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Interference Robust Transmission for the Downlink of an OFDM-Based Mobile Communications System

机译:基于OFDM的移动通信系统下行链路的干扰鲁棒传输

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Radio networks for future mobile communications systems, for example, 3GPP Long-Term Evolution (LTE), are likely to use an orthogonal frequency division multiplexing- (OFDM-) based air interface in the downlink with a frequency reuse factor of one to avoid frequency planning. Therefore, system capacity is limited by interference, which is particularly crucial for mobile terminals with a single receive antenna. Nevertheless, next generation mobile communications systems aim at increasing downlink throughput. In this paper, a single antenna interference cancellation (SAIC) algorithm is introduced for amplitude-shift keying (ASK) modulation schemes in combination with bit-interleaved coded OFDM. By using such a transmission strategy, high gains in comparison to a conventional OFDM transmission with quadrature amplitude modulation (QAM) can be achieved. The superior performance of the novel scheme is confirmed by an analytical bit-error probability (BEP) analysis of the SAIC receiver for a single interferer, Rayleigh fading, and uncoded transmission. For the practically more relevant multiple interferer case we present an adaptive least-mean-square (LMS) and an adaptive recursive least-squares (RLS) SAIC algorithm. We show that in particular the RLS approach enables a good tradeoff between performance and complexity and is robust even to multiple interferers.
机译:未来的移动通信系统(例如3GPP长期演进(LTE))的无线电网络可能会在下行链路中使用基于正交频分复用(OFDM)的空中接口,其频率复用因子为1,以避免频率规划。因此,系统容量受到干扰的限制,这对于具有单个接收天线的移动终端而言尤其重要。然而,下一代移动通信系统旨在提高下行链路吞吐量。本文介绍了一种单天线干扰消除(SAIC)算法,该技术结合了比特交织编码OFDM,用于幅度移键控(ASK)调制方案。通过使用这种传输策略,与具有正交幅度调制(QAM)的常规OFDM传输相比,可以实现高增益。通过针对单个干扰源,瑞利衰落和未编码传输的SAIC接收器的分析误码概率(BEP)分析,证实了该新方案的优越性能。对于实际上更相关的多干扰源情况,我们提出了自适应最小均方(LMS)和自适应递归最小二乘(RLS)SAIC算法。我们证明,特别是RLS方法在性能和复杂性之间实现了良好的折衷,甚至对多个干扰源都具有鲁棒性。

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