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Non-linear adaptive AM/AM and AM/PM pre-distortion compensation with time and temperature compensation for low power applications

机译:非线性自适应AM / AM和AM / PM预失真补偿,具有时间和温度补偿,适用于低功耗应用

摘要

This invention provides a technique and an architecture to pre-distort signals such that when the signals are amplified, the non-linear distortions of the amplifier chain are opposite that of the pre-distortion thus yielding a distortion free or nearly distortion free signal at the output of the amplifier chain. This invention provides for a low power application by using a LUT predistortion that is performed on a composite real signal (I and Q combined) such that the size of the LUTs required is reduced to a very small size. In this invention, the I and Q input signals are digitally modulation with quadrature digital sinusoidal signals and then combined to create the real composite signal at a digital IF. The real signal is then pre-distorted to compensate for AM/AM distortion first and then for AM/PM distortion. The pre-distorted signal is then digitally decomposed back in to I and Q samples for conversion to analog and up conversion to RF. The non-pre-distorted real signal is sampled and compared with a sample of the post amplified signal and the non-linear update algorithm is updated to compensate for the variation of non-linear distortion as a function of time and temperature. The architecture and techniques described herein provide for a low power and low memory implementation that can be used in mobile applications such as cell phones and Personal Data Devices (PDAs).
机译:本发明提供了一种对信号进行预失真的技术和架构,使得当信号被放大时,放大器链的非线性失真与预失真的非线性失真相反,从而在信号失真处产生无失真或几乎无失真的信号。放大器链的输出。本发明通过使用对复合实信号(I和Q组合)执行的LUT预失真来提供低功率应用,使得所需的LUT的尺寸减小到非常小的尺寸。在本发明中,用正交数字正弦信号对I和Q输入信号进行数字调制,然后将其组合以在数字IF处产生实数复合信号。然后对真实信号进行预失真,以首先补偿AM / AM失真,然后补偿AM / PM失真。然后,将预失真的信号数字化分解为I和Q样本,以转换为模拟并向上转换为RF。对非预失真的实信号进行采样,并与后置放大信号的样本进行比较,并更新非线性更新算法,以补偿非线性失真随时间和温度的变化。本文描述的体系结构和技术提供了可在诸如蜂窝电话和个人数据设备(PDA)的移动应用程序中使用的低功耗和低内存实现。

著录项

  • 公开/公告号US7215716B1

    专利类型

  • 公开/公告日2007-05-08

    原文格式PDF

  • 申请/专利权人 FRANCIS JAMES SMITH;

    申请/专利号US20030603798

  • 发明设计人 FRANCIS JAMES SMITH;

    申请日2003-06-24

  • 分类号H04K1/02;

  • 国家 US

  • 入库时间 2022-08-21 21:00:17

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