Asynchronous Multi-Channel MAC Protocol

Coskun Cetinkaya
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Abstract

Traditional IEEE 802.11-based networks use only a single channel to ensure connectivity; however, multi-channel capability is available to provide higher network throughput by allowing simultaneous multiple transmissions that do not interfere with each other. The use of multiple channels raises several new challenges: mainly finding the receiver, scheduling the next transmission, balancing the load among channels, and dealing with multi-channel hidden terminals. This paper proposes a novel and efficient, asynchronous multi-channel medium-access control (MAC) protocol using a single transceiver. The key technique is that the proposed protocol separates searching and scheduling processes where searching users switch channels faster than regular users. Simulation results indicate that the proposed protocol achieves up to 14.10 Mbps network throughput, whereas the IEEE 802.11 MAC protocol, with a single channel, provides only 4.35 Mbps in the best case when three orthogonal channels with an 11- Mbps data rate are available
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异步多通道MAC协议
传统的基于IEEE 802.11的网络只使用单个通道来确保连通性;然而,通过允许同时进行多个互不干扰的传输,多通道功能可以提供更高的网络吞吐量。多信道的使用提出了几个新的挑战:主要是寻找接收器、调度下一次传输、平衡信道间的负载以及处理多信道隐藏终端。本文提出了一种新颖、高效、异步的单收发器多通道介质访问控制(MAC)协议。该协议的关键技术是将搜索和调度过程分离,其中搜索用户比普通用户更快地切换频道。仿真结果表明,该协议的网络吞吐量最高可达14.10 Mbps,而IEEE 802.11 MAC协议在单通道情况下,在3个正交通道,数据速率为11- Mbps的情况下,网络吞吐量最高可达4.35 Mbps
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