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Im September 2013 wurde der 2. CEDR Call (Conference of European Directors of Roads, Call 2013), der eine Summe von ca. 5,3 Mio Euro umfasst, veröffentlicht. Im Rahmen der länderübergreifen europäischen Forschung waren fünf Themen der künftigen strategischen Forschungsplanung und dem anstehenden Forschungsbedarf durch Befragung der europäischen nationalen Straßenbauverwaltungen identifiziert worden: Energieeffizienz, Verkehrssicherheit, Alternde Infrastruktur, Straßen und Umwelt, Verkehrsmanagement. Im Rahmen von Workshops waren zuvor zu diesen fünf Themen "Descriptions of Research Needs" (DoRNs) erarbeitet worden, welche zusammen mit dem Call veröffentlicht wurden. Die wesentlichen Inhalte der DoRNS werden im Beitrag kurz beschrieben.
Within the automotive context camera monitor systems (CMS) can be used to present views of the traffic situation behind the vehicle to the driver via a monitor mounted inside the cabin. This offers the opportunity to replace classical outside rearview mirrors and therefore to implement new design concepts, aerodynamically optimized vehicle shapes and to reduce the width of the vehicle. Further, the use of a CMS offers the potential to implement functionalities like warnings or situation-adaptive fields of view that are not feasible with conventional rearview mirrors. Despite these potential advantages, it is important to consider the possible technical constraints of this technology and its effect on driver perception and behavior. On the technical side next to the field of view and die robustness of die system, aspects as its functionality at day and night as well as under varying weather conditions should be object to scientific investigation. Concerning human machine interaction, it has to be considered, that the perception of velocities and distances of approaching vehicles might be different for CMS as compared to conventional rearview mirrors and potential influences of factors as the Position of the displays or drivers' age should be taken into account. In order to shed light on these and further open issues, BASt is currently conducting a study that will cover the use of CMS under controlled conditions as well in real traffic. The first part of the study will focus on passenger cars, while in a second step the empirical investigation will be extended to heavy goods vehicles, where the potentials as well as the limitations of CMS might differ considerably. The presentation will cover the first part, with regard to the experimental design, implementation and initial results if already available.
Für den Verkehr auf Straße und Schiene sowie für den Luft- und Seeverkehr sind kritische Infrastrukturen oft die zentralen Knotenpunkte, ohne deren Funktionieren der Güter- und Personenverkehr erheblich beeinträchtigt werden kann. Die Wichtigkeit funktionierender und robuster Verkehrsnetze und eben dieser Knotenpunkte wird bei Betrachtung der steigenden Gütertransportmengen von intra-europäischen Transportaktivitäten deutlich: So soll sich der Verkehr zwischen den Europäischen Mitgliedsstaaten bis 2020 verdoppeln. Eine umsichtige Infrastrukturentwicklung spielt daher eine besondere Rolle in Europa. So nehmen Planung und Ausbau des TEN-T-Netzes (Trans-European Networks of Transport) zwischen 2010 und 2030 550 Milliarden Euro in Anspruch. Gerade im Hinblick auf terroristische oder kriminelle Bedrohungen, Großunfälle oder immer intensiver werdende Extremwetterereignisse und andere Naturgefahren spielt die Sicherheit dieser Infrastrukturen eine wichtige Rolle in der Planung neuer sowie beim Betrieb bestehender Bauwerke.
