Comparative Analysis of Mathematical Models of Tracking Radio Altimeters

A. Monakov, A. A. Tarasenkov
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Abstract

Introduction. Tracking radio altimeters of low altitudes are widely used in civil aviation. These devises use periodic frequency modulated continuous wave (FMCW) signals, while altitude measurements are based on processing the beat signal processing. For this purpose, a closed automatic control loop is arranged to maintain the frequency of the beat signal at a fixed level by changing parameters of the transmitted signal (the frequency deviation or the modulation period). An alternative approach to arranging the tracking loop for altitude variations is based on the use of a phase locked loop (PLL), which adjusts the reference signal – a copy of the emitted signal – to obtain the maximum cross-correlation of the beat and reference signals. А comparative analysis of short-range radio altimeters with other currently known tracking radio altimeters for various types of frequency modulation of the transmitted signal seems to be a relevant research task.Aim. An analysis of the influence of the type of frequency modulation on the accuracy of altitude estimation in a PLL-based radar altimeter, as well as a comparative analysis of this altimeter with other known tracking altimeters.Materials and methods. Mathematical models of tracking radio altimeters are proposed, and a computer simulation of their performance is carried out for the case of altitude estimation over a smooth flat surface.Results. The conducted comparative analysis of tracking radio altimeters confirmed the effectiveness of the PLL when processing signals of different frequency modulation type (sawtooth, triangular, and harmonic FM). Altitude estimates produced by PLL-based radar altimeters are unbiased, with their standard deviation not exceeding 3 cm for the signalto-noise ratio of greater than 10 dB and under the scenario parameters adopted in the work. The conducted comparison with other tracking altimeters showed that estimation errors of this radar altimeter are an order of magnitude smaller.Conclusion. A PLL-based tracking radar altimeter can be used to estimate the height of the aircraft flight. The quality of altitude estimates produced by this device is higher than those produced by other known tracking radio altimeters. Further research and field tests will investigate the accuracy of altitude estimation when working over a rough surface.
跟踪式无线电高度计数学模型的比较分析
介绍。低空跟踪式无线电高度计在民用航空中有着广泛的应用。这些装置使用周期调频连续波(FMCW)信号,而高度测量是基于处理拍信号处理。为此,设置一个封闭的自动控制回路,通过改变发射信号的参数(频率偏差或调制周期),使拍信号的频率保持在固定水平。另一种安排高度变化跟踪环路的方法是基于使用锁相环路(PLL),它调整参考信号-发射信号的副本-以获得拍和参考信号的最大相互关系。А短距离无线电高度表与其他目前已知的跟踪无线电高度表对发射信号的各种频率调制的比较分析似乎是一个相关的研究任务。分析了频率调制类型对基于锁相环的雷达高度计高度估计精度的影响,并将该高度计与其他已知跟踪高度计进行了比较分析。材料和方法。提出了跟踪式无线电高度表的数学模型,并对其在光滑平面上的高度估计进行了计算机仿真。对跟踪无线电高度计进行的对比分析证实了锁相环在处理不同调频类型(锯齿、三角形和谐波调频)信号时的有效性。基于锁相环的雷达高度计在信噪比大于10 dB的情况下,在工作采用的场景参数下,其高度估计的标准差不超过3 cm,是无偏的。与其他跟踪高度表的比较表明,该雷达高度表的估计误差要小一个数量级。基于pll的跟踪雷达高度计可以用来估计飞机飞行的高度。这种装置所产生的高度估计的质量比其他已知的跟踪无线电高度计所产生的高。进一步的研究和现场测试将调查在粗糙表面上工作时高度估计的准确性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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