具有形状记忆延迟曲线的记忆多项式及其热记忆效应的建模

A. H. Yüzer, S. Bassam, F. Ghannouchi, S. Demir
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引用次数: 1

摘要

本文提出了一种新的非均匀延迟抽头的记忆多项式建模技术,用于捕获功率放大器中的热记忆效应。在提出的建模结构中,存储器多项式的每一阶被分配不同的存储器延迟。延迟曲线是一个指数形函数,而不是所有内存多项式分支的单位延迟相等。利用记忆效应建模比(MEMR)、归一化均方误差(NMSE)和频谱误差(SE)这三个不同的度量指标,对所提出的指数形延迟轮廓记忆多项式模型与先前发表的基于无记忆、单位延迟和稀疏延迟的基于记忆的多项式模型的性能进行了比较。对3种不同激励信号提取4种模型的模型系数,选取2.14 GHz左右的64-QAM信号,带宽分别为20 kHz、30 kHz和40 kHz,确保热记忆效应主导电记忆效应。结果表明,对于实验中使用的所有三种激励信号,所提出的模型都优于所有先前发表的模型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Memory polynomial with shaped memory delay profile and modeling the thermal memory effect
This paper presents a proposal for a new memory polynomial modeling technique with non-uniform delay taps to capture the thermal memory effects in power amplifiers. In the proposed modeling structure, each order of the memory polynomial is assigned a different memory delay. The delay profile is an exponentially shaped function, instead of equal unit delays for all memory polynomial branches. Three different metrics, the memory effect modeling ratio (MEMR) and the normalized mean square error (NMSE) and spectrum error (SE) are used to benchmark the proposed exponentially shaped delay profile memorial polynomial model performance against previously published models, namely the memoryless, the unit delay and sparse delay memory based polynomial models. The model coefficients of four models are extracted for three different excitation signals, which were selected as a 64-QAM signal around 2.14 GHz with 20 kHz, 30 kHz and 40 kHz bandwidths, ensuring that the thermal memory effects dominate the electrical memory effects. It is shown that the proposed model outperforms all the previously published models for all three excitation signals used in the experiment.
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