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From an automotive safety occupant protection standpoint, effective occupant restraint requires a system capable of providing non-injurious occupant ride down of anticipated crash forces. This is not only the case for frontal collisions, where occupant restraint is provided primarily by seatbelts and airbags, but is also critical for other crash modes such as side impacts, rear impacts, rollovers, as well as multiple impact events. In the rear impact crash mode, occupant restraint is provided primarily by the seatbacks and to some extent the seatbelts. Foundationally, therefore, what becomes fundamental to the seatback's role in rear occupant protection is its ability to contain the occupant within the seat, preventing occupant ramping, as well as preventing the seat's, and/or its occupant's, dangerous intrusion into the rear occupant's survival space where contact with rear compartment components and/ or rear seated occupants can present a significant injury risk. An analysis is presented of a series of rear impact sled testing conducted by the authors that evaluates the timing, position and extent of the front seatback's reward displacement toward and into the rear occupant compartment as well as consideration of the front seat occupant' ramping potential and its injury potential relative to the rear compartment. Additionally, three other series of testing are presented which assess various seat designs occupant retention capabilities. Lastly, a matched-pair comparison test series is presented which evaluates occupant motion in rear impact with and without use of a typical vehicle body mounted 3-point seatbelt. Discussion of restraint system performance observed in all the testing is included along with ATD biofidelity and thigh-gap considerations. The data collected and presented includes accelerometer instrumentation and high speed video analysis.
Powered Two Wheeler (Motorcycle) crashes are overrepresented in EU, England, and United States casualty statistics for both fatal and serious injuries. While regional geographic differences are evident for motorcycle size, type, and engine displacement, the casualty statistics consistently indicate significantly higher injury rates for all motorcycle riders when compared to car occupants. Accident analysis and reconstruction of these motorcycle crashes is a necessary process to gain further understanding of potential injury mitigation strategies. This paper focuses on the analysis of the rider post impact trajectory in the immediate moments following a crash. The rider and motorcycle, while loosely coupled by seating position leading up to a crash, quickly decouple as the crash forces develop. As a result, the rider moves relative to the motorcycle and relative to the collision partner. This movement, or trajectory, is primarily influenced by the type and configuration of the impact, the type and configuration of the motorcycle and collision partner, and the speeds involved. Understanding the rider's post impact trajectory will assist in the development of injury mitigation strategies. Both the free flight trajectory of the rider and the rider's trajectory as influenced by interaction with the motorcycle and collision partner are examined. Rider trajectories in full scale crash testing and real world motorcycle crashes are both studied and presented. The resulting physical evidence that can be observed by an accident analyst is discussed. The application of projectile motion physics is analyzed and the necessary input parameters, such as initial launch angle, are studied. This study will assist in understanding the post-impact dynamics of a motorcyclist, and will provide useful information to analysts evaluating real world crashes.
Motorcycle crashes in Austria: Analysis of causes and contributing factors based on in-depth data
(2017)
From CEDATU, the in-depth accident database run by the Vehicle Safety Institute at Graz University of Technology, a representative sample of 101 crashes involving at least one motorcycle was selected. The analysis focused on causes for crashes as well as on contributing factors, but also included parameters of road, riders and vehicles. Own riding speed and "unexpectable action by another road user" were the most frequent causes for accidents. Inappropriate safety distance or delayed reaction were frequent, both as causation factors and as contributing factors. Infrastructure issues never cause an accident, but they are very frequent as contributing factors; road geometry and road guidance are by far most frequent among these. This paper also discusses accidents by type and other parameters (e.g. injury severity by body region, collision speed, age and others), and compares accident causes to previous studies as well as the police reported accident statistics.
