2010Unpublished venueRequires access

A High Energy Efficiency Link Layer Adaptive Error Control Mechanism for Wireless Sensor Networks

Yong Jin, Jinyi Chang, Deguang Le

Open publisher page 8 citations

Abstract

Wireless sensor networks (WSNs) require simple and facile error control schemes because of the low complexity and high energy efficiency request of sensor nodes. In this paper, we discuss ARQ, FEC, and Chase combing hybrid ARQ (HARQ) schemes using energy efficiency analysis on different communication distances and link layer frame lengths. We proposed a high energy efficiency adaptive error control mechanism (AEC-RSSI). Our mathematical analysis shows that the AEC-RSSI mechanism achieves better performance of data transmission comparing with FEC, ARQ and HARQ, in terms of the overall energy efficiency of the communications in a WSN.

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What this paper is about

Wireless sensor networks (WSNs) require simple and facile error control schemes because of the low complexity and high energy efficiency request of sensor nodes. In this paper, we discuss ARQ, FEC, and Chase combing hybrid ARQ (HARQ) schemes using energy efficiency analysis on different communication distances and link layer frame lengths. We proposed a high energy efficiency adaptive error control mechanism (AEC-RSSI). Our mathematical analysis shows that the AEC-RSSI mechanism achieves better performance of data transmission comparing with FEC, ARQ and HARQ, in terms of the overall energy efficiency of the communications in a WSN.

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OpenAlex reports 8 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

Wireless sensor networks (WSNs) require simple and facile error control schemes because of the low complexity and high energy efficiency request of sensor nodes. In this paper, we discuss ARQ, FEC, and Chase combing hybrid ARQ (HARQ) schemes using energy efficiency analysis on different communication distances and link layer frame lengths. We proposed a high energy efficiency adaptive error control mechanism (AEC-RSSI). Our mathematical analysis shows that the AEC-RSSI mechanism achieves better performance of data transmission comparing with FEC, ARQ and HARQ, in terms of the overall energy efficiency of the communications in a WSN.

Key concepts: Hybrid automatic repeat request, Automatic repeat request, Computer science, Efficient energy use, Error detection and correction, Link layer, Selective Repeat ARQ, Transmission (telecommunications)

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