Sonstige
Filtern
Erscheinungsjahr
Dokumenttyp
- Konferenzveröffentlichung (150)
- Buch (Monographie) (68)
- Wissenschaftlicher Artikel (9)
- Bericht (1)
- Arbeitspapier (1)
Schlagworte
- Accident (229) (entfernen)
Portugal has the highest rate of road fatalities in Europe (2002 and for Eur-15 - CARE database). For this highest rate, the accidents involving pedestrians and motorcycle occupants have a higher contribution than the European average. In the last years, especially accidents involving motorcycles have been investigated and currently two different projects are being carried out, one related with motorcycles accidents and the other with pedestrian accidents. In these projects, countermeasures among others to reduce the fatalities between these two types of road users are being studied. These accidents are investigated with the commercial accident reconstruction software PCCRASH but also new methodologies based on multibody dynamics are in development in order to more accurately study these two types of accidents. In this paper, the methodologies in use for accident reconstruction and new methodologies in development are presented. Speeding his found to be one of the major causes of road fatalities for pedestrians and motorcycle occupants. In the case of motorcycle accidents, these involve mainly young drivers. Aspects as social behavior are also important to understand the causes of some of these accidents. Some examples of accidents occurring in Portugal, involving especially motorcycles and pedestrians are presented and discussed.
This contribution introduces a number of psychological methods of analysis that are based on the practice-oriented collection of information directly at the site of an accident and that allow for an analysis and coding of the accident causes. Investigation examples and examples of the data combinations with basic medical and technical data are outlined. Objective of the collection is the inter-disciplinary investigation of human factors in the causes of accidents ("human-factor-analysis"). The psychological data are incorporated according to an integrative model for accident causes based on empiric algorithms in the data base of the accident research, where the clustered evaluation potential of comprehensive factors of the accident development can be illustrated. The central theoretical concept for the basic model of the progress of the accident from a psychological point of view comprises psychological indicators for the evaluation of the site of the accident for the analysis of the perception conditions as well as a classification of the gleaned data into the accident progress model according to chronological and local criteria. Perception conditions, action intentions and executions as well as conditions limiting perception and actions are acquired, using a questionnaire for persons involved in an accident, and are also integrated into the data structure concerning weighted feature characteristics as well as combined with other relevant features. Suitable systematization tools for the collection and coding of psychological accident development parameters have to be provided, which require primarily a model image of the corresponding processes from the persons involved in the accident (perceptions, expectations, decisions, actions). The interactive accident model contains components of the models by KÜTING 1990, MC DONALD 1972, SURREY 1969 and RASMUSSEN 1980. Based on the inter-action of the three partial systems "person", "vehicle" and "environment", the first step is the assessment of the situation by the persons involved in the accident. This is dependent on the personal attitudes and motives, on experiences and expectations concerning the progress of the situation. Subsequently, data concerning the manner of the coping with the ambiguous state as well as with the instable state (emergency reaction immediately before the accident occurs) are collected. The factors relating to the persons involved in the accident are gathered on several levels using corresponding questionnaires. The coding of the found and collected characteristics is conducted in a multidimensional evaluation relating to the technical results of the accident reconstruction and of the psychological classification, which are subsequently integrated in coded form into the data base of the accident research. The result of this analysis is a description of the development of the accident depicted on a chronological vector from a perception and decision theoretical perspective. This is explained in detail using exemplary cases.
