An energy-efficient decentralised communication protocol for a network of uniformly distributed sensors polled by a wireless transceiver
In this paper a network of sensors uniformly and randomly distributed over a plane large enough to be considered infinite is considered. The author formalises a particular problem, where a supervisor wants to collect the sensor data from a specific region around him/her. This region is assumed to be...
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| Published in | 2004 IEEE Itnernational Conference on Communications Vol. 6; pp. 3491 - 3498 Vol.6 |
|---|---|
| Main Author | |
| Format | Conference Proceeding |
| Language | English |
| Published |
Piscataway, New Jersey
IEEE
2004
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| Subjects | |
| Online Access | Get full text |
| ISBN | 0780385330 9780780385337 |
| DOI | 10.1109/ICC.2004.1313193 |
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| Abstract | In this paper a network of sensors uniformly and randomly distributed over a plane large enough to be considered infinite is considered. The author formalises a particular problem, where a supervisor wants to collect the sensor data from a specific region around him/her. This region is assumed to be small, so that no routing aspects have to be considered, as direct communication between sensor nodes and supervisor can take place. The losses characterising the communication links between them follow a power law affected by a random component. The system constraints are related to an application-driven maximum value of latency and the requirement of a minimum life duration of sensors. Propagation, physical and multiple access problems are jointly addressed through a complete analytical description. The evaluation of the statistics of the number of packets successfully received by the supervisor is carried out through the use of the results of a statistical study, taken from the literature, on the connectivity of nodes uniformly and randomly distributed over the infinite plane and subject to log-normal distributed loss. These results have been suitably applied to the sensor network, which requires the investigation of aspects related to the packet capture effect, the probability distribution of audible sensors, etc. |
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| AbstractList | In this paper a network of sensors uniformly and randomly distributed over a plane large enough to be considered infinite is considered. The author formalises a particular problem, where a supervisor wants to collect the sensor data from a specific region around him/her. This region is assumed to be small, so that no routing aspects have to be considered, as direct communication between sensor nodes and supervisor can take place. The losses characterising the communication links between them follow a power law affected by a random component. The system constraints are related to an application-driven maximum value of latency and the requirement of a minimum life duration of sensors. Propagation, physical and multiple access problems are jointly addressed through a complete analytical description. The evaluation of the statistics of the number of packets successfully received by the supervisor is carried out through the use of the results of a statistical study, taken from the literature, on the connectivity of nodes uniformly and randomly distributed over the infinite plane and subject to log-normal distributed loss. These results have been suitably applied to the sensor network, which requires the investigation of aspects related to the packet capture effect, the probability distribution of audible sensors, etc. |
| Author | Verdone, R. |
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| Keywords | Supervisor Multiple access Probabilistic approach Wireless telecommunication Transmission protocol Routing Probability distribution Distributed system Lognormal distribution Transceiver Statistical method Power consumption Decentralized system Network protocol Random medium Sensor array Power law |
| Language | English |
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| Snippet | In this paper a network of sensors uniformly and randomly distributed over a plane large enough to be considered infinite is considered. The author formalises... |
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| SubjectTerms | Access methods and protocols, osi model Applied sciences Conferences Delay Energy efficiency Exact sciences and technology Probability distribution Radiocommunications Routing Sensor phenomena and characterization Sensor systems and applications Statistical distributions Systems, networks and services of telecommunications Telecommunications Telecommunications and information theory Teleprocessing networks. Isdn Transceivers Transmission and modulation (techniques and equipments) Transmitters. Receivers Wireless application protocol Wireless sensor networks |
| Title | An energy-efficient decentralised communication protocol for a network of uniformly distributed sensors polled by a wireless transceiver |
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