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Bit Allocation Law for Multiantenna Channel Feedback Quantization: Single-User Case

机译:多天线信道反馈量化的比特分配法:单用户案例

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This paper studies the design and optimization of a limited feedback single-user system with multiple-antenna transmitter and single-antenna receiver. The design problem is cast in form of the minimizing the average transmission power at the base station subject to the user's outage probability constraint. The optimization is over the user's channel quantization codebook and the transmission power control function at the base station. Our approach is based on fixing the outage scenarios in advance and transforming the design problem into a robust system design problem. We start by showing that uniformly quantizing the channel magnitude in dB scale is asymptotically optimal, regardless of the magnitude distribution function. We derive the optimal uniform (in dB) channel magnitude codebook and combine it with a spatially uniform channel direction codebook to arrive at a product channel quantization codebook. We then optimize such a product structure in the asymptotic regime of $B ura{} infty$, where $B$ is the total number of quantization feedback bits. The paper shows that for channels in the real space, the asymptotically optimal number of direction quantization bits should be ${(M-1)}/{2}$ times the number of magnitude quantization bits, where $M$ is the number of base station antennas. We also show that the performance of the designed system approaches the performance of the perfect channel state information system as $2^{- {{2B}/{(M+1)}}}$. For complex channels, the number of magnitude and direction quantization bits are related by a factor of $(M-1)$ and the system p-n-nerformance scales as $2^{- {{B}/{M}}}$ as $B ura{} infty$.
机译:本文研究了具有多天线发射器和单天线接收器的有限反馈单用户系统的设计和优化。该设计问题是以受用户中断概率约束的情况下使基站的平均传输功率最小化的形式提出的。优化是通过用户的信道量化码本和基站的发射功率控制功能实现的。我们的方法是基于预先修复中断情况并将设计问题转换为可靠的系统设计问题。我们从开始显示,以dB为单位对信道幅度进行统一量化是渐近最优的,而与幅度分布函​​数无关。我们得出最优的统一(以dB为单位)的信道幅度码本,并将其与空间上统一的信道方向码本结合起来,得出乘积信道量化码本。然后,我们在$ B ura {} infty $的渐近状态下优化这种乘积结构,其中$ B $是量化反馈位的总数。该论文表明,对于真实空间中的信道,方向量化位的渐近最佳数量应为$ {(M-1)} / {2} $乘以幅度量化位的数量,其中$ M $为基站天线。我们还表明,所设计系统的性能接近完美信道状态信息系统的性能,为$ 2 ^ {-{{2B} / {(M + 1)}}} $。对于复杂的信道,幅度和方向量化位数与因子$(M-1)$相关,系统pn性能缩放为$ 2 ^ {-{{B} / {M}}} $ Bura {} infty $。

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