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Iterative Quantum-Assisted Multi-User Detection for Multi-Carrier Interleave Division Multiple Access Systems

机译:多载波交错划分多址系统的迭代量子辅助多用户检测

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With the proliferation of smart-phones and tablet PCs, the data rates of wireless communications have been soaring. Hence, the need for power-efficient communications relying on low-complexity multiple-stream detectors has become more pressing than ever. As a remedy, in this paper we design low-complexity soft-input soft-output quantum-assisted multi-user detectors (QMUD), which may be conveniently incorporated into state-of-the-art iterative receivers. Our design relies on extrinsic information transfer charts. Our QMUDs are then employed in multi-carrier interleave-division multiple-access (MC-IDMA) systems, which are investigated in the context of different channel code rate and spreading factor pairs, whilst fixing the total bandwidth requirement. One of our QMUDs is found to operate within 0.5 dB of the classical maximum probability MUD after three iterations between the MUD and the decoders, while requiring only half its complexity, at a BER of in the uplink of a rank-deficient MC-IDMA system relying on realistic imperfect channel estimation at the receiver, while supporting 14 users transmitting QPSK symbols.
机译:随着智能手机和平板电脑的普及,无线通信的数据速率一直在飞速增长。因此,对依靠低复杂度多流检测器的节能通信的需求比以往任何时候都更加迫切。作为一种补救措施,在本文中,我们设计了低复杂度的软输入软输出量子辅助多用户检测器(QMUD),可以将其方便地集成到最新的迭代接收器中。我们的设计依赖于外部信息传输图。然后,我们的QMUD被用于多载波交错划分多路访问(MC-IDMA)系统中,该系统在不同的信道码率和扩展因子对的背景下进行了研究,同时确定了总带宽需求。发现我们的QMUD之一在秩不足的MC-IDMA系统上行链路的BER为时,在MUD和解码器之间进行了三轮迭代后,在经典最大概率MUD的0.5 dB内运行,而只需要其一半的复杂度在支持14个发送QPSK符号的用户的同时,还依赖于接收机实际不完美的信道估计。

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