Recursive Fourier transform for interference suppression in PN spread spectrum communications

M. Amin, X. Ouyang, A. Lindsey
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引用次数: 4

Abstract

We use recursive short-time Fourier transforms (STFT) for interference excision in PN spread spectrum communication systems. The proposed excision method is based on the attractive localization properties of the impulse responses of the multiple pole filters. These impulse responses have Gaussian-like shapes and decrease in bandwidth with higher pole multiplicities. When used as a data window before Fourier transformation, they result in a large class of computationally efficient STFTs. Localization measures can be applied to determine the proper window (impulse response), which maximally concentrates the jammer in the time-frequency domain. Interference mitigation is then achieved by applying a binary excision to the STFT employing the optimum window for each data bit. We show that this method permits both data-dependent windowing and filtering, and leads to improved BER performance of the DS/SS system.
递归傅里叶变换在PN扩频通信中的干扰抑制
利用递推短时傅里叶变换(STFT)消除PN扩频通信系统中的干扰。所提出的去除方法是基于多极滤波器脉冲响应的吸引定位特性。这些脉冲响应具有类似高斯的形状,并且带宽随着极复数的增加而减少。当用作傅里叶变换前的数据窗口时,它们会产生大量计算效率高的stft。定位措施可以用来确定适当的窗口(脉冲响应),最大限度地将干扰器集中在时频域。然后通过采用每个数据位的最佳窗口对STFT应用二进制切除来实现干扰缓解。研究表明,该方法允许数据相关的加窗和滤波,从而提高了DS/SS系统的误码率性能。
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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