Die vorliegende Studie liefert Ergebnisse zur Marktdurchdringung von Fahrzeugsicherheitssystemen im Jahr 2015. Wie bereits im Jahr 2013 wurde die Studie von infas und dem Institut fuer Kraftfahrzeuge (ika) durchgeführt. Dazu wurden 5.040 Haushalte zur Ausstattung eines ihnen zur Verfügung stehenden Fahrzeugs befragt und 56 Fahrzeugsicherheitssysteme ausgewählt. Neben den quantitativen Interviews wurden zwei Fokusgruppen mit Neu- bzw. Gebrauchtwagenkäufern durchgeführt. In der vorangegangenen Studie von 2013 wurden Experten befragt, die beruflich mit dem Ein- oder Verkauf von Pkw fuer Unternehmensflotten befasst sind. Die weiteste Verbreitung haben passive Sicherheitssysteme wie Airbags, die darauf abzielen, die Folgen eines Unfalls fuer die Beteiligten abzumildern. Aber auch aktive und intervenierende Systeme, die Risiken vermeiden oder einzelne Fahraufgaben übernehmen, gehören haeufig zur Fahrzeugausstattung. Die häufigsten Vertreter aus dieser Gruppe sind der Bremsassistent, ESP und der Tempomat. Die meisten Fahrzeugsicherheitssysteme sind in Fahrzeugen der oberen Mittelklasse und Oberklasse zu finden. Mit der jährlichen Fahrleistung und der Nutzungshäufigkeit nimmt die Anzahl der Systeme ebenso zu wie bei jüngeren Fahrzeugen und Dienstwagen. Die grössten Veränderungen gibt es im Segment der SUVs und Geländewagen. Hier steigt die Zahl der Neuzulassungen in den letzten Jahren deutlich und die Ergebnisse zeigen, dass diese Fahrzeuge häufig mit einer Vielzahl von Sicherheitssystemen ausgestattet sind. Die Ergebnisse aus der Vorgängerstudie zeigen, dass gewerbliche Fahrzeughalter solche Fahrzeugsicherheitssysteme in die Standardausstattung aufnehmen, deren Nutzen nachgewiesen ist. In der diesjährigen Studie wird deutlich, dass auch private Käufer Systeme insbesondere dann als sicherheitsrelevant und sinnvoll erachten, wenn sie durch den Gesetzgeber vorgeschrieben oder bereits seit längerer Zeit auf dem Markt etabliert sind. Es zeigt sich auch, dass insbesondere die eigene Erfahrung mit Sicherheitssystemen Vorurteile abbaut und zu einer positiven Einstellung gegenüber solchen Systemen führt.
When assessing the consequences of accidents normally the injury severity and the damage costs are considered. The injury severity is either expressed within the police categories (slight injury, severe injury or fatal injury) or the AIS code that rates the fatality risk of a given injury. Both injury metrics are assessing the consequences of the accident directly after the accident. However, not all consequences of accidents are visible directly after the accident and the duration of the consequences are different. Besides a physiological reduction of functionality social and psychological implications such as reduced mobility options, problems to continue the original job etc. are happening. In order to assess long term consequences of accidents the MHH Accident Research Unit established a brief questionnaire that is distributed to accident involved people of the Hannover subset of the GIDAS data set approx. one year after the accident beginning with the accident year 2013. The basic idea of using a brief questionnaire (in fact only one page) is to obtain a relatively large return rate because the questionnaire appears to be simple and quickly answered. This appears to be important because it is believed that the majority of accident involved people will not report long term consequences. In order to allow a more detailed survey amongst those responders that are reporting long term consequences they are asked for a written consent for the additional questionnaire that will be distributed at a time that is not yet defined. Long term consequences are reported for all addressed areas, medical, physiological, psychological and sociological by people without injuries, with minor injuries and with severe injuries.
Leiser Straßenverkehr 3
(2017)
Aus dem Verkehrsforschungsprogramm der Bundesregierung wurden seit 2001 die Verbundprojekte Leiser Straßenverkehr gefördert. In 2014 wurde das dritte und letzte Verbundprojekt erfolgreich abgeschlossen. Das Verbundprojekt Leiser Straßenverkehr 3 (LeiStra3) hatte sich als zentrales Ziel gesetzt, Maßnahmen zur Minderung des Straßenverkehrslärms in Ballungsräumen zu entwickeln, die dort aufgrund der hohen Bevölkerungsdichte besonders wirkungsvoll sind. Es wurden verschiedene Forschungsansätze verfolgt, die die Geräuschemission an der Lärmquelle nachhaltig reduzieren. Partner aus Wirtschaft und Wissenschaft haben in einer interdisziplinär angelegten Forschungsarbeit gemeinsam Lösungen erarbeitet, mit denen das Lärmminderungspotenzial von Reifen, Fahrzeug und Fahrbahn weiter ausgeschöpft werden kann. In allen Arbeitspaketen wurden zahlreiche Ergebnisse und Erkenntnisse gewonnen, die dazu beigetragen haben, die bestehende Technik zu verbessern, die Impulse zur Entwicklung neuer Technologien gesetzt haben und auf deren Basis das Technische Regelwerk fortgeschrieben wurde. rnDas Verbundprojekt "Leiser Straßenverkehr 3" wurde durch das Bundesministerium für Wirtschaft und Technologie unter dem Förderkennzeichen 19U10016 A-M gefördert. Der vorliegende Schlussbericht wurde auf der Grundlage der Originalberichte der Partner erstellt. Auf die Wiedergabe von Anhängen wurde in der vorliegenden Veröffentlichung verzichtet. Die Berichte der einzelnen Teilvorhaben sind ungekürzt bei der Technischen Informationsbibliothek (TIB) veröffentlicht.
