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Cooperative AF Relaying in Spectrum-Sharing Systems: Performance Analysis under Average Interference Power Constraints and Nakagami-m Fading

机译:频谱共享系统中的协作AF中继:平均干扰功率约束和Nakagami-m衰落下的性能分析

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摘要

Since the electromagnetic spectrum resource becomes more and more scarce, improving spectral efficiency is extremely important for the sustainable development of wireless communication systems and services. Integrating cooperative relaying techniques into spectrum-sharing cognitive radio systems sheds new light on higher spectral efficiency. In this paper, we analyze the end-to-end performance of cooperative amplify-and-forward (AF) relaying in spectrum-sharing systems. In order to achieve the optimal end-to-end performance, the transmit powers of the secondary source and the relays are optimized with respect to average interference power constraints at primary users and Nakagami-$m$ fading parameters of interference channels (for mathematical tractability, the desired channels from secondary source to relay and from relay to secondary destination are assumed to be subject to Rayleigh fading). Also, both partial and opportunistic relay-selection strategies are exploited to further enhance system performance. Based on the exact distribution functions of the end-to-end signal-to-noise ratio (SNR) obtained herein, the outage probability, average symbol error probability, diversity order, and ergodic capacity of the system under study are analytically investigated. Our results show that system performance is dominated by the resource constraints and it improves slowly with increasing average SNR. Furthermore, larger Nakagami-m fading parameter on interference channels deteriorates system performance slightly. On the other hand, when interference power constraints are stringent, opportunistic relay selection can be exploited to improve system performance significantly. All analytical results are corroborated by simulation results and they are shown to be efficient tools for exact evaluation of system performance.
机译:由于电磁频谱资源越来越稀缺,因此提高频谱效率对于无线通信系统和服务的可持续发展极为重要。将协作中继技术集成到频谱共享的认知无线电系统中,为更高的频谱效率提供了新的思路。在本文中,我们分析了频谱共享系统中协作放大转发(AF)中继的端到端性能。为了实现最佳的端到端性能,针对主要用户的平均干扰功率约束和干扰信道的Nakagami- $ m $衰落参数,优化了辅助源和中继的发射功率(出于数学上的可处理性) ,则假定从次要源到中继站以及从中继站到次要目的地的所需信道经历瑞利衰落。而且,部分和机会中继选择策略都被用来进一步增强系统性能。根据此处获得的端到端信噪比(SNR)的精确分布函数,对正在研究的系统的中断概率,平均符号错误概率,分集阶数和遍历容量进行了分析研究。我们的结果表明,系统性能受资源约束的支配,并且随着平均SNR的提高而缓慢提高。此外,干扰信道上较大的Nakagami-m衰落参数会稍微降低系统性能。另一方面,当干扰功率限制很严格时,可以利用机会继电器选择来显着提高系统性能。仿真结果证实了所有分析结果,它们被证明是准确评估系统性能的有效工具。

著录项

  • 作者

    Xia Minghua; Aissa Sonia;

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  • 年度 2012
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  • 原文格式 PDF
  • 正文语种 en
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