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Intelligent transport systems



#50444 / #9

Seit SoSe 2021

Fakultät V

SG 12

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Nagel, Kai

Rakow, Christian

POS-Nummer PORD-Nummer Modultitel
39588 Fehler in der Verknüpfung: Nicht gefunden
9102 Fehler in der Verknüpfung: Nicht gefunden
11967 Fehler in der Verknüpfung: Nicht gefunden

Learning Outcomes

After successfully passing the module, students are able to - understand relevant problems, especially due to fast system dynamics and conflicting goals in the selection of measures - to apply the taught methods in a differentiated way (data collection, traffic monitoring, information provision, real-time traffic management) in the different application domains (individual transport, commercial transport, rail transport, public transport)


Topics of the event: - How is information on the traffic situation generated? - When should passengers be informed about a public transport incident and how can they react? - Which methods and models can be used to account for the fast dynamics of traffic in planning and real-time control? - What distinguishes open loop from closed loop control? - Which traffic models are used to plan control measures in real-time traffic management systems? - How can the control mechanism of a fleet of autonomous vehicles react to spontaneously arising demand? - In addition to the theoretical basics, simulation-based application examples from the field of fleet management of autonomous or electric vehicles and traffic control are taught. - Furthermore, aspects of toll systems will be discussed (city toll/Toll Collect).

Module Components


All Courses are mandatory.

Course Name Type Number Cycle Language SWS
Intelligente Verkehrssysteme IV 0533 L 058 SS English 4

Workload and Credit Points

Intelligente Verkehrssysteme (IV):

Workload description Multiplier Hours Total
Pre- / Postprocessing 15.0 8.0h 120.0h
Presence time 15.0 4.0h 60.0h
180.0h(~6 LP)
The Workload of the module sums up to 180.0 Hours. Therefore the module contains 6 Credits.

Description of Teaching and Learning Methods

About half of the contact hours are in lecture; the rest practical exercises, often with a computer. The lecture and the exercise will be conducted in English.

Requirements for participation and examination

Desirable prerequisites for participation in the courses:

a) obligatory: basic knowledge of mathematics (years 1 and 2); knowledge according to the course "Grundlagen der Verkehrssystemplanung und Verkehrstelematik"; knowledge of computers, spreadsheets (e.g. Excel, ...), visualization of data, basic knowledge of mathematical software (e.g. Matlab, Maple, R) b) desirable: "Modellierung und Simulation von Verkehr" and/or “Multi-agent transport simulation”; basic knowledge of using the command line/shell, programming skills

Mandatory requirements for the module test application:

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Module completion



Type of exam

Portfolio examination

Type of portfolio examination

100 points in total



Test elements

Name Points Categorie Duration/Extent
Written Exam 50 written approx. 50 minutes
Homework 50 written 2-3 homeworks

Grading scale

Test description (Module completion)

Homework in English, exam in English (German translation of the questions and help for vocabulary will be provided)

Duration of the Module

This module can be completed in one semester.

Maximum Number of Participants

This module is not limited to a number of students.

Registration Procedures

Registration will be at the beginning of the semester using the ISIS site of the course.

Recommended reading, Lecture notes

Lecture notes

Availability:  unavailable

Electronical lecture notes

Availability:  available


Recommended literature
No recommended literature given.

Assigned Degree Programs

This module is used in the following Degree Programs (new System):

Verwendungen (2)
Studiengänge: 1 Stupos: 1 Erstes Semester: SoSe 2021 Letztes Semester: offen

This moduleversion is used in the following modulelists:

Students of other degrees can participate in this module without capacity testing.


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