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Past European collaborative research involving government bodies, vehicle manufacturers and test laboratories has resulted in a prototype barrier face called the Advanced European Mobile Deformable Barrier (AE-MDB) for use in a new side impact test procedure . This procedure offers a better representation of the current accident situation and, in particular, the barrier concept is a better reflection of front-end stiffness seen in today- passenger car fleet compared to that of the current legislative barrier face. Based on the preliminary performance corridors of the prototype AE-MDB, a refined AE-MDB specification has been developed. A programme of barrier to load cell wall testing was undertaken to complete and standardise the AE-MDB specification. Barrier faces were supplied by the four leading manufacturers to demonstrate that the specification could be met by all. This paper includes background, specification and proof of compliance.
Learner drivers are readied for their participation in motorised transport within the framework of specific, internationally-diverse preparation systems. These systems are historically developed and are characterised by country-specific economic, infrastructural, legal and cultural circumstances. With the aid of functionally-distinguishable teaching and learning methods as well as testing methods, a conceptual framework was created whilst drawing upon research-methodological approaches of comparative political science as well as teaching and learning principles that facilitated a description and analysis of the systems for a comparative observation to be performed. The systems for the preparation of learner drivers in 44 countries are illustrated in the report. The descriptions are based upon surveys of experts from various institutions (ministries of transport, driving instructor associations, testing organisations) as well as upon literary and Internet research. Alongside European countries with a traditional formal driver training, \"Graduated Driver Licensing\" systems that are primarily encountered in English-speaking countries were also taken into account when selecting the countries. They are characterised by the guarantee of gaining comprehensive driving experience under reduced risk conditions in the form of supervised driving prior to the start of independent driving as well as protective special rules for learner drivers whilst gaining further driving experience during the initial phase of independent driving. The results enable a detailed insight into the country-specific structure of learner driver preparation with the components of the formal driver training in driving schools, informal teaching and learning methods such as supervised driving, the driving tests that must be successfully completed as well as legal frameworks and quality assurance measures. The functionality of system components and architectures shall be discussed against the backdrop of evaluation findings regarding the effectiveness in terms of safety.
Die Bedeutung von Standards allgemein und Schnittstellenstandards in besonderem Maße sowie zugehöriger Standardisierungsprozesse hat in den letzten Jahren massiv zugenommen. Vor dem Hintergrund und den Zukunftsaufgaben von Intelligenten Verkehrssystemen (IVS) führt die Konvergenz der Branchen Telekommunikation, Medien und Informationstechnologie dazu, dass ehemals feste Grenzen zwischen der Kommunikation und Information zusehends verschwimmen. Gleichermaßen besteht in der Verkehrstelematik zunehmend Bedarf an nachhaltigen Standard-Schnittstellenlösungen zur Sicherstellung der Interoperabilität der Systeme und deren Komponenten, dies verstärkt aufgrund der Proliferation von Sensorsystemen durch zunehmende Ausstattung mit miniaturisierten Chipelementen. Analog trifft dies auch für die Automobiltechnik und deren Vernetzung in kooperativen Verkehrs- und Fahrerassistenzsystemen mittels C2X-Kommunikation zu. Die Standardisierungsforschung ist dementsprechend ein vergleichsweise noch junges Forschungsgebiet. Dies gilt sowohl für die nationale als auch internationale Ebene. Zur Bewältigung des ansteigenden Datenaufkommens bei gleichzeitig technologisch kürzer werdenden Innovationszyklen sind umso mehr effiziente Standardisierungsprozesse erforderlich, um aus übergreifendem Datenaustausch nachhaltig Nutzen für das Verkehrsmanagement schöpfen zu können. Besonders an die Akteure der Standardisierung offener Systeme der Straßenverkehrstelematik stellen sich neue Herausforderungen und Fragen hinsichtlich der Organisation eines hierfür geeigneten Standardisierungsprozesses. Die Forschungsarbeiten im FE-Projekt 63.0013/2009/BASt unterstützen die Vorbereitung der Entscheidung auf staatlicher Ebene über die zukünftige Positionierung der öffentlichen Hand bezüglich der Begleitung und Unterstützung von Standardisierungsaktivitäten offener Systeme im Sektor kommunal eingesetzter Straßenverkehrstelematik. Untersucht werden hierzu die seit Beginn in Deutschland im Jahre 1999 bisherig im Standardisierungsprozess OCIT (Open Communication Interface for Road Traffic Control Systems) und OTS (Open Traffic Systems) erzielten und künftig bei weitergehender Standardisierung zu erwartenden Nutzwirkungen und Risiken. Berücksichtigt werden in Hinblick auf den im November 2011 zur künftigen Harmonisierung der Standardisierung offener Schnittstellen gegründeten Standardisierungsverbund OCTS (Open Communication Standards for Traffic Systems) dabei die erwachsenden Einflussfaktoren und Anforderungen aus affinen Standardisierungsaktivitäten sowie EU-Richtlinien, insbesondere zu kooperativen IVS.
