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Full-Duplex Relaying in MIMO-OFDM Frequency-Selective Channels with Optimal Adaptive Filtering

机译:具有最佳自适应滤波的MIMO-OFDM频率选择通道中的全双工中继

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In-band full-duplex transmission allows a relay station to theoretically double its spectral efficiency by simultaneously receiving and transmitting in the same frequency band, when compared to the traditional half-duplex or out-of-band full-duplex counterpart. Consequently, the induced self-interference suffered by the relay may reach considerable power levels, which decreases the signal-to-interference-plus-noise ratio (SINR) in a decode-and-forward (DF) relay, leading to a degradation of the relay performance. This paper presents a technique to cope with the problem of self-interference in broadband multiple-input multiple-output (MIMO) relays. The proposed method uses a time-domain cancellation in a DF relay, where a replica of the interfering signal is created with the help of a recursive least squares (RLS) algorithm that estimates the interference frequency-selective channel. Its convergence mean time is shown to be negligible by simulation results, when compared to the length of a typical orthogonal-frequency division multiplexing (OFDM) sequences. Moreover, the bit-error-rate (BER) and the SINR in a OFDM transmission are evaluated, confirming that the proposed method extends significantly the range of self-interference power to which the relay is resilient to, when compared with other mitigation schemes.
机译:与传统的半双工或带外全双工对应相比,带内的全双工传输允许中继站在同一频带中同时接收和发送,通过在相同的频带中同时接收和发送。因此,由继电器遭受的诱导的自干扰可以达到相当大的功率水平,这降低了解码和前进(DF)继电器中的信令到干扰噪声比(SINR),导致劣化继电器性能。本文介绍了应对宽带多输入多输出(MIMO)继电器的自干扰问题的技术。所提出的方法使用DF继电器中的时域消除,其中利用递归最小二乘(RLS)算法来创建干扰信号的复制品,其估计干扰频率选择信道。与典型正交 - 频分复用(OFDM)序列的长度相比,其收敛性通过模拟结果显示可忽略不计。此外,评估OFDM传输中的误码率(BER)和SINR,确认该方法与其他缓解方案相比,所提出的方法显着延伸到中继器的弹性功率的范围。

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