses. Further parameter variations are related to the restraint system including belt geometry and load limiter levels. Additionally different settings of the generic airbag were evaluated. The test set-up was evaluated and optimized in tests with the THOR-M dummy in different test configurations. Belt restraint parameters like D-ring position and load limiter setting were modified to provide moderate chest loading to the occupant. This resulted in dummy readings more representative of the loading in a contemporary vehicle than most available PMHS sled tests reported in the literature. However, to achieve a loading configuration that exposes the occupant to even less severe loading comparable to modern vehicle restraints it might be necessary to further modify the test set-up. The new generic sled test set-up and a corresponding CAE model were developed and applied in tests and simulations with THOR. Within the SENIORS project with this test set-up also volunteer and PMHS as well as HBM simulations are performed, which will be reported in other publications. The test environment can contribute in future studies to the assessment of existing and new frontal impact dummies as well as dummy improvements and related instrumentation. The test set-up and model could also serve as a new standard test environment for PMHS and volunteer tests as well as HBM simulations.
Thorax injury is one of main causes of serious injury in frontal collisions, especially for elderly car occupants. The anthropometric test device (ATD) THOR‐M provides chest deflection measurements at multiple locations, to assess the risk of thorax injury. For this purpose e, risk functions are needed that relate the potential criteria based on multipoint chest deflection measurement to in jury risk. Different thorax injury criteria and risk functions for THOR have been proposed [2‐3]. The criteria and functions are based on the traditional approach to developing injury risk functions using matched ATD and PMHS tests by relating the injury (number of fractures) to injury criteria. Regarding these studies, some limitations have been identified, in particular concerning the loading conditions of the data used (mainly 3‐point‐belt loading, high loading severity, out‐of‐date ATD versions. To extend the data set and overcome these limitations, a new approach for improved thorax injury criteria was applied within the EC‐funded project SENIORS. The new approach is based on matched frontal impact sled computer simulations with a model representing the latest THOR‐M ATD version, and matching simulations with a human body model (HBM) representing an elderly car occupant.
Gefragt ist nach alterstypischen Verkehrsverstößen, die bei Senioren auf eine zunehmende Verkehrsunsicherheit hinweisen. Die Studie basiert auf Stichprobendaten des Verkehrszentralregisters (VZR) von 350.000 Personen zwischen 35 und 84 Jahren, deren Verkehrsauffälligkeit im Anschluss an eine VZR-Eintragung über zwei Jahre beobachtet wurde. Tatsächlich lässt sich ein alterstypisches Fehlverhalten identifizieren: überwiegend Vorfahrtfehler sowie Fahrmanöver mit hohem Unfallanteil. Zwei gegenläufige Effekte halten sich etwa die Waage: Zum einen weisen Personen mit einem alterstypischen Fehlverhalten in den nachfolgenden Jahren im Vergleich zu Personen mit anderen Delikten erheblich weniger Verkehrsverstöße auf, zum anderen zeigen sie einen bedeutend höheren Unfallanteil an den (reduzierten) VZR-Eintragungen. Beide Effekte werden mit dem Alter prägnanter. Entsprechend dem "Risiko-Homöostase-Modell" versuchen Verkehrsteilnehmer, beide Komponenten im Gleichgewicht zu halten, was mit zunehmendem Alter aber nicht mehr allen gelingt. Diese Ergebnisse wie auch Zahlen der amtlichen Statistik zeigen gegenwärtig aber (noch) kein mit dem Alter bedrohlich steigendes Verkehrsrisiko an. Die vorhandenen Mechanismen " neben der Selbstbeschränkung der Fahrleistung auch die Entziehung der Fahrerlaubnis sowie der Verzicht " scheinen für die weitaus meisten Kraftfahrer auszureichen, ihr steigendes Risiko wegen höherer Fahrunsicherheit im Alter auszugleichen. Auf die Übrigen könnte aufgrund einer VZR-Eintragung mit einem alterstypischen Fehlverhalten durch Verwarnung und Aufklärung, und wenn dies nachweislich einer erneuten Verkehrsauffälligkeit nicht ausreicht, durch weitere Maßnahmen gezielt Einfluss genommen werden. Dies wäre ab einem Alter von 75 Jahren zu erwägen, doch schon ab 70 Jahren zu rechtfertigen. Eine Verwarnung würde ab 70 Jahren gegenwärtig maximal 30.000 Personen pro Jahr betreffen. Mit einer Wiederauffälligkeit innerhalb von zwei Jahren wäre im heutigen System " also ohne Verwarnung " in maximal 2.800 Fällen zu rechnen.
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.
