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Erscheinungsjahr
Dokumenttyp
- Konferenzveröffentlichung (404) (entfernen)
Schlagworte
- Conference (324)
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- Analysis (math) (63)
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- Schweregrad (Unfall, Verletzung) (59)
- Severity (accid, injury) (57)
- Tödlicher Unfall (56)
- Fatality (55)
- Safety (54)
- Sicherheit (53)
- Reconstruction (accid) (52)
- Bewertung (50)
- Evaluation (assessment) (49)
- Simulation (49)
- Datenbank (46)
- Fußgänger (45)
- Pedestrian (45)
- injury) (45)
- On the spot accident investigation (43)
- Schweregrad (Unfall (43)
- Verletzung) (43)
- Car (42)
- Data acquisition (42)
- Datenerfassung (42)
- Untersuchung am Unfallort (42)
- Severity (accid (40)
- Cause (39)
- Driver (39)
- Ursache (39)
- Fahrer (37)
- Fahrzeug (37)
- Unfallverhütung (36)
- Collision (35)
- Vehicle (35)
- Zusammenstoß (35)
- Anfahrversuch (34)
- Accident prevention (31)
- Radfahrer (31)
- Cyclist (30)
- Data bank (30)
- Accident reconstruction (29)
- Test (29)
- Europa (28)
- Europe (28)
- Frontalzusammenstoß (28)
- Prüfverfahren (28)
- Test method (28)
- Head on collision (27)
- Motorcyclist (27)
- Motorradfahrer (27)
- Versuch (27)
- Geschwindigkeit (26)
- Fahrerassistenzsystem (25)
- Impact test (veh) (25)
- Method (25)
- Speed (25)
- Active safety system (24)
- Leistungsfähigkeit (allg) (24)
- Passives Sicherheitssystem (23)
- Risiko (23)
- Verfahren (23)
- Aktives Sicherheitssystem (22)
- Insasse (22)
- Driver assistance system (21)
- Efficiency (21)
- PKW (21)
- Alte Leute (20)
- Passive safety system (20)
- Pkw (20)
- Interview (19)
- Old people (19)
- Risk (19)
- Vehicle occupant (19)
- Child (17)
- Kind (17)
- Prevention (17)
- Accident rate (16)
- Benutzung (16)
- Improvement (16)
- Sicherheitsgurt (16)
- Use (16)
- Verbesserung (16)
- Anthropometric dummy (15)
- Behaviour (15)
- Biomechanics (15)
- Biomechanik (15)
- Motorrad (15)
- Risikobewertung (15)
- Seitlicher Zusammenstoß (15)
- Unfallhäufigkeit (15)
- Verhalten (15)
- Berechnung (14)
- Database (14)
- Head (14)
- Kopf (14)
- Measurement (14)
- Messung (14)
- Motorcycle (14)
- Risk assessment (14)
- Safety belt (14)
- Side impact (14)
- Specifications (14)
- Calculation (13)
- Digital model (13)
- Driving aptitude (13)
- Leg (human) (13)
- Numerisches Modell (13)
- Richtlinien (13)
- Verminderung (13)
- Auffahrunfall (12)
- Brustkorb (12)
- Decrease (12)
- Development (12)
- Dummy (12)
- Entwicklung (12)
- Fahrzeugsitz (12)
- Rear end collision (12)
- Rechenmodell (12)
- Überschlagen (12)
- Airbag (11)
- Error (11)
- Fahrzeugführung (11)
- Human factor (11)
- Legislation (11)
- Mathematical model (11)
- Menschlicher Faktor (11)
- Prognose (11)
- Schutzhelm (11)
- Seat (veh) (11)
- Skill (road user) (11)
- Bremsung (10)
- Crash helmet (10)
- Driving (veh) (10)
- EU (10)
- Fahranfänger (10)
- Fehler (10)
- Gesetzgebung (10)
- Overturning (veh) (10)
- Recently qualified driver (10)
- Thorax (10)
- Tunnel (10)
- Air bag (restraint system) (9)
- Austria (9)
- Bein (menschl) (9)
- Braking (9)
- Deformation (9)
- Driver training (9)
- Front (9)
- Instandsetzung (9)
- Japan (9)
- Krankenhaus (9)
- Lorry (9)
- Metal bridge (9)
- Modification (9)
- Orthotropic plate (9)
- Planning (9)
- Repair (9)
- Sachschaden (9)
- Stahlbrücke (9)
- Verhütung (9)
- Veränderung (9)
- Österreich (9)
- Age (8)
- Alter (8)
- Bemessung (8)
- Blood alcohol content (8)
- Blutalkoholgehalt (8)
- Bridge (8)
- Damage (8)
- Drunkenness (8)
- Forecast (8)
- Hospital (8)
- Medizinische Untersuchung (8)
- Planung (8)
- Road network (8)
- Straßennetz (8)
- Trunkenheit (8)
- Verformung (8)
- Verkehrsinfrastruktur (8)
- Wirbelsäule (8)
- Antikollisionssystem (7)
- Belastung (7)
- Blood (7)
- Blut (7)
- Cracking (7)
- Design (overall design) (7)
- Einstellung (psychol) (7)
- Erste Hilfe (7)
- Erziehung (7)
- Expert opinion (7)
- Fahrausbildung (7)
- Fahreignung (7)
- Fracture (bone) (7)
- Frau (7)
- Gutachten (7)
- Illness (7)
- Impact study (7)
- International (7)
- Knee (human) (7)
- Knochenbruch (7)
- Krankheit (7)
- Load (7)
- Medical examination (7)
- Policy (7)
- Politik (7)
- Rissbildung (7)
- Standardisierung (7)
- Transport infrastructure (7)
