Eine Plattform für die Wissenschaft: Bauingenieurwesen, Architektur und Urbanistik
Maintaining cohesive fleets via swarming with small-world communications
A car fleet is a group of cars that should travel close together at a common speed. Due to dynamic road conditions, traffic signals, road speed limits and other factors, a car fleet may suffer from frequent partition. This paper proposes a distributed cohesive car fleet maintenance scheme by employing a swarming model complemented by a small world phenomenon. Vehicles within a car fleet are classified into the roles of pseudo-leader and follower. Within each partition, cars form a cohesive swarm by coordinating their speed and position via short-distance V2V communications. To exchange information between partitions of a dispersed cat fleet, pseudo-leaders communicate via long-distance V2I communications, which resemble the shortcuts of the small world phenomenon. Pseudo-leaders then determine their relative positions within the car fleet, and decide to speed up or slow down so as to achieve a cohesive swarming behavior of the entire car fleet. Merits of the distributed scheme are demonstrated through simulations.
Maintaining cohesive fleets via swarming with small-world communications
A car fleet is a group of cars that should travel close together at a common speed. Due to dynamic road conditions, traffic signals, road speed limits and other factors, a car fleet may suffer from frequent partition. This paper proposes a distributed cohesive car fleet maintenance scheme by employing a swarming model complemented by a small world phenomenon. Vehicles within a car fleet are classified into the roles of pseudo-leader and follower. Within each partition, cars form a cohesive swarm by coordinating their speed and position via short-distance V2V communications. To exchange information between partitions of a dispersed cat fleet, pseudo-leaders communicate via long-distance V2I communications, which resemble the shortcuts of the small world phenomenon. Pseudo-leaders then determine their relative positions within the car fleet, and decide to speed up or slow down so as to achieve a cohesive swarming behavior of the entire car fleet. Merits of the distributed scheme are demonstrated through simulations.
Maintaining cohesive fleets via swarming with small-world communications
Hen-Wei Tsai, (Autor:in) / Chien Chen, (Autor:in) / Chien-Chung Shen, (Autor:in) / Rong-Hong Jan, (Autor:in) / Hsia-Hsin Li, (Autor:in)
01.10.2009
2667920 byte
Aufsatz (Konferenz)
Elektronische Ressource
Englisch
Combat Fleets of the World, 1998-1999
British Library Online Contents | 1998
|Electron swarming in nanostructures
British Library Online Contents | 1999
|The economics of honeybee swarming
Online Contents | 2003
|Online Contents | 2001
Engineering Index Backfile | 1938
|