@inproceedings{DudekRichter, author = {Dudek, Mariusz and Richter, Matthias}, title = {UNTERSUCHUNGEN ZUR ZUVERL{\"A}SSIGKEIT DES STRAßENBAHNNETZES IN KRAKAU}, editor = {G{\"u}rlebeck, Klaus and K{\"o}nke, Carsten}, organization = {Bauhaus-Universit{\"a}t Weimar}, doi = {10.25643/bauhaus-universitaet.2943}, url = {http://nbn-resolving.de/urn:nbn:de:gbv:wim2-20170327-29432}, pages = {19}, abstract = {Der Begriff der Zuverl{\"a}ssigkeit spielt eine zentrale Rolle bei der Bewertung von Verkehrsnetzen. Aus der Sicht der Nutzer des {\"o}ffentlichen Personennahverkehrs ({\"O}PNV) ist eines der wichtigsten Kriterien zur Beurteilung der Qualit{\"a}t des Liniennetzes, ob es m{\"o}glich ist, mit einer großen Sicherheit das Reiseziel in einer vorgegebenen Zeit zu erreichen. Im Vortrag soll dieser Zuverl{\"a}ssigkeitsbegriff mathematisch gefasst werden. Dabei wird zun{\"a}chst auf den {\"u}blichen Begriff der Zuverl{\"a}ssigkeit eines Netzes im Sinne paarweiser Zusammenhangswahrscheinlichkeiten eingegangen. Dieser Begriff wird erweitert durch die Betrachtung der Zuverl{\"a}ssigkeit unter Einbeziehung einer maximal zul{\"a}ssigen Reisezeit. In vergangenen Arbeiten hat sich die Ring-Radius-Struktur als bew{\"a}hrtes Modell f{\"u}r die theoretische Beschreibung von Verkehrsnetzen erwiesen. Diese {\"U}berlegungen sollen nun durch Einbeziehung realer Verkehrsnetzstrukturen erweitert werden. Als konkretes Beispiel dient das Straßenbahnnetz von Krakau. Hier soll insbesondere untersucht werden, welche Auswirkungen ein geplanter Ausbau des Netzes auf die Zuverl{\"a}ssigkeit haben wird. This paper is involved with CIVITAS-CARAVEL project: "Clean and better transport in cites". The project has received research funding from the Community's Sixth Framework Programme. The paper reflects only the author's views and the Community is not liable for any use that may be made of the information contained therein.}, subject = {Architektur }, language = {de} } @inproceedings{BauerRichter, author = {Bauer, Marek and Richter, Matthias}, title = {STATISTICAL ANALYSIS OF TIME LOST BY TRAMS BEFORE DEPARTURE FROM STOPS}, editor = {G{\"u}rlebeck, Klaus and K{\"o}nke, Carsten}, organization = {Bauhaus-Universit{\"a}t Weimar}, doi = {10.25643/bauhaus-universitaet.2922}, url = {http://nbn-resolving.de/urn:nbn:de:gbv:wim2-20170327-29226}, pages = {18}, abstract = {The ride of the tram along the line, defined by a time-table, consists of the travel time between the subsequent sections and the time spent by tram on the stops. In the paper, statistical data collected in the city of Krakow is presented and evaluated. In polish conditions, for trams the time spent on stops makes up the remarkable amount of 30 \% of the total time of tram line operation. Moreover, this time is characterized by large variability. The time spent by tram on a stop consists of alighting and boarding time and time lost by tram on stop after alighting and boarding time ending, but before departure. Alighting and boarding time itself usually depends on the random number of alighting and boarding passengers and also on the number of passengers which are inside the vehicle. However, the time spent by tram on stop after alighting and boarding time ending is an effect of certain random events, mainly because of impossibility of departure from stop, caused by lack of priorities for public transport vehicles. The main focus of the talk lies on the description and the modelling of these effects. This paper is involved with CIVITAS-CARAVEL project: "Clean and better transport in cites". The project has received research funding from the Community's Sixth Framework Programme. The paper reflects only the author's views and the Community is not liable for any use that may be made of the information contained therein.