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Compressed sensing techniques for receiver based post-compensation of transmitter's nonlinear distortions in OFDM systems

机译:基于压缩感知技术的OFDM系统中基于接收机的发射机非线性失真的后补偿

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摘要

In this paper, compressed sensing techniques are proposed to linearize commercial power amplifiers driven by orthogonal frequency division multiplexing signals. The nonlinear distortion is considered as a sparse phenomenon in the time-domain, and three compressed sensing based algorithms are presented to estimate and compensate for these distortions at the receiver using a few and, at times, even no frequency-domain free carriers (i.e. pilot carriers). The first technique is a conventional compressed sensing approach, while the second incorporates a priori information about the distortions to enhance the estimation. Finally, the third technique involves an iterative data-aided algorithm that does not require any pilot carriers and hence allows the system to work at maximum bandwidth efficiency. The performances of all the proposed techniques are evaluated on a commercial power amplifier and compared. The error vector magnitude and symbol error rate results show the ability of compressed sensing to compensate for the amplifier's nonlinear distortions.
机译:在本文中,提出了压缩感测技术以线性化由正交频分复用信号驱动的商用功率放大器。非线性失真被认为是时域中的稀疏现象,并且提出了三种基于压缩感知的算法来估计和补偿接收机中的失真,这些失真使用的是很少甚至有时没有频域的自由载波(即飞行员航母)。第一种技术是常规的压缩感测方法,而第二种技术结合了有关失真的先验信息以增强估计。最后,第三种技术涉及一种迭代数据辅助算法,该算法不需要任何导频载波,因此可以使系统以最大带宽效率工作。所有提出的技术的性能在商用功率放大器上进行评估并进行比较。误差矢量幅度和符号误差率结果表明,压缩感测能够补偿放大器的非线性失真。

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