Zur Überwachung der Verkehrsentwicklung und zur Ermittlung der Verkehrsstärken auf den Bundesfernstraßen - Bundesautobahnen und Bundesstraßen - fand im Jahre 2010 wieder eine bundesweite Straßenverkehrszählung (SVZ 2010) im Rahmen des üblichen Fünfjahres-Turnus statt. Die Länder hatten die Möglichkeit, auch das nachgeordnete Netz (Landes- und Kreisstraßen) zu zählen und im Rahmen der SVZ 2010 auswerten zu lassen. Von dieser Möglichkeit machten nicht alle Länder Gebrauch, so dass bundesweit nur 59 % der Landesstraßen und nur 34 % der Kreisstraßen mit Zählungen abgedeckt waren. Zu diesen beiden Straßenkategorien können somit keine allgemeinen Aussagen getroffen werden. Der vorliegende Bericht beinhaltet mittlere DTV und Jahresfahrleistungen, differenziert nach Fahrzeugarten und Straßenklassen für das Bundesgebiet insgesamt und für jedes einzelne Bundesland. Außerdem sind Beschreibungen zur Berechnung der DTV- und Fahrleistungsstatistiken enthalten sowie einige Ausführungen zu Entwicklungen der mittleren DTV-Werte und Jahresfahrleistungen in Bezug auf 2005.
Nachstreumittelgemische von Fahrbahnmarkierungen sind sicherheitsrelevante Bestandteile der Straßenausstattung. Für ausreichende Funktionalität und Dauerhaftigkeit bestehen Anforderungen an deren Partikelgrößenverteilung sowie Form-, Transparenz- und Oberflächeneigenschaften. Ein Ziel dieser Forschungsarbeit war es, eine optimierte granulometrische Kennzeichnung durch Adaption eines digital-optischen Messverfahrens zu ermöglichen. Ein weiteres Ziel bestand darin, chemisch-analytische Verfahren zur Analyse von Beschichtungen auf derartigen Partikeln zu entwickeln. Das Ergebnis der Forschungsarbeit soll einen Beitrag zur Weiterentwicklung des Untersuchungs- und Qualitätssicherungsinstrumentariums innerhalb des technischen Regelwerkes liefern. Grundlage der Verfahrenserarbeitung und -validierung stellten repräsentative handelsübliche Nachstreumittelgemische und deren Ausgangsmaterialien für Fahrbahnmarkierungen des Typs 1 und 2 dar. Es konnte gezeigt werden, dass digital-optische Messverfahren differenzierendes Potenzial mit höherer Präzision zur verbesserten granulometrischen Kennzeichnung derartiger Materialien aufweisen. Die Rückführbarkeit auf das konventionelle Siebverfahren ist herstellbar. Mittels quantifizierbarer Form- und Transparenzparameter bietet die Methodik auch weiterführende Optionen zur Gütekennzeichnung in Anlehnung an die DIN EN 1423. Eine identifizierende Kennzeichnung von Partikelgemischen mit direkter Rückführbarkeit auf mechanische und lichttechnische Gebrauchseigenschaften ist mit der neuen Methodik möglich. Darüber hinaus wurde eine Mess- und Auswertemethodik auf Basis der Form- und Transparenzkennwerte erarbeitet, mit deren Hilfe eine nachträgliche Differenzierung bzw. Separation der Einzelphasen in der Mischungszusammensetzung eines Nachstreumittelgemisches ermöglicht wird. Die Ergebnisse wurden jeweils aus Relativvergleichen der Einzeluntersuchung aller beteiligten Materialien und dem fertigen Nachstreumittelgemenge abgeleitet. Es wird empfohlen, sowohl die Reflex- als auch Griffigkeitsmittelgemenge sowie das entsprechende Nachstreumittelprodukt einzeln unter Erfassung aller Form- und Transparenzparameter zu kennzeichnen. Darüber hinaus zeigt sich, dass die Methodik weiteres Gütesicherungspotenzial aufweist. Auch die erarbeiteten Analyseverfahren zur Kennzeichnung von Oberflächenbeschichtungen (TOF-SIMS; Headspace-GC/MS; HTD-GC/MS) sind jeweils Relativverfahren, das heißt, es werden für eine Zuordnung vorab Referenzproben von beschichtetem und nicht beschichtetem Nachstreumittel respektive eine Referenz des Coatings benötigt. Eine sehr vorteilhafte weitere Analyseoption kann von einem oberflächenanalytischen Untersuchungsansatz (Zeta-Potenzial) erwartet werden. Die vorliegenden Ergebnisse zeigen Optionen für verbesserte Gütesicherheit auf. Sie liefern wissenschaftlich-technische Grundlagen für die entsprechende Weiterentwicklung des technischen Regelwerkes.
