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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:具有无导频正交信令和物理层网络编码的双向中继通信的随机信道探测决策反馈接收器

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We propose a decision feedback (DFB) receiver at the relay of a two-phase (2P) two-way relay (TWR) communication system that employs pilotless orthogonal modulation (such as frequency-shift keying) in the uplink and physical-layer network coding over finite field in the downlink. The proposed relay receiver is able to attain a performance very close to that of an ideal coherent detector in the presence of time-selective Rayleigh fading and additive white Gaussian noise in the uplinks. It exploits the fact that when the uplink symbols from the users are different, then the fading gains affecting these symbols can be separated and individually tracked at the relay. In essence, the proposed receiver performs random channel sounding although no actual pilots are transmitted. The channel estimates obtained this way can then be subsequently used in a coherent detector to improve the reliability of the relay detected data. To ensure fast convergence, we propose to kick start the DFB receiver using a partial-coherent detector developed earlier by the authors. We compare the performance of the proposed system against a similar 2P-TWR system that employs differential phase-shift keying (DPSK) in the uplink and DFB multiple-symbol differential detection at the relay. We found that the proposed pilotless orthogonal modulation system can actually attain a significantly lower bit error rate (BER) than its DPSK counterpart. For static fading and a BER of , the signal-to-noise ratio (SNR) 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.
机译:我们在两相(2P)两路中继(TWR)通信系统的中继处提出一种决策反馈(DFB)接收器,该系统在上行链路和物理层网络中采用无导频正交调制(例如频移键控)在下行链路中的有限域上进行编码。在上行链路中存在时间选择瑞利衰落和加性高斯白噪声的情况下,所提出的中继接收机能够获得非常接近理想相干检测器的性能。它利用了以下事实:当来自用户的上行链路符号不同时,可以将这些影响这些符号的衰落增益分开,并在中继器处分别进行跟踪。实质上,尽管没有发送实际的导频,但是所提出的接收机执行随机信道探测。然后,可以将以此方式获得的信道估计随后用于相干检测器中,以提高中继检测数据的可靠性。为了确保快速收敛,我们建议使用作者先前开发的部分相干检测器启动DFB接收器。我们将提出的系统的性能与类似的2P-TWR系统进行了比较,该系统在上行链路中采用了差分相移键控(DPSK),在继电器处采用了DFB多符号差分检测。我们发现,提出的无导频正交调制系统实际上可以获得比其DPSK同类更低的误码率(BER)。对于静态衰落和BER为,两种方法之间的信噪比(SNR)间隙在二进制情况下为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。

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