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Die derzeitige Verkehrserfassung soll stufenweise verbessert werden. Erste Stufe ist die Einführung von ARIAM: Das Bundesverkehrsministerium will die Voraussetzungen dafür schaffen, dass Informationen unmittelbar aus Zähldaten an den Autobahnen erhoben werden können. Zur Organisation für ein verbessertes Informationssystem ist die Verknüpfung der zuständigen Behörden, die Einrichtung von Leitzentralen und deren Verbindung durch einen Datenpool notwendig.
The German highway network hast o face new challenges in the near future, e.g. increasing traffic density and loads, climate change effects and new quality requirements regarding sustainability. It is necessary to come up with foresighted concepts in the present to be prepared for these challenges. Therefore it is important to adapt and enhance innovative attempts, which take changing impacts into account. One goal of these efforts is the development of adaptive systems for the provision of information and a holistic evaluation in real time. The paper describes the recent research and developments on a system for information and holistic evaluation in real time, taking into account sensor networks, evaluation procedures and their implementation in existing maintenance and inspection strategies.
The German highway network is facing new challenges in the near future. The structures have to deal with increasing traffic loads, climate change effects and new requirements regarding sustainability while they are getting older and budget cuts can be expected. To guarantee a reliable highway network, it will be vital to adapt and enhance innovative approaches. Current bridge management relies on the results of conventional bridge inspections and thus has certain limitations when it comes to insufficient load bearing capacity and other systematic weaknesses. Therefore, new approaches for real time condition assessment of critical road infrastructure elements are to be developed.
Zunehmende Belastungen insbesondere der Bundesstraßen durch Schwerverkehr und Witterungsextreme führen dazu, dass viele Straßenabschnitte vor Ablauf der geplanten Nutzungsdauer erneuert werden müssen. Hinzu kommt die Herausforderung der Beseitigung von Investitionsstaus, das heißt die Erneuerung von Straßenabschnitten, deren substanzieller Zustand durch Überschreiten der geplanten Nutzungsdauer nicht mehr wirtschaftlich ist. Insbesondere bei extremen Witterungsbedingungen zeigen sich unter Umständen die Schwächen der verschiedenen Bauweisen. So kann es bei hohen Temperaturen und Stop-and-go-Verkehr bei Asphaltbauweisen zur erhöhten Spurrinnenbildung oder zur Schädigung der Längsnähte kommen. In der Betonbauweise können unter Umständen Hitzeschäden auftreten, wenn größere Imperfektionen – die direkt aus der Herstellung oder mangelnder/fehlerhafter Erhaltung resultieren – vorliegen. Aufgrund außergewöhnlicher klimatischer Situationen (Hitzeperioden) im Jahr 2013 kam es insbesondere im Bundesland Bayern zu einem vermehrten Auftreten von Hitzeschäden. Deshalb wurde im gleichen Jahr eine „Expertengruppe Hitzeschäden“ gegründet, die aus Vertretern des BMVI, der BASt, der Straßenbauverwaltungen und externer Experten bestand. Ziel war es, die Ursachen und Mechanismen von Hitzeschäden zu eruieren, um geeignete Maßnahmen zu deren Vermeidung ergreifen zu können. In diesem Zusammenhang wurde eine spezielle Messstation entwickelt, um die Temperatur über den Betondeckenquerschnitt, die Fugenbewegungen und weitere relevante Klimadaten ermitteln zu können. In enger Zusammenarbeit mit dem Bund und den Ländern wurden bisher 15 derartige Stationen aufgebaut. Somit besteht die Möglichkeit, in der Praxis auftretende witterungsinduzierte Spannungszustände im Kontext mit den verschiedenen Bauweisen sowie den zunehmend auftretenden Witterungsextrema zu analysieren. Die genaue Kenntnis über den Temperaturverlauf im Betonquerschnitt und zur Fugenbewegung, im zeitlichen und örtlichen Kontext zu den Witterungsbedingungen ist notwendig, um das Spannungsniveau im Deckensystem ableiten und prognostizieren zu können. Zudem ist die Kenntnis über konstruktive und materialtechnische Parameter aus dem zu betrachtenden Straßenoberbau erforderlich. Um Aussagen zur zeitlichen Entwicklung des Verhaltens des Plattensystems im Lebenszyklus treffen zu können, ist die kontinuierliche Erfassung, Speicherung und Analyse relevanter Daten von Bedeutung. Für die temporäre Spannungsprognose (z. B. über den Zeitraum einer Hitzeperiode) ist jedoch eine Analyse der Ausgangsdaten innerhalb weniger Stunden notwendig, um entsprechende Handlungsempfehlungen (z. B. Einrichtung von Tempolimits) treffen zu können. Durch die Verknüpfung mit weiteren Daten können ferner Aussagen zur Entwicklung wichtiger zeitlich veränderlicher Parameter über den Nutzungszeitraum gewonnen werden.