}, subject = {Architektur }, language = {en} } @inproceedings{RichterIlzigRudnicki, author = {Richter, Matthias and Ilzig, Katrin and Rudnicki, Andrzej}, title = {MODELS FOR THE BUS HEADWAY DISTRIBUTION IN THE FLOW BEHIND A TRAFFIC SIGNAL}, editor = {G{\"u}rlebeck, Klaus and K{\"o}nke, Carsten}, organization = {Bauhaus-Universit{\"a}t Weimar}, issn = {1611-4086}, doi = {10.25643/bauhaus-universitaet.2852}, url = {http://nbn-resolving.de/urn:nbn:de:gbv:wim2-20170314-28521}, pages = {17}, abstract = {Several results concerning the distribution of the headway of busses in the flow behind a traffic signal are presented. In the main focus of interest is the description of analytical models, which are verified by the results of Monte-Carlo-Methods. The advantage of analytical models (verified, but not derived by simulation methods) is their flexibility with respect to possible generalizations. For instance, several random distributions of the flow incoming to the traffic signal can be compared. The attention will be directed at the question, how the primary headway H (analyzed in front of the traffic signal) is mapped to the headway H' analyzed behind of the traffic signal and how the random distribution of H is mapped to that of H'. For the traffic flow in front of the traffic signal several models will be discussed. The first case considers the situation, that busses operate on a common lane with the individual motor car traffic and the traffic flow is saturated. In the second situation, busses operate on a separated bus lane. Moreover, a mixed situation is discussed to model as close to reality as possible.}, subject = {Angewandte Informatik}, language = {en} } @inproceedings{BauerRichterWeiss, author = {Bauer, Marek and Richter, Matthias and Weiß, Hendrik}, title = {SIMULATION MODEL OF TRAM ROUTE OPERATION}, editor = {G{\"u}rlebeck, Klaus and K{\"o}nke, Carsten}, organization = {Bauhaus-Universit{\"a}t Weimar}, issn = {1611-4086}, doi = {10.25643/bauhaus-universitaet.2829}, url = {http://nbn-resolving.de/urn:nbn:de:gbv:wim2-20170314-28295}, pages = {19}, abstract = {From passenger's perspective, punctuality is one of the most important features of tram route operation. We present a stochastic simulation model with special focus on determining important factors of influence. The statistical analysis bases on large samples (sample size is nearly 2000) accumulated from comprehensive measurements on eight tram routes in Cracow. For the simulation, we are not only interested in average values but also in stochastic characteristics like the variance and other properties of the distribution. A realization of trams operations is assumed to be a sequence of running times between successive stops and times spent by tram at the stops divided in passengers alighting and boarding times and times waiting for possibility of departure . The running time depends on the kind of track separation including the priorities in traffic lights, the length of the section and the number of intersections. For every type of section, a linear mixed regression model describes the average running time and its variance as functions of the length of the section and the number of intersections. The regression coefficients are estimated by the iterative re-weighted least square method. Alighting and boarding time mainly depends on type of vehicle, number of passengers alighting and boarding and occupancy of vehicle. For the distribution of the time waiting for possibility of departure suitable distributions like Gamma distribution and Lognormal distribution are fitted.