Im Rahmen dieser Begleitstudie zum Feldversuch mit Lang-Lkw wurde untersucht, wie die technischen Anforderungen der Verordnung über Ausnahmen von straßenverkehrsrechtlichen Vorschriften für Fahrzeuge und Fahrzeugkombinationen mit Überlänge (LKWÜberlStVAusnV) von teilnehmenden Speditionen umgesetzt wurden. Die Studie fußt auf den der BASt von den am Feldversuch teilnehmenden Speditionen zur Verfügung gestellten Daten sowie Fahrzeugbegutachtungen. Sie bildet den Stand vom 15.07.2013 mit 43 Lang-Lkw von 23 Speditionen ab. 31 Lang-Lkw vom Typ 3 bilden hierbei den größten Anteil. Alternative Umsetzungsmöglichkeiten technischer Anforderungen wurden speziell bei Achslastüberwachungssystemen und Kamera-Monitor-Systemen am Heck betrachtet. Die Achslastüberwachungssysteme weisen keine Spezifikationen hinsichtlich ihrer Genauigkeit auf. Probemessungen zeigten jedoch eine hinreichende Genauigkeit, um etwaige Überladungszustände transparent zu machen. Mit den Kamera-Monitor-Systemen können Objekte hinter dem Fahrzeug erkannt werden, eignen sich jedoch je nach Kameraposition eher zur Beobachtung des rückwaertigen Verkehrs oder als Rückfahrhilfe. Durch Simulationen und Fahrversuche wurde das Kurvenlaufverhalten der Fahrzeuge entsprechend -§ 32d der StVZO ("BO-Kraftkreis") überprüft. Es zeigte sich hierbei, dass die Prüfvorschriften nicht hinreichend genau definiert sind und sich speziell für Lang-Lkw je nach Auslegung unterschiedliche Werte ergeben können. Die Studie zeigt weiter, dass Lang-Lkw gegenüber Lkw herkömmlicher Bauart bei einem Gesamtgewicht von 40 t einen kürzeren Bremsweg aufweisen und keine erhöhte Sogwirkung auf Zweiräder ausüben. Darüber hinaus werden Unterschiede in der Fahrdynamik durch Simulationen aufgeschlüsselt, wodurch auf weiteren Forschungsbedarf hingewiesen wird. In Fragebögen wurde die Wirksamkeit der hinteren Beschilderung der Lang-Lkw untersucht. Die Befragung zeigte eine höhere Wirksamkeit von Piktogrammen, welche gegenüber Aufschriften zu bevorzugen sind. Die Auswertung von Flottentelematikdaten ergab eine CO2-Reduktion eines Lang-Lkw von rund 15 % gegenüber Lkw herkömmlicher Bauart, wenn beide Fahrzeuge die gleiche Güterart transportieren.
In-depth accident investigation offers many advantages for the analysis and comprehension of crash mechanisms. IFSTTAR makes such investigations since 1992 without interruption. The corresponding database contains more than 1200 accident case studies. Currently, in-depth accident investigation is one of the best ways to determine the speed or cars involved in accidents. This paper first presents the methods used for accident investigation and for accident kinematic reconstruction. Then, in order to illustrate the interest and possible applications of such accident data, it shows some results from a recent study based on the IFSTTAR in-depth accident study programme (IDAS) and dealing with the link between travelling speed and accident risk.
