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A Random Channel Sounding Decision Feedback Receiver for Two-Way Relay Communication With Pilotless Orthogonal Signaling and Physical-Layer Network Coding

机译:一种随机通道探测判定反馈接收器,用于双向继电器通信与导航性正交信令和物理层网络编码

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摘要

Cooperative communication system is an active field of research as it promises extended coverage in weak reception areas. Furthermore, with physical-layer network coding (PNC) in a two-way relaying (TWR) setting, the transmission rate of the system can be restored to unity,like in point-to-point transmission. This dissertation addresses the issue of signal detection in a two-phase TWR system that employs pilot-less orthogonal modulation and PNC operating in a time-selective Rayleigh fading environment. We first introduce a partial-coherent receiver for detecting (at the relay) the sum symbol of the uplink pilot-less orthogonal modulations. Through exploitation of the orthogonal property of the modulation, this receiver is 3 dB more power efficient over the standard non-coherent detector in the absence of pilot symbols. To further increase the receiver performance, we propose a decision feedback (DFB) receiver built upon the partial-coherent detector. The proposed DFB receiver provides another 6 dB improvement in power efficiency over the already impressive partial-coherent detector and attains a performance close to that of the coherent detector. It exploits the fact that when the uplink symbols from the users are different, the fading gains affecting these symbols can be separated and individually tracked at the relay. In essence, the proposed DFB receiver performs random channel sounding even though no actual pilots are transmitted. The channel estimates obtained this way can be used subsequently in a coherent detector to improve the reliability of the relay’s detected data. To further demonstrate the usefulness of the proposed DFB receiver, we compare it against a similar 2P-TWR system that employs differential PSK in the uplink and decision-feedback multiple-symbol differential detection at the relay. We found that the proposed orthogonal modulation system can attain a significantly lower bit-error-rate (BER) than its DPSK counterpart. For static fading and a BER of 0.001 , the signal-to-noise ratio gap between the two approaches is 1 dB in the binary case, and 8 dB in the quaternary case. These gaps increase further with time-selective fading. Based on the result obtained from the proposed DFB receiver, the decision feedback methodology has strong potential for applications in other similar systems, and it worth being studied further.
机译:合作通信系统是一个活跃的研究领域,因为它有望在弱接收区域扩大覆盖范围。此外,利用双向中继(TWR)设置中的物理层网络编码(PNC),可以像点对点传输一样将系统的传输速率恢复为统一。本论文解决了两相TWR系统中信号检测的问题,该系统采用无导频正交调制和PNC工作在时间选择瑞利衰落环境中。我们首先介绍一个部分相干接收机,用于检测(在中继站)上行链路无导频正交调制的和符号。通过利用调制的正交特性,在没有导频符号的情况下,该接收器的功率效率比标准非相干检测器高3 dB。为了进一步提高接收器性能,我们提出了基于部分相干检测器的判决反馈(DFB)接收器。与已经令人印象深刻的部分相干检波器相比,提出的DFB接收机在功率效率方面又提高了6 dB,并获得了与相干检波器相近的性能。它利用了以下事实:当来自用户的上行链路符号不同时,影响这些符号的衰落增益可以分离,并且可以在中继器处单独跟踪。本质上,即使没有实际的导频被发送,所提出的DFB接收机也执行随机信道探测。以此方式获得的信道估计值可随后用于相干检测器中,以提高中继器检测到的数据的可靠性。为了进一步证明所提出的DFB接收器的有用性,我们将其与类似的2P-TWR系统进行了比较,该系统在上行链路中采用差分PSK,并在中继处采用决策反馈多符号差分检测。我们发现,所提出的正交调制系统可以比其DPSK对应系统显着降低误码率(BER)。对于静态衰落和BER为0.001的情况,两种方法之间的信噪比差距在二进制情况下为1 dB,在四进制情况下为8 dB。这些间隙随着时间选择衰落而进一步增加。基于从建议的DFB接收器获得的结果,决策反馈方法在其他类似系统中具有强大的潜力,值得进一步研究。

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    Xiaobin Li; Paul Ho;

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  • 年度 2016
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