Avri Doria
Luleå University of Technology
19 Papers
202 Citations
Avri Doria is an academic researcher from Luleå University of Technology. The author has contributed to research in topics: Routing protocol & Zone Routing Protocol. The author has an hindex of 10, co-authored 19 publications. Previous affiliations of Avri Doria include Electronics and Telecommunications Research Institute & Association for Computing Machinery.
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Papers
Probabilistic routing in intermittently connected networks
TL;DR: A probabilistic routing protocol for intermittently connected networks where there is no guarantee that a fully connected path between source and destination exist at any time, rendering traditional routing protocols unable to deliver messages between hosts.
Probabilistic Routing in intermittently connected networks
TL;DR: This paper proposes PRoPHET, a probabilistic routing protocol for intermittently connected networks and shows that it is able to deliver more messages than Epidemic Routing with a lower communication overhead.
Probabilistic Routing Protocol for Intermittently Connected Networks
Anders Lindgren,Avri Doria,Elwyn B. Davies,Samo Grasic +3 more
- 01 Aug 2012
TL;DR: PRoPHET is a variant of the epidemic routing protocol for intermittently connected networks that operates by pruning the epidemic distribution tree to minimize resource usage while still attempting to achieve the best-case routing capabilities of epidemic routing.
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The evolution of a DTN routing protocol - PRoPHETv2
Samo Grasic,Elwyn B. Davies,Anders Lindgren,Avri Doria +3 more
- 23 Sep 2011
TL;DR: This paper proposes some minor modifications to the routing metric calculations done in PRoPHET which has potential to alleviate some issues and improve the performance of the protocol.
Poster: Probabilistic Routing in Intermittently Connected Networks
Anders Lindgren,Avri Doria +1 more
- 01 Jan 2003
TL;DR: A probabilistic routing protocol for intermittently connected networks where there is no guarantee that a fully connected path between source and destination exist at any time, rendering traditional routing protocols unable to deliver messages between hosts.