Im Mittelpunkt der Überlegungen zu Perspektiven einer zeitgemäßen und sicherheitswirksamen Fahranfängervorbereitung steht die Absenkung des weiterhin hohen Anfangsrisikos bei Fahranfängern. Ausgehend von den positiven Erfahrungen mit dem Begleiteten Fahren ab 17 beauftragte das Bundesministerium für Verkehr, Bau und Stadtentwicklung (BMVBS) die Bundesanstalt für Straßenwesen (BASt) mit der Erarbeitung eines Rahmenkonzepts, in dem Entwicklungsperspektiven für weitere Verbesserungen der Vorbereitung von Fahranfängern und wissenschaftlich begründete Maßnahmenvorschläge für die Erhöhung der Fahranfängersicherheit formuliert werden. Zunächst werden die Aufgaben und die Vorgehensweise der Rahmenkonzepterarbeitung sowie die Kriterien für die Ableitung von Maßnahmenprioritäten skizziert. Ausgehend von den Erkenntnissen zur Entwicklung des Unfallrisikos im Verlauf der Fahrkarriere werden im Anschluss die maßgeblichen Ansatzpunkte zur verbesserten Gestaltung eines sicheren Übergangs in die Automobilität aufgezeigt. Zentrale Maßnahmenvorschläge des Rahmenkonzepts werden vorgestellt. Diese beziehen sich auf die Bekämpfung der maßgeblichen Ursachen des erhöhten Fahranfängerrisikos (Fahrerfahrungsdefizit und Einstellungsmängel), die Optimierung bestehender Fahranfängermaßnahmen und die verstärkte Erschließung von Technik und Wissenschaft für das Fahren lernen.
Various kinds of demerit point systems have been developed and implemented in European countries, aimed at tackling repeat offences in road transport by acting as a deterrent and providing sanctioning. The impact of a demerit point system on the number of crashes is often reported to be significant, but temporary. The objective of the EU BestPoint project was to establish a set of recommended practices that would result in a more effective and sustainable contribution of demerit point systems to road safety. A high actual chance of losing the licence and a high perceived chance of losing the licence are basic prerequisites for the effective operation of demerit point systems. For measures applied within the context of a demerit point system, a four-step-approach is recommended: warning letter, driver improvement course, licence withdrawal, rehabilitation course. Further recommendations concern issues like points and offences, e.g. which offences should lead to points, target groups, and the administration of demerit point systems. The final result of the EU BestPoint project is a handbook (van Schagen & Machata, 2012) which provides a concise overview of all recommended practices. The presentation/paper outlines how sustainable safety improvements can be achieved if national demerit point systems are implemented and maintained according to the recommended practices. In addition, potential further steps towards an EU-wide demerit point system (cross-border exchange on points and/or offences) are presented.
Trauma management (TM) covers two types of medical treatment: the initial one provided by Emergency Medical Services (EMS) and a further one provided by permanent medical facilities. There is a consensus in the professional literature that to reduce the severity and the number of road crash victims, the TM system should provide rapid and adequate initial care of injury, combined with sufficient further treatment at a hospital or trauma centre. Recognizing the important role of TM for reducing road crash injury outcome, it was decided, within the EU funded SafetyNet project, to develop road safety performance indicators (SPIs) which would characterize the level of TM systems" performance in European countries and enable country comparisons. The concept of TM SPIs was developed based on a literature study of performance indicators in TM, a survey of available practices in Europe and data availability examinations. A set of TM SPIs was introduced including 14 indicators which characterize five issues such as: availability of EMS stations; availability and composition of EMS medical staff; availability and composition of EMS transportation units; characteristics of the EMS response time, and availability of trauma beds in permanent medical facilities. Basic information on the TM systems was collected in close cooperation with the national expert group. A dataset with TM SPIs for 21 countries was created. It was demonstrated that the countries can be compared using selected TM SPIs. Moreover, a more general comparison of the TM systems' performance in the countries is possible, using multiple ranking and statistical weighting techniques. By both methods, final estimates were received enabling the recognition of groups of countries with similar levels of the TM system's performance. The results of various trials were consistent as to the recognition of countries with high or low level of the TM systems" performance, where in grouping countries with intermediate levels of the TM system's performance some differences were observed. The SafetyNet project's practice demonstrated that data collection for estimating TM SPIs is not an easy task but is realizable for the majority of countries. The TM SPIs" message is currently limited to the availability of trauma care services. Further development of the TM SPIs should focus on characteristics of actual treatment supplied, based on combined police and medical road crash related databases.
