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A High-Diversity Transceiver Design for MISO Broadcast Channels

机译:用于MISO广播频道的高多样性收发器设计

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In this paper, the outage behavior and diversity order of the mixture transceiver architecture for multiple-input single-output broadcast channels are analyzed. The mixture scheme groups users with closely-aligned channels and applies superposition coding and successive interference cancellation decoding to each group composed of users with closely-aligned channels, while applying zero-forcing beamforming across semi-orthogonal user groups. In order to enable such analysis, closed-form lower bounds on the achievable rates of a general multiple-input single-output broadcast channel with superposition coding and successive interference cancellation are newly derived. By employing channel-adaptive user grouping and proper power allocation, which ensures that the channel subspaces of user groups have an angle larger than a certain threshold, it is shown that the mixture transceiver architecture achieves full diversity order in multiple-input single-output broadcast channels and opportunistically increases the multiplexing gain while achieving full diversity order. Furthermore, the achieved full diversity order is the same as that of the single-user maximal ratio transmit beamforming. Hence, the mixture scheme can provide reliable communication under channel fading for ultra-reliable low latency communication. The numerical results validate our analysis and show the outage superiority of the mixture scheme over conventional transceiver designs for multiple-input single-output broadcast channels.
机译:本文分析了多输入单输出广播信道混合收发器架构的中断行为和分集顺序。混合方案将具有紧密对准的信道的用户分组,并对由具有紧密对准的信道的用户组成的每个组应用叠加编码和连续干扰消除解码,同时在半正交用户组上施加零强制波束成形。为了进行这样的分析,新推导了具有叠加编码和连续干扰消除的通用多输入单输出广播信道的可实现速率的封闭形式下界。通过采用信道自适应的用户分组和适当的功率分配,确保用户组的信道子空间具有大于某个阈值的角度,这表明混合收发器架构在多输入单输出广播中实现了全分集阶数。通道并机会性地增加了多路复用增益,同时实现了全分集阶数。此外,所获得的全分集阶数与单用户最大比率发射波束成形的阶数相同。因此,混合方案可以在信道衰落下提供可靠的通信,以实现超可靠的低延迟通信。数值结果验证了我们的分析结果,并显示了混合方案在多输入单输出广播信道方面优于常规收发器设计的优越性。

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