Dynamic selection of CWmin in cognitive radio networks for protecting IEEE 802.11 primary users

K. Umebayashi, Yasuo Suzuki, Janne J. Lehtomäki
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引用次数: 18

Abstract

Time domain spectrum sharing between primary user (PU) and cognitive radio (CR) networks is considered. The Carrier Sense Multiple Access with Collision Avoidance (CSMA/CA) protocol is suitable for this type of spectrum sharing with unslotted access in which PUs and secondary users (SUs) are asynchronous. The goal is to maximize the average throughput of the SUs while guaranteeing the average throughput of the PUs. To achieve this, in our proposal the CR network adaptively changes its minimum contention window size (CWmin), depending on the channel occupancy rate (COR) from the PU network. The COR is approximately proportional to the average throughput and is estimated based on the observed traffic. In this paper, we analytically derive the optimum CWmin to maximize the COR of the CR network, while guaranteeing the COR of the PU network. In addition, to further protect saturated (high load) PUs, we also propose using a margin in the CWmin selection process. The simulation results show that the proposed approach does maximize the COR of the CR network and that it does converge faster in dynamic situations than the previous proposals. Also, the simulation results show the effectiveness of the proposed approach with margin.
认知无线网络中保护IEEE 802.11主用户的CWmin动态选择
考虑了主用户(PU)网络和认知无线电(CR)网络之间的时域频谱共享。CSMA/CA (Carrier Sense Multiple Access with Collision Avoidance)协议适用于这种pu和secondary user (secondary user)异步的无槽接入频谱共享。目标是在保证pu的平均吞吐量的同时,最大限度地提高su的平均吞吐量。为了实现这一点,在我们的建议中,CR网络根据来自PU网络的通道占用率(COR)自适应地改变其最小争用窗口大小(CWmin)。COR大约与平均吞吐量成正比,并根据观察到的流量进行估计。本文在保证PU网络的COR的前提下,对CR网络的最优CWmin进行了解析推导。此外,为了进一步保护饱和(高负载)pu,我们还建议在CWmin选择过程中使用余量。仿真结果表明,该方法能最大限度地提高CR网络的COR值,并且在动态情况下收敛速度快于以往的方法。仿真结果表明了该方法在考虑余量时的有效性。
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