Interdisciplinary accident research and research projects of AARU Audi Accident Research Unit
(2017)
AARU (Audi Accident Research Unit) is an interdisciplinary research project of the University Hospital Regensburg in cooperation with AUDI AG. Specific objective is to comprehend the respective accident scenario and retrieve generally applicable findings as to technical, medical and psychological processes. In order to prevent traffic accidents and to alleviate vehicle accident consequences, postulates of general traffic safety, human-machine interaction, technical design and function of new vehicles and occupant as well as third party protection shall be inferred from these findings. Specifically, each accident with new Audi, Lamborghini and Ducati vehicles involved is analyzed interdisciplinary, discussed in a case meeting and anonymously documented with more than 2,000 parameters. The database is continually used for solving safety relevant issues. Parallel to accident analysis, research projects are performed in the fields medicine, psychology and engineering in order to gain comprehensive insight and identify potential additional areas of activity of accident research.
Injury probability functions for pedestrians and bicyclists based on real-world accident data
(2017)
The paper is focusing on the modelling of injury severity probabilities, often called as Injury Risk Functions (IRF). These are mathematical functions describing the probability for a defined population and for possible explanatory factors (variables) to sustain a certain injury severity. Injury risk functions are becoming more and more important as basis for the assessment of automotive safety systems. They contribute to the understanding of injury mechanisms, (prospective) evaluation of safety systems and definition of protection criteria or are used within regulation and/or consumer ratings. In all cases, knowledge about the correlation between mechanical behavior and injury severity is needed. IRFs are often based on biomechanical data. This paper is focusing on the derivation of injury probability models from real world accident data of the GIDAS database (German In-depth Accident Study). In contrast to most academic terms there is no explicit term definition or definition of creation processes existing for injury probability models based on empirical data. Different approaches are existing for such kind of models in the field of accident research. There is a need for harmonization in terms of the used methods and data as well as the handling with the existing challenges. These are preparation of the dataset, model assumptions, censored/unknown data, evaluation of model accuracy, definition of dependent and independent variable, and others. In the presented study, several empirical, statistical and phenomenological approaches were analyzed regarding their advantages and disadvantages and also their applicability. Furthermore, the identification of appropriate prediction parameters for the injury severity of pedestrians has been considered. Due to its main effect on injuries of pedestrians and bicyclists, the importance of the secondary impact has also been analyzed. Finally, the model accuracy, evaluated by several criteria, is the rating factor that gives the quality and reliability for application of the resulting models. After the investigation and evaluation of statistical approaches one method was chosen and appropriate prediction variables were examined. Finally, all findings were summarized and injury risk functions for pedestrians in real world accidents were created. Additionally, the paper gives instructions for the interpretation and usage of such functions. The presented results include IRFs for several injury severity levels and age groups. The presented models are based on a high amount of real world accidents and describe very well the injury severity probability of pedestrians and bicyclists in frontal collisions with current vehicles. The functions can serve as basis for the evaluation of effectiveness of systems like Pedestrian-AEB or Bicycle-AEB.
Recently, EuroNCAP updated the upper legform test protocols. The main objective of this study is to establish the upper legform test in KIDAS (Korean In-depth Accident Study) taking into account domestic pedestrian accident data as well as anthropometric data to protect elderly pedestrians whose average height and weight is much smaller and lighter than other age groups, especially compared to Europeans. Therefore 230 cases of pedestrian accidents from KIDAS were investigated to explore the injury severity of body regions as well as age related injury patterns. Injuries of all body regions were examined, with a special focus on injuries of abdomen and pelvic area. On the other hand, in order to explore Korea's pedestrian accident environment, national police data and KIDAS (Korean In-depth Accident Study) data were compared. The results should be taken into account in future analyses and possible improvements, such as regulations and KNCAP test protocols, of the pedestrian safety policy in Korea.
