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Quadrature Amplitude Modulation Division for Multiuser MISO Broadcast Channels

机译:多用户MISO广播频道的正交幅度调制部门

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This paper considers a discrete-time multiuser multiple-input single-output (MISO) Gaussian broadcast channel (BC), in which channel state information is available at both the transmitter and the receivers. The flexible and explicit design of a uniquely decomposable constellation group is provided based on pulse amplitude modulation and rectangular quadrature amplitude modulation constellations. With this, a modulation division (MD) transmission scheme is developed for the MISO BC. The proposed MD scheme enables each receiver to uniquely and efficiently detect their desired signals from the superposition of mutually interfering cochannel signals in the absence of noise. In our design, the optimal transmitter beamforming problem is solved in a closed-form for two-user MISO BC using max-min fairness as a design criterion. Then, for a general case with more than two receivers, we develop a user-grouping-based beamforming scheme, where the grouping method, beamforming vector design and power allocation problems are addressed by using weighted max-min fairness. It is shown that our proposed approach has a lower probability of error compared with the zero-forcing (ZF) method when the Hermitian angle between the two channel vectors is small in a two-user case. In addition, simulation results also reveal that for the general channel model with more than two users, our user-grouping-based scheme significantly outperforms the ZF, time division, minimum mean-square error, and signal-to-leakage-and-noise ratio-based techniques in moderate and high SNR regimes when the number of users approaches to the number of base station (BS) antennas and it degrades into the ZF scheme when the number of users is far less than the number of BS antennas in Rayleigh fading channels.
机译:本文考虑了离散时间多用户多输入单输出(MISO)高斯广播信道(BC),其中在发送器和接收器上都可获得信道状态信息。基于脉冲幅度调制和矩形正交幅度调制星座图,可以提供独特可分解星座图组的灵活而明确的设计。这样,为MISO BC开发了一种调制分割(MD)传输方案。所提出的MD方案使每个接收机能够在没有噪声的情况下,通过相互干扰的同信道信号的叠加来唯一有效地检测其所需信号。在我们的设计中,使用最大-最小公平性作为设计准则,针对封闭式的两用户MISO BC解决了最佳发射机波束成形问题。然后,对于具有两个以上接收器的一般情况,我们开发了一种基于用户分组的波束成形方案,其中通过使用加权最大-最小公平性解决了分组方法,波束成形矢量设计和功率分配问题。结果表明,在两个用户的情况下,当两个通道矢量之间的埃尔米特角较小时,与零强制(ZF)方法相比,我们提出的方法具有较低的错误概率。此外,仿真结果还显示,对于具有两个以上用户的常规信道模型,我们基于用户分组的方案明显优于ZF,时分,最小均方误差和信噪比当用户数量接近基站(BS)天线数量时,在中等和高SNR方案中基于比率的技术,当用户数量远小于瑞利衰落中的BS天线数量时,它会降级为ZF方案渠道。

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