Zur Überwachung der Verkehrsentwicklung und zur Ermittlung der Verkehrsstärken auf den Bundesfernstraßen - Bundesautobahnen und Bundesstraßen - fand im Jahr 2010 wieder eine bundesweite Straßenverkehrszählung (SVZ 2010) im Rahmen des üblichen Fünfjahres-Turnus statt. Die Länder hatten die Möglichkeit, auch das nachgeordnete Netz (Landes- und Kreisstraßen) zu zählen und im Rahmen der SVZ 2005 auswerten zu lassen. Bundesweit war der Zählumfang auf diesen Straßen jedoch zu gering, um allgemeine, für das gesamte Bundesgebiet gültige Aussagen für diese Straßenkategorie zu treffen. Der vorliegende Bericht beinhaltet eine detaillierte Beschreibung der Erhebungs- und Hochrechnungsmethodik zur Ermittlung der durchschnittlichen täglichen Verkehrsstärken (DTV) sowie eine Darstellung der Berechnung von Kenngrößen (Bemessungsverkehrsstärken und Werte für "Lärmberechnungen", für die eine vorherige Ermittlung der DTV-Werte Voraussetzung ist. Die methodischen Erläuterungen werden ergänzt durch beispielhafte Berechnungen. Am Ende des Berichtes steht ein Vergleich mit der Straßenverkehrszählung 2005, in dem auf wesentliche Änderungen und deren Auswirkungen eingegangen wird.
Aus einer aktuellen BASt-Studie ("Legalbewährung nach Neuerteilung der Fahrerlaubnis") geht hervor, dass eine Fahrerlaubnisentziehung bei mehrfach verkehrsauffälligen Fahrern nicht unbedingt zur Verhaltensänderung führt: Personen, denen der Führerschein wegen Überschreitens der Punktegrenze entzogen wurde, bergen ein doppelt so hohes Risiko, schuldhaft einen Unfall zu verursachen, wie Personen, deren Fahrerlaubnis wegen Alkohol- oder Drogenkonsums entzogen wurde. Eine Interventionsmaßnahme im Rahmen des Punktsystems stellt ein Hilfsangebot dar, das Fahrerlaubnisinhabern die Möglichkeit gibt, ihr riskantes Fahrverhalten mit professioneller Unterstützung langfristig zu verändern, um zukünftig regelkonform am Straßenverkehr teilzunehmen. Eine Interventionsmaßnahme kann damit einen wichtigen Beitrag zur Reduktion des Unfallrisikos von mehrfach verkehrsauffälligen Fahrern und damit zur Erhöhung der Verkehrssicherheit leisten. Für die bisherigen Aufbauseminare für Punkteauffällige (ASP) konnte kein Wirksamkeitsnachweis erbracht werden. Aus wissenschaftlicher Sicht wurde der den Aufbauseminaren zugrunde liegende Moderationsansatz kritisch hinterfragt. So geht aus einem Gutachten über die Qualität der Aufbauseminare hervor, dass Zweifel bestehen, dass das Ziel der Einstellungsänderung verkehrsauffälliger Fahrer mit dem zugrundeliegenden Ansatz erreicht werden kann. Vor diesem Hintergrund wurde die BASt im Rahmen der Reform des Verkehrszentralregisters vom Bundesministerium für Verkehr, Bau und Stadtentwicklung (BMVBS) im Juni 2012 beauftragt, die Grundlagen für ein wissenschaftlich begründetes Konzept für eine neue, wirksame Interventionsmaßnahme (Fahreignungsseminar, FES) für Punkteauffällige vorzulegen. Die Grundlagen zum Fahreignungsseminar wurden in drei Forschungsprojekten erarbeitet. Diese werden im vorliegenden Bericht dargestellt. Teil 1: Optimierung der Interventionsmaßnahmen im Rahmen der Reform des Mehrfachtäter-Punktsystems. Teil 2: Konzeption einer edukativen Teilmaßnahme der Fahreignungsseminare für verkehrsauffällige Kraftfahrer. Teil 3: Entwicklung eines Rahmenlehrplans für den edukativen Teil des im Rahmen der Reform des Punktsystems geplanten Fahreignungsseminars.
