Sonstige
Filtern
Erscheinungsjahr
Dokumenttyp
Volltext vorhanden
- nein (19) (entfernen)
Schlagworte
- Simulation (19) (entfernen)
Vergleich der Ergebnisse von Feld- und Simulatorexperimenten zum Überholverhalten von Kraftfahrern
(1989)
Das Überholverhalten von Kraftfahrern wurde unabhängig voneinander in zwei methodisch verschiedenen Ansätzen untersucht: a) Im realen Verkehrsgeschehen wurde das Überholverhalten aus Videoaufzeichnungen von hochliegenden Beobachtungspunkten analysiert. b) Im Berliner Fahrsimulator der Daimler-Benz AG wurde in einem Simulatorexperiment das Fahr- und Überholverhalten digital erfasst. Als wesentliche Vorteile des Simulatorversuches gelten die Genauigkeit und Vollständigkeit der Daten, die sowohl das "äußere" Verkehrsgeschehen beschreiben als auch "innere" Fahrverhaltensbeobachtungen ermöglichen. Eine Validierung der Ergebnisse wurde mit Hilfe der Felduntersuchung angestrebt. Eine sorgfältige Diskussion der Versuchsanordnung sowie die Sichtung des Ergebnismaterials führten nach formalen Angleichungen zur Auswahl von 12 Vergleichsparametern (Überholsichtweite, Sicherheitsabstand am Überholende, Ausscherabstand, Überholdauer, Überholweg sowie mehrere Geschwindigkeitsgrößen). Die überdurchschnittlich starke Motorisierung des Simulatorfahrzeuges beeinflusste gleichsinnig die meisten Vergleichsparameter. Darüber hinaus ließ sich in fast allen Fällen eine große Übereinstimmung im Fahr- und Überholverhalten erkennen. Weitere qualitative Vergleiche bestätigen dies. Der Simulator erwies sich somit als gut geeignetes Instrument zur Untersuchung auch komplexer Ansätze aus Verkehrstechnik und -sicherheit. Es lassen sich interessante Fortführungen derartiger Experimente erkennen.
The United Nations Economic Commission for Europe Informal Group on GTR No. 7 Phase 2 are working to define a build level for the BioRID II rear impact (whiplash) crash test dummy that ensures repeatable and reproducible performance in a test procedure that has been proposed for future legislation. This includes the specification of dummy hardware, as well as the development of comprehensive certification procedures for the dummy. This study evaluated whether the dummy build level and certification procedures deliver the desired level of repeatability and reproducibility. A custom-designed laboratory seat was made using the seat base, back, and head restraint from a production car seat to ensure a representative interface with the dummy. The seat back was reinforced for use in multiple tests and the recliner mechanism was replaced by an external spring-damper mechanism. A total of 65 tests were performed with 6 BioRID IIg dummies using the draft GTR No.7 sled pulse and seating procedure. All dummies were subject to the build, maintenance, and certification procedures defined by the Informal Group. The test condition was highly repeatable, with a very repeatable pulse, a well-controlled seat back response, and minimal observed degradation of seat foams. The results showed qualitatively reasonable repeatability and reproducibility for the upper torso and head accelerations, as well as for T1 Fx and upper neck Fx. However, reproducibility was not acceptable for T1 and upper neck Fz or for T1 and upper neck My. The Informal Group has not selected injury or seat assessment criteria for use with BioRID II, so it is not known whether these channels would be used in the regulation. However, the ramping-up behavior of the dummy showed poor reproducibility, which would be expected to affect the reproducibility of dummy measurements in general. Pelvis and spine characteristics were found to significantly influence the dummy measurements for which poor reproducibility was observed. It was also observed that the primary neck response in these tests was flexion, not extension. This correlates well with recent findings from Japan and the United States showing a correlation between neck flexion and injury in accident replication simulations and postmortem human subjects (PMHS) studies, respectively. The present certification tests may not adequately control front cervical spine bumper characteristics, which are important for neck flexion response. The certification sled test also does not include the pelvis and so cannot be used to control pelvis response and does not substantially load the lumbar bumpers and so does not control these parts of the dummy. The stiffness of all spine bumpers and of the pelvis flesh should be much more tightly controlled. It is recommended that a method for certifying the front cervical bumpers should be developed. Recommendations are also made for tighter tolerance on the input parameters for the existing certification tests.
