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In recent years the boundaries between active and passive safety blurred more and more. Passive safety in the traditional term includes all safety aspects to prevent occupants to be injured or at least injury severity should be reduced. Passive Safety starts with the collision (first vehicle contact) and ends with rescue (open vehicle doors). Within this phase the occupant has to be protected by the passenger compartment whereby no intrusion should occur. Active safety on the other side was developed to interact prior to the collision whereby the goal is to prevent accidents. The extensive interaction between active and passive safety led to the terminologies "Primary" and "Secondary" safety whereas the expression Integrated Safety Concept was generated. Within this study the most well documented single vehicle accidents with cars not equipped with ESP were identified from the PENDANT database and reconstructed. Additional cases were found in the database ZEDATU of TU Graz. In comparison each case was simulated with the assumption that the cars were equipped with ESP. The differences regarding accident avoidance or crash severity as well as reduction of injury risk were analysed.
In order to enable foreseeing or comparing the benefit of safety systems or driver assistance systems in Germany, in the United States and in Japan, the traffic accident databases in those three countries are examined. The variables used are culpable party, collision partner, accident type, and injury level and the method to re-classify the databases for comparison are proposed. The result indicates that single passenger car fatality is the most frequent in Germany and in the United States, while passenger car vs. pedestrian is the most frequent fatality scenario in Japan. When the casualty by fatality ratio is focused, the greatest difference is observed in rear-end collisions. The ratio of slight injuries in Japan yields about eighteen times as many as those in Germany, and about eight times as many as those in the United States.
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.
A series of drop tests and vehicle tests with the adult head impactor according to Regulation (EC) 631/2009 and drop tests with the phantom head impactor according to UN Regulation No. 43 have been carried out by the German Federal Highway Research Institute (BASt) on behalf of the German Federal Ministry of Transport, Building and Urban Development (BMVBS). Aim of the test series was to study the injury risk for vulnerable road users, especially pedestrians, in case of being impacted by a motor vehicle in a way described within the European Regulations (EC) 78/2009 and (EC) 631/2009. Furthermore, the applicability of the phantom head drop test described in UN Regulation No. 43 for plastic glazing should be investigated. In total, 30 drop tests, thereof 18 with the adult head impactor and 12 with the phantom head impactor, and 49 vehicle tests with the adult head impactor were carried out on panes of laminated safety glass (VSG), polycarbonate (PC) and laminated polycarbonate (L-PC). The influence of parameters such as the particular material properties, test point locations, fixations, ambient conditions (temperature and impact angle) was investigated in detail. In general, higher values of the Head Injury Criterion (HIC) were observed in tests on polycarbonate glazing. As the HIC is the current criterion for the assessment of head injury risk, polycarbonate glazing has to be seen as more injurious in terms of vulnerable road user protection. In addition, the significantly higher rebound of the head observed in tests with polycarbonate glazing is suspected to lead to higher neck loads and may also cause higher injury risks in secondary impacts of vulnerable road users. However, as in all tests with PC glazing no damage of the panes was observed, the risk of skin cut injuries may be expected to be reduced significantly. The performed test series give no indication for the test procedure prescribed in UN Regulation No. 43 as a methodology to approve glass windscreen not being feasible for polycarbonate glazing, as all PC panes tested fulfilled the UN R 43 requirements. The performance of the windscreen area will not be relevant for vehicle type approval according to the upcoming UN Regulation for pedestrian protection. However, it is recommended that pedestrian protection being considered for plastic windscreens to ensure at least the same level of protection as glass windscreens.
This paper uses the national accident statistics of Great Britain to evaluate the effectiveness of Electronic Stability Control Systems (ESC) to reduce crash involvement rates. The crash experience of 8,951 cars is analysed and compared to a closely matching set of non-ESC cars using case-control methods. This is one of the largest ESC samples analysed to date. Overall the cars with ESC are involved in 3% fewer crashes although the effectiveness is substantially higher under conditions of adverse road friction. ESC equipped cars are involved in 15% fewer fatal crashes although this reduction represents the combined effect of ESC and passive safety improvements.
Event data recorders (EDRs) are a valuable tool for in-depth investigation of traffic accidents. EDRs are installed on the airbag control module (ACM) to record vehicle and occupant information before, during, and after a crash event. This study evaluates EDR characteristics and aims at better understanding EDR performance for the improvement of accident reconstruction with more reliable and accurate information regarding accidents. The analysis is based on six crash tests with corresponding EDR datasets.
