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Proceedings ArticleDOI

Adaptive protocols for information dissemination in wireless sensor networks

TLDR
It is found that the SPIN protocols can deliver 60% more data for a given amount of energy than conventional approaches, and that, in terms of dissemination rate and energy usage, the SPlN protocols perform close to the theoretical optimum.
Abstract
In this paper, we present a family of adaptive protocols, called SPIN (Sensor Protocols for Information via Negotiation), that efficiently disseminates information among sensors in an energy-constrained wireless sensor network. Nodes running a SPIN communication protocol name their data using high-level data descriptors, called meta-data. They use meta-data negotiations to eliminate the transmission of redundant data throughout the network. In addition, SPIN nodes can base their communication decisions both upon application-specific knowledge of the data and upon knowledge of the resources that are available to them. This allows the sensors to efficiently distribute data given a limited energy supply. We simulate and analyze the performance of two specific SPIN protocols, comparing them to other possible approaches and a theoretically optimal protocol. We find that the SPIN protocols can deliver 60% more data for a given amount of energy than conventional approaches. We also find that, in terms of dissemination rate and energy usage, the SPlN protocols perform close to the theoretical optimum.

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Citations
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Proceedings ArticleDOI

A two-tier data dissemination model for large-scale wireless sensor networks

TL;DR: This paper describes TTDD, a Two-Tier Data Dissemination approach that provides scalable and efficient data delivery to multiple mobile sinks and evaluates TTDD performance through both analysis and extensive simulation experiments.
Book

Wireless Sensor Networks: Technology, Protocols, and Applications

TL;DR: This paper describes the development of Wireless Sensors Networks and its applications, and some of the applications can be found in the Commercial and Scientific Applications of Wireless Sensor Networks and Performance and Traffic Management Issues.
Journal ArticleDOI

A taxonomy of wireless micro-sensor network models

TL;DR: This taxonomy will aid in defining appropriate communication infrastructures for different sensor network application sub-spaces, allowing network designers to choose the protocol architecture that best matches the goals of their application.
Journal ArticleDOI

Energy-Efficient Routing Protocols in Wireless Sensor Networks: A Survey

TL;DR: The classification initially proposed by Al-Karaki, is expanded, in order to enhance all the proposed papers since 2004 and to better describe which issues/operations in each protocol illustrate/enhance the energy-efficiency issues.
Proceedings ArticleDOI

Distributed Kalman Filter with Embedded Consensus Filters

TL;DR: This paper shows that a central Kalman filter for sensor networks can be decomposed into n micro-Kalman filters with inputs that are provided by two types of consensus filters, and demonstrates that these filters can approximate these sums and give an approximate distributed Kalman filtering algorithm.
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