Fire incidents are among the most relevant for people in a tunnel. Therefore, it is important to be sufficiently prepared for such events. A large scale fire test is to be used to help evaluate the initial burning duration and the time it takes for the fire to spread to other vehicles in the tunnel, and in particular how long it takes for a truck carrying wooden pallets to catch fire, taking into consideration the extremely high temperatures. The goal, therefore, is to determine the time it takes for a fire to spread to other vehicles in the tunnel. In the large scale fire test, an accident in a tunnel with one-way traffic is simulated between a truck loaded with approximately 3.7 t of wooden Europol pallets and a passenger car. Directly behind each of the vehicles involved in the accident there is another car which stops at a distance of 1.0 m. Approximately 300 litres of burning diesel are discharged from the truck's fuel tank, which is simulated by using approximately 400 litres of isopropanol. A 10 m-² burning pool forms underneath the truck. Other objectives of the large scale fire test are the validation of the CFD models and the evaluation of the progression of the thermal release ratios estimated for the simulation. The thermal release ratios generated in the test are determined and evaluated using various models.
The Swedish National Road Administration (SNRA), the Japanese Automobile Research Institute (JARI) and the Federal Highway Research Institute (BASt) are co-operating in the International Harmonized Research Activities on Intelligent Transportation Systems (IHRA-ITS). Under this umbrella a joint study was conducted. The overall objective of this study was to contribute to the definition and validation of a "battery of tools" which enables a prediction and an assessment of changes in driver workload due to the use of in-vehicle information systems (IVIS) while driving. In this sense \"validation\" means to produce empirical evidence from which it can be concluded that these methods reliably discriminate between IVIS which differ in terms of relevant features of the HMI-design. Additionally these methods should also be sensitive to the task demands imposed on the driver by the traffic situation and their interactions with HMI-design. To achieve these goals experimental validation studies (on-road and in the simulator) were performed in Sweden, Germany and Japan. As a common element these studies focused on the secondary task methodology as an approach to the study of driver workload. In a joint German-Swedish on-road study the Peripheral Detection Task (PDT) was assessed with respect to its sensitivity to the complexity of traffic situations and effects of different types of navigation systems. Results show that the PDT performance of both the German and the Swedish subjects reflects the task demands of the traffic situations better than those of the IVIS. However, alternative explanations are possible which will be examined by further analyses. Results of this study are supplemented by the Japanese study where informational demands induced by various traffic situations were analysed by using a simple arithmetic task as a secondary task. Results of this study show that relatively large task demands can be expected even from simple traffic situations.
Mit Abschluss dieses Forschungsprojekts ist eine Wissensbasis erarbeitet, die es ermöglicht relativ schnell die Eigenschaften beliebiger Schutzhelme im Voraus zu berechnen. Es wurde ein Rechenprogrammsystem erstellt, welches mit Hilfe der Schalentheorie und der Methode der Übertragungsmatrizen für alle denkbaren Aufschlagpunkte ingenieurmäßige Aussagen liefert über die Tauglichkeit eines Helms. Mit diesem Programmsystem wurde eine Parameterstudie anhand von 27 Helmvarianten mit dem Ziel durchgeführt, die Abstimmung von Helmschale und Schutzpolsterung so zu wählen, dass eine optimale Energieumsetzung möglich ist, optimal im Sinne einer Minimierung der aus dem Stoß resultierenden Kopfbeschleunigung. Es erfolgte eine Variation der Parameter Schutzpolsterungsdicke und Helmschalendicke. Die Abhängigkeit der Kopfbeschleunigung von der Aufprallenergie wurde ebenfalls untersucht. Neben Vergleichsrechnungen mit der Methode der finiten Elemente wurden auch gemessene Beschleunigungen zur Absicherung der Ergebnisse herangezogen. Die Parameterstudie mittels Übertragungsmatrizen ist auch mit einer parallel entwickelten PC-Programmversion durchführbar. Unter der Voraussetzung