To improve vehicle safety in frontal collisions, the crash compatibility between the colliding vehicles is crucial. Compatibility aims to improve both the self and partner protection properties of vehicles. Although compatibility has received worldwide attention for many years, no final assessment approach has been defined. Within the Frontal Impact and Compatibility Assessment Research (FIMCAR) project, different frontal impact test procedures (offset deformable barrier [ODB] test as currently used for Economic Commission for Europe [ECE] R94, progressive deformable barrier test as proposed by France for a new ECE regulation, moveable deformable barrier test as discussed worldwide, full-width rigid barrier test as used in Federal Motor Vehicle Safety Standard [FMVSS] 208, and full-width deformable barrier test) were analyzed regarding their potential for future frontal impact legislation. The research activities focused on car-to-car frontal impact accidents based on accident investigations involving newer cars. Test procedures were developed with both a crash test program and numerical simulations. The proposal from FIMCAR is to use a full-width test procedure with a deformable element and compatibility metrics in combination with the current offset test as a frontal impact assessment approach that also addresses compatibility. By adding a full-width test to the current ODB test it is possible to better address the issues of structural misalignment and injuries resulting from high acceleration accidents as observed in the current fleet. The estimated benefit ranges from a 5 to 12 percent reduction of fatalities and serious injuries resulting from frontal impact accidents. By using a deformable element in the full-width test, the test conditions are more representative of real-world situations with respect to acceleration pulse, restraint system triggering time, and deformation pattern of the front structure. The test results are therefore expected to better represent real-world performance of the tested car. Furthermore, the assessment of the structural alignment is more robust than in the rigid wall test.
It is commonly agreed that active safety will have a significant impact on reducing accident figures for pedestrians and probably also bicyclists. However, chances and limitations for active safety systems have only been derived based on accident data and the current state of the art, based on proprietary simulation models. The objective of this article is to investigate these chances and limitations by developing an open simulation model. This article introduces a simulation model, incorporating accident kinematics, driving dynamics, driver reaction times, pedestrian dynamics, performance parameters of different autonomous emergency braking (AEB) generations, as well as legal and logical limitations. The level of detail for available pedestrian accident data is limited. Relevant variables, especially timing of the pedestrian appearance and the pedestrian's moving speed, are estimated using assumptions. The model in this article uses the fact that a pedestrian and a vehicle in an accident must have been in the same spot at the same time and defines the impact position as a relevant accident parameter, which is usually available from accident data. The calculations done within the model identify the possible timing available for braking by an AEB system as well as the possible speed reduction for different accident scenarios as well as for different system configurations. The simulation model identifies the lateral impact position of the pedestrian as a significant parameter for system performance, and the system layout is designed to brake when the accident becomes unavoidable by the vehicle driver. Scenarios with a pedestrian running from behind an obstruction are the most demanding scenarios and will very likely never be avoidable for all vehicle speeds due to physical limits. Scenarios with an unobstructed person walking will very likely be treatable for a wide speed range for next generation AEB systems.
Um die Sicherheit der Straßentunnel zu gewährleisten, werden mehr als 400 m lange Tunnel ständig durch eine Tunnelleitzentrale überwacht. Die dort eingehende Flut von Einzelinformationen, wie Kamerabilder und zahlreiche Sensordaten, muss permanent durch das Personal erfasst und beurteilt werden. Das Projekt ESIMAS (Echtzeit-Sicherheits-Management-System für Straßentunnel) wird neue Wege aufzeigen, um die Leitstellenmitarbeiter zu unterstützen. Auf Grundlage der Datenanalyse und -bewertung von ESIMAS können zukünftig sicherheitsrelevante Ereignisse, wie ein Brand im Tunnel, zuverlässig und rechtzeitig erkannt werden. Im Ernstfall soll ESIMAS dem Leitzentralenpersonal sowie den Einsatz- und Rettungsdiensten Handlungsempfehlungen zur Ereignisbewältigung zur Verfügung stellen. Auf Basis dieser Handlungsempfehlungen können Maßnahmen schnellstmöglich und gezielt durchgeführt werden. Der innovative Ansatz von ESIMAS besteht in der ganzheitlichen Betrachtung aller Einzelinformationen und ihrer automatischen Auswertung und Bewertung. Hierdurch ist eine schnellere Reaktion der Leitstelle zum Schutz der Verkehrsteilnehmer möglich.
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.