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Multi-Stage Complex Notch Filtering for Interference Detection and Mitigation to Improve the Acquisition Performance of GPS

机译:用于干扰检测和缓解的多阶段复杂陷波滤波,以提高GPS的采集性能

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Continuous Wave Interferences (CWIs) can degrade the accuracy of a Global Positioning System (GPS) receiver and moreover it can completely deteriorate receiver's normal operation. In this paper a low-cost anti-jamming system design is presented for the mitigation and detection of CWIs for GPS receivers. The anti-jamming system comprises of parameterizable Complex Adaptive Notch Filter (CANF) module which is able to detect and excise single or multiple CWIs. The CANF module is composed of afirst, second and third order infinite-impulse response filter with an Auto-Regressive Moving Averager structure. The proposed CANF detects the existence of the CWI and estimates JNR level of incoming signal by using the statistical value of the adaptive parameter b0. The impact of the CANF module on the acquisition is analyzed. Moreover, a simple and innovative system level model is proposed which can utilize each CANF efficiently with threshold setting of JNR estimation within the adaptation block. Threshold setting parameters provide trade-off between effective excision of CWI, order of the filter and power consumption. This results in a parameterizable CANF module and provide effective solution for the mitigation of interferences with a high-power profile for GPS based applications.
机译:连续波干扰(CWI)可能会降低全球定位系统(GPS)接收器的准确性,而且会完全破坏接收器的正常运行。本文提出了一种低成本的抗干扰系统设计,用于缓解和检测GPS接收机的CWI。抗干扰系统包括可参数化的复杂自适应陷波滤波器(CANF)模块,该模块能够检测和切除单个或多个CWI。 CANF模块由具有自动回归移动平均器结构的一阶,二阶和三阶无限脉冲响应滤波器组成。提出的CANF通过使用自适应参数b的统计值来检测CWI的存在并估计输入信号的JNR电平 0 。分析了CANF模块对采集的影响。此外,提出了一种简单创新的系统级模型,该模型可以在自适应块内通过JNR估计的阈值设置有效地利用每个CANF。阈值设置参数可在CWI的有效切除,滤波器的阶数和功耗之间进行权衡。这样就形成了可参数化的CANF模块,并为基于GPS的应用提供了具有高功率配置文件的缓解干扰的有效解决方案。

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