Spectral Efficiency Optimized Adaptive Transmission for Interfering Cognitive Radios

M. Taki, F. Lahouti
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引用次数: 17

Abstract

In this paper, we consider a primary and a cognitive user transmitting over a wireless fading interference channel. The primary user transmits with a constant power and utilizes an adaptive modulation and coding (AMC) scheme satisfying a bit error rate requirement. We propose a link adaptation scheme to maximize the average spectral efficiency of the cognitive radio, while a minimum required spectral efficiency for the primary user is provisioned. The resulting problem is constrained to also satisfy a bit error rate requirement and a power constraint for the cognitive link. The AMC mode selection and power control at the cognitive transmitter is optimized based on the scaled signal to noise plus interference ratio feedback of both links. The problem is then cast as a nonlinear discrete optimization problem for which a fast and efficient suboptimum solution is presented. We also present a scheme with rate adaption and a constant power. An important characteristic of the proposed schemes is that no negotiation between the users is required. Comparisons with underlay and interweave approaches to cognitive radio with adaptive transmission demonstrate the efficiency of the proposed solutions.
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频谱效率优化自适应传输干扰认知无线电
在本文中,我们考虑在无线衰落干扰信道上传输的主要用户和认知用户。主用户以恒定功率传输,采用满足误码率要求的自适应调制编码(AMC)方案。我们提出了一种链路自适应方案,以最大限度地提高认知无线电的平均频谱效率,同时为主用户提供最低所需的频谱效率。所得到的问题还被约束为满足误码率要求和认知链路的功率约束。基于两链路的标度信噪比和干扰比反馈,对认知发射机的AMC模式选择和功率控制进行优化。然后将该问题转化为一个非线性离散优化问题,并给出了快速有效的次优解。我们还提出了一种具有速率自适应和恒功率的方案。所提出的方案的一个重要特点是不需要用户之间进行协商。通过与底层和交织的自适应传输认知无线电方法的比较,证明了所提方案的有效性。
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