467.600 PEOPLE
People | Locations | Statistics |
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Serhiienko, Serhii |
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Schmalz, Ulrike |
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Oliveira, Marisa |
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Ribeiro Pereira, Maria Teresa |
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Bellér, Gábor |
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Araujo, M. |
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Frey, Michael | Karlsruhe |
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Coutinho-Rodrigues, João | Coimbra |
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Wouters, Christian Guillaume Louise | Aachen |
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Kessel, Paul J. Van Van |
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Árpád, István |
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Fontul, Simona |
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Kocsis, Dénes |
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Cigada, Alfredo | Milan |
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Oort, Neils Van | Delft |
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Agárdi, Anita | Miskolc |
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Andrews, Gordon E. |
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Sousa, Nuno |
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Witlox, Frank Jacomina Albert | Ghent |
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Dobruszkes, Frederic |
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Kiss, Judit T. |
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Hadachi, Amnir | Saint-Étienne-du-Rouvray |
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Hamilton, Carl J. | Kunovice |
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Misiura, Serhii |
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Schimpf, Marina |
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Ioannou, Petros
in Cooperation with on an Cooperation-Score of 37%
Topics
- commodity
- driving
- operations research
- traffic congestion
- computer science
- pollution
- simulation
- passenger
- costs
- vehicle occupant
- routing
- health
- fuel consumption
- fuel
- minimisation
- coordination
- travel
- port
- truck driver
- truck
- travel time
- autumn
- time interval
- payment
- passenger vehicle
- equipment design
- business district
- assessment
- data
- driver
- vehicle
- algorithm
- variable
- forecasting
- street
- on street parking
- mining
- data mining
- real time information
- recommendation
- real time data
- random variable
- standard deviation
- normal distribution
- Poisson distribution
- industry
- contaminant
- infrastructure
- mechanical engineering
- optimisation
- acceleration
- automotive engineering
- signalised intersection
- driver support system
- traffic signal
- stop sign
- waiting time
- vehicle to infrastructure communication
- experimental vehicle
- planning
- modeling
- rapid transit
- bus
- bus rapid transit
- financing
- traffic planning
- foundation
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- research project
- public works
- public works department
- bus priority
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- structural engineering
- manual
- human being
- filter
- environmental impact
- market
- air pollution
- traffic flow
- cruise control
- transient
- stringer
- car following
- intelligent control system
- field test
- pipe
- human factor
- theory
- automobile
- density
- traffic lane
- design
- traffic density
- engineering
- highway
- probe vehicle
- floating car data
- freeway
- traffic flow simulation
- traffic conflict
- reconstruction
- automated highway system
- macroscopic traffic flow
- headway
- crossheading
- traffic engineering
- communication traffic
- dispatcher
- traffic flow rate
- fuzzy controller
- fuzzy logic
- train consist
- architecture
- internet
- evolution
- automatic control
- speed control
- traffic volume
- on ramp
- show 91 more
Publications
- 2019A Coordination Mechanism for the Freight Routing Problem with Discrete Time Intervalscitations
- 2018On-Street Parking Prediction Using Real-Time Datacitations
- 2016Personalized Driver Assistance for Signalized Intersections Using V2I Communicationcitations
- 2012Planning for Effective Bus Rapid Transit Systems: A Scenario Simulation Modelling Based Approachcitations
- 2012Planning for Effective Bus Rapid Transit Systems: A scenario simulation modelling based approach* *The authors would like to express their acknowledgement to the Research Promotion Foundation and the Structural Funds of the European Union in Cyprus, Transim Transportation Research Ltd and the University of Cyprus for funding and administering the BUSSIM Research Project. Many thanks also to the staff of the Transportation Planning Section of the Public Works Department of the Ministry of Communications and Works of the Republic of Cyprus for their cooperation.citations
- 2010Introduction of Bus Rapid Transit in Cyprus: Evaluation of Bus Priority Scenarios
- 2007Evaluation of the Environmental Effects of Intelligent Cruise Control Vehiclescitations
- 2002Traffic Density Control for Automated Highway Systems*fn1fn1This paper was not presented at any IFAC meeting. This paper was recommended for publication in revised form by Associate Editor Christos Cassandras under the direction of Editor Tamer Başar.11A macroscopic traffic density controller for an automated highway system is designed, analyzed and simulated based on a discrete-time traffic flow model. The proposed controller is shown to be able to stabilize traffic flow and eliminate congestion effectively.citations
- 2002Roadway traffic controller design for automated highway systemscitations
- 2002Fuzzy traffic density homogenizer for automated highway systemcitations
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