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Noncoherent Multi-Way Relay Based on Fast Frequency-Hopping M-ary Frequency-Shift Keying

机译:基于快速跳频m-ary频移键控的非相干多路中继

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摘要

Information exchange among a group of users is implemented with the aid of fast frequency-hopping $M$-ary frequency-shift keying multi-way relay (FFH/MFSK MWR). The FFH/MFSK MWR scheme uses two time-slots per symbol for achieving the information exchange, regardless of the number of users involved. During the first time-slot, all the users communicate with a relay based on the FFH/MFSK principles. Then, without recovery of the symbols received, the relay forms a time-frequency (TF) matrix, which is forwarded to all the users during the second time-slot. During the second time-slot, each user receives signals from the relay and, based on which, detects the other users' information. In the FFH/MFSK MWR scheme, both the relay and the users use square-law assisted noncoherent techniques for detection. While the relay uses simple threshold detection, three types of detectors, namely the maximum likelihood multiuser detector (ML-MUD), sub-optimum ML-MUD (SML-MUD) and the majority vote based single-user detector (MV-SUD), are considered for detection at the users. Finally, in this paper, the error performance of the FFH/MFSK MWR systems is investigated by simulations, when assuming communications over Rayleigh fading channels.
机译:借助快速跳频$ M $元频移键控多路中继(FFH / MFSK MWR)来实现一组用户之间的信息交换。 FFH / MFSK MWR方案每个符号使用两个时隙来实现信息交换,而与所涉及的用户数量无关。在第一个时隙中,所有用户都基于FFH / MFSK原理与继电器进行通信。然后,在不恢复接收到的符号的情况下,中继器形成时频(TF)矩阵,该矩阵在第二时隙期间转发给所有用户。在第二个时隙期间,每个用户都从中继站接收信号,并根据该信号检测其他用户的信息。在FFH / MFSK MWR方案中,中继站和用户都使用平方律辅助的非相干技术进行检测。中继使用简单的阈值检测时,三种类型的检测器,即最大似然多用户检测器(ML-MUD),次优ML-MUD(SML-MUD)和基于多数表决的单用户检测器(MV-SUD) ,考虑在用户处进行检测。最后,在本文中,当假设通过瑞利衰落信道进行通信时,通过仿真研究了FFH / MFSK MWR系统的错误性能。

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