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首页> 外文期刊>IEEE Transactions on Aerospace and Electronic Systems >Rotation method for direction finding via GPS carrier phases
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Rotation method for direction finding via GPS carrier phases

机译:通过gps载波相位寻找方向的旋转方法

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A baseline rotation method is proposed for determining the direction of the baseline vector via Global Positioning System (GPS) carrier phase measurements. The space difference technique is adopted to resolve GPS carrier phase cycle ambiguities. Possible applications include the determination of the aiming directions of artillery rockets and the line of sights of tracking radars, etc. For such armaments, the direction findings are important and the rotating mechanisms are well equipped already. A general baseline vector which can be rotated on a two-degree-of-freedom platform is considered first. The relationship among the baseline vector and the two rotation axes is not known. A sequence of rotations is used to change the configuration of the system to find the direction of the baseline. Under different circumstances such as the cases that some orthogonal conditions among the unknown vectors are given, simplified algorithms are devised. To verify our method, software simulation and hardware experiments have been conducted. The simulation outcomes are used to determine the experimental parameters, such as the length of the baseline, the rotation angles etc. The results of repeated hardware experiments show that the sample standard deviation for the azimuth angle and the elevation angle of the 1.35 m baseline vector are 0.91 deg and 1.23 deg, respectively. The GPS receivers employed are Motorola ONCOREs. The errors of the estimated direction angles induced by the inaccuracy of rotation angles, which are unavoidable due to the imperfectness of the mechanical structure, are analyzed as well. Numerical examples for the error analysis are included.
机译:提出了一种基线旋转方法,用于通过全球定位系统(GPS)载波相位测量来确定基线矢量的方向。采用空间差分技术解决GPS载波相位周期的模糊性。可能的应用包括确定炮弹的瞄准方向和跟踪雷达的视线等。对于这种武器,方向发现很重要,旋转机构已经配备齐全。首先考虑可以在两自由度平台上旋转的一般基线向量。基线向量和两个旋转轴之间的关系未知。旋转序列用于更改系统的配置,以找到基线的方向。在不同的情况下,例如给出未知向量之间的一些正交条件的情况下,设计了简化算法。为了验证我们的方法,已经进行了软件仿真和硬件实验。仿真结果用于确定实验参数,例如基线长度,旋转角度等。重复硬件实验的结果表明,1.35 m基线矢量的方位角和仰角的样本标准偏差分别为0.91度和1.23度。使用的GPS接收器是Motorola ONCORE。还分析了由于机械结构的不完善而不可避免的由旋转角的不精确性引起的估计方向角的误差。包括用于误差分析的数值示例。

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