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A Novel Method for Adjusting Digital Predistortion with Modulation Error Ratio in OFDM System

机译:一种用OFDM系统调制误差比调整数字预失真的新方法

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摘要

Power amplifiers (PAs) are important components in OFDM systems which can efficiently uses the spectrum but very sensitive to constellation error. The nonlinearity of PAs causes in-band distortion and spectral regrowth, thereby increasing the constellation error. To overcome the PA's nonlinearity, Digital predistortion is a highly cost-effective way to linearize PAs. When modeling of digital predistorter, there are many coefficients that determining the predistorter's characteristics which are affecting the effect of predistortion. Different values of the coefficients lead to a large gap in the effect of predistortion, thus constructing the predistorter with appropriate coefficients is complex and necessary. Many research when estimating the coefficients by minimizing mean square error (MMSE) of the signal amplified by the amplifier. But the MSE can't indicate the constellation error rate, furthermore, OFDM rely on the constellation map to transfer message, so that the coefficients corresponding to MMSE method may not the most appropriate. In this paper we propose a novel method to estimate the predistorter coefficients by maximizing the Modulation Error Ration (MER) which can directly indicate the degree of constellation error, and we introduce the quasi-Newton method which can help us find the optimum coefficient to maximize MER. The proposed predistorter can better reduce the constellation error.
机译:功率放大器(PAS)是OFDM系统中的重要组成部分,其可以有效地使用频谱,对星座误差非常敏感。 PA的非线性导致带内变形和光谱再生,从而增加了星座误差。为了克服PA的非线性,数字预失真是线性化PA的高度成本效益的方式。当数字预失真器建模时,存在许多系数,确定了影响预失真效果的预失真器的特征。系数的不同值导致预失真的效果的差距,从而构造具有适当系数的预逆变器是复杂的并且必要的。通过最小化由放大器放大的信号的均方误差(MMSE)来估计系数时的许多研究。但是,MSE不能指示星座误差率,此外,OFDM依赖于星座图传输消息,使得对应于MMSE方法的系数可能不是最合适的。在本文中,我们提出了一种新的方法来通过最大化可以直接指示星座误差的调制误差(MER)来估计预失真器系数,并且我们介绍了可以帮助我们找到最佳系数的准牛顿方法来最大化mer。所提出的预逆变器可以更好地减少星座误差。

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