The GRSP informal group on child restraint systems (CRS) finalised phase 1 of a new regulation for the homologation of CRS . This regulation is the subject of several discussions concerning the safety benefits and the advantages and disadvantages that certain specific points may bring. However, these discussions are sometimes not based on scientific facts and do not consider the whole package but only single items. Based on the experience of the CASPER partners in the fields of human behaviour, accident analysis, test procedures and biomechanics in the area of child safety, a consideration of the safety benefits of phase 1 of the new regulation and recommendations for phase 2 will be given.
The objective was to develop and validate a crash trolley (reference vehicle) equipped with a compartment and a full restraint system for driver and front seat passenger which can be used in full scale crash testing. Furthermore, the crash trolley should have a suspension to show rotation and nick effects similar to real vehicles. Within the development phase the reference vehicle was build based on a European family car. Special attention was needed to provide appropriate strength to the trolley and its suspension. The reference vehicle is equipped with a restraint system consisting of airbags, pedals, seats, dashboard, and windscreen. On the front of the vehicle different crash barriers can be installed to provide miscellaneous deceleration pulses. For the validation phase a series of low and high speed crash tests with HIII dummies were conducted and compared with full scale tests. For the comparison deceleration pulse, dummy numbers and vehicle movement were analyzed. Validation tests with velocities up to 60 km/h showed promising results. The compartment and the suspension systems stayed stable. Rotation effects were comparable with full scale car crash tests. The airbags and seat belt system worked reasonable. The acceleration pulse compared to an Euro NCAP test had a similar characteristic but was in general slightly lower. After the successful validation the reference vehicle is already in use in different studies in the field of vehicle safety research at BASt.
Topics of the status report are: Road accidents in Germany " Socio-economic costs due to road traffic accidents in Germany " Vehicle population and road performance " Electromobility " Alternative power train technologies: market penetration and consequences. The following research subjects are presented: Safety of electric vehicles " Driving dynamics of electric propelled vehicles " New requirements for the periodic technical inspection of electric and hybrid vehicles " Forward looking safety systems " Periodic roadworthiness tests " Cooperative systems: integration of existing systems " Safety related traffic information " Urban space: User oriented assistance systems and network management " Automated driving " Study on camera-monitor-systems " Freight transport " BioRID TEG, dummy harmonization " Frontal impact and compatibility " Child safety " FlexPLI " GIDAS: a blueprint for worldwide in-depth road accident investigations " Druid: Driving under the influence of drugs, alcohol and medicines " Smoke and toxicity in bus fires.
