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首页> 外文期刊>EURASIP journal on advances in signal processing >Performance of Multiple-Relay Cooperative Diversity Systems with Best Relay Selection over Rayleigh Fading Channels
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Performance of Multiple-Relay Cooperative Diversity Systems with Best Relay Selection over Rayleigh Fading Channels

机译:瑞利衰落信道上具有最佳中继选择的多中继协作分集系统的性能

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We consider an amplify-and-forward (AF) cooperative diversity system where a source node communicates with a destination node directly and indirectly (through multiple relays). In regular multiple-relay cooperative diversity systems, all relay nodes relay the source signal using orthogonal channels (time slots, carriers, or codes) to avoid cochannel interference. Hence, for a regular cooperative diversity network with M relays, we need M+1 channels (one for the direct link and M for the M indirect links). This means that the number of required channels increases linearly with the number of relays. In this paper, we investigate the performance of the best-relay selection scheme where the "best" relay only participates in the relaying. Therefore, two channels only are needed in this case (one for the direct link and the other one for the best indirect link) regardless of the number of relays (M). The best relay is selected as the relay node that can achieve the highest signal-to-noise ratio (SNR) at the destination node. We show that the best-relay selection not only reduces the amount of required resources but also maintains a full diversity order (which is achievable by the regular multiple-relay cooperative diversity system but with much more amount of resources). We derive closed form expressions for tight lower bounds of the symbol error probability and outage probability. Since it is hard to find a closed-form expression for the probability density function (PDF) of SNR of the relayed signal at the destination node, we use an approximate value instead. Then, we find a closed-form expression for the moment generating function (MGF) of the total SNR at the destination. This MGF is used to derive the closed-form expressions of the performance metrics such as the average symbol error probability, the outage probability, the average SNR, the amount of fading, and the SNR moments. Furthermore, we derive the asymptotic behavior of the symbol error probability. From this asymptotic behavior, the diversity order and its dependence on the number of relays (M) can be explicitly determined. Simulation results are also given to verify the analytical results.
机译:我们考虑一个放大转发(AF)合作分集系统,其中源节点与目标节点直接和间接(通过多个中继)进行通信。在常规的多中继协作分集系统中,所有中继节点都使用正交信道(时隙,载波或代码)中继源信号,以避免同信道干扰。因此,对于具有M个中继的常规协作分集网络,我们需要M + 1个通道(一个用于直接链接,一个用于M个间接链接)。这意味着所需通道的数量随继电器的数量线性增加。在本文中,我们研究了“最佳”中继仅参与中继的最佳中继选择方案的性能。因此,在这种情况下,仅需要两个通道(一个用于直接链接,另一个用于最佳间接链接),而与中继数量(M)无关。选择最佳中继作为中继节点,可以在目标节点上实现最高的信噪比(SNR)。我们表明,最佳中继选择不仅减少了所需资源的数量,而且保持了完整的分集顺序(这可以通过常规的多中继协作分集系统来实现,但需要更多的资源)。我们导出符号错误概率和中断概率的下限严格的闭式表达式。由于很难找到目标节点处中继信号的SNR的概率密度函数(PDF)的闭式表达式,因此我们改用近似值。然后,我们找到目标处总SNR的矩生成函数(MGF)的闭式表达式。此MGF用于导出性能指标的闭式表达式,例如平均符号错误概率,中断概率,平均SNR,衰落量和SNR矩。此外,我们得出符号错误概率的渐近行为。根据这种渐近行为,可以明确确定分集阶数及其对中继数量(M)的依赖性。还给出了仿真结果以验证分析结果。

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