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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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Proceedings ArticleDOI

Power-aware localized routing in wireless networks

TL;DR: This work defines a new power-cost metric based on the combination of both node's lifetime and distance based power metrics and proposes power, cost, and power- cost GPS based localized routing algorithms, where nodes make routing decisions solely on the basis of location of their neighbors and destination.
Journal ArticleDOI

Swarm intelligence based routing protocol for wireless sensor networks: Survey and future directions

TL;DR: An extensive survey of protocols developed according to the principles of swarm intelligence, taking inspiration from the foraging behaviors of ant and bee colonies, and introduces a novel taxonomy for routing protocols in wireless sensor networks.
Proceedings ArticleDOI

SensorSim: a simulation framework for sensor networks

TL;DR: SensorSim is introduced, a simulation framework that introduces new models and techniques for the design and analysis of sensor networks and builds up new features that include ability to model power usage in sensor nodes, hybrid simulation that allows the interaction of real and simulated nodes, new communication protocols and real time user interaction with graphical data display.
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A Survey on Energy-Efficient Routing Techniques with QoS Assurances for Wireless Multimedia Sensor Networks

TL;DR: Current state-of-the-art in energy-efficient routing techniques for WMSNs is surveyed together with the highlights of the performance issues of each strategy.
Proceedings ArticleDOI

Maximum lifetime data gathering and aggregation in wireless sensor networks

TL;DR: 3 4 57698;:(578=<>574 6 3?
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