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首页> 外文期刊>IEEE Transactions on Communications >Low-Complexity SC-FDE Techniques for Massive MIMO Schemes With Low-Resolution ADCs
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Low-Complexity SC-FDE Techniques for Massive MIMO Schemes With Low-Resolution ADCs

机译:低分辨率ADC的大型MIMO方案的低复杂性SC-FDE技术

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Massive multiple-input multiple-output (mMIMO) systems are very important for 5G since they are one of the main enablers of the targeted huge capacity gains. On the other hand, the power consumption at the mobile terminals should be as low as possible, making single-carrier waveforms, such as single carrier with frequency-domain equalization (SC-FDE), particularly interesting, since the transmit signals can have a low peak-to-average power ratio (PAPR), allowing a highly efficient power amplification. However, the combination of mMIMO systems with SC-FDE modulations gives rise to implementation difficulties at the receiver side. On one hand, the equalization procedure should avoid matrix inversions, but this might lead to performance degradation. On the other hand, low-resolution analog-to-digital converters (ADCs) should be employed in each receive branch to reduce the implementation complexity, which might lead to severe nonlinear distortion effects. In this work, we study analytically the performance of mMIMO systems based on SC-FDE schemes employing low-complexity, iterative FDE receivers, and low-resolution ADCs. It is shown that the performance degradation associated to low-resolution ADCs can be tolerable if the number of receive antennas is larger than the number of transmit antennas, even when low-complexity FDE receivers are employed.
机译:大量多输入多输出(MMIMO)系统对于5G非常重要,因为它们是目标巨大容量增长的主要推动力器之一。另一方面,移动终端处的功耗应尽可能低,使单载波波形,例如具有频域均衡(SC-FDE)的单载波,特别是有趣的,因为发射信号可以具有a低峰值平均功率比(PAPR),允许高效的功率放大。然而,具有SC-FDE调制的MMIMO系统的组合导致接收器侧的实现困难。一方面,均衡过程应避免矩阵逆势,但这可能会导致性能下降。另一方面,应在每个接收分支中使用低分辨率的模数转换器(ADC)以降低实现复杂性,这可能导致严重的非线性失真效果。在这项工作中,我们基于采用低复杂性,迭代FDE接收器和低分辨率ADC的SC-FDE方案进行了分析地研究了MMIMO系统的性能。结果表明,如果接收天线的数量大于发射天线的数量,即使采用低复杂性FDE接收器,也可以容忍与低分辨率ADC相关联的性能下降。

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