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A Generalized Memory Polynomial Model for Digital Predistortion of RF Power Amplifiers

机译:射频功率放大器数字预失真的通用记忆多项式模型

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Conventional radio-frequency (RF) power amplifiers operating with wideband signals, such as wideband code-division multiple access (WCDMA) in the Universal Mobile Telecommunications System (UMTS) must be backed off considerably from their peak power level in order to control out-of-band spurious emissions, also known as “spectral regrowth.” Adapting these amplifiers to wideband operation therefore entails larger size and higher cost than would otherwise be required for the same power output. An alternative solution, which is gaining widespread popularity, is to employ digital baseband predistortion ahead of the amplifier to compensate for the nonlinearity effects, hence allowing it to run closer to its maximum output power while maintaining low spectral regrowth. Recent improvements to the technique have included memory effects in the predistortion model, which are essential as the bandwidth increases. In this paper, we relate the general Volterra representation to the classical Wiener, Hammerstein, Wiener–Hammerstein, and parallel Wiener structures, and go on to describe some state-of-the-art predistortion models based on memory polynomials. We then propose a new generalized memory polynomial that achieves the best performance to date, as demonstrated herein with experimental results obtained from a testbed using an actual 30-W, 2-GHz power amplifier.
机译:通用宽带工作的射频(RF)功率放大器,例如通用移动电信系统(UMTS)中的宽带码分多址(WCDMA),必须从其峰值功率水平上大大降低,以便控制输出功率。带内杂散发射,也称为“频谱再生长”。因此,使这些放大器适应宽带运行需要比相同功率输出所需的更大的尺寸和更高的成本。越来越受欢迎的另一种解决方案是在放大器之前采用数字基带预失真,以补偿非线性效应,从而使其在保持较低的频谱再生长的同时,能够更接近其最大输出功率运行。该技术的最新改进包括预失真模型中的存储效应,这在带宽增加时必不可少。在本文中,我们将一般的Volterra表示与经典的Wiener,Hammerstein,Wiener-Hammerstein和并行Wiener结构相关联,然后继续描述一些基于记忆多项式的最先进的预失真模型。然后,我们提出了一种新的通用存储多项式,该多项式可以达到迄今为止的最佳性能,如本文所述,使用实际30 W,2 GHz功率放大器从测试台获得的实验结果证明了这一点。

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