Detailed investigations and reconstructions of real accidents involving vulnerable road users
(2005)
The aim of this research is to improve knowledge about vulnerable road users accidents and more specifically pedestrians or cyclists. This work has been based on a complete analysis of real accidents. From accidents chosen from an in-depth multidisciplinary investigation (psychology, technical, medical), we have tried to identify the configuration of the impact: car speed, pedestrian or cyclist orientations. Then, we have made a numerical modelling of the same configuration with a multibody software. In particular, we have reproduced the anthropometry of the victim and the front shape of the car. A first simulation has been performed on this starting configuration. Next, effects of some parameters such as car velocity or victim position at impact have been numerically studied in order to find the best correlations with all indications produced by the in-depth analysis. Finally, the retained configuration was close to the presumed real accident conditions because it reproduces in particular the same impact points on the car, the same injuries, and is according to the driver statement. This double approach associating an in-depth accident analysis and a numerical simulation has been applied on pedestrian-to-car and bicyclist-tocar accidents. It has allowed us to better understand the real kinematics of such impacts. Even if this method is based on a case to case study, it underlines which parameters are relevant on a vulnerable road user accident investigation and reconstruction.
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.
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.
In-depth road traffic accident research in Spain is a fairly recent activity. In the past, only accident data that had been retrospectively processed by the national and regional traffic police forces was available. In 1999 Applus+IDIADA set up a permanent accident research unit to carry out indepth analysis of road accidents in Spain. Since then accidents involving cars, motorcycles, coaches and vulnerable road users have been thoroughly studied. The Applus+IDIADA accident research team has carried out work for the various traffic polices in Spain and it is currently involved in several research projects in which accidentology is one of the main tasks. The working methodology of the team is presented in the first part of the paper. In the framework of the European research project "Rollover" (GRD2-2001-50086), Applus+IDIADA has collected data, inspected scenarios and performed virtual reconstructions of twenty-six of the total seventy-six rollover accidents studied. The second half of the paper describes how these accident investigations were used to develop a test procedure for identifying possible improvements to the vehicle structure which augment occupant protection in a rollover scenario. In particular, a proposal for a new drop test for rollover assessment is presented. The cases were analysed for severity, in terms of injury to the occupants and damage to the vehicle, and taking into account whether a seatbelt was worn or not. The worst possible cases were identified as those that had severe occupant injuries and sizable damage to the occupant compartment when seatbelts had been worn. The most severe cases were then analysed further for impact position (roll and pitch angles) and the impact velocity. With these parameters taken into account, the most representative combinations could be found. This resulted in a series of configurations for possible drop tests. The results of the tests indicate where passenger vehicle structures need to be improved in order to increase occupant safety in the event of a rollover crash.
Interaction of road environment, vehicle and human factors in the causation of pedestrian accidents
(2005)
The UK On-the-Spot project (OTS) completed over 1500 in-depth investigations of road accidents during 2000-2003 and is continuing for a further 3 years. Cases were sampled from two regions of England using rotating shifts to cover all days of the week and all hours of the day and night. Research teams were dispatched to accidents notified to police during the shifts; arrival time to the scene of the accident was generally less than 20 minutes. The methodology of OTS includes sophisticated systems for describing accident causation and the interaction of road, vehicle and human factors. The purpose of this paper is to describe and illustrate these systems by reference to pedestrian accidents. This type of analysis is intended to provide an insight into how and why pedestrian accidents occur in order to assist the development of effective road, vehicle and behavioural countermeasures.
76 severe traffic accidents had been investigated in depth in an ongoing Volkswagen-Tongji University joint accident research project in JiaDing district, Shanghai, PR China since June 2005. With a methodology similar to German accident research units in Dresden and Hannover, a research team proceeds to the scene immediately after the incident to investigate and collect various data on environment, accident occurrence, vehicle state and deformations as well as injuries. The data combined with the results of accident reconstruction will be stored in a database for further statistical and casuistic analysis. The first outcome of the project supports the hypothesis that a main causation for the large number of traffic accidents in China is the lacking of risk awareness in Chinese driver behaviour. Low seat-belt use and the high proportion of vulnerable and poorly protected two-wheelers in traffic are reasons for the high injury and fatality rate in China. The research work shows that accident research in China is feasible and able to give support to tackle one of the urging problems in Chinese development.
