2014•Unpublished venueRequires access

CCR-MAC: A Communication Channel Recommendation MAC for Multi-channel WLANs

Tetsuya Shigeyasu, 長嶺淳子

Open publisher page 4 citations

Abstract

Recently, many MAC protocols have been proposed for making effective communications under the single transceiver and multi-channel environment. In those MAC protocols, however, occurrence of multi-channel hidden terminals problem degrades throughput performance of communication systems. Then, in order to mitigate bad effects of the multi-channel hidden terminals, both MAC protocols that are CAM-MAC and VT-MAC are proposed for informing the bad channel selection to sender by its neighboring terminals, and for reducing redundant channel usage information on the basis of considering network topology, respectively. But, these MAC protocols are mainly focused for avoiding bad channel selections by sender, not the increasing good channel selections (concurrent transmissions). Therefore, in this paper, for further improving throughput performance by concurrent transmissions, we propose new multi-channel MAC protocols in which neighbor terminals of sender recommend better transmission channel, prior to the DATA transmission. The performance evaluations clarify that the proposed MAC protocol effective improves the throughput performance than the existing MAC protocols.

About this research paper

What this paper is about

Recently, many MAC protocols have been proposed for making effective communications under the single transceiver and multi-channel environment. In those MAC protocols, however, occurrence of multi-channel hidden terminals problem degrades throughput performance of communication systems. Then, in order to mitigate bad effects of the multi-channel hidden terminals, both MAC protocols that are CAM-MAC and VT-MAC are proposed for informing the bad channel selection to sender by its neighboring terminals, and for reducing redundant channel usage information on the basis of considering network topology, respectively. But, these MAC protocols are mainly focused for avoiding bad channel selections by sender, not the increasing good channel selections (concurrent transmissions). Therefore, in this paper, for further improving throughput performance by concurrent transmissions, we propose new multi-channel MAC protocols in which neighbor terminals of sender recommend better transmission channel, prior to the DATA transmission. The performance evaluations clarify that the proposed MAC protocol effective improves the throughput performance than the existing MAC protocols.

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OpenAlex reports 4 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

Recently, many MAC protocols have been proposed for making effective communications under the single transceiver and multi-channel environment. In those MAC protocols, however, occurrence of multi-channel hidden terminals problem degrades throughput performance of communication systems. Then, in order to mitigate bad effects of the multi-channel hidden terminals, both MAC protocols that are CAM-MAC and VT-MAC are proposed for informing the bad channel selection to sender by its neighboring terminals, and for reducing redundant channel usage information on the basis of considering network topology, respectively. But, these MAC protocols are mainly focused for avoiding bad channel selections by sender, not the increasing good channel selections (concurrent transmissions). Therefore, in this paper, for further improving throughput performance by concurrent transmissions, we propose new multi-channel MAC protocols in which neighbor terminals of sender recommend better transmission channel, prior to the DATA transmission. The performance evaluations clarify that the proposed MAC protocol effective improves the throughput performance than the existing MAC protocols.

Key concepts: Computer network, Computer science, Channel (broadcasting), Throughput, Communication source, Transmission (telecommunications), Transceiver, Hidden node problem

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