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Adaptive and Autonomous Channel Access Methods for Distributed Cognitive Radios

机译:分布式认知无线电的自适应自主信道访问方法

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In distributed multichannel cognitive radio (CR) networks, autonomous CRs face competition from one another to access the potentially available channels. Efficient resource allocation in such scenarios can be achieved by carrying out negotiation among distributed CRs via a coordinator (base station) or with the help of a common control channel. While the use of a coordinator or a common control channel simplifies the problem, it may create significant signaling overhead or potential contention under heavy load. Opportunistic channel selection strategies that require no centralized coordination among the autonomous CRs are surveyed in this paper and also novel results related to our own proposed -persistent adaptive strategy are provided. Unlike our previous work in Khan et al. (IEEE Trans Mob Comput 12(2): 2013), we evaluate the performance of the proposed -persistent strategy in terms of different performance metrics such as: (1) Average throughput of an individual CR; (2) Probability of finding a channel free in first step (given that the channel is free) for an autonomous CR; and (3) Average number of unsuccessful transmissions experienced by a CR. Using these performance metrics, we compare the performance of the proposed strategy with two other distributed strategies and also with a centralized strategy. We show that the proposed strategy allows the CRs to find a free channel with high probability in the first sensing step (given that the channel is free). This reduces the overhead of multiple sensing steps incurred by an autonomous CR. The reduced number of sensing steps required to find a channel free in turn improves throughput per time slot of a CR. Moreover, the proposed strategy reduces the likelihood of unsuccessful transmissions by CRs which in turn improves throughput and also reduces the transmission attempt costs of an autonomous CR.
机译:在分布式多通道认知无线电(CR)网络中,自治CR面临着相互竞争以访问潜在可用信道的竞争。在这种情况下,可以通过协调器(基站)或在公共控制信道的帮助下在分布式CR之间进行协商来实现有效的资源分配。虽然使用协调器或公共控制信道简化了问题,但在重负载下可能会产生大量信令开销或潜在争用。本文研究了不需要在自治CR之间进行集中协调的机会性信道选择策略,并提供了与我们自己提出的持久性自适应策略相关的新颖结果。与我们之前在Khan等人的工作不同。 (IEEE Trans Mob Comput 12(2):2013),我们根据不同的性能指标来评估建议的持久策略的性能,例如:(1)单个CR的平均吞吐量; (2)在自主CR的第一步中找到空闲信道的可能性(假定该信道空闲); (3)CR遇到的不成功传输的平均次数。使用这些性能指标,我们将提议的策略与其他两个分布式策略以及一个集中式策略的性能进行比较。我们表明,所提出的策略允许CR在第一个传感步骤中找到概率较高的空闲信道(假定信道是空闲的)。这减少了自主CR引起的多个感测步骤的开销。减少寻找空闲信道所需的感测步骤数反过来提高了CR每个时隙的吞吐量。此外,所提出的策略降低了CR无法成功传输的可能性,这反过来又提高了吞吐量,还降低了自主CR的传输尝试成本。

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