Channel Selection in Multi-Channel Opportunistic Spectrum Access Networks with Perfect Sensing

Xin Liu, B. Krishnamachari, Hua Liu
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引用次数: 45

Abstract

We study optimal transmission strategies in multi-channel cognitive radio networks where one secondary user (SU) opportunistically accesses multiple orthogonal channels that are owned and utilized by primary users (PU). In dynamic spectrum access networks, the protection of PU's is vital, since no PU would accommodate SU access to its own detriment. Therefore the objective of the problem we study is to maximize the SU throughput while protecting PUs on all channels. At a given time, the SU decides if it transmits and if so on which PU channel it should transmit on in order to protect PU performance. We use a constraint on the expected PU packet collision probability as the protection metric. We consider a general setting where the PUs are unslotted and may have different idle/busy time distributions and protection requirements. Under general idle time distributions, we determine the form of the SU optimal access policy. We also study the special case where PUs have independent, exponentially distributed idle time. For this case, we formulate a linear program that yields an optimal randomized strategy for the secondary user, and also present a tunable heuristic which allows for a tradeoff between complexity and throughput performance.
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基于完美感知的多通道机会频谱接入网中的信道选择
研究了多信道认知无线网络中一个辅助用户(SU)机会性地访问主用户(PU)拥有和利用的多个正交信道的最优传输策略。在动态频谱接入网络中,PU的保护是至关重要的,因为任何PU都不会对SU的接入造成损害。因此,我们研究问题的目标是在保护所有通道上的pu的同时最大限度地提高SU吞吐量。在给定时间,SU决定它是否传输,如果是,它应该在哪个PU通道上传输,以保护PU性能。我们使用对预期PU包碰撞概率的约束作为保护度量。我们考虑一种通用设置,其中pu是非槽位的,并且可能具有不同的空闲/繁忙时间分布和保护要求。在一般空闲时间分布下,我们确定了SU最优访问策略的形式。我们还研究了pu具有独立的指数分布空闲时间的特殊情况。对于这种情况,我们制定了一个线性程序,为次要用户产生最佳的随机策略,并且还提出了一个可调的启发式,允许在复杂性和吞吐量性能之间进行权衡。
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