Performance optimization of amplify-and-forward relaying schemes for uplink OFDMA communications

Naoufel Debbabi, I. Kammoun, M. Siala
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引用次数: 1

Abstract

Cooperative communication is a promising technique to enhance the system performance by exploiting the spatial diversity provided by the relay use. Incremental relaying techniques are proposed to limit the resources use to only bad channel conditions. In this paper, we deal with AF and IAF performance optimization for uplink Orthogonal Frequency Division Multiple Access (OFDMA) communications, carried on a packet-per-packet basis. For OFDMA cellular system, we define a cost that reliably quantifies the additional multiple-access interference (MAI) inherent to the relaying use. This MAI cost expression depends highly on the adopted frequency reuse pattern. The optimization, in terms of Packet-Error-Rate (PER), is carried out while keeping this MAI cost constant, for regular and fractional frequency reuse patterns. For FFR, different frequency reuse factors are applied to cell-center and cell-edge areas. Simulation results are showing that IAF relaying outperforms the direct transmission scheme by more than 15 dB gain, in terms of the reduction of the MAI. Additionally, IAF seems to be usually more powerful than AF.
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上行OFDMA通信放大转发中继方案的性能优化
协作通信是一种很有前途的技术,可以利用中继所提供的空间分集来提高系统性能。增量中继技术被提出,以限制资源的使用,只有坏的信道条件。在本文中,我们处理上行正交频分多址(OFDMA)通信的AF和IAF性能优化,以逐包为基础进行。对于OFDMA蜂窝系统,我们定义了一个可靠地量化中继使用固有的额外多址干扰(MAI)的成本。这种MAI成本表达式高度依赖于所采用的频率重用模式。对于常规频率和分数频率重用模式,在保持MAI成本不变的情况下,根据包错误率(PER)进行优化。对于FFR,在蜂窝中心和蜂窝边缘区域应用不同的频率复用因子。仿真结果表明,IAF中继在降低MAI方面优于直接传输方案,增益超过15 dB。此外,IAF似乎通常比AF更强大。
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