Simulation of Surrounding Vehicles in Driving Simulators

Driving simulators and microscopic traffic simulation are important tools for making evaluations of driving and traffic. A driving simulator is de-signed to imitate real driving and is used to conduct experiments on driver behavior. Traffic simulation is commonly used to evaluate the quality of serv...

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Bibliographic Details
Main Author: Olstam, Johan
Format: Doctoral Thesis
Language:English
Published: Trafikanalys och logistik, TAL 2009
Subjects:
Online Access:http://urn.kb.se/resolve?urn=urn:nbn:se:vti:diva-191
http://nbn-resolving.de/urn:isbn:978-91-7393-660-6
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spelling ndltd-UPSALLA1-oai-DiVA.org-vti-1912014-03-26T16:49:57ZSimulation of Surrounding Vehicles in Driving SimulatorsengOlstam, JohanTrafikanalys och logistik, TALLinköpings universitet, Kommunikations- och transportsystemLinköping : Linköping University Electronic Press2009TrafficMicroSimulationModeOvertakingLane changingCar followingRural roadMathematical modelSimulatorThesisDriving simulators and microscopic traffic simulation are important tools for making evaluations of driving and traffic. A driving simulator is de-signed to imitate real driving and is used to conduct experiments on driver behavior. Traffic simulation is commonly used to evaluate the quality of service of different infrastructure designs. This thesis considers a different application of traffic simulation, namely the simulation of surrounding vehicles in driving simulators. The surrounding traffic is one of several factors that influence a driver's mental load and ability to drive a vehicle. The representation of the surrounding vehicles in a driving simulator plays an important role in the striving to create an illusion of real driving. If the illusion of real driving is not good enough, there is an risk that drivers will behave differently than in real world driving, implying that the results and conclusions reached from simulations may not be transferable to real driving. This thesis has two main objectives. The first objective is to develop a model for generating and simulating autonomous surrounding vehicles in a driving simulator. The approach used by the model developed is to only simulate the closest area of the driving simulator vehicle. This area is divided into one inner region and two outer regions. Vehicles in the inner region are simulated according to a microscopic model which includes sub-models for driving behavior, while vehicles in the outer regions are updated according to a less time-consuming mesoscopic model. The second objective is to develop an algorithm for combining autonomous vehicles and controlled events. Driving simulators are often used to study situations that rarely occur in the real traffic system. In order to create the same situations for each subject, the behavior of the surrounding vehicles has traditionally been strictly controlled. This often leads to less realistic surrounding traffic. The algorithm developed makes it possible to use autonomous traffic between the predefined controlled situations, and thereby get both realistic traffc and controlled events. The model and the algorithm developed have been implemented and tested in the VTI driving simulator with promising results. Doctoral thesis, comprehensive summaryinfo:eu-repo/semantics/doctoralThesistexthttp://urn.kb.se/resolve?urn=urn:nbn:se:vti:diva-191urn:isbn:978-91-7393-660-6Linköping Studies in Science and Technology. Dissertations, 0345-7524 ; 1248application/pdfinfo:eu-repo/semantics/openAccess
collection NDLTD
language English
format Doctoral Thesis
sources NDLTD
topic Traffic
Micro
Simulation
Mode
Overtaking
Lane changing
Car following
Rural road
Mathematical model
Simulator
Thesis
spellingShingle Traffic
Micro
Simulation
Mode
Overtaking
Lane changing
Car following
Rural road
Mathematical model
Simulator
Thesis
Olstam, Johan
Simulation of Surrounding Vehicles in Driving Simulators
description Driving simulators and microscopic traffic simulation are important tools for making evaluations of driving and traffic. A driving simulator is de-signed to imitate real driving and is used to conduct experiments on driver behavior. Traffic simulation is commonly used to evaluate the quality of service of different infrastructure designs. This thesis considers a different application of traffic simulation, namely the simulation of surrounding vehicles in driving simulators. The surrounding traffic is one of several factors that influence a driver's mental load and ability to drive a vehicle. The representation of the surrounding vehicles in a driving simulator plays an important role in the striving to create an illusion of real driving. If the illusion of real driving is not good enough, there is an risk that drivers will behave differently than in real world driving, implying that the results and conclusions reached from simulations may not be transferable to real driving. This thesis has two main objectives. The first objective is to develop a model for generating and simulating autonomous surrounding vehicles in a driving simulator. The approach used by the model developed is to only simulate the closest area of the driving simulator vehicle. This area is divided into one inner region and two outer regions. Vehicles in the inner region are simulated according to a microscopic model which includes sub-models for driving behavior, while vehicles in the outer regions are updated according to a less time-consuming mesoscopic model. The second objective is to develop an algorithm for combining autonomous vehicles and controlled events. Driving simulators are often used to study situations that rarely occur in the real traffic system. In order to create the same situations for each subject, the behavior of the surrounding vehicles has traditionally been strictly controlled. This often leads to less realistic surrounding traffic. The algorithm developed makes it possible to use autonomous traffic between the predefined controlled situations, and thereby get both realistic traffc and controlled events. The model and the algorithm developed have been implemented and tested in the VTI driving simulator with promising results.
author Olstam, Johan
author_facet Olstam, Johan
author_sort Olstam, Johan
title Simulation of Surrounding Vehicles in Driving Simulators
title_short Simulation of Surrounding Vehicles in Driving Simulators
title_full Simulation of Surrounding Vehicles in Driving Simulators
title_fullStr Simulation of Surrounding Vehicles in Driving Simulators
title_full_unstemmed Simulation of Surrounding Vehicles in Driving Simulators
title_sort simulation of surrounding vehicles in driving simulators
publisher Trafikanalys och logistik, TAL
publishDate 2009
url http://urn.kb.se/resolve?urn=urn:nbn:se:vti:diva-191
http://nbn-resolving.de/urn:isbn:978-91-7393-660-6
work_keys_str_mv AT olstamjohan simulationofsurroundingvehiclesindrivingsimulators
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