The "Seven Steps Method" is an analysis and classification system, which describes the human participation factors and their causes in the temporal sequence (from the perceptibility to concrete action errors) taking into consideration the logical sequence of individual basic functions. By means of the "seven steps" it is possible to describe the relevant human causes of accidents from persons involved in the accident in an economic way with a sufficient degree of exactitude, because the causes can be further differentiated in their value (e.g. diversion as external diversion with regard to impact due to surroundings) and their sub values (e.g. external diversion with regard to impact due to surroundings in the shape of a "capture" of the perception by a prominent object of the traffic environment). Theoretically it is possible that one or more causing moments can be assigned to a person involved in an accident in each of the "seven steps"; however it is also possible to sufficiently clarify the cause in only one level (examples for this are described). In the practice of accident investigation at the site of the accident, the sequence chart is also relevant. With its assistance the questioning of the people involved in an accident can be accomplished in a structured way by assigning a set of questions to each step.
The European Union has set a target to reduce all road fatalities (over 40,000) with 50% in 2010. This target percentage remained unchanged with the introduction of the ten new member states within the EU as by May 1st, 2004. According to Eurostat, 34% of all fatalities in 1998 in the, then, fifteen states of the European Union were the result of single vehicle collisions. This represents over 14,000 lives lost each year of which many can likely be saved through better roadside infrastructure design. The challenge for road safety professionals is to find methods and design strategies that help to reduce these casualties. Procedures for full-scale vehicle crash testing of guard rails were first published in the US in 1962. Present European regulation is mainly based on these procedures and later developments. Since then the vehicle fleet has changed considerably. Due to the complexity of the actual safety problem the numerical simulation approach offers a good opportunity to evaluate the different parameters involved in road safety, such as infrastructure properties, vehicle type, vehicle occupants and injuries. The ideal situation would be that simulation tools are coupled or integrated and all involved effects would be related. At the moment this is not the case yet, but initiatives are taken and a new virtual era has started. This paper offers a method looking at two components that encompass the driving environment: the car and the guardrail. As part of the EC-funded project, RISER (Roadside Infrastructure for Safer European Roads) a multi body simulation program study is carried out to determine sensitivities of some parameters in car to guardrail collisions and gives insides in performance of the car with passive safety equipment, the guardrail and the interaction of these objects with each other. By offering a set of methods that includes these two aspects and their intertwining relations, more confidence can be gained in actually reducing fatalities due to single vehicle collisions with, or due to, roadside furniture. Reducing the number of fatalities of single vehicle crashes would contribute greatly to the stated goal of reducing casualties altogether.
Due to recent years accident avoidance and crashworthiness on Austrian roads were mostly developed on national statistics and on-scene investigation respectively. Identification and elimination of black spots were main targets. In fact many fatal accidents do not occur on such black spots and black-spot investigation has reached a limit. New methods are required and therefore the Austrian Road Safety Programme was introduced by the Austrian Ministry of Transport, Innovation and Technology. The primary objective is the reduction of fatalities and severe injuries. Graz University of Technology initiated the project ZEDATU (Zentrale Datenbank tödlicher Unfälle) with the goal to identify similarities in different accident configurations. A matrix was established which categorizes risk and key factors of participating parties. Based on this information countermeasures were worked out.
NASS: the glass is half full
(2007)
The National Accident Sampling System (NASS) was born in the late 1970s. It was based on a substantial amount of experience and analysis of what was needed in the United States to understand the safety challenges of our highways. This work also showed how to collect high quality and useful crash data efficiently. Unfortunately, when Ronald Reagan - a President who believed in limited government - was elected, any hope of full funding for NASS was lost. The concept of 75 teams investigating about 18,000 serious crashes in detail annually was never realized. The system got up to 50 teams, then was cut to 36, and finally to 24 teams investigating fewer than a quarter of the originally anticipated number of crashes per year. Despite this, the NASS investigations provide a rich source of data, collected according to a sophisticated statistical sampling system to facilitate detailed national estimates of road casualties on our nation- highways and their causes. In addition, changes have been made in recent years to increase the number of more serious crashes of recent model vehicles to make the results more relevant to improving vehicle safety. A recent, detailed examination of hundreds of rollovers has provided considerable insight into rollover casualties and into what can be done to reduce them. Some of these results will be presented that show the value of the NASS system. Our experience with NASS and the Fatal Accident Reporting System (FARS) suggests a number of improvements that could be made in the United States" crash data systems. It also provides justification for a doubling or tripling of our national expenditures on crash data collection.
