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Two-tier channel estimation aided near-capacity MIMO transceivers relying on norm-based joint transmit and receive antenna selection

机译:双层信道估计辅助近容量mImO收发器依赖于基于规范的联合发射和接收天线选择

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摘要

We propose a norm-based joint transmit and receive antenna selection (NBJTRAS) aided near-capacity multiple-input multiple-output (MIMO) system relying on the assistance of a novel two-tier channel estimation scheme. Specifically, a rough estimate of the full MIMO channel is first generated using a low-complexity, low-training-overhead minimum mean square error based channel estimator, which relies on reusing a modest number of radio frequency (RF) chains. NBJTRAS is then carried out based on this initial full MIMO channel estimate. The NBJTRAS aided MIMO system is capable of significantly outperforming conventional MIMO systems equipped with the same modest number of RF chains, while dispensing with the idealised simplifying assumption of having perfectly known channel state information (CSI). Moreover, the initial subset channel estimate associated with the selected subset MIMO channel matrix is then used for activating a powerful semi-blind joint channel estimation and turbo detector-decoder, in which the channel estimate is refined by a novel block-of-bits selection based soft-decision aided channel estimator (BBSB-SDACE) embedded in the iterative detection and decoding process. The joint channel estimation and turbo detection-decoding scheme operating with the aid of the proposed BBSB-SDACE channel estimator is capable of approaching the performance of the near-capacity maximumlikelihood (ML) turbo transceiver associated with perfect CSI. This is achieved without increasing the complexity of the ML turbo detection and decoding process.
机译:我们提出了一种基于标准的联合发射和接收天线选择(NBJTRAS)辅助的近容量多输入多输出(MIMO)系统,该系统依赖于新颖的两层信道估计方案。具体地,首先使用低复杂度,低训练开销最小均方误差的信道估计器来生成整个MIMO信道的粗略估计,这依赖于重用适量的射频(RF)链。然后,基于此初始完整MIMO信道估计执行NBJTRAS。 NBJTRAS辅助的MIMO系统能够显着优于配备了相同数量RF链的常规MIMO系统,同时省去了具有完全已知的信道状态信息(CSI)的理想化简化假设。此外,与所选子集MIMO信道矩阵关联的初始子集信道估计然后用于激活功能强大的半盲联合信道估计和turbo检测器-解码器,其中通过新的比特块选择来完善信道估计迭代检测和解码过程中嵌入的基于软判决的辅助信道估计器(BBSB-SDACE)。借助提出的BBSB-SDACE信道估计器进行联合信道估计和Turbo检测-解码方案,能够接近与完美CSI相关的近容量最大似然(ML)Turbo收发器的性能。这是在不增加ML Turbo检测和解码过程的复杂性的情况下实现的。

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