This work describes the results of the experimental activity, illustrating the driving behavior observed in different conditions, relating them to the different methods of ADAS intervention and comparing the driver behavior without ADAS. In the present study, driver behavior was studied in road accidents involving elderly pedestrians, with different ADAS HMIs, as a base to develop a driver model in near missing pedestrian accidents. A literature research was conducted with the aim of finding out the main influencing factors, including environment, boundary conditions, configuration of impact, pedestrian and driver information, when pedestrian fatalities occur and an analysis of frequent road accidents was conducted to get more detailed information about the driver- behavior. In order to obtain more detailed information about pedestrian accidents, real road accidents were reconstructed with multibody simulations on PC-Crash and, by the comparison between literature findings and reconstructions, a generic accident scenario was defined. The generic accident scenario was implemented on the full scale dynamic driving simulator in use at the Laboratory for Safety and Traffic Accident Analysis (LaSIS, University of Florence, Italy) in order to analyse the driving behaviors of volunteers, also considering the influence of ADAS devices. Forty-five young volunteers were enrolled for this study, resulting in forty valid tests on different testing scenarios. Two different scenarios consisted in driving with or without ADAS in the vehicle. Different kinds of ADAS, acoustic and optical, with different time of intervention were tested in order to study the different reactions of the driver. The tests showed some interesting differences between driver's behavior when approaching the critical situation. Drivers with ADAS reacted earlier, but more slowly, depending also on the type of alarm, and often with double reaction when braking. In fact, the results of the activity showed that with ADAS intervention the time to collision (TTC) increases, but the reaction time and braking modality change: a) there is a sort of "latency" time between the accelerator pedal release and the brake pressure; b) the brake pressure is initially less intense. So the driver only partially takes advance from the TTC increase. These differences were valued not only qualitatively, but quantitatively as well. This work revealed to be useful to improve the knowledge of drivers" behavior, in order to realize a driver model that can be implemented to help attaining and assessing higher levels of automation through new technology.
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.
Although road infrastructure is developed extensively Brazil is still one of the countries with the most dangerous roads in the world. In order to stop the increasing trend of traffic fatalities of the last few years and to improve traffic safety on Brazilian roads a pilot study on behalf of SAE Brazil started in March 2016 with the goal to lay the foundations for a long-term research activity. Piloting for an in-depth accident investigation the city of Campinas, roughly 100 km north of São Paulo was chosen. The pilot project was carried out with the local partner, the Empresa Municipal de Desenvolvimento de Campinas (EMDEC). The paper reports on the initial training of evidence based accident data collection on-spot, the implementation of the new digital database, the data collection and the first results. An outlook on the planned long-term accident investigations is given.
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.
Cyclists are more likely to be injured in fatal crashes than motorised vehicles. To gain detailed and precise behavioural data of road users, i.e. trajectories, a measuring campaign was conducted. Therefore, a black-spot for accidents with cyclists in Berlin, Germany was selected. The traffic has been detected by a fully automated traffic video analysis system continuously for twelve hours. The video surveillance system is capable of automatically extracting trajectories, classifying road user types and precise determining and positioning of conflicts and accidents. Additionally, pre-conflict and pre-accident situations could be analysed to provide further in-depth understanding of accident causation. The evaluation of the measuring campaign comprised the investigation of traffic parameters, e.g. traffic flow, as well as traffic-safety related parameters based on Surrogate Safety Measures (SSM). Furthermore, the spatial and temporal distributions of conflicts involving cyclists were determined. As a result, three possible conflict clusters could be identified, of which one cluster could be confirmed by detailed video analysis, showing conflicts caused by right turning vehicles.
[Introduction:] A large number of road users involved in road traffic crashes recover from their injuries, but some of them never recover fully and suffer from some kind of permanent disability. In addition to loss of life or reduced quality of life, road accidents carry many and diverse consequences to the survivors such as legal implications, economic burden, job absences, need of care from a third person, home and vehicle adaptations as well as psychological consequences. Within an EU funded project MOVE/C4/SUB/2011-294/SI2.628846 (REHABIL AID) these consequences were analyzed more detailed.
