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Three-path successive relaying protocol with blind inter-relay interference cancellation and cooperative non-coherent detection

机译:具有盲中继间干扰消除和协作非相干检测的三路径连续中继协议

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Successive relaying has recently emerged as a spectral-efficient technique for cooperative wireless communications. However, in scenarios with uncertain accuracy of instantaneous channel state information (CSI), the scope of conventional two-path successive relaying protocol shrinks. This is due to the challenges of cancelling inter-relay interference (IRI) and detecting signals efficiently without specific CSI. The two challenges motivate us to propose a novel double listening 3-path successive relaying (DL3PSR) protocol to mitigate the successive relaying's dependence on accurate instantaneous CSI. We overcome the first challenge by proposing a blind IRI cancellation technique, and its effectiveness is proven. After blind IRI cancellation, the challenge of efficient signal detection is overcome by robust cooperative non-coherent detection, which consists of exclusive OR (XOR) demodulation and joint decoding. Based on constellation mapping, XOR demodulation is designed to demodulate M-ary phase-shift keying symbols without instantaneous CSI. Moreover, joint forward and backward decoding strategy is proposed to improve the robustness of data detection by retrieving two independent versions of the original data. Furthermore, the detection threshold, bit error probability, and achievable rate of DL3PSR are theoretically obtained. Simulations verify that in scenarios without full knowledge of CSI, DL3PSR protocol outperforms conventional two-path successive relaying in bit error performance and that the rate of DL3PSR is close to that of the full-duplex relaying. Copyright (C) 2016 John Wiley & Sons, Ltd.
机译:连续中继近来已成为一种用于协作无线通信的频谱有效技术。但是,在瞬时信道状态信息(CSI)精度不确定的情况下,传统的两路径连续中继协议的范围会缩小。这是由于在没有特定CSI的情况下消除中继间干扰(IRI)和有效检测信号的挑战。这两个挑战促使我们提出一种新颖的双重侦听3路径连续中继(DL3PSR)协议,以减轻连续中继对准确瞬时CSI的依赖性。通过提出一种盲目IRI消除技术,我们克服了第一个挑战,并证明了其有效性。在盲目IRI消除之后,有效的信号检测面临的挑战通过鲁棒的协作非相干检测克服,该检测包括异或(XOR)解调和联合解码。基于星座映射,XOR解调被设计为无需瞬时CSI即可解调M元相移键控符号。此外,提出了联合前向和后向解码策略,以通过检索原始数据的两个独立版本来提高数据检测的鲁棒性。此外,理论上获得了DL3PSR的检测阈值,误码率和可达到的速率。仿真证明,在完全不了解CSI的情况下,DL3PSR协议的误码性能优于传统的两路径连续中继,并且DL3PSR的速率接近全双工中继的速率。版权所有(C)2016 John Wiley&Sons,Ltd.

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