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Joint compensation of I/Q impairments and PA nonlinearity in mobile broadband wireless transmitters

机译:移动宽带无线发射机中I / Q损伤和PA非线性的联合补偿

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摘要

The main focus of this thesis is to develop and investigate a new possible solution for compensation of in-phase/quadrature-phase (I/Q) impairments and power amplifier (PA) nonlinearity in wireless transmitters using accurate, low complexity digital predistortion (DPD) technique. After analysing the distortion created by I/Q modulators and PAs together with nonlinear crosstalk effects in multi-branch multiple input multiple output (MIMO) wireless transmitters, a novel two-box model is proposed for eliminating those effects. The model is realised by implementing two phases which provide an optimisation of the identification of any system. Another improvement is the capability of higher performance of the system without increasing the computational complexity. Compared with conventional and recently proposed models, the approach developed in this thesis shows promising results in the linearisation of wireless transmitters. Furthermore, the two-box model is extended for concurrent dual-band wireless transmitters and it takes into account cross-modulation (CM) products. Besides, it uses independent processing blocks for both frequency bands and reduces the sampling rate requirements of converters (digital-to-analogue and analogue-to-digital). By using two phases for the implementation, the model enables a scaling down of the nonlinear order and the memory depth of the applied mathematical functions. This leads to a reduced computational complexity in comparison with recently developed models. The thesis provides experimental verification of the two-box model for multi-branch MIMO and concurrent dual-band wireless transmitters. Accordingly, the results ensure both the compensation of distortion and the performance evaluation of modern broadband wireless transmitters in terms of accuracy and complexity.
机译:本论文的主要重点是开发和研究一种新的可能的解决方案,该解决方案使用精确的低复杂度数字预失真(DPD)补偿无线发射机中的同相/正交相位(I / Q)损伤和功率放大器(PA)非线性)技术。在分析了多分支多输入多输出(MIMO)无线发射机中I / Q调制器和PA产生的失真以及非线性串扰效应之后,提出了一种新颖的两盒模型来消除这些效应。该模型是通过实现两个阶段来实现的,这两个阶段可优化任何系统的标识。另一个改进是在不增加计算复杂度的情况下实现更高系统性能的能力。与传统模型和最近提出的模型相比,本文开发的方法在无线发射机的线性化方面显示出令人鼓舞的结果。此外,两盒模型针对并发双频无线发射器进行了扩展,并考虑了交叉调制(CM)产品。此外,它在两个频带上都使用独立的处理模块,并降低了转换器(数模转换和模数转换)的采样率要求。通过使用两个阶段进行实施,该模型可以按比例缩小非线性阶数和所应用数学函数的存储深度。与最近开发的模型相比,这降低了计算复杂度。本文为多分支MIMO和并发双频无线发射机的两盒模型提供了实验验证。因此,结果在准确性和复杂性方面确保了失真补偿和现代宽带无线发射机的性能评估。

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    Bozic M.;

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  • 年度 2016
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  • 正文语种 en
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