Ziel der Untersuchung war es, eine Methodik für die HBS-konforme Durchführung und Auswertung von Simulationsstudien zu erarbeiten. Dazu wurden HBS-konforme Standardelemente in den Simulationsprogrammen BABSIM, VISSIM, Aimsun, Paramics und SUMO modelliert und an den Bemessungswerten des HBS kalibriert. Die Ermittlung der Kapazität erfolgte anhand der Identifikation von Zusammenbrüchen des Verkehrsflusses, die durch Steigerung der Verkehrsstärke auf bis zu 120 % der Kapazität nach HBS in der Simulation erzeugt wurden. An Teilknotenpunkten wurden sechs Verhältnisse der Verkehrsstärke auf der Hauptfahrbahn zur Verkehrsstärke des ein- bzw. ausfahrenden Stroms untersucht. Als Kriterium für die Übereinstimmung der in der Simulation ermittelten Kapazität und q-v-Beziehung mit dem HBS wurde eine maximale Abweichung von 5 % festgelegt. Die Fehlergrenze konnte mit den Simulationsprogrammen BABSIM, VISSIM, Aimsun und Paramics in der Regel eingehalten werden, während sich in SUMO größere Abweichungen ergaben. Die Übertragbarkeit der Parametersätze auf nicht HBS-konforme Bemessungssituationen wurde anhand der Daten realer Untersuchungsobjekte überprüft. Im Ergebnis werden Empfehlungen und Standardparameterkombinationen für die HBS-konforme Simulation des Verkehrsablaufs auf Autobahnen bereitgestellt, die als Ausgangsparameter für die Simulation nicht HBS-konformer Untersuchungsobjekte herangezogen werden können.
Das Handbuch "Barrierefreiheit im Fernbuslinienverkehr" soll helfen, die Attraktivität und den Komfort für alle Reisenden in Fernbussen, mit und ohne Mobilitätseinschränkungen, weiter zu stärken. Im Handbuch werden gesetzlich vorgeschriebene Maßnahmen zur Barrierefreiheit in Fernbussen erläutert sowie weitergehende (optionale) Maßnahmen aufgezeigt. Bei der Erstellung des Handbuchs wirkte die BASt im Projektbetreuerkreis mit und stellte die Fachbetreuer.
Im Rahmen dieser Begleitstudie zum Feldversuch mit Lang-Lkw wurde untersucht, wie die technischen Anforderungen der Verordnung über Ausnahmen von straßenverkehrsrechtlichen Vorschriften für Fahrzeuge und Fahrzeugkombinationen mit Überlänge (LKWÜberlStVAusnV) von teilnehmenden Speditionen umgesetzt wurden. Die Studie fußt auf den der BASt von den am Feldversuch teilnehmenden Speditionen zur Verfügung gestellten Daten sowie Fahrzeugbegutachtungen und Fragebögen. Sie bildet den Stand vom 23.06.2016 mit 147 Lang-Lkw von 58 Speditionen ab. 80 Lang-Lkw vom Typ 3 bilden hierbei den größten Anteil. Alternative Umsetzungsmöglichkeiten technischer Anforderungen wurden speziell bei Achslastüberwachungssystemen, Kamera-Monitor-Systemen am Heck und der Tauglichkeit für den Kombinierten Verkehr betrachtet. Bei den Achslastüberwachungssystemen zeigte sich, dass sich bei 80 % der Fahrzeuge alle Achslasten komfortabel direkt im Fahrerhaus ablesen lassen. Kamera-Monitor-Systeme am Heck werden von den Feldversuchsteilnehmern überwiegend als praxistauglich bewertet und insbesondere als Rangierhilfe positiv aufgenommen. Bei Bremswegmessungen zeigte sich, dass auf ihr zulässiges Gesamtgewicht von 40 t beladene Lang-Lkw einen geringfügig längeren Bremsweg aufweisen als Sattelzüge, die mit der gleichen Ladungsdichte, jedoch weniger Ladung auf ca. 28 t Gesamtgewicht volumetrisch voll beladen sind. Bei ganzheitlicher Betrachtung sowohl der Vorgängerstudie als auch dieser Studie kann jedoch von vergleichbaren Bremswegen von Lang-Lkw im Vergleich zu Lkw herkömmlicher Bauart ausgegangen werden. Die Wirksamkeit von Fahrdynamikregelsystemen bei Lang-Lkw wurde im Rahmen von Literaturrecherchen sowie Experten- und Herstellerinterviews untersucht. Die Auslegung der Systeme ist so gestaltet, dass sie den Lang-Lkw verlässlich stabilisieren und zur Fahrzeugsicherheit von Lang-Lkw beitragen.