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Modelling of Low-altitude Altimeters Using Additional Frequency Modulation

机译:使用额外频率调制建模低空高度仪

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This study is concerned with the problem of increasing the accuracy of a low-altitude altimeter employing the frequency modulation principle. A way to suppress the «discrete error» of the altimeter by employing additional «slow» frequency modulation of the carrier wave and averaging the resulting counts is considered. The benefit of such approach is simplicity of technical implementation manifesting in minimal changes in the microwave path and the recording device, which needs to run in averaging count mode. It is shown that, given a limited frequency band, the linear modulation form is not optimal. Results of error calculations presented are obtained via mathematical modelling of the altimeter's operation. It is shown that using the genetic algorithm of additional modulation frequency optimization for a given altitude range allows to reduce the average measurement error two times relatively to the linear modulation form without expanding the occupied frequency band.
机译:本研究涉及提高采用频率调制原理的低空高度计的准确性的问题。 通过采用载波波的额外«慢»频率调制来抑制高度计的“离散误差”的方法考虑了载波的频率调制并进行平均所得到的计数。 这种方法的益处是在微波路径和记录设备中的最小变化中的技术实现的简单性,这需要在平均计数模式下运行。 结果表明,给定有限频带,线性调制形式不是最佳的。 通过高度计操作的数学建模获得呈现的误差计算结果。 结果表明,使用对给定高度范围的附加调制频率优化的遗传算法允许在不扩展占用频带的情况下相比,相对相对的平均测量误差。

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