hinreichenden Energieaufnahmevermögens sind für den Polycarbonat-Polystyrol-Helm handelsüblicher Machart eine geringe Helmschalendicke, eine geringe Schutzpolsterungsdichte und eine dicke Schutzpolsterung anzustreben, wobei dieser letzte Einfluss weniger stark ist. Nach Abschluss der laufenden Polystyrol-Werkstoffversuche bleibt zu klären inwieweit die beschriebenen Einflüsse abhängig von der Aufprallenergie sind. Die Berechnungen zeigen, dass eine starke Abhängigkeit der maximalen Kopfbeschleunigung von der Aufprallenergie vorliegt, was vom Regelwerk ECE 22/02 nicht hinreichend berücksichtigt wird. Es ist notwendig in den Helmtests unterschiedliche Aufprallenergien zu realisieren. Der Tauglichkeitsnachweis muss den unfallrelevanten Geschwindigkeitsbereich abdecken. Die Prüfkopfmasse muss erhöht werden. Sie repräsentiert die reduzierte Masse und ist im Grenzfall gleich der Masse des Motorradfahrers. Anzustreben ist ideal plastisches Verhalten der Schutzpolsterung, so dass in Kombination mit einer biegesteifen Helmschale über einen weiten Energiebereich Beschleunigungskonstanz erzielt wird. Ein Schritt in diese Richtung wäre der Einsatz von Wabenstrukturen (honeycomb) zwischen Helmschale und Komfortpolsterung.
Test and assessment procedures for passive pedestrian protection based on developments by the European Enhanced Vehicle-safety Committee (EEVC) have been introduced in world-wide regulations and consumer test programmes, with considerable harmonization between these programmes. Nevertheless, latest accident investigations reveal a stagnation of pedestrian fatality numbers on European roads running the risk of not meeting the European Union- goal of halving the number of road fatalities by the year 2020. The branch of external road user safety within the EC-funded research project SENIORS under the HORIZON 2020 framework programme focuses on investigating the benefit of modifications to pedestrian test and assessment procedures and their impactors for vulnerable road users with focus on the elderly. Injury patterns of pedestrians and cyclists derived from the German In-Depth Accident Study (GIDAS) show a trend of AIS 2+ and AIS 3+ injuries getting more relevant for the thorax region in crashes with newer cars (Wisch et al., 2017), while maintaining the relevance for head and lower extremities. Several crash databases from Europe such as GIDAS and the Swedish Traffic Accident Data Acquisition (STRADA) also show that head, thorax and lower extremities are the key affected body regions not only for the average population but in particular for the elderly. Therefore, the SENIORS project is focusing on an improvement of currently available impactors and procedures in terms of biofidelity and injury assessment ability towards a better protection of the affected body regions, incorporating previous results from FP 6 project APROSYS and subsequent studies carried out by BASt. The paper describes the overall methodology to develop revised FE impactor models. Matched human body model and impactor simulations against generic test rigs provide transfer functions that will be used for the derivation of impactor criteria from human injury risk functions for the affected body regions. In a later step, the refined impactors will be validated by simulations against actual vehicle front-ends. Prototyping and adaptation of test and assessment procedures as well as an impact assessment will conclude the work of the project at the final stage. The work will contribute to an improved protection of vulnerable road users focusing on the elderly. The use of advanced human body models to develop applicable assessment criteria for the revised impactors is intended to cope with the paucity of actual biomechanical data focusing on elderly pedestrians. In order to achieve optimized results in the future, the improved test methods need to be implemented within an integrated approach, combining active with passive safety measures. In order to address the developments in road accidents and injury patterns of vulnerable road users, established test and assessment procedures need to be continuously verified and, where needed, to be revised. The demographic change as well as changes in the vehicle fleet, leading to a variation of accident scenarios, injury frequencies and injury patterns of vulnerable road users are addressed by the work provided by the SENIORS project, introducing updated impactors for pedestrian test and assessment procedures.
