Identification of Volterra kernels for nonlinear communication systems with OFDM inputs

Jen-Ho Cheng, Yang-Han Lin, Ching-Hsiang Tseng
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Abstract

The orthogonal frequency-division multiplexing (OFDM) is a multicarrier modulation scheme developed for wideband communication applications. An inherent problem of the OFDM signal is that it could suffer from nonlinearities of power amplifiers in a communication link. For a nonlinear bandpass channel, the complex envelopes of its input and output are often related by a complex baseband equivalent Volterra series. To characterize the nonlinear channel, identification of the Volterra kernels is required. Many Volterra kernel identification methods found in the literature are applicable to systems with relatively low order nonlinearities. However, they might not be easily extendable to cases with higher-order nonlinearities in a straightforward manner. In this paper, a closed-form solution of the frequency-domain baseband equivalent Volterra kernels for nonlinear channels up to the 5th order is derived. The derivation is achieved by taking advantage of the higher-order auto-moment spectral properties of OFDM signals. The proposed method is computationally efficient and can obtain optimal minimum mean square error (MMSE) estimates of the Volterra kernels. The correctness of the derived formula is justified by computer simulation.
输入为OFDM的非线性通信系统Volterra核辨识
正交频分复用(OFDM)是一种针对宽带通信应用而发展起来的多载波调制方案。OFDM信号的一个固有问题是它可能受到通信链路中功率放大器的非线性影响。对于非线性带通通道,其输入和输出的复杂包络通常由一个复杂基带等效Volterra级数联系起来。为了表征非线性通道,需要对Volterra核进行识别。在文献中发现的许多Volterra核辨识方法适用于具有相对低阶非线性的系统。然而,它们可能不容易以直接的方式扩展到具有高阶非线性的情况。本文导出了五阶非线性信道的频域基带等效Volterra核的闭型解。推导是利用OFDM信号的高阶自矩谱特性实现的。该方法计算效率高,可以获得Volterra核的最优最小均方误差(MMSE)估计。通过计算机仿真验证了推导公式的正确性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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