}, subject = {Angewandte Informatik}, language = {en} } @inproceedings{BauerDudekRichter, author = {Bauer, Marek and Dudek, Mariusz and Richter, Matthias}, title = {RELIABILITY OF TRAM - NETWORK SECTION}, editor = {G{\"u}rlebeck, Klaus and K{\"o}nke, Carsten}, organization = {Bauhaus-Universit{\"a}t Weimar}, issn = {1611-4086}, doi = {10.25643/bauhaus-universitaet.2828}, url = {http://nbn-resolving.de/urn:nbn:de:gbv:wim2-20170314-28281}, pages = {16}, abstract = {We investigate aspects of tram-network section reliability, which operates as a part of the model of whole city tram-network reliability. Here, one of the main points of interest is the character of the chronological development of the disturbances (namely the differences between time of departure provided in schedule and real time of departure) on subsequent sections during tram line operation. These developments were observed in comprehensive measurements done in Krakow, during one of the main transportation nodes (Rondo Mogilskie) rebuilding. All taken building activities cause big disturbances in tram lines operation with effects extended to neighboring sections. In a second part, the stochastic character of section running time will be analyzed more detailed. There will be taken into consideration sections with only one beginning stop and also with two or three beginning stops located at different streets at an intersection. Possibility of adding results from sections with two beginning stops to one set will be checked with suitable statistical tests which are used to compare the means of the two samples. Section running time may depend on the value of gap between two following trams and from the value of deviation from schedule. This dependence will be described by a multi regression formula. The main measurements were done in the city center of Krakow in two stages: before and after big changes in tramway infrastructure.}, subject = {Angewandte Informatik}, language = {en} } @inproceedings{WainainaRichterKirchheim2000, author = {Wainaina, Simon and Richter, Matthias and Kirchheim, Alfred}, title = {The Use of Activity Chain Models to Analyse Stochastic Travel Demand}, doi = {10.25643/bauhaus-universitaet.615}, url = {http://nbn-resolving.de/urn:nbn:de:gbv:wim2-20111215-6157}, year = {2000}, abstract = {For analysis and planing of transport networks detailed information concerning travel sequences is required. The paper examines an activity chain model to determine stochastic travel demand which individual generates in order to participate in activity or sequence of activities over the day. The transition from one activity to another depends on the activity participation decision, which is made sequentially and is constrained in space and time. Activity chains derived from travel survey data are used as a base to develop a more realistic model than conventional discrete trip models. Probabilistic concepts and statistical procedures are used to estimate characteristics of travel demand such as the number of daily out-of-home activities and transition probability from one activity to another participated by homogeneous behavioural groups. In addition, the paper compares the model for two different sized towns.}, subject = {Verkehr}, language = {en} } @inproceedings{HommelRichter2003, author = {Hommel, Angela and Richter, Matthias}, title = {Optimale Trassenf{\"u}hrung: Diskretisierung - Splineapproximation - Variationsmethoden}, doi = {10.25643/bauhaus-universitaet.309}, url = {http://nbn-resolving.de/urn:nbn:de:gbv:wim2-20111215-3094}, year = {2003}, abstract = {Ausgehend von mathematischen {\"U}berlegungen haben wir einfache Modellans{\"a}tze zur Bearbeitung des folgenden Optimierungsproblems erarbeitet und numerische Tests durchgef{\"u}hrt: Eine Landkarte wird in Quadrate unterteilt, wobei jedes Quadrat mit einem Faktor zu bewerten ist. Dieser Wichtungsfaktor sei klein, wenn das Gebiet problemlos passierbar ist und entsprechend groß, wenn es sich um ein Naturschutz-gebiet, einen See oder ein schwer befahrbares Gebiet handelt. Gesucht wird nach einer g{\"u}nstigen Verbindung vom Punkt A zum Punkt B, wobei die durch den Wichtungsfaktor gegebenen landschaftlichen Besonderheiten zu ber{\"u}cksichtigen sind. Wir formulieren das Problem zun{\"a}chst als Variationsproblem. Eine notwendige Bedingung, der die L{\"o}sungsfunktion gen{\"u}gen muß, ist die Euler-Lagrangesche Differentialgleichung. Mit Hilfe der Hamiltonschen Funktion ist es m{\"o}glich, diese Differentialgleichung in kanonischer Form zu schreiben. Durch Vereinfachung des Modelles gelingt es, das System der kanonischen Gleichungen so zu konkretisieren, daß es als Ausgangspunkt f{\"u}r numerische Untersuchungen betrachtet werden kann. Dazu verwandeln wir die urspr{\"u}ngliche Landschaft in eine >Berglandschaft<, wobei hohe Berge schwer passierbare Gebiete charakterisieren. Das einfachste Modell ist ein einzelner Berg, der mit Hilfe der Dichtefunktion einer zweidimensionalen Normalverteilung erzeugt wird. Zus{\"a}tzlich haben wir Berechnungen an zwei sich {\"u}berlagernden Bergen sowie einer Schlucht durchgef{\"u}hrt.