Das Ziel des Forschungsprojekts "Quantifizierung der Passiven Sicherheit für Pkw-Insassen" besteht darin, Messergebnisse in Form von Dummybelastungswerten zu einem Sicherheitsindex zu verdichten. Zur Formulierung des dazu erforderlichen Bewertungsalgorithmus wurden folgende Zusammenhänge erarbeitet: 1. Beziehung zwischen Verletzungsschwere und Dummybelastungsgröße für relevante Körperteile, 2. Relevanzfaktoren zur Wichtung der Teilergebnisse und 3. Zusammenhang zwischen körperteilspezifischen Schutzkriterien und dem entsprechenden Erfüllungsgrad. Die wesentliche Aufmerksamkeit erforderte die Bereitstellung der Relevanzstruktur, da mit den einzelnen Relevanzfaktoren die gemessenen Belastungen entsprechend der Bedeutung der im realen Unfallgeschehen beobachteten Verletzungen bewertet werden sollten. Im Bereich der experimentellen Simulation lag das Hauptaugenmerk auf der Bereitstellung der Versuchsbedingungen, wobei die gesetzlich vorgeschriebenen Sicherheitsversuche zu berücksichtigen waren. Daraus ergab sich die Festlegung auf folgende Versuchskonstellationen: 1. Frontaler Wandaufprall, 2. Seitenaufprall einer fahrbaren Barriere auf den stehenden Pkw und 3. Kompatibilitätsversuch, bei dem ein Fahrzeug seitlich mit einem anderen Fahrzeug gleichen Typs kollidiert. Mit Hilfe eines erarbeiteten Bewertungsalgorithmus werden die versuchstechnisch gemessenen Belastungswerte normiert und der Bewertungsfunktion zugeführt. Die so ermittelten Erfüllungsgrade erhalten durch die Relevanzfaktoren eine unfallspezifische Wichtung und lassen sich über Teilsicherheitsindizes zu einem Gesamt-Sicherheitsindex zusammenfassen. Dieser Sicherheitsindex soll Aufschluss über das Niveau der inneren Sicherheit von Pkw geben.
The head impact of pedestrians in the windscreen area shows a high relevance in real-world accidents. Nevertheless, there are neither biomechanical limits nor elaborated testing procedures available. Furthermore, the development of deployable protection systems like pop-up bonnets or external airbags has made faster progress than the corresponding testing methods. New requirements which are currently not considered are taken into account within a research project of BASt and the EC funded APROSYS (Advanced PROtection SYStems) integrated project relating to passive pedestrian protection. Testing procedures for head impact in the windscreen area should address these new boundary conditions. The presented modular procedure combines the advantages of virtual testing, including full-scale multi-body and finite element simulations, as well as hardware testing containing impactor tests based on the existing procedures of EEVC WG 17. To meet the efforts of harmonization in legislation, it refers to the Global Technical Regulation of UNECE (GTR No. 9). The basis for this combined hardware and virtual testing procedure is a robust categorization covering all passenger cars and light commercial vehicles and defining the testing zone including the related kinematics. The virtual testing part supports also the choice of the impact points for the hardware test and determines head impact timing for testing deployable systems. The assessment of the neck rotation angle and sharp edge contact in the rear gap of pop-up bonnets is included. For the demonstration of this procedure, a hardware sedan shaped vehicle was modified by integrating an airbag system. In addition, tests with the Honda Polar-II Dummy were performed for an evaluation of the new testing procedure. Comparing these results, it was concluded that a combination of simulation and updated subsystem tests forms an important step towards enhanced future pedestrian safety systems considering the windscreen area and the deployable systems.
Mit einem Simulationsmodell wurden die Auswirkungen des Lkw-Überholverbots auf zweistreifigen Richtungsfahrbahnen in der Ebene und an Steigungsstrecken untersucht. Dabei wurde ein Einfluss von Anschlussstellen und von vorausliegenden Abschnitten (zum Beispiel Baustellen, Rückstau) ausgeschlossen. In Abhängigkeit vom Lkw-Anteil und von der Verkehrsstärke wurden Bereiche aufgezeigt, in denen sich die Geschwindigkeit des Verkehrsflusses steigert und in denen sich die Anzahl der Konfliktsituationen beim Fahrstreifenwechsel reduziert. Eine Umsetzung der Ergebnisse in ein Steuerungverfahren von Wechselverkehrszeichenanlagen ist damit möglich. Vor einer Anordnung des Lkw-Überholverbots mit statischer Beschilderung kann mit dem entwickelten Modell berechnet werden, zu welchen Tageszeiten und ab wieviel Tonnen (zum Beispiel größer 4 t) eine solche Anordnung sinnvoll ist.