Although the bus belongs to the safest traffic means, single accidents can be particularly severe and concern many passengers. Especially in case of fires a high number of injured and killed persons can be the outcome. Fire safety of buses therefore is of high importance. With the increase of synthetic and plastic materials as a material for the interior equipment of buses and coaches because of their ood mechanical properties combined with low weight, the question arises whether the safety level has decreased in case of a fire during the last years - also compared to other means of transport. Because of the combustible plastics and their ability to release a high amount of heat the main fire load in buses is no longer the fuel but the plastic materials which are also often easy to ignite. Besides the flammability of the equipments, the production of smoke, the smoke development and propagation and its toxicity for the people as well as the testing methods and limit values are of interest. For those reasons research projects were initiated on behalf of the German Federal Highway Research Institute. At the one hand the fire behavior of coach interiors was examined in general focusing on fire propagation as well as fire detection and signalling. As result, recommendations with regard to early fire detection systems for the engine compartments and on-board extinguishing equipment were elaborated. At the other hand research is carried out to examine heat release, smoke, smoke propagation and its toxicity due to burning bus interior materials. The paper describes which effective and economically reasonable fire safety requirements for interiors of buses would improve the current situation. Proposals for amendments of current requirements are recommended including the specification of appropriate limit values. In particular, it is taken into consideration which reasonable fire safety standards from other transport sectors, especially the rail sector, should be transferred to buses.
Since integrated safety systems combine active and passive safety elements in one safety system, it is necessary to define new procedures to evaluate vehicle safety from the overall system point of view. The main goal of the ASSESS project is to develop harmonized and standardized assessment procedures for collision mitigation and avoidance systems. Methods and Data Sources: In ASSESS, procedures are developed for: driver behaviour evaluation, pre-crash system performance evaluation, crash performance evaluation, socio-economic assessment. This paper will concentrate on the activities related to the crash evaluation. The objective is to perform simulations, sled tests and crash tests in order tounderstand the influence of the activation of the pre-crash systems on the occupants" injuries during the crash phase. When a traffic accident is unavoidable, pre-crash systems work on various safety devices in order to improve the vehicle occupants" protection. Braking assistance and adaptive restraint systems are the main pre-crash systems whose effect on the occupants" protection will be described in this paper. Results: The results will be a description of the effect of the activation of the pre-crash systems on the crash phase. Additionally, a set of recommendations for future methodology developments will be delivered. Furthermore, a first approach to the study of the effect of the pre-crash systems activation on the occupants" protection when the impact is unavoidable will be presented. This effect will be quantified using the biomechanical values obtained from the simulation and testing activities and their related injury risks. Simulation and testing activities will consider the following scenarios: - No activation of any pre-crash system, - Activation of one or a combination of several pre-crash systems. In this way, differences in the results obtained from different scenarios will show the effect of each pre-crash system separately during the crash phase. Discussion and Limitations: The set of activities developed in this research project is limited by the fact that with the given resources only a limited number of vehicle models could be investigated. In addition, there are also limitations related to the injury risk curves and the passive safety tools currently on the market. Conclusion and Relevance to session submitted: The paper will present a complete analysis of the effect of pre-crash systems during the crash phase when the impact is unavoidable. Details, limitations and first application experience based on a few examples will be discussed. Currently, there is not any regulation, assessment program, or other similar official procedure able to assess pre-crash systems during the crash phase. This project comprises phases of traffic accidents which have been historically analysed separately, and aims to evaluate them taking into account their interrelationship. ASSESS is one of the first European projects which deals in depth with the concept of integrated safety, defining methodologies to analyse vehicle safety from a global point of view.
