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Suppression of narrow-band interference in DS-spread spectrum systems using adaptive IIR notch filter

机译:使用自适应IIR陷波滤波器抑制DS扩频系统中的窄带干扰

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This paper proposes an algorithm for the suppression of narrow-band interference in direct sequence spread spectrum systems, based on the open-loop adaptive IIR notch filtering. In the open-loop notch filtering schemes, it is assumed that the frequency and power estimates are given or obtained by time-frequency analysis of input signal. In this paper, we estimate the frequency and power of the interference by using the adaptive lattice IIR notch filter. Another lattice IIR notch filter of the same structure is placed in front of the receiver, the notch of which is controlled by the frequency estimate in order to remove the interference. However, since the conventional IIR notch filters have zeros constrained on the unit circle, they also remove the information signal at the notch frequency while removing the interference at the same time. Hence, we adjust the depth of the notch with respect to the interference power, for the trade-off between data distortion and interference reduction. The objective function for adjusting the depth of the notch is defined as the overall signal to noise ratio (SNR). The SNR is expressed as a function of filter parameters, and the notch depth that maximizes the SNR is found. Simulation results show that the proposed algorithm yields comparable or better performance than the open-loop FIR notch filter, conventional FIR LMS, and nonlinear adaptive filters with long taps. (C) 2002 Elsevier Science B.V. All rights reserved. [References: 21]
机译:提出了一种基于开环自适应IIR陷波滤波的直接序列扩频系统中的窄带干扰抑制算法。在开环陷波滤波方案中,假定通过输入信号的时频分析来给出或获得频率和功率估计。在本文中,我们通过使用自适应晶格IIR陷波滤波器来估计干扰的频率和功率。具有相同结构的另一个晶格IIR陷波滤波器放置在接收机的前面,其陷波由频率估计控制,以消除干扰。然而,由于常规的IIR陷波滤波器具有在单位圆上约束的零,因此它们还以陷波频率去除信息信号,同时消除干扰。因此,我们在干扰功率方面调整了陷波深度,以在数据失真和干扰减少之间进行权衡。调整陷波深度的目标函数定义为整体信噪比(SNR)。 SNR被表示为滤波器参数的函数,并且找到了使SNR最大化的陷波深度。仿真结果表明,与开环FIR陷波滤波器,常规FIR LMS和长抽头非线性自适应滤波器相比,该算法产生的性能可比或更高。 (C)2002 Elsevier Science B.V.保留所有权利。 [参考:21]

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