Tunnel sind bedeutende Infrastrukturbauwerke. Die Beurteilung der Folgen von Brandereignissen in Tunneln ist daher auch von außerordentlicher volkswirtschaftlicher Bedeutung. Ein solches Brandereignis stellt z.B. der Brand eines mit Benzin beladenen Tanklastzugs dar. Im Rahmen eines Forschungsvorhabens für die Bundesanstalt für Straßenwesen (BASt) wurden verschiedene Szenarien für diesen Extremfall mit unterschiedlichen Energiefreisetzungsraten und deren Einfluss auf die Tunneltragsicherheit mittels numerischer Strömungssimulationen und Finite-Elemente-Berechnungen untersucht. Es konnte gezeigt werden, dass selbst Brandszenarien mit Flüssigkeitslachenbränden von bis zu 28 t Benzin durch die ZTV-ING-Temperatur-Zeit-Kurve abgedeckt werden können. Der folgende Beitrag fasst die wesentlichsten Ergebnisse zusammen.
Gegenstand der Untersuchung ist die Aufstellung differenzierter Kriterien für die Planung von Rettungssystemen auf der Grundlage vorliegenden Datenmaterials und bei Anwendung des Simulationsmodells Rettungswesen. Mit der Analyse der gegenwärtigen Situation werden die bestehenden Richtwerte und Planungsregeln aus den Rettungsdienstgesetzen und den entsprechenden Durchführungsverordnungen aufgelistet. Weiterhin werden mögliche Einflussgrößen, und ihre Bedeutung zur Planung von Rettungswachenbereichen und Fahrzeugvorhaltung dargestellt. Aus den Ergebnissen der Untersuchung werden entsprechende Schlussfolgerungen abgeleitet und für unterschiedlich strukturierte Gebiete erste allgemeingültige Planungsregeln aufgrund der empirischen Befunde erstellt, wobei sich diese Regeln an der derzeitigen Situation des Rettungsdienstes in der Bundesrepublik Deutschland orientieren. Mittels mathematischer Modelle werden variable Planungsregeln für den Rettungsdienst erstellt, wobei die Untersuchungsergebnisse der Studie hierbei nur als Basisinformation dienen. Die entwickelten Planungsregeln ermöglichen durch Variation einzelner Vorgaben (zum Beispiel Anfahrtszeit, Dispositionszeit) die Ermittlung der jeweils benötigten Anzahl von Standorten und Fahrzeugen.
Research to inform policy is often challenged with how to genuinely use and implement research findings in decision-making and policy-planning. To begin with, the dialogue between researchers and decision-makers is essential to ensure profound understanding and legitimate interpretations of the results. Furthermore, the step to drawing practical conclusions and processing them into actions can only succeed if research findings are diffused to decision-making levels with influence on the matter, and mechanisms to knowledge transfer in the presence of a stable, favourable policy environment exist. Research investments into the topic of electromobility in Europe are substantial, and subtopics aiming to inform national policy-makers address a complex set of aspects from environmental and societal to technological and economic. This paper has a two-fold objective, the first of which is to present the results of scenarios to explore electromobility deployment in Finland, Germany and the European Union. The second is to discuss the challenges and solutions to bridge the gap from research findings towards decision-making and policy-planning, using the authors' electromobility scenario work as an example. The electromobility scenarios were built using the VECTOR21 model (Mock, 2010), and the rationale was to simulate vehicle sales and markets under different policy settings and calculate the most economical solution to fulfill regulation on COâ‚‚ emissions as set by the European Commission (2009). The model allows calculating the market diffusion of alternative powertrain technologies to the European market until 2030, taking into account different taxation schemes, incentives and other country-specific characteristics. The authors also present the cost-benefit-analysis of the modelling results to assess the different scenarios and to show variation between regions regarding profitability of alternative technological or political support and interventions. To proceed from research findings towards decision-making and policy-planning, the authors made observations relating to transfer of research knowledge and interpretation of their electromobility scenario results in national policy contexts. An evaluation of how the function of research to inform policy in this case succeeded is provided. In addition, the influence of expert opinions on the political decision-making process will be discussed through experiences from an expert questionnaire conducted to survey the importance of costs, time requirement, acceptance and other criteria of promotion measures of electromobility.
