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Vasco N. G. J. Soares

Researcher at Polytechnic Institute of Castelo Branco

Publications -  74
Citations -  1219

Vasco N. G. J. Soares is an academic researcher from Polytechnic Institute of Castelo Branco. The author has contributed to research in topics: Routing protocol & Vehicular ad hoc network. The author has an hindex of 18, co-authored 60 publications receiving 1087 citations. Previous affiliations of Vasco N. G. J. Soares include Instituto Politécnico Nacional & University of Beira Interior.

Papers
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Journal ArticleDOI

From Delay-Tolerant Networks to Vehicular Delay-Tolerant Networks

TL;DR: An introductory overview of Vehicular Delay-Tolerant Networks is provided and some special issues like routing are addressed in the paper and an introductory description of applications and the most important projects is given.
Journal ArticleDOI

GeoSpray: A geographic routing protocol for vehicular delay-tolerant networks

TL;DR: A VDTN routing protocol, called GeoSpray, which takes routing decisions based on geographical location data, and combines a hybrid approach between multiple-copy and single-copy schemes, and improves significantly the delivery probability and reduces the delivery delay.
Proceedings ArticleDOI

A layered architecture for Vehicular Delay-Tolerant Networks

TL;DR: This paper proposes a layered architecture for VDTNs, using out-of-band signaling, based on the separation of the control plane and data plane, and presents the layers interactions and the envisioned protocols required at each layer.
Proceedings ArticleDOI

Improving Vehicular Delay-Tolerant Network Performance with Relay Nodes

TL;DR: This paper analyzes the influence of the number of relay nodes, in urban scenarios with different numbers of vehicles, and shows that relay nodes significantly improve the message delivery probability on studied DTN routing protocols.
Journal ArticleDOI

Enhanced fuzzy logic‐based spray and wait routing protocol for delay tolerant networks

TL;DR: Spray and Wait routing protocol has been enhanced using a new fuzzy‐based buffer management strategy Enhanced Fuzzy Spray and Wait Routing, with the aim to achieve increased delivery ratio and reduced overhead ratio.