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A Contention Mechanism Based on Pulse/Tone Signal For a Multi-Channel Environment

机译:多通道环境下基于脉冲/音调信号的竞争机制

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摘要

The rising number of wireless devices has impacted directly on the interference and saturation levels of the ISM bands. Among the approaches proposed to minimize this problem is the use of use multiple orthogonal channels. In this context, a major challenge is to coordinate and grant channel access to the transmitting devices. A common strategy is to use a dedicated channel, also known as control channel, to select the nodes that shall communicate over the available data channels. In this work, we present a new contention mechanism, termed CRP (Collision Resolution Period), which was designed to assist in the contention resolution task. Compared with the IEEE 802.11 standard, the CRP has able to increase the aggregate throughput by over 300%. Also, a queuing theory model was used to evaluate the limits of the control channel utilization.
机译:无线设备数量的增加直接影响了ISM频段的干扰和饱和水平。提出的最小化此问题的方法之一是使用多个正交信道。在这种情况下,主要的挑战是协调并授予对发送设备的信道访问权限。一种常见的策略是使用专用通道(也称为控制通道)来选择将在可用数据通道上进行通信的节点。在这项工作中,我们提出了一种称为CRP(冲突解决期)的新竞争机制,该机制旨在协助解决竞争任务。与IEEE 802.11标准相比,CRP能够将总吞吐量提高300%以上。此外,使用排队论模型评估控制信道利用率的极限。

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