Im Projekt ESIMAS - Echtzeit-Sicherheits-Management-System für Straßentunnel - wurde der Prototyp für ein Expertensystem zur Überwachung von Straßentunneln unter Einbezug innovativer Detektionssysteme entwickelt. Das Ziel von ESIMAS ist die Bereitstellung eines ganzheitlichen modularen Ansatzes zur Überwachung von Straßentunneln, welcher sowohl die präventive Ereignisvermeidung, die schnelle Ereigniserkennung als auch die Ereignisbewältigung verbessern soll. Dieser Ansatz geht deutlich über die aktuellen Möglichkeiten der Tunnelsteuerung und übergeordneten Leitsysteme hinaus. Die zukünftige Unterstützung der Überwachung von Tunnelanlagen mit ESIMAS führt zu einem maßgeblichen Sicherheitsgewinn für den Verkehrsteilnehmer, da durch die umfangreichere und genauere Erfassung und Auswertung von Informationen die Verantwortlichen in den Tunnelleitzentralen besser und schneller reagieren können.
At the 2005 ESV conference, the International Harmonisation of Research Activities (IHRA) side impact working group proposed a 4 part draft test procedure, to form the basis of harmonisation of regulation world-wide and to help advances in car occupant protection. This paper presents the work performed by a European Commission 6th framework project, called APROSYS, an further development and evaluation of the proposed procedure from a European perspective. The 4 parts of the proposed procedure are: - A Mobile Deformable Barrier test; - An oblique Pole side impact test; - Interior headform tests; - Side Out of Position (OOP) tests. Full scale test and modelling work to develop the Advanced European Mobile Deformable Barrier (AE-MDB) further is described, resulting in a recommendation to revise the barrier face to include a bumper beam element. An evaluation of oblique and perpendicular pole tests was made from tests and numerical simulations using ES-2 and WorldSID 50th percentile dummies. It was concluded that an oblique pole test is feasible but that a perpendicular test would be preferable for Europe. The interior headform test protocol was evaluated to assess its repeatability and reproducibility and to solve issues such as the head impact angle and limitation zones. Recommendations for updates to the test protocol are made. Out-of-position (OOP) tests applicable for the European situation were performed, which included additional tests with Child Restraint Systems (CRS) which use is mandatory in Europe. It was concluded that the proposed IHRA OOP tests do cover the worst case situations, but the current test protocol is not ready for regulatory use.
Die Reduzierung des Verkehrslärms ist eine große Herausforderung für alle Beteiligten. Das gilt umso mehr, als nach den Prognosen sich die Verkehrsleistung auf der Straße noch stark erhöhen wird. Viele Stellen in Deutschland, wie Industrie, Forschungseinrichtungen und Behörden haben sich der Problematik angenommen. Forschungsarbeiten wurden und werden durchgeführt oder sind in Vorbereitung. Über die nationalen Aktivitäten hinaus wird das Thema europaweit behandelt. In vier Beiträgen wird über die europäischen Forschungsprojekte SILVIA, ITARI, SILENCE und P2RN berichtet. Das Spektrum der Konzepte dieser Forschungsarbeiten ist sehr breit und erstreckt sich über praktische und theoretische Ansätze.
