Abstract
Ramp meters successfully decrease congestion but leave a burden on the traffic situation at on-ramps. Chaotic queuing leads to many stop-and-go movements and causes inefficiency where fuel consumption is concerned. As part of the eCoMove project, complementary strategies are being designed and evaluated to reduce fuel consumption at metered on-ramps, using vehicle-to-infrastructure communication. This paper presents the design of a strategy for reducing fuel consumption at metered on-ramps as well as its effect as derived from a simulation. The strategy uses virtual stop lines to halt upstream parts of the queue, keeping them from stop-and-go movement. The results obtained from the overall study are promising. Simulations showed that this strategy can reduce fuel consumption at on-ramps with 15 percent. Furthermore, the results of the strategy indicated fuel consumption at metered on-ramps can significantly be reduced by applying strategies which target inefficient stop-and-go movements of vehicles.
Original language | English |
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Publication status | Published - 2013 |
Externally published | Yes |
Event | 20th Intelligent Transport Systems World Congress, ITS 2013 - Tokyo, Japan Duration: 14 Oct 2013 → 18 Oct 2013 |
Conference
Conference | 20th Intelligent Transport Systems World Congress, ITS 2013 |
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Country/Territory | Japan |
City | Tokyo |
Period | 14/10/13 → 18/10/13 |
Keywords
- ALINEA
- Emissions
- Microscopic traffic simulation
- Ramp metering
- Versit<sup>+</sup>
ASJC Scopus subject areas
- Artificial Intelligence
- Automotive Engineering
- Control and Systems Engineering
- Electrical and Electronic Engineering
- Mechanical Engineering
- Transportation
- Computer Networks and Communications
- Computer Science Applications