}, subject = {Trassierung}, language = {de} } @inproceedings{DudekRichter2003, author = {Dudek, Mariusz and Richter, Matthias}, title = {Zuverl{\"a}ssigkeit und strukturelle Parameter von Verkehrsnetzen}, doi = {10.25643/bauhaus-universitaet.295}, url = {http://nbn-resolving.de/urn:nbn:de:gbv:wim2-20111215-2951}, year = {2003}, abstract = {Im Vortrag wird der Frage nachgegangen, inwieweit ein Zusammenhang zwischen der Zuverl{\"a}ssigkeit und gewissen strukturellen Parametern eines Verkehrsnetzes besteht. Das Verkehrsnetz wird hierzu als bewerteter Graph aufgefasst. Zur Analyse der Verkehrsnetzzuverl{\"a}ssigkeit werden die Kanten mit ihren Verf{\"u}gbarkeiten (>Zuverl{\"a}ssigkeiten<) bewertet. Die Zuverl{\"a}ssigkeit des Verkehrsnetzes hat einen großen Einfluss auf die Beurteilung des Straßennetzes. Im Sinne einer Regressionsanalyse soll der Zusammenhang mit weiteren, speziell f{\"u}r die Betrachtung von Verkehrsnetzen entwickelten strukturellen Kenngr{\"o}ßen untersucht werden, das sind insbesondere die Dispersion des Verkehrsnetzes und die Unterentwicklung des Netzes. Aus der Vielzahl der theoretisch denkbaren Verkehrsnetzstrukturen spiegelt die Ring-Radius-Struktur die realen Straßennetze am besten wider. Solche Ring-Radius-Strukturen kommen in vielen St{\"a}dten vor. Die Berechnung der Verkehrsnetzzuverl{\"a}ssigkeit erfolgt mittels eines Algorithmus, der auf dem Prinzip der vollst{\"a}ndigen Enumeration aller m{\"o}glichen Kombinationen der Verf{\"u}gbarkeit bzw. Nichtverf{\"u}gbarkeit der einzelnen Kanten basiert und die gew{\"u}nschte Kenngr{\"o}ße exakt bestimmt. Obwohl der Algorithmus speziell auf eine m{\"o}glichst geringe Rechenzeit ausgerichtet ist, bleibt das Verfahren doch numerisch recht aufwendig. An Hand von zehn verschiedenen Ring-Radius-Strukturen wird der Nachweis eines Zusammenhangs zwischen den strukturellen Kenngr{\"o}ßen und der Verkehrsnetzzuverl{\"a}ssigkeit gef{\"u}hrt. Damit k{\"o}nnen mittels struktureller Bewertungen (die mit einem vergleichsweise geringen Aufwand an Input-Daten und Rechenzeit bestimmbar sind) Aussagen {\"u}ber die Zuverl{\"a}ssigkeit des Verkehrsnetzes getroffen werden.}, subject = {Verkehrsnetz}, language = {de} } @inproceedings{BernsteinRichter2003, author = {Bernstein, Swanhild and Richter, Matthias}, title = {The Use of Genetic Algorithms in Finite Element Model Identification}, doi = {10.25643/bauhaus-universitaet.276}, url = {http://nbn-resolving.de/urn:nbn:de:gbv:wim2-20111215-2769}, year = {2003}, abstract = {A realistic and reliable model is an important precondition for the simulation of revitalization tasks and the estimation of system properties of existing buildings. Thereby, the main focus lies on the parameter identification, the optimization strategies and the preparation of experiments. As usual structures are modeled by the finite element method. This as well as other techniques are based on idealizations and empiric material properties. Within one theory the parameters of the model should be approximated by gradually performed experiments and their analysis. This approximation method is performed by solving an optimization problem, which is usually non-convex, of high dimension and possesses a non-differentiable objective function. Therefore we use an optimization procedure based on genetic algorithms which was implemented by using the program package SLang...}, subject = {Finite-Elemente-Methode}, language = {en} }