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Signal Detection in Antenna-Hopping Space-Division Multiple-Access Systems With Space-Shift Keying Modulation

机译:带空移键控调制的跳频空分多址系统的信号检测

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To take the advantages of the $M$-ary space-shift keying (MSSK) modulation invented recently, a MSSK fast antenna-hopping space-division multiple-access (MSSK FAH-SDMA) scheme is proposed and studied in this paper. In addition to supporting multiple-access, the FAH is introduced also to achieve transmit diversity by sending every MSSK symbol over several time-slots under the control of a FAH pattern (address). Associated with the MSSK FAH-SDMA, a range of linear and nonlinear detection schemes are studied. Specifically, the linear detection schemes considered include the matched-filtering single-user detector (MF-SUD), zero-forcing multiuser detector (ZF-MUD) and minimum mean-square error (MMSE)-MUD, while the nonlinear detection schemes addressed include the maximum likelihood (ML)-MUD and the receiver multiuser diversity aided multi-stage MMSE (RMD/MS-MMSE) MUD. The single-user pairwise error probability (SU-PEP) and bit error rate (BER) union-bound of the single-user MSSK FAH-SDMA systems employing ML detection are analyzed in detail. Based on the SU-PEP, the minimum transmit diversity order of the MSSK FAH-SDMA systems is specified. For the MSSK FAH-SDMA systems with linear detection, we study two types of MSSK demodulation schemes, which are referred to as the intrauser detections (IUDs), named as the maximum likelihood (ML)-IUD and direct (D)-IUD. For the MSSK FAH-SDMA systems employing the RMD/MS-MMSE MUD, two types of reliability measurement (RM) schemes are proposed, which are the maximum a-posteriori (MAP)-RM and ratio test (RT)-RM. Finally, the BER performance of the MSSK FAH-SDMA systems with various combinations of the proposed techniques is studied, when assuming that the channels from any transmit antennas to any receive antennas experience independent and identically distributed (i.i.d.) Rayleigh fading.
机译:为了利用最近发明的$ M $进制空移键控(MSSK)调制的优点,提出并研究了MSSK快速天线跳跃空分多址(MSSK FAH-SDMA)方案。除了支持多路访问之外,还引入了FAH,以通过在FAH模式(地址)的控制下在几个时隙上发送每个MSSK符号来实现发射分集。结合MSSK FAH-SDMA,研究了一系列线性和非线性检测方案。具体而言,考虑的线性检测方案包括匹配滤波单用户检测器(MF-SUD),迫零多用户检测器(ZF-MUD)和最小均方误差(MMSE)-MUD,而非线性检测方案针对包括最大似然(ML)-MUD和接收机多用户分集辅助多级MMSE(RMD / MS-MMSE)MUD。详细分析了采用ML检测的单用户MSSK FAH-SDMA系统的单用户成对错误概率(SU-PEP)和误码率(BER)并界。基于SU-PEP,指定了MSSK FAH-SDMA系统的最小发射分集顺序。对于具有线性检测的MSSK FAH-SDMA系统,我们研究了两种类型的MSSK解调方案,称为用户内检测(IUD),分别称为最大似然(ML)-IUD和直接(D)-IUD。对于采用RMD / MS-MMSE MUD的MSSK FAH-SDMA系统,提出了两种类型的可靠性测量(RM)方案,即最大后验(MAP)-RM和比率测试(RT)-RM。最后,当假设从任何发射天线到任何接收天线的信道经历独立且均匀分布的(即i.d.)瑞利衰落时,研究了采用所提出技术的各种组合的MSSK FAH-SDMA系统的BER性能。

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