- USA (7)
- Vereinigtes Königreich (7)
- Adolescent (6)
- Air pollution (6)
- Attitude (psychol) (6)
- Cervical vertebrae (6)
- Chemical analysis (6)
- Chemische Analyse (6)
- China (6)
- Collision avoidance system (6)
- Cost benefit analysis (6)
- Detection (6)
- Education (6)
- Fahrgeschicklichkeit (6)
- Halswirbel (6)
- Human body (6)
- Impact test (6)
- India (6)
- Indien (6)
- Interior (veh) (6)
- Jugendlicher (6)
- Knie (menschl) (6)
- Knotenpunkt (6)
- Leistungsfähigkeit (Fahrer) (6)
- Luftverunreinigung (6)
- Menschlicher Körper (6)
- Nitrogen oxide (6)
- Ort (Position) (6)
- Orthotrope Fahrbahntafel (6)
- Portugal (6)
- Road construction (6)
- Software (6)
- Spinal column (6)
- Standardization (6)
- Steifigkeit (6)
- Stiffness (6)
- Straßenbau (6)
- Traffic (6)
- Verkehr (6)
- Vorn (6)
- Wirksamkeitsuntersuchung (6)
- Wirtschaftlichkeitsrechnung (6)
- Woman (6)
- Analyse (Math) (5)
- Angle (5)
- Bau (5)
- Bearing capacity (5)
- Bremse (5)
- Brücke (5)
- Classification (5)
- Construction (5)
- Correlation (math, stat) (5)
- Dauerhaftigkeit (5)
- Decision process (5)
- Delivery vehicle (5)
- Detektion (5)
- Droge (5)
- Drugs (5)
- Durability (5)
- Eins (5)
- Electronic stability program (5)
- Entscheidungsprozess (5)
- Fahrstabilität (5)
- Fahrzeuginnenraum (5)
- Fernverkehrsstraße (5)
- Finite element method (5)
- First aid (5)
- Forschungsarbeit (5)
- France (5)
- Frankreich (5)
- Highway (5)
- Information (5)
- Klassifizierung (5)
- Location (5)
- Main road (5)
- Medical aspects (5)
- Medizinische Gesichtspunkte (5)
- Mobility (5)
- Mobilität (5)
- Oberfläche (5)
- One (5)
- Post crash (5)
- Research project (5)
- Schweissen (5)
- Sensor (5)
- Stickoxid (5)
- Straße (5)
- Surface (5)
- Surfacing (5)
- Technologie (5)
- Technology (5)
- Tragfähigkeit (5)
- United Kingdom (5)
- Vehicle handling (5)
- Verkehrsteilnehmer (5)
- Welding (5)
- Winkel (5)
- Abdomen (4)
- Alcohol test (4)
- Alkoholtest (4)
- Arbeitsgruppe (4)
- Autobahn (4)
- Automatisch (4)
- Balken (4)
- Beam (4)
- Berufsausübung (4)
- Bicycle (4)
- Blech (4)
- Boden (4)
- Brake (4)
- Camera (4)
- Coefficient of friction (4)
- Collision test (veh) (4)
- Compatibility (4)
- Concentration (chem) (4)
- Deformable barrier (impact test) (4)
- Distraction (4)
- Driver information (4)
- Dynamics (4)
- Dynamik (4)
- Elektronisches Stabilitätsprogramm (4)
- Estimation (4)
- Fahrdatenschreiber (4)
- Fahrrad (4)
- Fahrtüchtigkeit (4)
- Fire (4)
- Geschichte (4)
- History (4)
- Impact sled (4)
- Information documentation (4)
- Junction (4)
- Kamera (4)
- Kompatibilität (4)
- Kontrolle (4)
- Korrelation (math, stat) (4)
- LKW (4)
- Lieferfahrzeug (4)
- Life cycle (4)
- Lkw (4)
- Man (4)
- Mann (4)
- Methode der finiten Elemente (4)
- Modell (4)
- Nanotechnologie (4)
- Nanotechnology (4)
- Oberflächentextur (4)
- Occupant (veh) (4)
- Occupation (4)
- Organisation (4)
- Oxid (4)
- Oxide (4)
- Probability (4)
- Quer (4)
- Regression analysis (4)
- Regressionsanalyse (4)
- Reibungsbeiwert (4)
- Reinforcement (gen) (4)
- Reproducibility (4)
- Reproduzierbarkeit (4)
- Rigid pavement (4)
- Risk taking (4)
- Road user (4)
- Schrägseilbrücke (4)
- Schweden (4)
- Seite (4)
- Sheet (metal) (4)
- Sichtbarkeit (4)
- Soil (4)
- Stadt (4)
- Stayed girder bridge (4)
- Straßenverkehrsrecht (4)
- Surface texture (4)
- Surveillance (4)
- Titan (4)
- Titanium (4)
- Traffic regulations (4)
- Transverse (4)
- Unfallfolgemaßnahme (4)
- Unterleib (4)
- Urban area (4)
- Verstärkung (allg) (4)
- Sichtbarkeit (4)
- Wahrscheinlichkeit (4)
- Working group (4)
- Abkommen von der Fahrbahn (Unfall) (3)
- Ablenkung (psychol) (3)
- Adaptation (psychol) (3)
- Administration (3)
- Advanced driver assistance system (3)
- Anpassung (psychol) (3)
- Arzneimittel (3)
- Attention (3)
- Aufmerksamkeit (3)
- Aufprallschlitten (3)
- Auftrag (3)
- Ausrüstung (3)
- Australia (3)
- Australien (3)
- Automatic (3)
- Autonomes Fahren (3)
- Autonomes Fahrzeug (3)
- Autonomous driving (3)
- Autonomous vehicle (3)
- Befreiung (Bergung) (3)
- Bein (3)
- Beinahe Unfall (3)
- Beschichtung (3)
- Betonstraße (Oberbau) (3)
- Blickfeld (3)
- Brand (3)
- Bridge deck (3)
- Brückenbelag (3)
- Cable (3)
- Case law (3)
- Cement (3)
- Coating (3)
- Concrete (3)
- Contract (3)