From literature well-known analyzes on risks, hazards and causes of accidents of older drivers are amended by the present study in which a comparison of the specific features of accident causes of older car drivers (older than 60 years) and of younger car drivers (under 25 years) is conducted. Mainly the question is pursued if specific errors, mistakes and lapses are predominant in the two different age groups. The analysis system ACAS (Accident Causation Analysis System) used hereby consists of a sequential system of accident causation factors from the human, the technical and the infrastructural field, whereupon for this study the influence of the human features on the accident development in two different age groups is of interest. ACAS is both an accident model and an analysis and classification system, which describes the human participation factors of an accident and their causes in the temporal sequence (from the perceptibility to concrete action errors) taking into consideration the logical sequence of individual basic functions. In five steps (categories) of a logical and temporal sequence the hierarchical system makes human functions and processes as determinants of accident causes identifiable. The methodology specifically focuses on the use in so-called "In-Depth" and "On-Scene" investigation studies. With the help of the system for each accident participant one or more of five hypotheses of human cause factors are formed and then specified by appropriate verification criteria. These hypotheses in turn are further specified by indicators in such manner that the coding of the causation factors by a code system meets the needs of database processing and are accessible to a quantitative data analysis. The first results of the descriptive comparison of the two age groups concern mainly differences in the functional levels "information admission/perception" (where the elderly drivers have more difficulties than the young ones) and "information processing/evaluation" (where the younger drivers show more problems). Concerning the cognitive function of "planning" the group of younger drivers seems to be more often involved in an accident because of excessive speed.
Das Thema Sicherheit von älteren Verkehrsteilnehmern hat sich zu einem wichtigen Schwerpunkt der verhaltenswissenschaftlichen Forschung der Bundesanstalt für Straßenwesen (BASt) entwickelt. Im Rahmen verschiedener Forschungsprojekte wurden verkehrssicherheitsrelevante Leistungspotenziale, Defizite, Gesundheitsdaten und Kompensationsstrategien aelterer Verkehrsteilnehmer untersucht sowie Interventionsmaßnahmen zur Verbesserung ihrer Fahrkompetenz herausgearbeitet. Zudem war die BASt im November 2014 Veranstalter der Konferenz "Ageing and Safe Mobility", auf welcher aktuelle Ergebnisse aus empirischen Untersuchungen zum Verhalten älterer Verkehrsteilnehmer, zur Straßeninfrastruktur und zur Fahrzeugtechnik diskutiert wurden. Die hierbei gewonnenen Erkenntnisse werden im vorliegenden Bericht aufgegriffen und zusammen mit Ergebnissen aus relevanten nationalen und internationalen Publikationen aufbereitet. Diese Übersichtsarbeit soll helfen, die neuen Herausforderungen für die Verkehrssicherheit, welche aufgrund der steigenden Anzahl der Älteren und ihrer Mobilitätsbedürfnisse aufkommen, angemessen zu bewältigen. Sie gibt den Stand der Forschung zu Mobilitätsbedürfnissen, altersbegleitenden fahrrelevanten Funktionsveränderungen sowie zu Kompensationsmechanismen älterer Fahrer umfassend wieder. Weiterhin werden die Eignung von Testungen zur Vorhersage der Fahrkompetenz sowie fahrerlaubnisrechtliche Regelungen in anderen europäischen Ländern näher beleuchtet. Einen weiteren Schwerpunkt bildet das Aufzeigen von Maßnahmen zur Verbesserung der Verkehrssicherheit Älterer, wobei hier überwiegend auf Maßnahmen eingegangen wird, die auf eine Veränderung des Verhaltens der Verkehrsteilnehmer abzielen. Auch wenn sich die vorliegende Übersichtsarbeit vorwiegend mit Älteren als Autofahrer beschäftigt, werden auch Kenntnisse über und Maßnahmen fuer Ältere als Fußgänger und Radfahrer dargelegt.
Test and assessment procedures for passive pedestrian protection of passenger cars are in place for many years within world-wide regulations as well as consumer test programmes. Nevertheless, recent accident investigations show a stagnation of pedestrian fatality numbers on European roads alongside increasing injury severities for older road users. The EU-funded SENIORS (Safety ENhancing Innovations for Older Road userS) project developed and evaluated a thorax injury prediction tool (TIPT) for later incorporation within test and assessment procedures. Accident data indicates an increasing portion of AIS2 and AIS3+ thoracic injuries of older pedestrians and cyclists which are currently not assessed in any test procedure for vulnerable road users. Therefore, SENIORS focused on the development of a test tool predicting the risk of rib fractures of vulnerable road users (VRU). While injury risk functions were reanalyzed, human body model (HBM) simulations against categorized generic vehicle frontends served as input for the definition of test setups and corresponding impact parameters. TIPT component tests against a generic frontend and an actual vehicle were used for the evaluation of the technical feasibility. The TIPT component tests shows the general feasibility of a test procedure for the assessment of thoracic injuries, with good repeatability and reproducibility of kinematics and results. Impact parameters such as the inclination angles of the thorax, angles of the velocity vector and impact speeds well replicate the parameters gained from the HBM simulations. The proposed markup and assessment scheme offers the possibility of a homogeneous evaluation of the protection potential of vehicle frontends while maintaining justifiable testing efforts. During evaluation testing, the proposed requirements were entirely met. The developed prototype of TIPT and launching system offer impact angles and speeds as suggested by HBM simulations. However, since thorax impacts during pedestrian accidents do not occur perpendicularly to the vehicle surface in most cases, the TIPT built-in linear potentiometers do not acquire the true resultant intrusions on the ribcage and thus, TIPT rib deflections do not reflect the actual human injury risk. However; for the impact forward to the bonnet leading edge, the TIPT seems applicable without further modifications. The test and assessment procedures using the TIPT offer for the first time the possibility of replicating the kinematics of a pedestrian thorax with a component test. The developed assessment scheme gives a first indication on how the risk for thoracic injuries could be implemented within the Euro NCAP Box 3 assessment. Future development of the TIPT may focus on implementing a rib cage that can deflect in all axes in a humanlike way.