This study aimed to identify the occurrence, type and mechanisms of the traumatic injuries of the vulnerable road users in vehicle collisions, and to determine the effects of human, engineering, and environment factors on traffic accidents and injuries. The pedestrian accident cases were collected in the years 2000 to 2005 from Changsha Wujing hospital China and Accident Research Unit at Medical University Hannover in Germany. A statistic analysis was carried out using the collected accident data. The results from analysis of Changsha data were compared with results from analysis of GIDAS data Hannover. The injury severities were determined using AIS code and ISS values. The results were presented in terms of cause of injuries, injury distributions, injury patterns, injury severity. The factors influenced the injury outcomes were proposed and discussed for the vehicle transport environment and road users. The results were discussed with regard to accident data collection, accident sampling and injury distributions etc. In the urban area of Changsha, motorcycles and passenger cars are most frequently involved in vehicle pedestrian accidents. Head and lower extremities injuries are the predominant types of pedestrian injuries. The pedestrian accidents were identified as vital issue in urban traffic safety and therefore a high priority should be given to this road user group in research of safe urban transportation. In Hannover area, cars are most frequently involved in traffic accidents, injured pedestrians are involved in road traffic of Germany in 13% of all causalities only in 2005 and have nearly the same number as motorcyclists, but the half of bicyclists.
In recent years the boundaries between active and passive safety blurred more and more. Passive safety in the traditional term includes all safety aspects to prevent occupants to be injured or at least injury severity should be reduced. Passive Safety starts with the collision (first vehicle contact) and ends with rescue (open vehicle doors). Within this phase the occupant has to be protected by the passenger compartment whereby no intrusion should occur. Active safety on the other side was developed to interact prior to the collision whereby the goal is to prevent accidents. The extensive interaction between active and passive safety led to the terminologies "Primary" and "Secondary" safety whereas the expression Integrated Safety Concept was generated. Within this study the most well documented single vehicle accidents with cars not equipped with ESP were identified from the PENDANT database and reconstructed. Additional cases were found in the database ZEDATU of TU Graz. In comparison each case was simulated with the assumption that the cars were equipped with ESP. The differences regarding accident avoidance or crash severity as well as reduction of injury risk were analysed.
There is a need for detecting characteristics of pedestrian movement before car-pedestrian collisions to trigger a fully reversible pedestrian protection system. For this purpose, a pedestrian sensor system has been developed. In order to evaluate the effectiveness of the sensor system, the in-depth knowledge of car-pedestrian impact scenarios is needed. This study aims at the evaluation of the sensor system. The accident data are selected from the STRADA database. The accident scenarios available in this database were evaluated and the knowledge of the most common scenarios was developed in terms of the pedestrian trajectory, the pedestrian speed, the car trajectory, the car velocity, etc. A mathematical model was then established to evaluate the sensor system with different detective angles. It was found that in order to detect all the pedestrians in the most common scenarios on time the sensor detective angle must be kept larger than 60 degrees.
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.