Ein auf Nachhaltigkeit angelegtes Großprojekt wie das der Zustandserfassung und -bewertung (ZEB) bedarf eines Qualitätssicherungssystems. Hierfür wurde auf Initiative des Bundesministeriums für Verkehr, Bau- und Wohnungswesen (BMVBW) eine Untersuchung ausgelöst, über die die Grundlagen und Voraussetzungen für ein umfassendes QS-System erarbeitet werden sollen. In einer Pilotierungsphase soll im Jahr 2002 die Machbarkeit nachgewiesen werden.
Enhanced protection of pedestrians and cyclists remains on the focus. Besides infrastructural and behavioral aspects it is necessary to exploit technical solutions placed on motorized vehicles. Accident research needs reliable data as well as national road accident statistics. Changing the view on seriously injured road users is one of the challenges which will substantially contribute to the optimization on future traffic safety. The missing accuracy in the definition of personal injury has a detrimental effect on making cost efficient road safety policy which is not only focused on fatal accidents. The European commission requested that, starting in 2015, all EU member states provide more detailed data on the injury status of road casualties, with special regard to the group of seriously injured. Conventional accident data will always be essential. But to obtain detailed data about driver behavior in real traffic situations further data sources are required. These could be EDR data, data from electronic control units, data from traffic surveys and traffic counting, naturalistic diving studies and field operational tests. Gaining insight into normal as well as critical driver behavior will enable accident researchers to deduct functions estimating the increase or decrease of accident risk associated with certain behaviors or vehicle functions. Also with view to the introduction of highly automated driving functions in the future such data is urgently needed. Computer simulation based tools to estimate the benefits of active safety systems are another step on the way towards the safety assessment of automated driving. It is now the duty of the scientific community to ask the right questions, to develop a methodology and to merge all these data sources into a common framework for the assessment of future traffic safety innovations.
Although the annual traffic accident statistics published by the national police is available in public, the detailed traffic accident data has not been released in Korea. Recently the Ministry of Land, Infrastructure and Transport recognized the importance of in-depth accident data to enhance road traffic safety and initiated a research project to establish a collection of the detailed accident data. The main objective of the project is a feasibility study to establish KIDAS (Korea In-Depth Accident Study). Within this project, three university hospitals which are located in mid-size cities have been selected to collect accident data. Annually, more than 500 cases of accidents have been collected from the in-patient's interviews and diagnosis. Unlike GIDAS (German In-Depth Accident Study), currently on-site investigation can"t be performed by the Korean police. The only available data is patient medical records, patient's description of accident circumstances and the damaged vehicle. Occasionally the police provide the accident investigation reports containing very brief information on accident causation and vehicle safety. In a first step, the concept of KIDAS is to adopt the format of iGLAD (Initiative for the Global Harmonization of Accident Data) for harmonization. Since the currently collected accident information is extremely limited compared with GIDAS, the other sources of data and calculations such as KNCAP vehicle data, pc-crash simulations, vehicle registration information, insurance company data are utilized to complete the iGLAD template. Results from KIDAS_iGLAD and the cases of assessment of active safety devices such as AEBS, ESC, and LDWS will be evaluated.
