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CSMA/CA in Time and Frequency Domains

机译:时域和频域中的CSMA / CA

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摘要

It has recently been shown that "flexible channelization", whereby wireless stations adapt their spectrum bands on a per-frame basis, is feasible in practice. In this paper, we propose TF-CSMA/CA, an algorithm for flexible channelization that schedules packets in time and frequency domains. TF-CSMA/CA is a simple extension of the CSMA/CA protocol used by IEEE 802.11. Contrary to existing channelization schemes, it is entirely distributed and it reacts only to packet collisions, successful transmissions and carrier sensing. With TF-CSMA/CA, when a station is involved in a collision, it performs backoff in both time and frequency domains. Backing off also in the frequency domain allows the transmitters to be much more efficient and aggressive in the time domain, which significantly reduces the severe overheads present with recent 802.11 PHY layers. The main challenge, however, is that the stations need some level of self-organization in order to find spectrum bands of variable widths that minimize interference, while still efficiently using the available spectrum. Using analysis and simulations, we show that such an extension of CSMA/CA to the frequency domain drastically improves both throughput and fairness. Notably, it enables the stations to find interference-free spectrum bands of appropriate size using no communication -- relying only on collisions and successes as implicit signals.
机译:最近已经表明,“灵活的信道化”在实践中是可行的,其中无线站以每帧为基础来适配其频谱带。在本文中,我们提出了TF-CSMA / CA,这是一种灵活的信道化算法,可以在时域和频域中调度数据包。 TF-CSMA / CA是IEEE 802.11使用的CSMA / CA协议的简单扩展。与现有的信道化方案相反,它是完全分布式的,并且仅对数据包冲突,成功的传输和载波侦听做出反应。使用TF-CSMA / CA,当一个站发生冲突时,它会在时域和频域中执行退避。在频域中也进行回退,可以使发射机在时域中更加高效,更具侵略性,从而显着降低了最新802.11 PHY层所带来的严重开销。然而,主要的挑战是,这些站需要某种程度的自组织,以便找到可将干扰减至最小的可变宽度的频谱带,同时仍要有效地利用可用频谱。通过分析和仿真,我们表明,将CSMA / CA扩展到频域可以极大地提高吞吐量和公平性。值得注意的是,它使电台无需通信即可找到适当大小的无干扰频谱带-仅依靠冲突和成功作为隐性信号。

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