In the European Project FIMCAR, a proposal for a frontal impact test configuration was developed which included an additional full width deformable barrier (FWDB) test. Motivation for the deformable element was partly to measure structural forces as well as to produce a severe crash pulse different from that in the offset test. The objective of this study was to analyze the safety performance of vehicles in the full width rigid barrier test (FWRB) and in the full width deformable barrier test (FWDB). In total, 12 vehicles were crashed in both configurations. Comparison of these tests to real world accident data was used to identify the crash barrier most representative of real world crashes. For all vehicles, the airbag visible times were later in the FWDB configuration. This was attributed to the attenuation of the initial acceleration peak, observed in FWRB tests, by the addition of the deformable element. These findings were in alignment with airbag triggering times seen in real world crash data. Also, the dummy loadings were slightly worse in FWDB compared to FWRB tests, which is possibly linked to the airbag firing and a more realistic loading of the vehicle crash structures in the FWDB configuration. Evaluations of the lower extremities have shown a general increasing of the tibia index with the crash pulse severity.
APT with the mobile load simulator MLS10 towards non-destructive pavement structural analysis
(2019)
In 2014 a research program has been started about non-destructive test methods to evaluate the structure of pavements. This task has been given to two research groups - first research group is led by RWTH Aachen University (Rheinisch-Westfälische Technische Hochschule) and the second by University of Siegen. This paper focuses on the initial findings of the running research program. The assessment of the existing infrastructure and its condition will be one of the main tasks during the next years in order to use the available budget for maintenance accurately and efficiently. Therefore, it is necessary to identify possible damages and examine their effects on the road construction. BASt (Federal Highway Research Institute) is using the Mobile Load Simulator MLS10 for accelerated pavement testing (APT) on different types of pavements. In addition to non-destructive test methods, sensors are applied to measure structural impacts. The overall objective of this research program is to develop a non-destructive test method that allows the calculation of the remaining life time and load cycles of pavements. To simulate realistic wheel loads in a short period of time the MLS10 on German full scale standard pavement constructions has been used. The first pavement test section was loaded with 3 x 10 high 6 50 kN wheel loads while the second, thinner pavement test section was loaded with 3 x 10 high 5 50 kN wheel loads. Both loads are equivalent to the pavement design load. Three different strategies have been used to analyze and monitor structural changes. The innovative measurements have been realized by the two research groups to collect data for their models. The RWTH Aachen collected data with twelve geophones aligned in a row parallel to the wheel path. The geophones measure the entire vertical deflection basin of the pavement surface that exists due to the passing real truck wheels. These measurements were done for different truck speeds and at different transverse distances to the wheel path. The University of Siegen collected data by using acceleration sensors on the surface of the road construction. After recording the data they were integrated into displacement signals and evaluated. Additionally to those measurements BASt used conventional equipment to monitor the pavement structure and surface characteristics. The measurements and evaluation tools used for the innovation program have a high potential to validate APT programs in the future. Based on this research it is possible to start further research activities to push the non-destructive evaluation of pavements structures - not only in APT - into an improved direction.
In the last years there has been a decline in accident figures in Germany especially for four wheeled vehicles. At the same time, accident figures for motorcycles remained nearly constant. About 17 % of road traffic fatalities in the year 2006 were motorcyclists. 33 % of these riders were killed in single vehicle crashes. This leads to the conclusion that improving driving dynamics and driving stability of powered two wheelers would yield considerable safety gains. However, the well-known measures for cars and trucks with their proven effectiveness cannot be transferred easily to motorcycles. Therefore studies were carried out to examine the safety potential of Anti Lock Braking Systems (ABS) and Vehicle Stability Control (VSC) for motorcycles by means of accident analysis, driving tests and economical as well as technical assessment of the systems. With regard to ABS, test persons were assigned braking tasks (straight and in-curve) with five different brake systems with and without ABS. Stopping distances as well as stress and strain on the riders were measured for 9 test riders who completed 105 braking manoeuvres each. Knowing the ability of ABS to avoid falls during braking in advance of a crash and taking into account the system costs, a cost benefit analysis for ABS for motorcycles was carried out for different market penetration of ABS, i.e. equipment rates, and different time horizons. The potential of VSC for motorcycles was estimated in two steps. First the kinds of accidents that could be prevented by such a system at all have been analysed. For these accident configurations, simulations and driving tests were then performed to determine if a VSC was able to detect the critical driving situation and if it was technically possible to implement an actuator which would help to stabilise the critical situation.
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.