- Cost (3)
- Crash test (3)
- Czech Republic (3)
- Decke (Straße) (3)
- Deformierbare Barriere (Anpralltest) (3)
- Digitale Bildverarbeitung (3)
- Earthworks (3)
- Effectiveness (3)
- Electric vehicle (3)
- Elektrofahrzeug (3)
- Environment (3)
- Equipment (3)
- Erdarbeiten (3)
- Ermüdung (mater) (3)
- Event data recorder (road vehicle) (3)
- Extrication (3)
- Fahrbahntafel (3)
- Fahrsimulator (3)
- Field of vision (3)
- Financing (3)
- Finanzierung (3)
- Fuge (3)
- Fugenfüllung (3)
- Gefahrenabwehr (3)
- Gemeindeverwaltung (3)
- Genauigkeit (3)
- Gesetzesdurchführung (3)
- Government (national) (3)
- Grenzwert (3)
- Griffigkeit (3)
- Hazard (3)
- Head restraint (3)
- Installation (3)
- Joint (structural) (3)
- Kleidung (3)
- Konzentration (chem) (3)
- Kopfstütze (3)
- Korea (Süd) (Demokratische Republik) (3)
- Kosten (3)
- Langfristig (3)
- Lebenszyklus (3)
- Limit (3)
- Local authority (3)
- Long term (3)
- Medication (3)
- Model (not math) (3)
- Montage (3)
- Motorway (3)
- Near miss (3)
- Netherlands (3)
- Niederlande (3)
- Norm (tech) (3)
- Orthotrope Platte (3)
- Overlapping (3)
- Passenger (3)
- Personal (3)
- Personnel (3)
- Police (3)
- Polizei (3)
- Psychologie (3)
- Psychology (3)
- Public transport (3)
- Reaction (human) (3)
- Reaktionsverhalten (3)
- Rechtsprechung (3)
- Recording (3)
- Rehabilitation (3)
- Rehabilitation (road user) (3)
- Reinforcement (in mater) (3)
- Republic of Korea (3)
- Run off the road (accid) (3)
- Schutzeinrichtung (3)
- Security (3)
- Severity (acid (3)
- Shock (3)
- Simulator (driving) (3)
- Skidding resistance (3)
- Spain (3)
- Spanien (3)
- Specification (standard) (3)
- Steife (Brücke) (3)
- Stiffener (Bridge) (3)
- Straßenverkehr (3)
- Theorie (3)
- Theory (3)
- Tschechische Republik (3)
- Umwelt (3)
- Unfallschwerpunkt (3)
- United kingdom (3)
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- Versuchspuppe (3)
- Verwaltung (3)
- Vorne (3)
- Zement (3)
- Öffentlicher Verkehr (3)
- Abbiegen (2)
- Abdichtung (2)
- Acceleration (2)
- Accident black spot (2)
- Accident proneness (2)
- Accuracy (2)
- Adult (2)
- Aggression (psychol) (2)
- Alcohol (2)
- Alkohol (2)
- Anti locking device (2)
- Antiblockiereinrichtung (2)
- Audit (2)
- Aufzeichnung (2)
- Automatische Notbremsung (2)
- Autonomous emergency braking (2)
- Ballungsgebiet (2)
- Behinderter (2)
- Beschleunigung (2)
- Beton (2)
- Bewehrung (2)
- Blutkreislauf (2)
- Body (car) (2)
- Bremsweg (2)
- Bridge surfacing (2)
- Budget (2)
- Bus (2)
- CEN (2)
- Chromatographie (2)
- Chromatography (2)
- Circulation (blood) (2)
- Clothing (2)
- Coach (2)
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- Composite bridge (2)
- Condition survey (2)
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- Continuous (2)
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- Crash victim (2)
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- Crossing the road (2)
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- Data base (2)
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- Fahrbahnüberquerung (2)
- Fahrerinformation (2)
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- Haftung (jur) (2)
- Harmonisation (2)
- High performance concrete (2)
- Highway design (2)
- Hinten (2)
- Input data (2)
- Intelligent transport system (2)
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- Kommunikation (2)
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- Lärmschutzwand (2)
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- Methode der finite Elemente (2)
- Mittelwert (2)
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- Nutzwertanalyse (2)
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- Organization (2)
- Organization (association) (2)
- Output (2)
- PVC (2)
- Penetration (2)
- Polyvinylchloride (2)
- Posture (2)
- Privatisierung (2)
- Properties (2)
- Prototyp (2)
- Prototype (2)
- Psychological aspects (2)
- Psychological examination (2)
- Psychologische Gesichtspunkte (2)
- Psychologische Untersuchung (2)
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- Quality (2)
- Qualität (2)
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- Rail traffic (2)
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- Retraining of drivers (2)
- Ringanalyse (2)
