Nonlinear Power Amplifier Characteristic Based on Orthogonal Polynomials Method for FBMC Systems

Ditthawat Songratthaset, S. Pattaramalai
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引用次数: 2

Abstract

In this paper, an analytical expression of nonlinear power amplifier characteristic based on orthogonal polynomials method for filter bank multicarrier modulation (FBMC) systems is proposed. FBMC has been widely deployed for broadband wireless communications. Nevertheless, one of the drawbacks of the FBMC systems is a large peak-to-average power ratio (PAPR) in its time domain signal. This leads to a nonlinear distortion when the signal is passed through a high power amplifier (HPA) of a transmitter. In this paper, an analytical computation of the HPA characteristic based on the orthogonal polynomial method for baseband uniform, exponential, and Rayleigh input distribution with odd and even polynomial coefficient order is proposed. The HPA modelling error comparison between the proposed orthogonal method and the conventional polynomial method is investigated at a different IBO. Simulation results show that the proposed orthogonal polynomial method is superior to the conventional polynomial method. Moreover, the HPA modelling error of the proposed orthogonal polynomial method for uniform input distribution yield better result compared with the exponential and the Rayleigh input distribution case.
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基于正交多项式法的FBMC系统非线性功放特性研究
本文提出了滤波器组多载波调制(FBMC)系统非线性功率放大器特性的一种基于正交多项式法的解析表达式。FBMC在宽带无线通信中得到了广泛的应用。然而,FBMC系统的缺点之一是其时域信号的峰值平均功率比(PAPR)较大。当信号通过发射机的高功率放大器(HPA)时,这会导致非线性失真。本文提出了一种基于正交多项式法的基带均匀、指数和奇数、偶数多项式系数阶输入分布的HPA特性解析计算方法。在不同的IBO条件下,比较了所提出的正交方法与常规多项式方法的HPA建模误差。仿真结果表明,所提出的正交多项式方法优于传统的多项式方法。此外,在均匀输入分布情况下,所提出的正交多项式方法的HPA建模误差优于指数和瑞利输入分布情况。
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