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首页> 外文期刊>IEEE Transactions on Communications >Quantized Massive MIMO Systems With Multicell Coordinated Beamforming and Power Control
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Quantized Massive MIMO Systems With Multicell Coordinated Beamforming and Power Control

机译:用多晶体协调波束形成和功率控制量化的大型MIMO系统

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摘要

In this paper, we investigate a coordinated multipoint (CoMP) beamforming and power control problem for base stations (BSs) with a massive number of antenna arrays under coarse quantization at low-resolution analog-to-digital converters (ADCs) and digital-to-analog converter (DACs). Unlike high-resolution ADC and DAC systems, non-negligible quantization noise that needs to be considered in CoMP design makes the problem more challenging. We first formulate total power minimization problems of both uplink (UL) and downlink (DL) systems subject to signal-to-interference-and-noise ratio (SINR) constraints. We then derive strong duality for the UL and DL problems under coarse quantization systems. Leveraging the duality, we propose a framework that is directed toward a twofold aim: to discover the optimal transmit powers in UL by developing iterative algorithm in a distributed manner and to obtain the optimal precoder in DL as a scaled instance of UL combiner. Under homogeneous transmit power and SINR constraints per cell, we further derive a deterministic solution for the UL CoMP problem by analyzing the lower bound of the SINR. Lastly, we extend the derived result to wideband orthogonal frequency-division multiplexing systems to optimize transmit power and beamformer for all subcarriers. Simulation results validate the theoretical results and proposed algorithms.
机译:在本文中,我们研究了基站(BSS)的协调多点(COMP)波束成形和功率控制问题,在低分辨率模数转换器(ADC)和数字到数字到数字到数字到数字到下的粗量值下的天线阵列-Analog转换器(DACS)。与高分辨率ADC和DAC系统不同,在COMP设计中需要考虑的不可忽略量化噪声使得问题更具挑战性。我们首先制定经过信号到干扰和噪声比(SINR)约束的上行链路(UL)和下行链路(DL)系统的总功率最小化问题。然后我们在粗量化系统下导出UL和DL问题的强烈二元性。利用二元性,我们提出了一个针对双重瞄准的框架:通过以分布式方式开发迭代算法并以DL中的最佳预编码器作为UL组合器的缩放实例来发现UL中的最佳发射功率。在同质发射功率和每个单元的SINR约束下,我们通过分析SINR的下限来进一步推导出UL COMP问题的确定性解决方案。最后,我们将导出的结果扩展到宽带正交频分复用系统,以优化所有子载波的发射功率和波束形成器。仿真结果验证了理论结果和提出的算法。

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