Outage probability of a hybrid AF-DF protocol for two-way underlay cognitive cooperative radio networks

T. Chu, H. Zepernick
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引用次数: 2

Abstract

In this paper, we study a hybrid amplify-and-forward (AF) and decode-and-forward (DF) scheme for two-way cognitive cooperative radio networks (CCRNs). The proposed scheme applies the AF scheme when the signal-to-interference-plus-noise ratio (SINR) at the relay is below a predefined threshold such that the relay cannot successfully decode the signal. On the other hand, when the SINR at the relay is greater than the predefined threshold, it decodes the signal and then forwards it to the destination, i.e. avoids noise and interference amplification at the relay. An analytical expression of the outage probability of the hybrid AF-DF two-way CCRN is derived based on the probability density function and cumulative distribution function of the SINR in AF and DF mode. Numerical results are provided to illustrate the influence of network parameters such as transmit power, interference power constraint of the primary network, fading conditions, and link distances on the outage probability. Finally, the numerical results show that the hybrid strategy is able to improve system performance significantly compared to conventional AF or DF relaying.
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双向底层认知协同无线网络中混合AF-DF协议的中断概率
本文研究了一种双向认知协同无线网络(ccrn)的放大转发(AF)和解码转发(DF)混合方案。当中继的信噪比(SINR)低于预定义的阈值,使得中继无法成功解码信号时,该方案应用自动对焦方案。另一方面,当继电器处的SINR大于预定义的阈值时,对信号进行解码后转发到目的地,即避免了继电器处的噪声和干扰放大。基于AF和DF模式下信噪比的概率密度函数和累积分布函数,导出了AF-DF混合型双向CCRN的中断概率解析表达式。数值结果说明了发射功率、主网干扰功率约束、衰落条件和链路距离等网络参数对中断概率的影响。最后,数值结果表明,与传统的AF或DF中继相比,该混合策略能够显著提高系统性能。
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