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Underlay cooperative cognitive networks with imperfect Nakagami-m fading channel information and strict transmit power constraint: Interference statistics and outage probability analysis

机译:具有不完美的Nakagami-m衰落信道信息和严格的发射功率约束的底层协作认知网络:干扰统计和中断概率分析

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摘要

This work investigates two important performance metrics of underlay cooperative cognitive radio (CR) networks: Interference cumulative distribution function of licensed users and outage probability of unlicensed users. These metrics are thoroughly analyzed in realistic operating conditions such as imperfect fading channel information and strict transmit power constraint, which satisfies interference power constraint and maximum transmit power constraint, over Nakagami-m fading channels. Novel closed-form expressions are derived and subsequently validated extensively through comparisons with respective results from computer simulations. The proposed expressions are rather long but straightforward to handle both analytically and numerically since they are expressed in terms of well known built-in functions. In addition, the offered results provide the following technical insights: i) Channel information imperfection degrades considerably the performance of both unlicensed network in terms of OP and licensed network in terms of interference levels; ii) underlay cooperative CR networks experience the outage saturation phenomenon; Hi) the probability that the interference power constraint is satisfied is relatively low and depends significantly on the corresponding fading severity conditions as well as the channel estimation quality; iv) there exists a critical performance trade-off between unlicensed and licensed networks.
机译:这项工作调查了底层合作认知无线电(CR)网络的两个重要性能指标:许可用户的干扰累积分布函数和非许可用户的中断概率。这些指标在实际的工作条件下进行了彻底分析,例如在Nakagami-m衰落信道上,衰落信道信息不完善以及满足干扰功率约束和最大发射功率约束的严格发射功率约束。通过与计算机模拟的相应结果进行比较,可以得出新颖的闭式表达式,并随后进行了广泛的验证。所提出的表达式相当长,但是易于解析和数字化处理,因为它们是用众所周知的内置函数表示的。此外,所提供的结果还提供了以下技术见解:i)信道信息不完善严重降低了OP方面的非许可网络和干扰水平方面的许可网络的性能; ii)底层协作式CR网络遇到停电饱和现象; Hi)满足干扰功率约束的概率相对较低,并且很大程度上取决于相应的衰落严重性条件以及信道估计质量; iv)非许可和许可网络之间存在关键的性能折衷。

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