Description of road traffic related knee injuries in published investigations is very heterogeneous. The purpose of this study was to estimate the risk of knee injuries in real world car impacts in Germany focusing vulnerable road users (pedestrians, bicyclists and motorcyclists) and restrained car drivers. The accident research unit analyses technical and medical data collected shortly after the accident at scene. Two different periods (years 1985-1993 and 1995-2003) were compared focusing on knee injuries (Abbreviated Injury Scale (AISKnee) 2/3). In order to determine the influences type of collision, direction and speed as well as the injury pattern and different injury scores (AIS, MAIS, ISS) were examined. 1.794 pedestrians, 742 motorcyclists, 2.728 bicyclists and 1.116 car drivers were extracted. 2% had serious ligamentous or bony injuries in relation to all injured. The risk of injury is higher for twowheelers than for pedestrians, but knee injury severity is higher for the latter group. Overall the current knee injury risk is low and significant reduced comparing both time periods (27%, p<0,0001). Severe injuries (AISKnee 2/3) were below 1%). Improved aerodynamic design of car fronts reduced the risk for severe knee injuries significantly (p=0,0015). Highest risk of injury is for motorcycle followed by pedestrians, respectively. Knee protectors could prevent injuries by reducing local forces. The classically described dashboard injury was rarely identified. The overall injury risk for knee injuries in road traffic is lower than estimated and reduced comparing both periods. The aerodynamic shape of current cars compared to older types reduced the incidence and severity of knee injuries. Further modification and optimization of the interior and exterior design could be a proper measurement. Classic described injury mechanisms were rarely identified. It seems that the AIS is still underestimating extremity injuries and their long term results.
Transportable Schutzeinrichtungen werden in Deutschland im Bereich von Autobahnbaustellen eingesetzt, um entgegengesetzt gerichtete Verkehrsströme zu trennen und Arbeitsstellen gegenüber dem laufenden Verkehr zu sichern. Bei schweren Unfällen kann es erforderlich werden, dass Schutzeinrichtungen geöffnet werden müssen, um den Rettungskräften den Zugang zur Unfallstelle zu erleichtern. Die deutschen Regelwerke sehen bislang keinen Einsatz von Notöffnungsmöglichkeiten in transportablen Schutzeinrichtungen vor. Ziel des Projektes war es, zu ermitteln, ob und wo durch die Verwendung von Öffnungsmöglichkeiten die Zugänglichkeit zum Unfallort erleichtert werden kann. Im zweiten Schritt sollten Vorgaben für eine einheitliche Gestaltung von Notöffnungen erarbeitet werden, die mit den marktgängigen Schutzeinrichtungen umsetzbar sind, und die es den Einsatzkräften ermöglichen, ohne Vorkenntnisse und ohne Werkzeuge die Öffnungen schnell und einfach zu bedienen. Dazu sollten sowohl Verschlussmechanismen wie auch eine visuelle Kennzeichnung betrachtet werden. Die Untersuchungen haben gezeigt, dass Notöffnungen mit sehr vielen marktgängigen Schutzeinrichtungen realisiert werden können. Das größte Problem bei der Umsetzung stellt für die meisten Systeme das hohe Eigengewicht der Elemente dar. Von einer grundsätzlichen Verwendung von Notöffnungen an Arbeitsstellen auf Autobahnen ist abzuraten. Jedoch können unter bestimmten Voraussetzungen, die in einem Kriterienkatalog zusammengefasst wurden, durch den Einsatz von Notöffnungen die Zugriffsmöglichkeiten bei Unfällen verbessert werden. Aus Gründen der Verkehrssicherheit empfiehlt es sich, Notöffnungen jeweils am Beginn und am Ende einer Baustelle zu platzieren. Sind zusätzliche Öffnungspunkte dazwischen erforderlich, muss sehr gut abgewägt werden zwischen dem Faktor Zeitgewinn und dem erhöhten Risiko für Einsatzkräfte und den nachfolgenden Verkehr.