- Risikoverhalten (2)
- Road traffic (2)
- Rücksichtslosigkeit (2)
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- Schienenverkehr (2)
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- Turn (2)
- Tyre tread (2)
- Umweltverträglichkeitsprüfung (2)
- Unfallneigung (2)
- Unfallopfer (2)
- Unterhaltung (2)
- Value analysis (2)
- Vegetation (2)
- Vehicle regulations (2)
- Verantwortung (2)
- Verbundbrücke (2)
- Vorschrifteneinhaltung (2)
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- Water (2)
- Waterproofing (2)
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- Whiplash injury (2)
- Windschutzscheibe (2)
- Zeit (2)
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- Überlappung (2)
- (menschl) (1)
- Abgaben (1)
- Ability (road user) (1)
- Abkommen von der Fahrbahn (1)
- Ablenkung (1)
- Absorption (1)
- Abstandsregeltempomat (1)
- Acceptability (1)
- Accident data (1)
- Accident prone location (1)
- Accident severity (1)
- Active safety (1)
- Active safety system; Automatic; Brake; Car; Collision avoidance system; Conference; Driver assistance system; Germany; Impact test (veh); Rear end collision; Severity (accid (1)
- Activity report (1)
- Adaptive cruise controll (1)
- Addiction (1)
- Aesthetics (1)
- Aethanol (1)
- Aged people (1)
- Ageing (1)
- Aggression (psycho) (1)
- Aggressiveness (psychol) (1)
- Air quality management (1)
- Air traffic control (1)
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- Aktive Sicherheit (1)
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- Analyses (math) (1)
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- Animal (1)
- Anthropometrie (1)
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- Beton ; Betonstraße (Oberbau) (1)
- Bevölkerung (1)
- Bicyclist (1)
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- Bone (1)
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- Chest (1)
- Clay (1)
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- Comprehension (1)
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- Computation (1)
- Conference; Germany; Injury; Medical examination; Spinal column; X ray (1)
- Contact (tyre (1)
- Contractor (1)
- Cooperative intelligent transport system (1)
- Corrosion (1)
- Costs (1)
- Crash Test (1)
- Critical path method (1)
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Institut
- Sonstige (404) (entfernen)
Looking at the total of sum of fatal car accidents the number of single-vehicle accidents and particularly run-offroad (ROR) accidents are most frequent. In Austria on the Autobahn ROR accidents amounts to almost 45% of all fatal accidents, i.e. nearly every second fatal accident is caused by ROR accidents and interaction with infrastructure. Approximately 43 people were killed on Autobahns in ROR accidents with passenger cars. One possibility of protection against impacts with infrastructure is the use of guardrails. However, the initial element identified as a turned down terminal could become a dangerous impact object. These turned down terminals may lead a vehicle to roll over or the car "takes-off" when impacting the turned down guardrail. In many cases it is reported that the vehicle is jumping into road side objects such as traffic sign poles or overpasses. On average, nine people are killed in such accidents every year in Austria.
In a first step, we have examined approximately 23 000 single vehicle accidents within the Austrian National Statistics database. In a second step, we considered 15% of all fatal "running off the road" accidents that occurred in Austria in 2003. As a result, two accident categories were specified; "leaving the road without preceding manoeuvre" and "leaving the road with preceding manoeuvre". These two categories can be basically characterised by the vehicle- heading angle and its velocity angle. In this report, we further suggest theoretical approaches for the dimensioning of a safety zone, an area adjacent to the road free of fixed objects or dangerous slopes. We also show the link between the two accident categories mentioned above and the real world accidents analysed in detail. These observations also form the basis for the required length for safety devices. Finally, we summarise accident avoidance strategies.
