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Estimation of cubic nonlinear bandpass channels in orthogonal frequency-division multiplexing systems

机译:正交频分复用系统中三次非线性带通信道的估计

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摘要

Modeling and compensation of nonlinear communication channels has long been an important research topic in digital communications. A nonlinear bandpass channel is commonly modeled by a baseband equivalent Volterra series which relates the complex envelopes of the channel input and output. In this paper, we propose a novel method to estimate the frequency-domain baseband equivalent Volterra kernels of cubically nonlinear bandpass channels in orthogonal frequencydivision multiplexing (OFDM) systems. We recognize that the input signal for an OFDM system employing QAM or PSK modulations satisfies the properties of a kind of random multisine signal. By exploring the higher-order auto-moment spectra of the random multisine signal, a computationally efficient algorithm for determining the frequency-domain baseband equivalent Volterra kernels is derived. The obtained kernel estimates are optimal in the minimum mean square error (MMSE) sense. The proposed method can be used to estimate nonlinear bandpass channels for OFDM systems employing pure QAMs, pure PSKs, or a mixture of QAMs and PSKs. The effectiveness of the proposed method is demonstrated by applying it to estimate the nonlinear bandpass channel of an example OFDM system. Nonlinear channel compensators based on the Volterra model can benefit from the proposed method.
机译:长期以来,非线性通信通道的建模和补偿一直是数字通信中的重要研究课题。非线性带通通道通常由与通道输入和输出的复杂包络相关的基带等效Volterra级数建模。在本文中,我们提出了一种新的方法来估计正交频分复用(OFDM)系统中三次非线性带通信道的频域基带等效Volterra核。我们认识到,采用QAM或PSK调制的OFDM系统的输入信号满足一种随机多正弦信号的特性。通过探索随机多正弦信号的高阶自动矩谱,得出了一种用于确定频域基带等效Volterra核的计算有效算法。在最小均方误差(MMSE)的意义上,获得的内核估计值是最佳的。提出的方法可用于估计采用纯QAM,纯PSK或QAM和PSK混合的OFDM系统的非线性带通信道。通过将其应用于示例OFDM系统的非线性带通信道,证明了该方法的有效性。基于Volterra模型的非线性信道补偿器可以从该方法中受益。

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