A biofidelic flexible pedestrian legform impactor (FlexPLI) has been developed from the year 2000 onwards and evaluated by a technical evaluation group (Flex-TEG) of UN-ECE GRSP. A recently established UN-ECE GRSP Informal Group on GTR9 Phase 2 is aiming at introducing the FlexPLI within world-wide regulations on pedestrian safety (Phase 2 of GTR No. 9 as well as the new UN regulation 127 on pedestrian safety) as a test tool for the assessment of lower extremity injuries in lateral vehicle-to-pedestrian accidents. Besides, the FlexPLI has already been introduced within JNCAP and is on the Euro NCAP roadmap for 2014. Despite of the biofidelic properties in the knee and tibia sections, several open issues related to the FlexPLI, like the estimation of the cost benefit, the feasibility of vehicle compliance with the threshold values, the robustness of the impactor and of the test results, the comparability between prototype and production level and the finalization of certification corridors still needed to be solved. Furthermore, discussions with stakeholders about a harmonized lower legform to bumper test area are still going on. This paper describes several studies carried out by the Federal Highway Research Institute (BASt) regarding the benefit due to the introduction of the FlexPLI within legislation for type approval, the robustness of test results, the establishment of new assembly certification corridors and a proposal for a harmonized legform to bumper test area. Furthermore, a report on vehicle tests that previously had been carried out with three prototype legforms and were now being repeated using legforms with serial production status, is given. Finally, the paper gives a status report on the ongoing simulation and testing activities with respect to the development and evaluation of an improved test procedure with upper body mass for assessing pedestrian femur injuries.
Recent accident statistics from the German national database state bicyclists being the second endangered group of vulnerable road users besides pedestrians. With 399 fatalities, more than 14.000 seriously injured and more than 61.000 slightly injured persons on german roads in the year 2011, the group of bicyclists is ranked second of all road user groups (Statistisches Bundesamt, 2012). While the overall bicycle helmet usage frequency in Germany is very low, evidence is given that its usage leads to a significant reduction of severe head injuries. After an estimation of the benefit of bicycle helmet usage as well as an appropriate test procedure for bicyclists, this paper describes two different approaches for the improvement of bicyclist safety. While the first one is focusing on the assessment of the vehicle based protection potential for bicyclists, the second one is concentrating on the safety assessment of bicycle helmets. Within the first part of the study the possible revision of the existing pedestrian testing protocols is being examined, using in depth accident data, full scale simulation and hardware testing. Within the second part of the study, the results of tests according to supplemental test procedures for the safety assessment of bicycle helmets developed by the German Federal Highway Research Institute (BASt) are presented. An additional full scale test performed at reduced impact speed proves that measures of active vehicle safety as e.g. braking before the collision event do not necessarily always lead to a reduction of injury severity.
Within this paper different European accident data sources were used to investigate the causations and backgrounds of road traffic accidents with pedestrians. Analyses of high level national data and in-depth accident data from Germany and Great Britain was used to confirm and refine preliminary accident scenarios identified from other sources using a literature review. General observations made included that a high proportion of killed or seriously injured pedestrian casualties impacted by cars were in "dark" light conditions. Seven accident scenarios were identified (each divided into "daylight" and "dark" light conditions) which included the majority of the car front-to-pedestrian crash configurations. Test scenarios were developed using the identified accident scenarios and relevant parameters. Hypothetical parameters were derived to describe the performance of pedestrian pre-crash systems based on the assumption that these systems are designed to avoid false positives as a very high priority, i.e. at virtually all costs. As result, three "Base Test Scenarios" were selected to be developed in detail in the AsPeCSS project. However, further Enhanced Test Scenarios may be needed to address environmental factors such as darkness if it is determined that system performance is sensitive to these factors. Finally, weighting factors for the accident scenarios for Europe (EU-27) were developed by averaging and extrapolation of the available data. This paper represents interim results of Work Package 1 within the AsPeCSS project.
