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Fully-Digital Blind Compensation of Non-Linear Distortions in Wideband Receivers

机译:宽带接收器中非线性失真的全数字盲补偿

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Digital post-distortion is becoming an increasingly attractive solution to compensate for the non-linearities of RF receivers implemented in deep submicron CMOS technologies. A very promising technique which provides flexibility and robustness is the frequency spreading based digital post-distortion. This paper focuses on the analysis of this approach for wideband receivers and its main limitations, such as the anti-alias filter (AAF) impact. As a matter of fact, distortions filtered by the AAF can degrade the correction performance. To overcome this problem, a novel solution based on mimicking the AAF frequency response in the digital domain is proposed. Aspects regarding the estimation and the algorithm convergence are also studied: the noise effect and the choice of the free frequency band. Furthermore, two other techniques are developed to improve the modeling and the correction of the memory effect using, respectively, a bank of filters and two-step architecture. The proposed techniques are demonstrated by simulations and measurements on a multi-channel receiver suited for DVB-T applications. The receiver is based on a 1-GHz bandwidth RF front-end followed by a 2.7-GHz 13-bit analog-to-digital converter.
机译:数字后失真正逐渐成为一种有吸引力的解决方案,以补偿在深亚微米CMOS技术中实现的RF接收器的非线性。提供灵活性和鲁棒性的非常有前途的技术是基于频率扩展的数字后失真。本文着重分析这种针对宽带接收器的方法及其主要局限性,例如抗混叠滤波器(AAF)的影响。实际上,由AAF过滤的失真会降低校正性能。为了克服这个问题,提出了一种基于模拟数字域中的AAF频率响应的新颖解决方案。还研究了有关估计和算法收敛性的方面:噪声效应和自由频带的选择。此外,还开发了另外两种技术来分别使用一组滤波器和两步体系结构来改善存储效果的建模和校正。通过在适用于DVB-T应用的多通道接收机上进行仿真和测量来论证所提出的技术。接收器基于1 GHz带宽的RF前端,后跟2.7 GHz的13位模数转换器。

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