In this paper, we analyze the performance of vehicular decentralized detection schemes, based on the observation, by all vehicles of a Vehicular Ad-hoc NETwork (VANET), of a spatially constant phenomenon of interest. Our approach consists of the creation, during a downlink phase, of a clustered VANET topology during fast broadcast data dissemination, from the Access Point (AP), through a novel clustering protocol, denoted as Cluster-head Election Irresponsible Forwarding (CEIF). This clustered topology is then exploited, during an uplink phase, to collect information from the vehicles and perform distributed detection. Our results highlight the existing trade-off between decision delay and energy efficiency. Unlike classical sensor networks for distributed detection, the proposed vehicular distributed detection schemes exploit the natural vehicle clustering and have to cope with their “ephemeral” nature. More precisely, vehicle mobility has a direct impact on the maximum amount of data which can be collected, thus leading to the concept of decentralized detection “on the move”.

Clustered vehicular networks: decentralized detection "on the move" / S., Busanelli; M., Martalo'; Ferrari, Gianluigi. - (2011), pp. 744-749. (Intervento presentato al convegno International Workshop on Seamless Connectivity in Vehicular Networks (SCVN 2011), in conjunction with the 11th International Conference on Telecommunications for Intelligent Transport Systems (ITST-2011) tenutosi a San Pietroburgo, Russia nel agosto) [10.1109/ITST.2011.6060153].

Clustered vehicular networks: decentralized detection "on the move"

FERRARI, Gianluigi
2011-01-01

Abstract

In this paper, we analyze the performance of vehicular decentralized detection schemes, based on the observation, by all vehicles of a Vehicular Ad-hoc NETwork (VANET), of a spatially constant phenomenon of interest. Our approach consists of the creation, during a downlink phase, of a clustered VANET topology during fast broadcast data dissemination, from the Access Point (AP), through a novel clustering protocol, denoted as Cluster-head Election Irresponsible Forwarding (CEIF). This clustered topology is then exploited, during an uplink phase, to collect information from the vehicles and perform distributed detection. Our results highlight the existing trade-off between decision delay and energy efficiency. Unlike classical sensor networks for distributed detection, the proposed vehicular distributed detection schemes exploit the natural vehicle clustering and have to cope with their “ephemeral” nature. More precisely, vehicle mobility has a direct impact on the maximum amount of data which can be collected, thus leading to the concept of decentralized detection “on the move”.
2011
9781612846682
Clustered vehicular networks: decentralized detection "on the move" / S., Busanelli; M., Martalo'; Ferrari, Gianluigi. - (2011), pp. 744-749. (Intervento presentato al convegno International Workshop on Seamless Connectivity in Vehicular Networks (SCVN 2011), in conjunction with the 11th International Conference on Telecommunications for Intelligent Transport Systems (ITST-2011) tenutosi a San Pietroburgo, Russia nel agosto) [10.1109/ITST.2011.6060153].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11381/2384415
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