The focus of the technical innovation in the automobile industry is currently changing to sensor based safety systems, which are operating in the pre-crash phase of an accident. To get more information about this pre-crash phase for real accidents a simulation of this phase using the GIDAS database is done. The basics for this simulation are geometrical information about the accident location and the exact accident data out of the GIDAS database. This aggregated information gives the possibility to simulate an exact motion for every accident participant, using MATLAB / SIMULINK, in the pre-crash phase. After the simulation the information about the geometrical positions, the velocities and maneuvers of the drivers to an individual TTC (time to collision) are available. With those results it is possible to develop new useful sensor geometries using pre-crash scatter plots or estimate the efficiency of implemented active safety systems in combination with sensor characteristics. This simulation can be done for every reconstructed accident included in the GIDAS database, so these results can represent a wide spread basis for the further development of active safety systems and sensor geometries and characteristics
Die Unfallzahlen für das Jahr 2008 zeigen, dass die intensiven Anstrengungen für die Verkehrssicherheit weiterhin Früchte tragen. Nachdem im Jahr 2007 mit 220 Toten auch in Rheinland-Pfalz der geringste Stand seit Einführung der Unfallstatistik registriert wurde, konnte dieser Trend auch im Jahr 2008 bestätigt werden. Die Verkehrssicherheitsarbeit in Rheinland-Pfalz sieht sich dabei zunächst im Kontext des anspruchsvollen Ziels der EU, die Zahl der Verkehrstoten bis 2010 zu halbieren. Im Mittelpunkt steht dabei die Frage, wie die Risiken im Verkehrsverhalten der Menschen minimiert werden können. Vorhandene Sicherheitspotenziale sollen genutzt werden, Maßnahmen sind gezielt auf die Brennpunkte im Verkehrsgeschehen auszurichten. Neben Sicherheitsaktionen und Trainings für die Verkehrsteilnehmer sowie der Polizeiarbeit ist einer der wichtigsten Ansätze die Verbesserung der Infrastruktur. Zu den Maßnahmen auf diesem Gebiet zählen neue Ansätze beispielsweise bei der Überprüfung sicherheitsrelevanter Aspekte schon in der Planung, beim Bau moderner Verkehrsbeeinflussungsanlagen oder bei der Sicherheit an Bahnübergängen und in Tunnels. Ein Fokus liegt jedoch auf der Unfallkommissionsarbeit. Sie ist ein wesentlicher Bestandteil der Gesamtkonzeption zur Verbesserung der Verkehrssicherheit. Das Land Rheinland-Pfalz verfügt seit nunmehr über 35 Jahren über institutionalisierte Erfahrungen auf diesem Gebiet, die auch als Beispiel für die bundesweite Entwicklung dienten. In einem weiteren Schritt werden seit kurzem in einer landesweiten Unfallkonferenz nunmehr Programmschwerpunkte wie beispielsweise die Bekämpfung von Motorradunfällen oder Baumunfällen definiert. Zudem wurden mit einem aufwändigen Programm allen der etwa 400 Unfallkommissionsmitglieder in Rheinland-Pfalz Schulungen angeboten. Eine permanente Nachschulung garantiert dabei einen gleichbleibend hohen Wissensstand. Beispielgebend ist allerdings auch die zentrale Unfallauswertestelle beim Landesbetrieb Mobilität in Koblenz, die es in dieser Form so nur noch in Bayern gibt. Mit ihr steht seit vielen Jahren ein Instrument zur Verfügung, das nicht nur die Grundlagen für gezielte und effektive Verkehrssicherheitsmaßnahmen schafft, sondern auch landesweite Controllings durchführt. Ohne eine finanzielle Ausstattung ist jedoch eine effektive Unfallkommissionsarbeit nicht möglich. Aus diesem Grund wurde als Novum ein spezieller Haushaltsansatz geschaffen, der gezielt ausschließlich im Sinne der Verkehrssicherheit - derzeit mit dem Schwerpunkt Baumunfälle und Motorradsicherheit - eingesetzt wird. Dabei wurde auch in einem Bewertungsverfahren zum Ausbauplan für Landesstraßen die Verkehrssicherheit so gewichtet, dass speziell Unfallhäufungsstellen in die Prioritätenreihung gelangen. Diese Ansätze mit Strategien aus einer Landesunfallkonferenz, gezielter Schulung, finanzieller Ausstattung sowie Unterstützung und Controlling durch eine zentrale Unfallauswertestelle sind zugleich Chance und Herausforderung für eine künftige Verkehrssicherheitsarbeit.
Im von der DG Home (CIPS Program) geförderten Projekt "SecMan " Security Manual for Road Infrastructures" wurde ein vierstufiges Verfahren zur Identifikation kritischer Straßeninfrastrukturen, ihre Bewertung hinsichtlich diverser von Menschen verursachter Gefahren sowie die Bestimmung effektiver Schutzmaßnahmen entwickelt. Diese Ergebnisse wurden in einem ganzheitlichen "best-practice" Handbuch zusammen getragen, welches einen trans-nationalen Sicherheitsmanagement-Ansatz für Betreiber und Eigentümer von Straßeninfrastrukturen in Europa ermöglicht. Im Folgenden wird die entwickelte Methodik vorgestellt, ausgehend von der Bewertung der Netzkritikalität über die Attraktivität und Vulnerabilität eines Bauwerks hin zu einer Bewertungsmethodik für die Auswahl geeigneter Schutzmaßnahmen.
