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2D quasi exact inverse of PA model in digital predistorter for concurrent dual-band system

机译:并发双频系统中数字预失真器中PA模型的2D准精确逆

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This paper reports a new direct learning (DL) technique using 2D quasi exact inverse (2D-QEI) of a power amplifier (PA) model for linearizing concurrent dual band PA. In contrast to indirect learning (IL) architecture, where the coefficients are extracted by swapping the input and output signals in any PA model, a QEI of a PA model can be used in the digital predistorter (DPD). A 2D memory polynomial (2D-MP) is used in both the cases to compare the performance. The evaluation of the model's performance is conducted on an application close to real base station using a field programmable gate array (FPGA) and two radio transceivers. A 10W PA is excited with two wideband code division multiple access (WCDMA) signals of 3.84MHz bandwidth which are 310 MHz apart. The measurement results demonstrate that in the presence of additive noise, there is a noticeable improvement in terms of normalized mean square error (NMSE) and adjacent channel power ratio (ACPR) when using the QEI model for DPD. This improvement is achieved in a single step with no iteration as in practical DPD systems.
机译:本文报告了一种新的直接学习(DL)技术,该技术使用功率放大器(PA)模型的2D准精确逆(2D-QEI)来线性化并发双频PA。与间接学习(IL)体系结构相反,在间接学习(IL)体系结构中,通过交换任何PA模型中的输入和输出信号来提取系数,而PA模型的QEI可以在数字预失真器(DPD)中使用。在两种情况下均使用2D内存多项式(2D-MP)来比较性能。该模型的性能评估是在一个接近真实基站的应用上使用现场可编程门阵列(FPGA)和两个无线电收发器进行的。一个10W PA受到两个3.84MHz带宽,相隔310MHz的宽带码分多址(WCDMA)信号的激励。测量结果表明,在存在附加噪声的情况下,将QEI模型用于DPD时,在归一化均方误差(NMSE)和相邻信道功率比(ACPR)方面有了显着改善。与实际的DPD系统一样,无需任何迭代就可以一步完成此改进。

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