Für einige fahrfremde Tätigkeiten ist durch Labor- und Feldstudien gut belegt, dass diese das Fahren beeinträchtigen können. Weitgehend unbekannt ist aber, wie häufig und bei welchen Gelegenheiten diese Tätigkeiten während des Fahrens durchgeführt werden. Erst aus der Integration von Auftretenshäufigkeit und Gefährlichkeit einer fahrfremden Tätigkeit lässt sich abschätzen, inwieweit sie das Unfallrisiko erhöht. Im Wesentlichen eignen sich vier Studientypen zur Untersuchung von Häufigkeit und Gefährlichkeit fahrfremder Tätigkeiten. Die Frage nach der Gefährlichkeit lässt sich effektiv im Simulatorexperiment beantworten, allerdings ist hier die Übertragbarkeit auf reales Fahren problematisch. Mit Naturalistic Driving Studies können sowohl Häufigkeit als auch Gefährlichkeit fahrfremder Tätigkeiten im Realverkehr untersucht werden. Ergebnisse solcher Studien haben die beste Gültigkeit. Demgegenüber steht ein extrem hoher finanzieller und zeitlicher Aufwand. Informationen über die Häufigkeit fahrfremder Tätigkeiten können alternativ durch Befragungsstudien erfasst werden. Dabei können zum einen Fahrer direkt nach einer Fahrt aufgesucht und mit Face-to-Face-Interviews befragt werden. Zum anderen kann eine repräsentative Auswahl von Fahrern gebeten werden, an einem Tag ein Fahrttagebuch zu führen, in dem fahrfremde Tätigkeiten registriert werden. Beides ermöglicht einen effektiven Zugang zu einer repräsentativen Stichprobe. Zentrales Problem beider Studientypen ist die Frage, inwieweit fahrfremde Tätigkeiten überhaupt berichtbar sind und auch tatsächlich berichtet werden. Alle Ansätze setzen voraus, dass eine umfassende, eindeutige Definition fahrfremder Tätigkeiten vorliegt. Mit Hilfe einer Literaturstudie wurde ein Katalog relevanter fahrfremder Tätigkeiten entwickelt. In der untersuchten Literatur fanden sich zwei unterschiedliche Arten von Studien: Die erste Gruppe von Studien basiert auf Unfallstatistiken und -datenbanken aus verschiedenen Ländern. Die zweite Gruppe von Studien sind Beobachtungen der Fahrer während der Fahrt. Fasst man die Unfallstudien zusammen, so erscheint eine Häufigkeit zwischen 10% und 30% fahrfremder Tätigkeiten bei allen Unfällen als wahrscheinlich. Für die Beobachtungsstudien bei unfallfreien Fahrten findet sich insgesamt ein Anteil von ca. 30% der Fahrzeit, die mit fahrfremden Tätigkeiten verbracht wird. Die Ergebnisse weisen darauf hin, dass nicht jede fahrfremde Tätigkeit das Unfallrisiko erhöht, aber dass sich für bestimmte fahrfremde Tätigkeiten unter bestimmten Umständen sehr deutliche Erhöhungen des Unfallrisikos zeigen lassen. Allerdings sind die vorliegenden Ergebnisse sehr heterogen und fehlen für Deutschland weitgehend. Vor diesem Hintergrund wurde mit einer Machbarkeitsstudie mit knapp 300 Fahrern untersucht, inwieweit ein Face-to-Face-Interview geeignet ist, um die Häufigkeit fahrfremder Tätigkeiten durch eine Befragung direkt nach der Fahrt in Deutschland zu erfassen. Die dabei befragten fünf Fahrergruppen unterscheiden sich in einer Reihe von Merkmalen, die wiederum die Häufigkeit fahrfremder Tätigkeiten beeinflussen können. Insgesamt gaben 80% der befragten Fahrer an, dass sie zwischen einer und drei fahrfremde Tätigkeiten in der letzten halben Stunde ausgeführt haben. Den zeitlich größten Teil der fahrfremden Tätigkeiten machen die Interaktionen mit Beifahrern und die Bedienung fahrzeugfremder Geräte aus. Den Fahrern ist zwar prinzipiell bewusst, dass fahrfremde Tätigkeiten gefährlich sein könnten, für die von ihnen durchgeführten