Die Kommunikation zwischen Fahrzeugen und Infrastrukturkomponenten steht vor der Einführung in Europa. Dieser Beitrag stellt zunächst die grundlegende Technologie zum Austausch von Nachrichten und ein Pilotprojekt vor, innerhalb dessen eine sichere Fahrzeug-zu-Infrastruktur Kommunikation konzipiert und praktisch erprobt wird. Darauf aufbauend werden Sicherheitsfragestellungen von Infrastrukturkomponenten beleuchtet und ein Einblick in das Schlüsselmanagement sowohl für Fahrzeuge als auch Infrastrukturkomponenten gegeben.
Der Allgemeine Deutsche Automobilclub e. V. (ADAC) und die Bundesanstalt für Straßenwesen (BASt) veranstalteten am 7. und 8. Oktober 2003 in Wiesbaden ihr 5. Symposium "Sicher fahren in Europa". Nach 1991, 1994, 1997 und 2000 trafen sich erneut über 200 Fachleute aus Wissenschaft, Politik, Verwaltung, Industrie, Wirtschaft und Verbänden aus ganz Europa und einigen außereuropäischen Ländern, trugen neue Forschungsergebnisse vor und erörterten aktuelle Ansätze zur Erhöhung der Sicherheit im Straßenverkehr. Dabei ging es in Vortrags- und Diskussionsbeiträgen vor allem darum, folgende verkehrspolitischen Herausforderungen und Entwicklungen für eine europaweite Verkehrssicherheitsarbeit zu beleuchten: - die Umsetzung des 3. Verkehrssicherheits-Aktionsprogrammes der EU-Kommission bis 2010, dessen Diskussion gerade begonnen hat, - die zusätzlichen Probleme und Herausforderungen für die Verkehrssicherheit, die ab 2004 durch den EU-Beitritt von 10 weiteren Mitgliedsländern entstehen, - das Bestreben vieler EU-Mitgliedsstaaten, ihre nationale Identität und ihre regionalen Besonderheiten auch auf dem Gebiet der Verkehrssicherheit zu bewahren, um die Akzeptanz und Effizienz von praktischen Maßnahmen zu sichern, ein Ziel, dem sich auch der "EU-Konvent zur Zukunft Europas" verschrieben hat. Diesen ebenso aktuellen wie grundsätzlichen Anforderungen entsprach das Veranstaltungsprogramm mit seinen verkehrspolitischen Eröffnungs-vorträgen und mit drei Fachsitzungen - zur Verbesserung der Fahrzeugsicherheit, - der Verbesserung der Straßensicherheit und - zur Verbesserung des Verhaltens von Verkehrsteilnehmern. Eine Podiumsdiskussion "Zur Harmonisierung von Verkehrsüberwachung und Sanktionen" schloss die Veranstaltung ab.
The so-called "seat-belt injuries" or "seat-belt syndromes", described as 2-point seat-belt injuries, contain heavy inflection injuries of the lumbal spinal column, combined with heavy abdominal injuries as rupture of the upper intestinal bold or heavy injuries of the upper entrails. With "playing" children in the font of the car, with inappropriate plant of 3-point belts, identical injuries can occur.
In Germany averagely two million traffic accidents happen each year and emergency medical services are called to more than 400 000 patients. Even though this number is decreasing continuously (due to improvements in the fields of vehicle safety, road construction, and accident prevention) every case is yet a challenge for the rescuers and requires improvements in emergency medicine as well. Especially during diagnostics right at the accident scene, there are only limited instruments available to gain the necessary knowledge of the injuries suffered, to come to essential decisions about treatment or transport. To provide an additional diagnostic aid by scouting and estimating the situation, a software-tool calculating the likeliness of the most frequent severe injuries (AIS 3-6) of front occupants in passenger cars has been developed to deliver this necessary information about particular accident scenarios. To achieve this, logistic likelihood functions have been calculated in a multivariate regression analysis analysing all AIS 3+ injuries in the GIDAS database of the years 1999-2006 that happened more than four times
In most of developed countries, the progress made in passive safety during the last three decades allowed to drastically reduce the number of killed and severely injured especially for occupants of passenger cars. This reduction is mainly observed for frontal impacts for which the AIS3+ injuries has been reduced about 52% for drivers and 38% for front passengers. The stiffening of the cars' structure coupled with the generalization of airbags and the improvement of the seatbelt restraint (load limiter, pretension, etc.) allowed to protect vital body regions such as head, neck and thorax. However, the abdomen did not take advantage with so much success of this progress. The objective of this study is to draw up an inventory on the abdominal injuries of the belted car occupants involved in frontal impact, to present adapted counter-measures and to assess their potential effectiveness. In the first part the stakes corresponding to the abdominal injuries will be defined according to types of impact, seat location, occupants' age and type of injured organs. Then, we shall focus on the abdominal injury risk curves for adults involved in frontal impact and on the comparisons of the average risks according to the seat location. In the second part we will list counter-measures and we shall calculate their effectiveness. The method of case control will be used in order to estimate odds ratio, comparing two samples, given by occupants having or not having the studied safety system. For this study, two type of data sources are used: national road injured accident census and retrospective in-depth accident data collection. Abdominal injuries are mainly observed in frontal impact (52%). Fatal or severe abdominal occupant- injuries are observed at least in 27% of cases, ranking this body region as the most injured just after the thorax (51%). In spite of a twice lower occupation rate in the back seats compared to the front seats, the number of persons sustaining abdominal injuries at the rear place is higher than in the front place. In recent cars, the risk of having a serious or fatal abdominal injury in a frontal impact is 1.6% for the driver, 3.6% for the front passenger and 6.3% for the rear occupants. The most frequently hurt organs are the small intestine (17%), the spleen (16%) and the liver (13%). The most common countermeasures have a good efficiency in the reduction of the abdominal injuries for the adults: the stiffness of the structure of the seats allows decreasing the abdominal injury risk from 54% (driver) to 60% (front occupant), the seatbelt pretensioners decrease also this risk from 90% (driver) to 83% (front passenger).
