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Analysis of Multi-Antenna GNSS Receiver Performance under Jamming Attacks

机译:干扰攻击下的多天线GNSS接收机性能分析

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摘要

Although antenna array-based Global Navigation Satellite System (GNSS) receivers can be used to mitigate both narrowband and wideband electronic interference sources, measurement distortions induced by array processing methods are not suitable for high precision applications. The measurement distortions have an adverse effect on the carrier phase ambiguity resolution, affecting the navigation solution. Depending on the array attitude information availability and calibration parameters, different spatial processing methods can be implemented although they distort carrier phase measurements in some cases. This paper provides a detailed investigation of the effect of different array processing techniques on array-based GNSS receiver measurements and navigation performance. The main novelty of the paper is to provide a thorough analysis of array-based GNSS receivers employing different beamforming techniques from tracking to navigation solution. Two beamforming techniques, namely Power Minimization (PM) and Minimum Power Distortionless Response (MPDR), are being investigated. In the tracking domain, the carrier Doppler, Phase Lock Indicator (PLI), and Carrier-to-Noise Ratio (C/N0) are analyzed. Pseudorange and carrier phase measurement distortions and carrier phase position performance are also evaluated. Performance analyses results from simulated GNSS signals and field tests are provided.
机译:尽管基于天线阵列的全球导航卫星系统(GNSS)接收器可用于缓解窄带和宽带电子干扰源,但由阵列处理方法引起的测量失真不适合高精度应用。测量失真会对载波相位模糊度分辨率产生不利影响,从而影响导航解决方案。取决于阵列姿态信息的可用性和校准参数,可以实现不同的空间处理方法,尽管它们在某些情况下会使载波相位测量值失真。本文详细研究了不同阵列处理技术对基于阵列的GNSS接收机测量和导航性能的影响。本文的主要新颖之处在于,对从跟踪到导航解决方案采用不同波束成形技术的基于阵列的GNSS接收机进行全面分析。正在研究两种波束成形技术,即功率最小化(PM)和最小功率无失真响应(MPDR)。在跟踪域中,分析了载波多普勒,锁相指示器(PLI)和载波噪声比(C / N0)。还评估了伪距和载波相位测量失真以及载波相位位置性能。提供了来自仿真GNSS信号的性能分析结果,并提供了现场测试。

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