The presence and performance of Advanced Driver Assistance Systems (ADAS) has increased over last years. Systems available on the market address also conflicts with vulnerable road users (VRUs) such as pedestrians and cyclists. Within the European project PROSPECT (Horizon2020, funded by the EC) improved VRU ADAS systems are developed and tested. However, before determining systems" properties and starting testing, an up-to-date analysis of VRU crashes was needed in order to derive the most important Use Cases (detailed crash descriptions) the systems should address. Besides the identified Accident Scenarios (basic crash descriptions), this paper describes in short the method of deriving the Use Cases for car-to-cyclist crashes. Method Crashes involving one passenger car and one cyclist were investigated in several European crash databases looking for all injury severity levels (slight, severe and fatal). These data sources included European statistics from CARE, data on national level from Germany, Sweden and Hungary as well as detailed accident information from these three countries using GIDAS, the Volvo Cars Cyclist Accident database and Hungarian in-depth accident data, respectively. The most frequent accident scenarios were studied and Use Cases were derived considering the key aspects of these crash situations (e.g., view orientation of the cyclist and the car driver- manoeuvre intention) and thus, form an appropriate basis for the development of Test Scenarios. Results Latest information on car-to-cyclist crashes in Europe was compiled including details on the related crash configurations, driving directions, outcome in terms of injury severity, accident location, other environmental aspects and driver responsibilities. The majority of car-to-cyclist crashes occurred during daylight and in clear weather conditions. Car-to-cyclist crashes in which the vehicle was traveling straight and the cyclist is moving in line with the traffic were found to result in the greatest number of fatalities. Considering also slightly and seriously injured cyclists led to a different order of crash patterns according to the three considered European countries. Finally the paper introduced the Use Cases derived from the crash data analysis. A total of 29 Use Cases were derived considering the group of seriously or fatally injured cyclists and 35 Use Cases were derived considering the group of slightly, seriously or fatally injured cyclists. The highest ranked Use Case describes the collision between a car turning to the nearside and a cyclist riding on a bicycle lane against the usual driving direction. A unified European dataset on car-to-cyclist crash scenarios is not available as the data available in CARE is limited, hence national datasets had to be used for the study and further work will be required to extrapolate the results to a European level. Due to the large number of Use Cases, the paper shows only highest ranked ones.
Camera-monitor systems (CMS) can be used in motor vehicles to display the driver's rear view on a monitor mounted inside the vehicle. This also offers the possibility of replacing conventional exterior mirrors with suitable CMS and thereby implementing new design concepts with aerodynamic advantages. However, as exterior mirrors are safety-relevant vehicle parts for securing the driver's indirect rear view (requirements specified in UN Regulation No. 46), the question arises whether CMS can provide an equivalent substitute for mirrors. In the scope of this study, CMS and conventional exterior mirrors were compared and assessed in test drives and static tests under different external conditions. On the one hand, the examination of technical aspects, and on the other hand, issues pertaining to the design of the human-machine interaction, were the objects of the study. Two vehicles were available for the trials with passenger vehicles: A vehicle, manufactured in small series, which is already equipped with CMS as sole replacement for the exterior mirrors, as well as a compact class vehicle which had a CMS retrofitted by the car manufacturer in addition to conventionally used exterior mirrors. The latter could be covered exclusively for trips with CMS. A tractor unit with semitrailer was available for the truck trials. The driver's cabin was equipped with a CMS system developed by the vehicle manufacturer. In general, it was shown that it is possible to display the indirect rear view sufficiently for the driver, both for cars and trucks, using CMS which meet specific quality criteria. Depending on the design, it is even possible to receive more information about the rear space from a CMS than is possible with mirror systems. It was also shown that the change from mirrors to CMS requires a certain period of familiarisation. However, this period is relatively short and does not necessarily result in safety-critical situations.
Die vorliegende Studie untersucht die Auswirkung der Ausstattung von Motorrädern mit Anti-Blockier-System (ABS) auf die Fahrsicherheit von Motorrädern. Hierzu wurden Fahrversuche im realen Verkehr und auf abgesperrter Teststrecke durchgeführt. Erfahrene und wenig erfahrene Motorradfahrer absolvierten Testfahrten auf nasser und trockener Fahrbahn mit und ohne ABS-Aktivierung des Motorrades. Bei den Versuchsfahrten kam es zu einigen kritischen Fahrsituationen, bei denen die Versuchspersonen insbesondere zu Beginn des Bremsmanövers von ihrem "normalen" Bremsverhalten abwichen. Bei blockierendem Hinterrad wurde der Bremsdruck vorne und hinten reduziert, was zu einer deutlichen Bremswegverlängerung führte. Bei den Vollbremsungen unter idealen Bedingungen auf abgesperrter Strecke wurden von erfahrenen Fahrern ohne ABS kürzere Bremswege als mit ABS erreicht. Kurvenbremsungen mit ABS-Regelung wurden im mittleren Geschwindigkeits- und Schräglagebereich fahrstabil durchgeführt. Die Ergebnisse zeigen, dass selbst erfahrene Motorradfahrer Bremsweg in kritischen Situationen verschenken. Geeignete Antiblockiersysteme könnten Motorradfahrern die Angst vor Radblockaden nehmen. Dies dürfte einen erheblichen Beitrag zur Steigerung der aktiven Sicherheit leisten.