This paper deals with the determination of test criteria for the durability assessment of polyvinyl chloride (PVC)-based geosynthetic barriers (GBR-P) products in tunnel sealing systems. In the project different products for road tunnel application are investigated by systematic long time storage in hot water using a new test procedure based on SIA V 280 standard (test no. 13) and EN 14415. The objective of this research project is to derive suitable exposure conditions and criteria for a practical testing procedure with regard to service lifetimes of up to 100 years. For that test temperature and time as well as the best suitable test medium have been investigated in a structured way. To verify the results of the new test procedure the material properties of GBR-P samples removed from older road tunnels are investigated. Based on the presented results of the still on-going research program some preliminary conclusions regarding the updating of the German regulations for road tunnel sealing systems (ZTV-ING part 5 section 5 and TL/TP KDB) are given.
The European Union has set a target to reduce all road fatalities (over 40,000) with 50% in 2010. This target percentage remained unchanged with the introduction of the ten new member states within the EU as by May 1st, 2004. According to Eurostat, 34% of all fatalities in 1998 in the, then, fifteen states of the European Union were the result of single vehicle collisions. This represents over 14,000 lives lost each year of which many can likely be saved through better roadside infrastructure design. The challenge for road safety professionals is to find methods and design strategies that help to reduce these casualties. Procedures for full-scale vehicle crash testing of guard rails were first published in the US in 1962. Present European regulation is mainly based on these procedures and later developments. Since then the vehicle fleet has changed considerably. Due to the complexity of the actual safety problem the numerical simulation approach offers a good opportunity to evaluate the different parameters involved in road safety, such as infrastructure properties, vehicle type, vehicle occupants and injuries. The ideal situation would be that simulation tools are coupled or integrated and all involved effects would be related. At the moment this is not the case yet, but initiatives are taken and a new virtual era has started. This paper offers a method looking at two components that encompass the driving environment: the car and the guardrail. As part of the EC-funded project, RISER (Roadside Infrastructure for Safer European Roads) a multi body simulation program study is carried out to determine sensitivities of some parameters in car to guardrail collisions and gives insides in performance of the car with passive safety equipment, the guardrail and the interaction of these objects with each other. By offering a set of methods that includes these two aspects and their intertwining relations, more confidence can be gained in actually reducing fatalities due to single vehicle collisions with, or due to, roadside furniture. Reducing the number of fatalities of single vehicle crashes would contribute greatly to the stated goal of reducing casualties altogether.
This work aims at bringing evidence for mass incompatibility in frontal impact for cars built according to the UNECE R94 regulation. French national injury accidents database census for years 2005 to 2008 were used for the analysis. The heterogeneity of frontal self-protection among cars of different masses is investigated, as well as the partner protection parameter offered by these cars. The last part of the analysis deals with the estimation of the benefit, in terms of fatal and severe injuries avoided, if crashworthiness was harmonized for the whole fleet of vehicle. This calculation is done for France and is extended to all Europe.
Seilverspannte Brücken
(2008)
Der Beitrag behandelt den Entwurf, Besonderheiten der Berechnung und die Bemessung der beiden wichtigsten Bauarten seilverspannter Brücken, der echten Hängebrücke und der Schrägseilbrücke. Bei den Hängebrücken wird zunächst eingegangen auf die geschichtliche Entwicklung, die geprägt ist durch die im Zuge der Verbesserung des Stahls zunehmende Drahtfestigkeit. Anschliessend geht der Bericht ein auf: statisches System, Arten des Ueberbaus, Ausführung der Pylone, Kabel, Hänger und Widerlager. Analog zu den Hängebrücken ist der Beitrag bei den Schrägseilbrücken aufgebaut: geschichtliche Entwicklung, Haupttragwerke, Ueberbau, Pylone und Schrägseile. Hinsichtlich der Besonderheiten der Berechnung werden angesprochen: Anwendung der Theorie II. Ordnung und Betriebsfestigkeitsbeanspruchung. Erläutert wird auch die Montage sowohl der Hängebrücke als auch der Schrägseilbrücke in Wort und Bild.
