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Analysis of different GNSS array processing methods utilizing new experimental approach using a Spirent simulator and single frontend receiver

机译:使用思博伦模拟器和单个前端接收器的新实验方法分析不同的GNSS阵列处理方法

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Performing array processing on the Global Navigation Satellite Systems (GNSS) signals in a controlled environment requires costly hardware that most researchers cannot afford. This paper introduces a new experimental approach that substantially reduces that cost. It makes possible the emulation of raw digitized in-phase (I) and quadrature phase (Q) samples of GNSS signals, received by an array of Global Positioning System (GPS) antennas. The proposed technique enables simulating linear, planar and three dimensional (3D) array geometries for any satellite positioning system. In this study, only one Spirent GSS6700 GNSS simulator is used along with a single Novatel Firehose frontend. They are both designed for single antenna systems and are used in this research to simulate a seven element uniform linear array (ULA) and a seven element uniform circular array (UCA). Multiple signal classification (MUSIC), Minimum Variance Distortionless Response (MVDR) and classical beamforming are applied for direction of arrival (DoA) estimation, utilizing both ULA and UCA array structures, in order to verify the proposed experimental approach.
机译:在受控环境中对全球导航卫星系统(GNSS)信号执行阵列处理需要大多数研究人员无法承受的昂贵硬件。本文介绍了一种新的实验方法,可以大大降低该成本。这使仿真由一组全球定位系统(GPS)天线接收到的GNSS信号的原始数字化同相(I)和正交相(Q)样本成为可能。所提出的技术能够模拟任何卫星定位系统的线性,平面和三维(3D)阵列几何形状。在本研究中,仅使用了一个思博伦GSS6700 GNSS仿真器以及一个Novatel Firehose前端。它们都设计用于单天线系统,并且在本研究中用于模拟七元素均匀线性阵列(ULA)和七元素均匀圆形阵列(UCA)。利用ULA和UCA阵列结构,将多信号分类(MUSIC),最小方差无失真响应(MVDR)和经典波束成形应用于到达方向(DoA)估计,以验证所提出的实验方法。

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