In Germany the number of casualties in passenger car to pedestrian crashes has been reduced by a considerable amount of 40% as regards fatalities and 25% with regard to seriously injured pedestrians since the year 2001. Similar trends can be seen in other European countries. The reasons for that positive development are still under investigation. As infrastructural or behavioral changes do in general take a longer time to be effective in real world, explanations related to improved active and passive safety of passenger vehicles can be more relevant in providing answers for this trend. The effect of passive pedestrian protection " specified by the Euro NCAP pedestrian test result " is of particular interest and has already been analyzed by several authors. However, the number of vehicles with some valid Euro NCAP pedestrian score (post 2002 rating) was quite limited in most of those studies. To overcome this problem of small datasets German National Accident Records have been taken to investigate a similar objective but now based on a much bigger dataset. The paper uses German National Accident Records from the years 2009 to 2011. In total 65.140 records of pedestrian to passenger car crashes have been available. Considering crash parameters like accident location (rural / urban areas) etc., 27.143 of those crashes have been classified to be relevant for the analysis of passive pedestrian safety. In those 27.143 records 7.576 Euro NCAP rated vehicles (post 2002 rating) have been identified. In addition it was possible to identify vehicles which comply with pedestrian protection legislation (2003/102/EG) where phase 1 came into force in October 2005. A significant correlation between Euro NCAP pedestrian score and injury outcome in real-life car to pedestrian crashes was found. Comparing a vehicle scoring 5 points and a vehicle scoring 22 points, pedestrians" conditional probability of getting fatally injured is reduced by 35% (from 0.58% to 0.37%) for the later one. At the same time the probability of serious injuries can be reduced by 16% (from 27.4% to 22.9%). No significant injury reducing effect, associated with the introduction of pedestrian protection legislation (phase 1) was detected. Considerable effects have also been identified comparing diesel and gasoline cars. Higher engine displacements are associated with a lower injury risk for pedestrians. The most relevant parameter has been "time of accident", whereas pedestrians face a more than 2 times higher probability to be fatally injured during night and darkness as compared to daytime conditions.
Thoracic injuries are one of the main causes of fatally and severely injured casualties in car crashes. Advances in restraint system technology and airbags may be needed to address this problem; however, the crash test dummies available today for studying these injuries have limitations that prevent them from being able to demonstrate the benefits of such innovations. THORAX-FP7 was a collaborative medium scale project under the European Seventh Framework. It focused on the mitigation and prevention of thoracic injuries through an improved understanding of the thoracic injury mechanisms and the implementation of this understanding in an updated design for the thorax-shoulder complex of the THOR dummy. The updated dummy should enable the design and evaluation of advanced restraint systems for a wide variety (gender, age and size) of car occupants. The hardware development involved five steps: 1) Identification of the dominant thoracic injury types from field data, 2) Specification of biomechanical requirements, 3) Identification of injury parameters and necessary instrumentation, 4) Dummy hardware development and 5) Evaluation of the demonstrator dummy. The activities resulted in the definition of new biofidelity and instrumentation requirements for an updated thorax-shoulder complex. Prototype versions were realised and implemented in three THOR dummies for biomechanical evaluation testing. This paper documents the hardware developments and biomechanical evaluation testing carried out.
It is well known that most accidents with pedestrians are caused by the driver not being alert or misinterpreting the situation. For that reason advanced forward looking safety systems have a high potential to improve safety for this group of vulnerable road users. Active pedestrian protection systems combine reduction of impact speed by driver warning and/or autonomous braking with deployment of protective devices shortly before the imminent impact. According to the Euro NCAP roadmap the Autonomous Emergency Braking system tests for Pedestrians Protection will be set in force from 2016 onwards. Various projects and organisations in Europe are developing performance tests and assessment procedures as accompanying measures to the Euro NCAP initiative. To provide synthesised input to Euro NCAP so-called Harmonisation Platforms (HP-) have been established. Their main goal is to foster exchange of information on key subjects, thereby generating a clear overview of similarities and differences on the approaches chosen and, on that basis, recommend on future test procedures. In this paper activities of the Harmonisation Platform 2 on the development of Test Equipment are presented. For the testing targets that mimic humans different sensing technologies are required. A first set of specifications for pedestrian targets and the propulsion systems as collected by Harmonisation Platform 2 are presented together with a first evaluation for a number of available tools.
