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首页> 外文期刊>Eurasip Journal on Wireless Communications and Networking >Tight performance bounds for two-way opportunistic amplify-and-forward wireless relaying networks with TDBC protocols
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Tight performance bounds for two-way opportunistic amplify-and-forward wireless relaying networks with TDBC protocols

机译:具有TDBC协议的双向机会放大和转发无线中继网络的性能界限很严格

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摘要

Based on amplify-and-forward network coding (AFNC) protocol, the outage probability and ergodic capacity of two-way network coding opportunistic relaying (TWOR-AFNC) systems are investigated as well as the corresponding closed-form solutions. For the TWOR-AFNC systems, it is investigated under two scenarios, namely, the TWOR-AFNC systems without direct link (TWOR-AFNC-Nodir) and the TWOR-AFNC systems with direct link (TWOR-AFNC-Dir). First, we investigate TWOR-AFNC-Nodir systems by employing the approximate analysis in high SNR, and obtain closed-form solutions to the cumulative distribution function (CDF) and the probability density function (PDF) of the instantaneous end-to-end signal-to-noise ratio (SNR) with very simple expressions. The derived simple expressions are given by defining an equivalent variable ω eq-k ( θ ), 2 ≤ θ ≤ 3. When θ = 2, the derived results are the tight lower bounds to CDF and PDF. The sequent simulation demonstrates that the derived tight lower bounds are also very effective over the entire SNR region though which the results are derived in high SNR approximation. Then, with the derived tight closed-form lower bound solutions ( θ = 2) in TWOR-AFNC-Nodir systems, we investigate TWOR-AFNC-Dir systems as well as the overall comparison of the outage probability and the ergodic capacity between the two system models. The comparison analysis performed over path loss model basis shows that, in urban environment, due to utilizing the direct link the TWOR-AFNC-Dir outperform considerably the TWOR-AF-Nodir systems. However, when the value of path loss exponent is relatively large, the achievable gain is very small and the direct link can be omitted. In this case, the TWOR-AFNC-Dir model can be displaced by TWOR-AFNC-Nodir model having lower implementation complexity.
机译:基于放大转发网络编码(AFNC)协议,研究了双向网络编码机会中继(TWOR-AFNC)系统的中断概率和遍历容量,以及相应的闭式解。对于TWOR-AFNC系统,在两种情况下进行了研究,即不具有直接链接的TWOR-AFNC系统(TWOR-AFNC-Nodir)和具有直接链接的TWOR-AFNC系统(TWOR-AFNC-Dir)。首先,我们通过在高SNR中进行近似分析来研究TWOR-AFNC-Nodir系统,并获得瞬时端到端信号的累积分布函数(CDF)和概率密度函数(PDF)的闭式解表达式的信噪比(SNR)。通过定义等效变量ω eq-k (θ),2≤θ≤3给出推导的简单表达式。当θ= 2时,推导结果为CDF和PDF的紧密下限。后续的仿真表明,导出的严格下限在整个SNR范围内也非常有效,尽管如此,其结果却以高SNR近似值得出。然后,利用导出的TWOR-AFNC-Nodir系统中的紧闭形式下界解(θ= 2),我们研究了TWOR-AFNC-Dir系统以及两者之间的中断概率和遍历能力的整体比较系统模型。在路径损耗模型基础上进行的比较分析表明,在城市环境中,由于使用直接链接,TWOR-AFNC-Dir的性能明显优于TWOR-AF-Nodir系统。但是,当路径损耗指数的值较大时,可获得的增益非常小,可以省略直接链接。在这种情况下,TWOR-AFNC-Dir模型可以被实现复杂度较低的TWOR-AFNC-Nodir模型取代。

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