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Order Adaptive Local Polynomial FT Based Interference Rejection in Spread Spectrum Communication Systems

机译:扩频通信系统中基于阶次自适应局部多项式FT的干扰抑制

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摘要

Methods for jammer rejection in the spread spectrum communications, based on the time-frequency representations, have been proposed in order to improve the desired signal receiving performances. In this paper nonstationary jammers were considered and the local polynomial Fourier transform (LPFT) was used to represent the received corrupted signal. Time-varying filtering was implemented in optimal LPFT domain, having in mind that the LPFT is linear with respect to the signal. An order adaptive algorithm of the LPFT calculation is presented. Performance of the proposed nonparametric method is tested in the presence of linear and sinusoidal FM interferences in the noisy signal, without any a priori assumption about the jammer form. The proposed method may be successfully extended to the case of multiple jammers. Obtained results in terms of the bit error rate (BER) values show the achieved improvements. Procedure for an efficient optimization of the first-order LPFT is presented.
机译:为了提高期望的信号接收性能,已经提出了基于时频表示的扩频通信中的干扰抑制方法。在本文中,考虑了非平稳干扰,并使用局部多项式傅立叶变换(LPFT)来表示接收到的损坏信号。时变滤波是在最佳LPFT域中实现的,要记住LPFT相对于信号是线性的。提出了一种LPFT计算的阶自适应算法。在噪声信号中存在线性和正弦FM干扰的情况下,对所提出的非参数方法的性能进行了测试,而无需事先假设干扰形式。所提出的方法可以成功地扩展到多个干扰器的情况。根据误码率(BER)值获得的结果表明已实现的改进。提出了有效优化一阶LPFT的过程。

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