For a number of EU regulatory acts Virtual Testing (VT) is already allowed for type approval (see Commission Regulation No. 371/2010 of 16 April 2010 amending the Framework Directive 2007/46/EC). However, only a very general procedure on how to apply VT for type approval is provided. Technical details for specific regulatory acts are not given yet. The main objective of the European project IMVITER (IMplementation of VIrtual TEsting in Safety Regulations) was to promote the implementation of VT in safety regulations. When proposing VT procedures the new regulation was taken into account, in particular, addressing open issues. Special attention was paid to pedestrian protection as pilot cases. A key aspect for VT implementation is to demonstrate that the employed simulation models are reliable. This paper describes how the Verification and Validation (V&V) method defined by the American Society of Mechanical Engineers was adapted for pedestrian protection VT based assessment. or the certification of headform impactors an extensive study was performed at two laboratories to assess the variability in calibration tests and equivalent results from a set of simulation models. Based on these results a methodology is defined for certification of headform impactor simulation models. A similar study was also performed with one vehicle in the type approval test setup. Its bonnet was highly instrumented and subjected to 45 impacts in five different positions at two laboratories in order to obtain an estimation of the variability in the physical tests. An equivalent study was performed using stochastic simulation with a metamodel fed with observed variability in impact conditions of physical headforms. An estimation of the test method uncertainty was obtained and used in the definition of a validation corridor for simulation models. Validation metric and criteria were defined in cooperation with the ISO TC22 SC10 and SC12 WG4 "Virtual Testing". A complete validation procedure including different test setups, physical magnitudes and evaluation criteria is provided. A detailed procedural flowchart is developed for VT implementation in EC Regulation No 78/2009 based on a so called "Hybrid VT" approach, which combines real hardware based head impact tests and simulations. This detailed flowchart is shown and explained within this paper. Another important point within the virtual testing based procedures is the documentation of relevant information resulting from the verification and validation process of the numerical models used. For this purpose report templates were developed within the project. The proposed procedure fixes minimum V&V requirements for numerical models to be confidently used within the type-approval process. It is not intended to be a thorough guide on how to build such reliable models. Different modeling methodologies are therefore possible, according to particular OEM know-how. These requirements respond to a balance amongst the type-approval stakeholders interests. A cost-benefit analysis, which was also performed within the IMVITER project, supports this approach, showing the conditions in which VT implementation is beneficial. Based on the experience gained in the project and the background of the experts involved an outlook is given as a roadmap of VT implementation, identifying the most important milestones to be reached along the way to a future vehicle type approval procedure supported by VT. The results presented in this paper show an important step addressing open questions and fostering the future acceptance of virtual testing in pedestrian protection type approval procedures.
Durch den zukünftig zu erwartenden Anstieg des Radverkehrsanteils am Gesamtverkehrsaufkommen und der Veränderung des Fahrzeugkollektivs sowie der Nutzergruppen durch die Zunahme von Elektrofahrrädern werden die Anforderungen an die Verkehrssicherheit im Radverkehr kontinuierlich steigen. Aus diesem Grund ist in dem vorliegenden Forschungsprojekt unter Berücksichtigung verschiedener Fachdisziplinen untersucht worden, welche Sicherheitskenngrößen im Radverkehr neben den bisher üblich verwendeten Unfallkennwerten geeignet sind, die Verkehrssicherheit zukünftig zu bewerten und darzustellen. Zur Identifikation von "neuen" bzw. zusätzlichen Sicherheitskenngrößen wurde eine Struktur zur Differenzierung von Sicherheitskenngrößen für unterschiedliche Stufen einer Fahrradfahrt von der Quelle bis zum Ziel bzw. einem potenziellen Unfall erstellt. Die Ergebnisse wurden in einem Expertenworkshop vor- und zur Diskussion gestellt und im Nachgang entsprechend der Diskussionsergebnisse überarbeitet und angepasst. Durch Heranziehen von Verkehrs- und Unfalldaten mit Radverkehrsbeteiligung aus abgeschlossenen (Forschungs-)Projekten wird für den verkehrsplanerischen Bereich in Anwendungsbeispielen dargestellt, wie für unterschiedliche Stufen einer Fahrradfahrt durch Kombination von bestehenden Unfallkennwerten und Sicherheitsindikatoren "neue" Sicherheitskenngrößen abgeleitet werden können. Aufgrund eines fehlenden einheitlichen Verkehrssicherheitsverständnisses der unterschiedlichen Fachdisziplinen und der teilweise schwachen empirischen Datengrundlage, konnte keine Grundlage zur Identifikation von interdisziplinären Sicherheitskenngrößen geschaffen werden. Aus diesem Grund beschränken sich die Ergebnisse primär auf den Bereich der Verkehrsplanung. Für zukünftige Untersuchungen wird daher empfohlen, auf Grundlage der vorliegenden Ergebnisse eine Methodik zur interdisziplinären Bewertung der Verkehrssicherheit im Radverkehr zu erarbeiten.