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Non-Coherent Detection for Two-Way AF Cooperative Communications in Fast Rayleigh Fading Channels

机译:快速瑞利衰落信道中双向AF协作通信的非相干检测

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Two-way cooperative communications are considered to improve the throughput of conventional one-way cooperative communications. For fast Rayleigh fading channels, we propose optimal and suboptimal non-coherent detectors for on-off keying (OOK) and frequency-shift keying (FSK) modulated two-way amplify-and-forward (AF) cooperative communications in this paper. In the proposed system, the relaying node combines the received signals from two nodes, amplifies them and retransmits the conjugate of the combined and amplified signals to the above-mentioned nodes. At the receivers of above-mentioned nodes, the optimal non-coherent detection is employed which is based on maximum likelihood rule. Since it involves integration operation, the optimal detector is simplified to a suboptimal detector which omits the real component of the relayed signal over the frequency which includes interference. The simulation results have shown that compared with the optimal detector, the proposed suboptimal detector reduces the receiver complexity at the expense of acceptable performance degradation. Furthermore, we have analytically studied the bit-error-rate performance upper and lower bounds of proposed non-coherent FSK modulated two-way AF cooperative communications.
机译:考虑了双向合作通信以提高常规单向合作通信的吞吐量。对于快速瑞利衰落信道,我们为开关键控(OOK)和频移键控(FSK)调制的双向放大和转发(AF)协作通信提出了最优和次优的非相干检测器。在所提出的系统中,中继节点合并来自两个节点的接收信号,放大它们,并将合并和放大后的信号的共轭信号重新发送到上述节点。在上述节点的接收器处,采用基于最大似然规则的最优非相干检测。由于它涉及积分操作,因此将最佳检测器简化为次优检测器,该次优检测器在包括干扰的频率上忽略了中继信号的实分量。仿真结果表明,与最优检波器相比,该次优检波器以可接受的性能下降为代价,降低了接收机的复杂度。此外,我们已经分析地研究了提出的非相干FSK调制双向AF合作通信的误码率性能上限和下限。

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