Improving the security of critical road infrastructure is a major task for owners and operators of tunnels and bridges in the European TEN-T Network (Trans-European Networks of Transport) (European Parliament and Council 1996). Up to now, there has not been a systematic procedure for identifying and assessing critical infrastructure objects and selecting appropriate protection measures. The EC FP7 project SeRoN for the first time presents an innovative methodology in order to support road owners and operators in handling this complex task. This paper describes the methodology and project results in detail by giving an introduction into its practical application.
Safety of light goods vehicles - findings from the German joint project of BASt, DEKRA, UDV and VDA
(2011)
Light goods vehicles (LGVs) are an important part of the vehicle fleet, providing a vital component in the European transportation system. On the other hand, LGVs are in the focus of public discussion regarding road safety. In order to analyse the accident situation of LGVs in an objective manner, Federal Highway Research Institute (BASt), VDA, DEKRA and German Insurers Accident Research (UDV) launched a joint project. The aim of this project, which will be finished by mid of 2011, is to identify reasonable measures which will further improve the safety of LGVs. For the first time, these partners jointly together conducted a research project and put together their know-how in accident research. Analyses are based on real-life accident data from the GIDAS database, the Accident Database of UDV (UDB), the DEKRA database and national statistics. The findings deliver answers to questions within the arena of future legislative actions and consumer protection activities. The analyses of databases cover areas of primary and secondary safety of LGVs with a special focus on advanced driver assistance systems (ADAS), driver behaviour as well as partner and occupant protection. Key figures from national statistics are used to highlight hotspots of accidents of LGVs in Germany. Finally, the proposed countermeasures are assessed regarding their potential effectiveness. Amongst others, the results show that the accident situation of LGVs is very similar to that of passenger cars. Noteworthy variations could be found in collisions with pedestrians, at reversing and regarding accident causes. Occupant safety of LGVs is on a higher level compared to cars. Results indicate that seatbelt use is on a significantly lower level compared to cars. This leads to higher-than-average injury risk for unbelted LGV occupants. When it comes to partner protection, there are problems with compatibility at LGVs. For car occupants there is a very high injury risk when colliding with a LGV. It indicates that higher passive safety test standards for LGVs would be counterproductive if they further increase stiffness of LGVs. The analysis of LGV-pedestrian accidents shows that pedestrian kinematic differs significantly from car-pedestrian accidents. At this point, existing pedestrian related test standards developed for cars cannot be adopted to LGVs. When it comes to active safety, ESC proved its effectiveness once again. Beyond that, rear view cameras, advanced emergency braking systems and lane departure warning systems show a safety potential, too. In addition to any technical countermeasures previously discussed, the importance of the driver behavior and attitude regarding the accident risk was investigated. In order to develop successful actions it is important to understand the main target population. In the case of LGV especially the crafts business and smaller companies are the major contributors the safety issue.
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.
Automotive Engineering, Mechanical Engineering and TechnologyrnAbstract: The degrees of injury severity, as a rule injuries scaled by AIS of specific regions of the human body, investigated out of road traffic accidents correspond to the body-specific loading values, which are found out with the aid of experimental or mathematical simulation of crash tests with motor vehicles or with sled tests. The coherence between the injured human being on the one hand and the physical and the theoretical model respectively on the other hand is established by the risk function, which describes the probability of degrees of injury severity in dependence on the protection criteria. Due to the different physical characteristics in the simulation, e.g. accelerations, forces, compressions and their velocity, the compilation of these quantities, comparable to the MAIS, the maximal occurred single AIS obtained in accident analysis is much more difficult in the simulation than in the accident occurrence. Therefore it is obvious to normalize the loading values gained out of simulation and to summarise them to an entire value in a suitable manner, the safety index.rn
A concept for Safe-Driving-Trainings with a focus on risky behavior and safety related attitudes has been evaluated. 519 participants have been tested before and after the training by means of a questionnaire with the topics: technical driving competence, awareness of risks, and propensity for anticipation. A control group (131 subjects) was used to check for the possibility of response artifacts. Three months later, 92 members of the treatment group and 25 members of the control group have been tested again. The results show significant positive changes in driving competence, risk awareness, and safety related attitudes, especially anticipation, due to the training. Compared to the control group the participants have become more risk aware and they regard of risk avoiding behavior as more important. The results show that this concept for Safe-Driving-Trainings has not only short-term but, more importantly, long-term positive effects on the safety-relevant attitudes and cognitions of young drivers.
Rollover scenarios in Europe
(2005)
Rollover accidents seem to be a rising problem in Europe and therefore the systematic of this accident scenario should be investigated. Based on statistical investigations on major European accident databases for different countries a series of 73 real world rollover accidents was analysed. These cases were reconstructed using PC-Crash and preliminary categorised using a modified USbased rollover classification. In a first step, the rollover events were reconstructed from the point of conflict to the vehicle- rest position. The vehicles kinematics as well as its linear and rotational velocities were derived. In a second step typical velocity characteristics as well as kinematics were identified and the events categorised according to these criteria. Based on these results four main categories were defined, covering all reconstructed accidents. This categorisation was based on mechanical parameters (rotatory and translator kinematical data of the vehicle). Significant differences can be seen for different scenarios for the "first phase of rollover".