Brände in Reisebussen stellen ein sehr seltenes Ereignis dar. Das daraus resultierende Gefahrenpotenzial übersteigt aber das eines Pkws bei weitem, da von einer größeren Zahl betroffener Personen ausgegangen werden muss. Bauartbedingt ist mit erschwerten Bedingungen bei der Evakuierung von Bussen zu rechnen, insbesondere bei Sichtbehinderung durch Rauch in Verbindung mit Panikreaktionen der Fahrgäste. Derzeit gültige Richtlinien für Anforderungen an das Brandverhalten von Werkstoffen der Innenausstattung von Reisebussen geben reale Brände als prüftechnisches Szenario nur näherungsweise wieder. Dabei wird dem Einbauort der Materialien zu wenig Aufmerksamkeit gewidmet. Bezüglich Brandausbreitung (Übergang auf andere Baugruppen, brennendes Abtropfen) sind neue Kriterien erforderlich, welche die Zulassung des Werkstoffes beeinflussen können. Hinsichtlich der Toxizität der beim Verbrennen oder bei thermischer Belastung der Werkstoffe, insbesondere der Kunststoffe, entstehenden Rauchgase gibt es bis heute für den Reisebussektor nur unzureichende Vorschriften. In diesem Zusammenhang ist vor allem das gleichzeitige Brennen mehrerer unterschiedlicher Materialien im Innenraum von Reisebussen zu berücksichtigen. Zur Weiterentwicklung des bestehenden Regelwerks für die Zulassung von Reisebussen in Hinblick auf eine Optimierung der Brandvermeidung und der Brandeingrenzung mittels praxisnaher Prüfverfahren sollten im Rahmen dieses Projektes bestehende Regelwerke dargestellt und Verbesserungsmöglichkeiten aufgezeigt werden. Der vorliegende Abschlussberichts stellt die bisher gewonnenen Erkenntnisse dar. Besonderer Wert wurde dabei auf die Auswertung des realen Brandgeschehens von Reisebussen gelegt. Primär sind hierbei die Brandentstehung sowie die Ausbreitungswege analysiert worden. Ein weiterer Schwerpunkt ist die Darstellung von Brand-Detektionsverfahren. Forderungen aus dem Eisenbahnbereich in Bezug auf den Brandschutz in Personenzugwagen werden wiedergegeben, die Übertragbarkeit auf Reisebusse wird diskutiert. Die gewonnenen Erkenntnisse wurden in einem Lastenheft zusammengestellt, wobei die Orientierung an bestehenden Regelungen erfolgt. Neben der Prävention mittels Prüfverfahren wird besonderer Wert auf die Organisation sowie die Bereitstellung von Löschmitteln für effektive Erstmaßnahmen im Brandfall gelegt. Die Empfehlungen wurden im Rahmen eines Fachgesprächs mit Experten von Reisebusherstellern, mit Busunternehmern und mit Feuerwehrleuten diskutiert, Brandversuche wurden durchgeführt. Bei den vorgeschlagenen Prüfverfahren erfolgte eine Orientierung an den für das deutsche Eisenbahnwesen relevanten Normen. Zur Kostenreduktion werden für einige Bauteile alternative Prüfverfahren zugelassen. Mangels Reproduzierbarkeit, nur geringer Aussagekraft und unverhältnismäßig hoher Kosten wurden Full-Scale-Tests nicht in die Empfehlungen aufgenommen. Als Ergebnis steht die Forderung, dass alle Vorschläge im Falle einer Umsetzung europaweit gelten müssen. Die Brandfrüherkennung durch automatische Brandmeldeanlagen wurde für den Motorraum sowie in Teilen für den Innenraum befürwortet; dagegen werden automatische Löschanlagen aus wirtschaftlichen Gründen nicht gefordert werden. Beim mitgeführten Löschgerät sind Änderungen der bestehenden Regelung erforderlich, da sich diese auf abgelöste Normen beziehen, die Kombination von Pulver- und Schaumlöscher hat sich als Optimum herauskristallisiert. Besonders wichtig ist eine Information der Fahrgäste vor Fahrtantritt über die im Bus verwendeten Sicherheitseinrichtungen und deren Funktion. Bislang scheiterte die konsequente Umsetzung an der Vielzahl unterschiedlicher Funktionsprinzipien der Sicherheitseinrichtungen. Hier besteht Handlungsbedarf.