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Adaptive BIT allocation scheme for comp system with delayed limited feedback

机译:具有延迟反馈的补偿系统的自适应BIT分配方案

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Per-cell codebook based limited feedback technique in coordinated multi-point transmission (CoMP) system has received more and more attention due to its flexibility and scalability. In a practical system, as the capacity of backhaul links and the bandwidth of the feedback channels are finite, there exists channel state information (CSI) delay. In this paper, we study the bit allocation problem considering CSI delay in multi-cell joint transmission system based on Gauss-Markov temporal correlation channel model. We first analyze the global channel direction information (CDI) quantization accuracy of the users and give the approximate closed-form expression of the normalized global CDI quantization gain, we then propose an adaptive bit allocation scheme to allocate bits between quantizing the per-cell CDIs and the per-cell PAs (phase ambiguity) under the total number of feedback bits constraint, aiming at maximizing the normalized average global CDI quantization gain. Simulation results show that the proposed bit allocation scheme significantly improves the average sum-rate of the CoMP system compared with the conventional equal bit allocation scheme.
机译:协作多点传输(CoMP)系统中基于每单元码本的有限反馈技术由于其灵活性和可扩展性而受到越来越多的关注。在实际的系统中,由于回程链路的容量和反馈信道的带宽是有限的,因此存在信道状态信息(CSI)延迟。本文研究了基于高斯-马尔可夫时间相关信道模型的多小区联合传输系统中考虑CSI延迟的比特分配问题。我们首先分析用户的全局信道方向信息(CDI)量化精度,并给出归一化的全局CDI量化增益的近似封闭形式,然后我们提出一种自适应比特分配方案,以在量化每个小区CDI之间分配比特以及在反馈位数总数约束下的每单元PA(相位模糊度),旨在最大化归一化平均全局CDI量化增益。仿真结果表明,与传统的等比特分配方案相比,所提出的比特分配方案显着提高了CoMP系统的平均求和率。

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