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Wavelet Notch Filter Design of Spread-Spectrum Communication Systems for High-Precision Wireless Positioning

机译:高精度无线定位扩频通信系统的小波陷波滤波器设计

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Spread-spectrum communication systems are now commonly used in the field of cellular telephone positioning. However, wireless positioning systems by low-power spread-spectrum communication are extremely vulnerable to high-power interference, which limits achievable measurement precision. In this paper, a bandwidth variable wavelet notch filter design method is proposed to suppress a large number of jammers in multiple locations with noise interfering with spread-spectrum systems. The filter uses combinations of Gaussian wavelets with optimal time-frequency localization and computational efficiency for real-time operation of denoising. The performance of the adaptive filter has been evaluated by experiments associated with a spread-spectrum communication system model employing a reliable noise detector to locate the filter notch. Experimental results demonstrate that the proposed wavelet notch filter removes the narrow-band interference in accordance with the corrupted frequency contents while minimizing signal distortion and information loss, which leads to high-precision wireless positioning.
机译:现在,扩频通信系统通常用于蜂窝电话定位领域。然而,通过低功率扩频通信的无线定位系统极易受到高功率干扰,这限制了可达到的测量精度。本文提出了一种带宽可变的小波陷波滤波器设计方法,以抑制噪声干扰扩频系统的多个位置的大量干扰。该滤波器将高斯小波与最佳时频定位和计算效率相结合,用于实时去噪。自适应滤波器的性能已通过与使用可靠的噪声检测器定位滤波器陷波的扩频通信系统模型相关的实验进行了评估。实验结果表明,所提出的小波陷波滤波器能够根据被破坏的频率内容消除窄带干扰,同时将信号失真和信息损失降至最低,从而实现了高精度的无线定位。

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