Abstract
The development and deployment of simple, yet efficient, coordinated and integrated control tools for motorway traffic control remains a challenge. A generic integrated feedback-based motorway traffic flow control concept has been proposed recently by the authors of this paper. It is based on the combination and suitable extension of control algorithms and tools proposed or deployed in other studies, such as ramp metering or VSL (Variable Speed Limit)-enabled cascade-feedback mainstream traffic flow control, and allows for consideration of multiple bottlenecks. The new controller enables coordination of ramp metering actions at a series of on-ramps, as well as integration with VSL control actions towards a common control goal, which is bottleneck throughput maximization. While doing this, the approach considers a pre-specified (desired) balancing of the incurred delays upstream of the employed actuators, via a suitably designed knapsack problem. Despite the multitude of the offered configurations, options and possibilities, the generic control algorithm remains simple, efficient and suitable for field implementation. The control algorithm is demonstrated and evaluated using validated macroscopic traffic flow models for two case studies and for a number of different scenarios.
Original language | English |
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Title of host publication | Proceedings of the 8th International Congress on Transportation Research in Greece (ICTR 2017) |
Publisher | Technical University of Crete |
Number of pages | 14 |
Publication status | Published - 2017 |
MoE publication type | D3 Professional conference proceedings |
Event | International Congress on Transportation Research - Thessaloniki, Greece Duration: 27 Sept 2017 → 29 Sept 2017 Conference number: 8 |
Conference
Conference | International Congress on Transportation Research |
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Abbreviated title | ICTR |
Country/Territory | Greece |
City | Thessaloniki |
Period | 27/09/2017 → 29/09/2017 |
Keywords
- traffic management
- integrated motorway traffic flow control
- ramp metering
- mainstream traffic flow control
- variable speed limits
- feedback control
- delay balancing