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A Low-Cost INS-Integratable GNSS Ultra-Short Baseline Attitude Determination System

机译:低成本的INS集成GNSS超短基线姿态确定系统

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摘要

Traditional attitude determination using global navigation satellite system (GNSS) carrier phases is mostly applied on geodetic-grade receivers with sufficient baseline length. However, for some special applications such as mobile communication base station smart antenna attitude determination, only low-cost receivers with ultra-short baselines can be employed, and the environments are more challenging. When solving the ambiguity resolution (AR) problem with low-cost receivers, it is hard for the traditional methods in ambiguity domain to estimate float ambiguities accurately due to the large code pseudorange noises; thus, such systems fail to determine the correct ambiguities. Aiming at improving the AR success rate for ultra-short baselines attitude determination with low-cost receivers, we provide an objective function named Mean Square Residual (MSR) based on the geometrical relationship among the position spherical search space, the fractional carrier phases, and the possible ambiguities. The method can be calculated without code pseudoranges, and thus, can provide a higher AR success rate when using low-cost receivers. The corresponding analysis and acceptance test method are discussed in this contribution, and further, as an extension for more complicated urban dynamic applications, a GNSS/Inertial Navigation System (INS) integrated system is introduced. Several experiments have been conducted to verify performance.
机译:使用全球导航卫星系统(GNSS)载波相位的传统姿态确定通常应用于具有足够基线长度的大地测量级接收机。但是,对于某些特殊应用,例如移动通信基站智能天线姿态确定,只能使用具有超短基线的低成本接收机,并且环境更具挑战性。当用低成本接收器解决歧义分辨率(AR)问题时,由于大码伪距噪声,传统的歧义域方法很难准确估计浮点歧义。因此,此类系统无法确定正确的歧义。为了提高使用低成本接收器进行超短基线姿态确定的AR成功率,我们基于位置球形搜索空间,分数载波相位和位置之间的几何关系,提供了一个目标函数,称为均方差残差(MSR)。可能的歧义。该方法可以在没有代码伪距的情况下进行计算,因此在使用低成本接收器时可以提供更高的AR成功率。在此文稿中讨论了相应的分析和验收测试方法,此外,作为对更复杂的城市动态应用程序的扩展,引入了GNSS /惯性导航系统(INS)集成系统。已经进行了一些实验来验证性能。

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