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GNSS Space-Time Interference Mitigation and Attitude Determination in the Presence of Interference Signals

机译:存在干扰信号时的GNSS时空干扰减轻和姿态确定

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摘要

The use of Space-Time Processing (STP) in Global Navigation Satellite System (GNSS) applications is gaining significant attention due to its effectiveness for both narrowband and wideband interference suppression. However, the resulting distortion and bias on the cross correlation functions due to space-time filtering is a major limitation of this technique. Employing the steering vector of the GNSS signals in the filter structure can significantly reduce the distortion on cross correlation functions and lead to more accurate pseudorange measurements. This paper proposes a two-stage interference mitigation approach in which the first stage estimates an interference-free subspace before the acquisition and tracking phases and projects all received signals into this subspace. The next stage estimates array attitude parameters based on detecting and employing GNSS signals that are less distorted due to the projection process. Attitude parameters enable the receiver to estimate the steering vector of each satellite signal and use it in the novel distortionless STP filter to significantly reduce distortion and maximize Signal-to-Noise Ratio (SNR). GPS signals were collected using a six-element antenna array under open sky conditions to first calibrate the antenna array. Simulated interfering signals were then added to the digitized samples in software to verify the applicability of the proposed receiver structure and assess its performance for several interference scenarios.
机译:由于其对窄带和宽带干扰抑制的有效性,因此在全球导航卫星系统(GNSS)应用中使用时空处理(STP)受到了广泛关注。但是,由于时空滤波而导致的互相关函数的失真和偏差是该技术的主要限制。在滤波器结构中采用GNSS信号的导向向量可以显着减少互相关函数的失真,并导致更准确的伪距测量。本文提出了一种两阶段的干扰缓解方法,其中第一阶段在采集和跟踪阶段之前估算无干扰子空间,并将所有接收信号投影到该子空间中。下一阶段基于检测和采用由于投影过程而失真较小的GNSS信号来估计阵列姿态参数。姿态参数使接收机能够估计每个卫星信号的导引向量,并将其用于新颖的无失真STP滤波器中,以显着减少失真并使信噪比(SNR)最大化。在开阔的天空条件下,使用六元素天线阵列收集GPS信号,以首先校准天线阵列。然后将模拟干扰信号添加到软件中的数字化样本中,以验证所提出的接收器结构的适用性并评估其在几种干扰情况下的性能。

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