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In the project SECMAN " SECurity MANual " a simple four-step procedure for the identification of critical road infrastructures, assessment of these infrastructures regarding various man-made threats and the determination of effective protection measures was developed. These methodologies are summarized and combined into a comprehensive best-practice manual which allows for a trans-national structured and holistic security-risk-management approach for owners and operators of road infrastructures in Europe. This paper presents the developed methodology starting from the assessment procedures of a network's criticality over an object's attractiveness and vulnerability to the selection process of appropriate protection measures.
According to an investigation in March 2008 by the Federal Ministry of Transport, Building and Urban Affairs (BMVBS) about 14,000 truck parking spaces are missing in the near of motorways in Germany. Beside constructional enlargement of rest areas, intelligent traffic systems ought to be used to detect automatically the occupancy rate of rest areas and to provide better demand management and also to achieve an increase of capacity of truck parking spaces. The essay describes the newly developed control procedure "Compact parking", which is currently under development by German Federal Highway Research Institute (BASt). The method achieves that a number of trucks are parking in a compact way, side by side and without a driving lane between them. With the help of dynamic displays above the parking rows, the drivers receive the needful information to park their vehicle in a parking row, in which other trucks have the same or an earlier departure time. This system is able to increase the rest area capacity in short-term, more quickly than constructional enlargement of rest areas.
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.
Various climate projections predict changing climatic parameters like temperature, precipitation, wind speed etc. for Germany. This could have severe impacts on road transport infrastructure as well as road traffic itself. At the Federal Highway Research Institute (Bundesanstalt für Straßenwesen (BASt) a strategy was developed to adapt roads and engineering structures to the impacts of climate change. The strategy "Anpassung der Straßenverkehrsinfrastruktur an den Klimawandel / Adaptation of the road infrastructure to climate change (AdSVIS)" comprises currently about 15 projects. On the basis of the identification of the hazards and the combination of the climate and road network data, the road transport infrastructure which might be affected is to be determined. Adaptation measures are to be developed for the identified risk areas and assessed as to their effectiveness. Special attention is given to international cooperation since climate change is a truly global challenge.
Im Rahmen des Forschungsprojektes Cyber-Safe fand am 10. März 2016 bei der Bundesanstalt für Straßenwesen (BASt) in Bergisch Gladbach ein Workshop zum Thema "Steigerung der IT-Sicherheit von Verkehrs- und Tunnelleitzentralen" statt. An diesem Workshop beteiligten sich 40 Experten der Verkehrs- und Tunnelüberwachung. Die Tätigkeitsfelder der Teilnehmer reichten von Tunneloperatoren über Tunnelmanager und IT-Fachleute bis hin zu Sicherheitsbeauftragten.
The first version of German Highway Capacity Manual was published in 2001. Now, a new version is published in 2015 (HBS 2015). For the new German Highway Capacity Manual, most major chapters are revised and some of them are totally rewritten. The chapter for merge, diverge, and small weaving segments is rewritten in accordance with forthcoming developments in the past 10 years. In this paper, an overview of the chapter in the new German Highway Capacity Manual is presented. Procedures dealing with performance analyses and level of service (LOS) of those segments are introduced both for freeways and rural highways. Differences between the former version and the new version of the chapter in the German Highway Capacity Manual are indicated and discussed. In most of the existing highway capacity manuals, LOS of merge, diverge, and small weaving segments is traditionally defined by speed, volume, or density in critical areas. In that traditional concept several capacity values of different critical areas (merge, diverge, and weaving) as well as upstream and downstream basic segments within the influence areas are evaluated separately. In the new HBS 2015, a new model which considers the total merge, diverge, and weaving segment as an entire object is incorporated. A combined volume-to-capacity ratio (freeways) or a combined density (rural highways) is used for defining the LOS of the total segment. The parameters of the new procedure are functions of the number of lanes of the major road, the number of lanes in the on-ramp or off-ramp, and the predefined geometric design of those segments. The coefficients are calibrated with field data or defined by experts" experiences within a matrix of coefficients. With those procedures, the traffic quality (LOS) can be obtained directly as a function of the volumes or densities on the major road and on the on-ramp or off-ramp respectively. The new procedure has the following advantages: a) a uniform function for all types of merge, diverge, and small weaving segments, b) traffic quality assessment for all critical areas under investigation in one step, and c) the procedure can easily be calibrated. For applications in practice, a set of graphs is provided.
