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Variational Bayesian framework for receiver design in the presence of phase noise in MIMO systems

机译:MIMO系统中存在相位噪声时用于接收机设计的变分贝叶斯框架

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In this work, the problem of receiver design for phase noise estimation and data detection in the presence of oscillator phase noise in a point-to-point multiple-input multiple-output (MIMO) system is addressed. First, we discuss some interesting and challenging aspects in receiver design for MIMO systems in the presence of Wiener phase noise. Then, using the variational Bayesian (VB) framework, a joint iterative phase noise estimator and symbol detector are developed based on inverse Gibbs or variational free energy maximization. Further, the symbol error probability (SEP) of the newly proposed iterative scheme is compared with the optimal maximum likelihood (ML) detector with perfect phase information for 16-phase shift keying (PSK) and 16-quadrature amplitude modulation (QAM) schemes.
机译:在这项工作中,解决了在点对点多输入多输出(MIMO)系统中存在振荡器相位噪声的情况下用于相位噪声估计和数据检测的接收机设计问题。首先,我们讨论了在存在维纳相位噪声的情况下MIMO系统接收机设计中一些有趣且具有挑战性的方面。然后,使用变分贝叶斯(VB)框架,基于逆Gibbs或变分自由能最大化,开发了联合迭代相位噪声估计器和符号检测器。此外,针对16相移键控(PSK)和16正交幅度调制(QAM)方案,将新提出的迭代方案的符号错误概率(SEP)与具有完美相位信息的最佳最大似然(ML)检测器进行比较。

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