The changed focus in vehicle safety technology from secondary to primary safety systems need to evolve new methods to investigate accidents, high critical, critical and normal driving situations. Current Naturalistic Driving Studies mostly use vehicles that are highly equipped with additional measuring devices, video cameras, recording technology, and sensors. These equipped fleets are very expensive regarding the setup and administration of the study. Due to the great rarity of crashes it is additionally necessary to have a high distribution and a homogeneous distribution of subject groups. At the end all these facts are leading to a very expensive study with a manageable number of data. Smartphones are becoming more and more popular not only for younger people. Contrary to traditional mobile phones they are mostly equipped with sensors for acceleration and yaw rates, GPS modules as well as cameras in high definition resolution. Additionally they have high-performance processors that enable the execution of CPU-intensive tools directly on the phone. The wide distribution of these smartphones enables researchers to get high numbers of users for such studies. The paper shows and demonstrates a software app for smartphones that is able to record different driving situations up to crashes. Therefore all relevant parameter from the sensors, camera and GPS device are saved for a given duration if the event was triggered. The complete configuration is independently adjustable to the relevant driver and all events were sent automatically to the research institute for a further process. Direct after the event, interviews with the driver can be done and important data regarding the event itself are documented. The presentation shows the methodology and gives a demonstration of the working progress as well as first results and examples of the current study. In the discussion the advantages of this method will be discussed and compared with the disadvantages. The paper shows an alternative method to investigate real accident and incident data. This method is thereby highly cost efficient and comparable with existing methods for benefit estimation.
While it is important to track trends in the number of road accidents in different countries using national statistics, there is a need for data with more detailed information, so called in-depth accident data. For this reason, several accident data projects emerged worldwide in recent years. However, also different data standards were established and so comparative analysis of international in-depth data has been very hard to conduct, so far. This is why the project iGLAD (Initiative for the Global Harmonization of Accident Data) was established and created the prerequisites for building up a standardized dataset out of the common denominator of different in-depth accident databases from Europe, USA and Asia. In the first phase, the project received funding from ACEA to compile an initial database. To accomplish this, a suitable data scheme has been defined, a pilot study has been conducted as proof of concept and the recoding of the first common data base has been initiated. Also, to prepare the project for its self-supporting continuation in the next years, a business model has been developed. This paper reports the history and status of the project, the current challenges and the creation of a capable consortium to maintain the data. In mid-2014, the initial database containing 1550 cases from 10 different countries will be completed and a first detailed view on this data will be possible.
An approach to the standardization of accident and injury registration systems (STAIRS) in Europe
(1998)
STAIRS is a European Commission funded study whose aim is to produce a set of guidelines for a harmonised, crash injury database. The need to evaluate the effectiveness of the forthcoming European Union front and side impact directives has emphasised the need for real world crash injury data-sets that can be representative of the crash population throughout Europe. STAIRS will provide a methodology to achieve this. The ultimate aim of STAIRS is to produce a set of data collection tools which will aid decision making on vehicle crashworthiness as well as providing a means to evaluate the effectiveness of safety regulations. This paper will disseminate the up-to-date findings of the group as they try to harmonise their methods. The stage has been reached where studies into the diverse methods of the UK, French and German systems of crash injury investigation have been undertaken. An assessment has already been made of the relationships between the three current systems in order to define the areas of agreement and divergence. The conclusions reached stated that there were many areas that are already closely related and that the differences were only at the detailed level. With the emphasis on secondary safety and injury causation, core data sets were decided upon, taking into account: vehicle description, collision configuration, structural response of vehicles, restraint and airbag performance, child restraint performance, Euro NCAP, pedestrian and vehicle occupant kinematics, injury description and causation. Each variable was studied objectively, the important elements isolated and developed into a form that all partners were agreeable on. A glossary of terms is being developed as the project progresses which includes ISO standards and other definitions from the associated CAREPLUS project, which addresses the comparability of national data sets. A major consideration of the group was the data collection method to be employed. The strengths and weaknesses of each study were investigated to obtain a clear idea of which aspects offered the best way forward. The quality of this information and transference into a common format, as well as the necessary error checking systems to be employed have just been completed and are described. In tandem with this area of study the problem of the statistical relationship of each sample to the national population is also being investigated. The study proposes a mechanism to use a sample of crash injury data to represent the national and international crash injury problem