Tätigkeiten sind sie aber der Meinung, dass diese eher nicht gefährlich oder ablenkend gewesen sind. Damit wird deutlich, warum die Fahrer so häufig und über so einen langen Zeitraum fahrfremde Tätigkeiten ausführen. Sie sind offensichtlich davon überzeugt, dass dies zwar prinzipiell gefährlich sein kann, dies aber in der speziellen Situation für sie nicht zutrifft. Unter methodischen Gesichtspunkten hat sich dieser Zugang bewährt. Mit Hilfe von Face-to-Face- Interviews direkt nach der Fahrt sind mit einem sehr überschaubaren Aufwand Schätzungen der Häufigkeit und Dauer fahrfremder Tätigkeiten innerhalb der letzten halben Stunde der Fahrt zu erhalten. Die hohe Teilnahmequote und die Auskunftsfreudigkeit der Teilnehmer sprechen dafür, dass diese die von ihnen durchgeführten fahrfremden Tätigkeiten ehrlich und vollständig berichten. Es zeigt sich, dass fahrfremde Tätigkeiten sowohl in der Häufigkeit also auch in ihrer Dauer auch in Deutschland ein großes Problemfeld darstellen. Allerdings sollten diese Befunde mit größeren Stichproben repliziert werden, bei denen der Anteil anderer Fahrten (nachts, andere Jahreszeiten, andere Fahrziele) und Fahrer (Lkw-Fahrer in der Stadt) zu erhöhen wäre. Mit der beschriebenen Art des Vorgehens wäre dies mit einem begrenzten Aufwand gut möglich.
Das Ziel der vorliegenden Arbeit war der Vergleich verschiedener Stauendewarnungen hinsichtlich ihrer Effekte auf die Fahrsicherheit. Hierfür wurden im Rahmen einer Fahrsimulatorstudie mit N = 32 Probanden mit Bewegungssystem on-trip Warnungen vor Stauenden auf Autobahnen untersucht. Es wurden in zwei Verkehrsbedingungen ("mit Verkehr" vs. "ohne Verkehr": Stauenden werden mit oder ohne Umgebungsverkehr erreicht) jeweils zwei Stauendearten simuliert: (1) Umgebungsverkehr bremst kurz vor dem Stauende plötzlich ab ("hartes Stauende") bzw. Stauende ist durch die Streckengeometrie nicht einsehbar ("verdecktes Stauende") vs. (2) Umgebungsverkehr reduziert die Geschwindigkeit vor dem Stauende graduell ("weiches Stauende") bzw. Stauende ist einsehbar ("unverdecktes Stauende"). Zudem wurde der erstmalige Zeitpunkt der Warnung ("3.5 km" vs. "1.5 km" vs. "0.3 km" vor Stauende) und die Warnpräzision ("präzise Warnung": Distanz zum Stauende wird angezeigt und regelmäßig aktualisiert vs. "unpräzise Warnung" ohne konkrete Distanzangabe) variiert. Außerdem wurden Stauenden in einer nicht-gewarnten Kontrollfahrt angefahren. Es wurde ein Bewertungskonzept für die Fahrsicherheit entwickelt, anhand dessen die eingeführten Warnkonzepte mittels Indikatoren für Längs- und Querregelung, Ereigniserkennung und Probandenbefragung verglichen werden können: (1) Die Rohdaten verschiedenartiger Indikatoren wurden in einem deskriptiven, graphischen und inferenzstatistischen Vorgehen interpretiert und (2) die so ermittelten Kennwerte wurden in eine integrierte statistische Auswertung mittels TOPSIS (Technique for Order Preference by Similarity to Ideal Solution), das einen standardisierten Vergleich verschiedener Warnalternativen ermöglicht, überführt. Dieses Bewertungskonzept wurde auf die in der Fahrsimulation aufgezeichneten Daten angewendet, so dass für die eingeführten Variationen der Stauendearten (Warnpräzision und Warndistanz) in Abhängigkeit der Verkehrsbedingung eine vergleichende Bewertung der Sicherheitswirkungen ermöglicht wurde. Durch eine ergänzende kritische Einordnung der Ergebnisse und des Versuchsaufbaus dienen die Ergebnisse als Entscheidungsunterstützung bei der Entwicklung und Einführung von Stauendewarnungen.