Gesellschaftlich bedingte Änderungen in der Mobilität sowie die politisch gewollte Attraktivitätssteigerung und Förderung des Radverkehrs sollen die Verkehrsmittelwahl hin zum nichtmotorisierten Verkehr verschieben. Dies kann einen Beitrag zu einer umweltfreundlicheren Mobilität liefern. Aufgrund der veränderten Fahrradnutzung, der zunehmenden Verbreitung von elektrisch unterstützten Fahrrädern und der gestiegenen differenzierten Anforderungen unter anderem an Verkehrsqualität werden Anpassungen der Infrastruktur im Hinblick auf die Radverkehrsplanung, -konzeption sowie Straßenbau beziehungsweise -erhaltung notwendig sein. Vor diesem Hintergrund sowie der hohen Unfallanzahl, Unfallschwere und steigenden Unfallanteile im Radverkehr werden in den einzelnen Forschungsbereichen der Sicherheitsforschung des Radverkehrs (Einflussfaktor Mensch, Infrastruktur und Sicherheitsausstattung/Fahrzeugtechnik) zahlreiche Forschungsaktivitäten durchgeführt, um die Entwicklung der Verkehrssicherheit im Radverkehr nicht weiter von der positiven Entwicklung der Verkehrssicherheit insgesamt abzukoppeln. Dieser Beitrag gibt aufbauend auf den Fakten und Potenzialen des Radverkehrs einen Überblick über die Radverkehrssicherheit hinsichtlich Gesamtunfallgeschehen, Unfallentwicklung und Unfallstruktur. Die Darstellung der abgeschlossenen, laufenden und geplanten Forschungsaktivitäten soll die wesentlichen Erkenntnisse und Maßnahmen in den jeweiligen Forschungsbereichen verdeutlichen.
Die Ergebnisse der turnusmäßig alle fünf Jahre durchgeführten manuellen Straßenverkehrszählung (SVZ) werden als Tabellen mit differenzierten Kennwerten zur Verkehrsbelastung veröffentlicht. In der Verkehrsmengenkarte erfolgt durch die proportionale Darstellung der durchschnittlichen täglichen Verkehrsstärke (DTV) auf den Hauptverkehrsstraßen visuell ein flächenhafter Raumbezug. Für Autobahnen werden die ermittelten Verkehrsstärken anhand der Entwicklung an den automatischen Dauerzählstellen jährlich fortgeschrieben. Für eine derartige Fortschreibung im nachgeordneten Straßennetz war die Datengrundlage bisher nicht ausreichend. Durch die Fortführung der bei der SVZ 2015 erstmals zugelassenen Kfz-Erhebung mit Seitenradargeräten kann diese Lücke zukünftig geschlossen werden. Ziel ist u. a. die Ableitung regionsbezogener Indikatoren zur Verkehrsentwicklung.
Risk-based approach for the protection of land transport infrastructure against extreme rainfall
(2016)
The aim of the research project "Risk based approach for the protection of transport infrastructure against extreme rainfall RAINEX" is the development of a practical methodology for the identification and assessment of both vulnerable as well as critical transport infrastructures towards extreme rainfall events consequences. The developed methodology is based on expert knowledge and includes qualitative and semi-quantitative analyses regarding the assessment of the vulnerability and criticality of relevant transport infrastructures. The process chain from the spatial rainfall to the concentrated runoff in the river channel was shown to assess the local hazard resulting in the local risk. The main result of the project is a practice-oriented and applicable methodology and a comprehensive and well-developed security handbook.