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Method of Experimental Verification of Accuracy of UAV Antenna Phase Center Motion Parameters Determined by Navigation System

机译:通过导航系统确定的UAV天线相位中心运动参数的准确性实验验证方法

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The paper addresses the problem of verification of a micronavigation system appropriateness for determining the parameters of antenna phase center (APC) motion in order to synthesize its aperture onboard an unmanned aerial vehicle (UAV). A method is proposed for the analysis of the accuracy of APC positioning in real flight conditions. Trajectory signal from a monochromatic stationary source of radio-frequency (RF) emission is used as reference measurements. The accuracy of the range to the source measured by the micronavigation system is estimated, with an emphasis on the analysis of high-frequency component of measurement error. Hardware for the proposed method implementation is described, and the results of inflight tests are presented. It is demonstrated that the accuracy of APC positioning towards the RF emission source is determined at the level of measurement errors caused by the phase instability of reference oscillators within the receiver modules.
机译:该论文解决了用于确定天线相位中心(APC)运动的参数的微静电系统适当性的问题,以便在无人驾驶的航空车(UAV)上合成其孔径。提出了一种方法,用于分析实际飞行条件中APC定位的准确性。来自射频(RF)发射的单色固定式源的轨迹信号用作参考测量。估计通过微扫视系统测量的源的范围的准确性,重点是测量误差的高频分量的分析。描述了所提出的方法实现的硬件,并提​​出了发泡测试的结果。结果证明,在接收器模块内的参考振荡器的相位不稳定性引起的测量误差水平下确定APC定位的准确性。

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