Versatile low power media access for wireless sensor networks
Универсальный энергосберегающий доступ к среде для беспроводных сенсорных сетей
2004-11-03
SCID: 54.1/9sph6bcu
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B-MACadaptive preamble samplingcarrier sense media accesslow power operationwireless sensor networks
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Abstract (AI)
We propose B-MAC, a carrier sense media access protocol for wireless sensor networks that provides a flexible interface to obtain ultra low power operation, effective collision avoidance, and high channel utilization. To achieve low power operation, B-MAC employs an adaptive preamble sampling scheme to reduce duty cycle and minimize idle listening. B-MAC supports on-the-fly reconfiguration and provides bidirectional interfaces for system services to optimize performance, whether it be for throughput, latency, or power conservation. We build an analytical model of a class of sensor network applications. We use the model to show the effect of changing B-MAC's parameters and predict the behavior of sensor network applications. By comparing B-MAC to conventional 802.11-inspired protocols, specifically SMAC, we develop an experimental characterization of B-MAC over a wide range of network conditions. We show that B-MAC's flexibility results in better packet delivery rates, throughput, latency, and energy consumption than S-MAC. By deploying a real world monitoring application with multihop networking, we validate our protocol design and model. Our results illustrate the need for flexible protocols to effectively realize energy efficient sensor network applications.
Key Findings
1
A real-world multihop monitoring deployment validates B-MAC’s protocol design and analytical model, demonstrating the need for flexible protocols for energy-efficient sensor networks.
2
An analytical model of a class of sensor network applications predicts how B-MAC parameter changes affect application behavior.
3
B-MAC is a carrier sense MAC protocol that provides a flexible interface enabling ultra low power operation, effective collision avoidance, and high channel utilization.
4
B-MAC supports on-the-fly reconfiguration and bidirectional interfaces to tune throughput, latency, and power trade-offs for system services.
5
B-MAC uses an adaptive preamble sampling scheme to reduce duty cycle and minimize idle listening, achieving low power operation.
6
Experimental comparison shows B-MAC outperforms S-MAC in packet delivery rate, throughput, latency, and energy consumption across varied network conditions.
Research Object
B-MAC carrier-sense media access protocol for wireless sensor networks
Research Subject
Achieving ultra-low power operation, collision avoidance, high channel utilization and trade-offs among throughput, latency, and energy via adaptive preamble sampling, on-the-fly reconfiguration, and parameter tuning validated by analytical modeling and experiments
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2004-11-03
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