SIGNAL FORMATION AND PROCESSING FEATURES FROM AUTODYNE RADAR WITH A WIDE FREQUENCY MODULATION BAND. (РART 1)

Q4 Physics and Astronomy Radio Physics and Radio Astronomy Pub Date : 2022-06-01 DOI:10.15407/rpra27.01.053
G. Ermak, A. Vasilev, A. Varavin, M. Balaban, A. Fateev, V. Zheltov
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Abstract

Subject and Purpose. In Part 1 of the paper, a mathematical model of an autodyne self-oscillator with frequency tuning by varactor capacitance varying is built and thoroughly analyzed for the features of signal formation in autodyne radar with a wide frequency-modulation bandwidth and a nonlinearity in the modulation characteristic. The aim of the study is to appreciate the action that the nonlinearity of the oscillator modulation characteristic exerts on the spectral characteristics of signals from frequency-modulation autodyne radar. Methods and Methodology. The research method is a mathematical analysis of the operation of an autodyne oscillator with electronic frequency tuning. To examine formation processes of emitted autodyne signals, the spectral, frequency and amplitude characteristics of signals from frequency-modulation autodyne radar are constructed with the use of numerical modeling techniques. Results. Numerical modeling of autodyne response signal spectra has been performed for various distances to the reflecting object and different modulating voltages across the varactor. It has been shown that a nonlinear dependence of the generator frequency on the varactor voltage makes for the broadening of the autodyne response signal spectrum. It has been found that as the object distance increases, the frequency of the autodyne response signal moves towards the higher frequencies, while the nonlinearity makes the spectrum broaden. The obtained calculation results refer to an 8-mm Gunn diode autodyne. Conclusion. The performed research of the spectral characteristics and into the features of signal formation in autodyne transceiver devices with a wide frequency tuning has shown that in order to achieve high resolution figures from autodyne radar, certain methods are needed to be developed for adjusting the laws of frequency modulation and for the processing of response signals from reflecting objects. Such a method and ways to solve these problems will be presented in Part 2 of the work.
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具有宽频带调制的自差雷达信号的形成和处理特点。(Р第1条)
主题和目的。在本文的第一部分中,针对具有宽频率调制带宽和调制特性非线性的自差雷达信号形成的特点,建立了变容电容调谐自差振荡器的数学模型,并对其进行了深入的分析。本研究的目的是了解振荡器调制特性的非线性对调频自差雷达信号频谱特性的影响。方法和方法。研究方法是对具有电子频率调谐的自差振荡器的操作进行数学分析。为了研究发射自差信号的形成过程,利用数值建模技术构建了调频自差雷达信号的频谱、频率和幅度特性。后果已经对到反射物体的不同距离和变容管两端的不同调制电压进行了自差响应信号谱的数值建模。研究表明,发电机频率对变容管电压的非线性依赖性导致了自差响应信号频谱的加宽。研究发现,随着物体距离的增加,自差响应信号的频率向较高的频率移动,而非线性使光谱变宽。所获得的计算结果涉及一个8毫米耿氏二极管自动达因。结论对具有宽频率调谐的自差收发装置的频谱特性和信号形成特征的研究表明,为了从自差雷达获得高分辨率的数字,需要开发某些方法来调整频率调制定律和处理来自反射物体的响应信号。解决这些问题的方法和方法将在本工作的第2部分中介绍。
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来源期刊
Radio Physics and Radio Astronomy
Radio Physics and Radio Astronomy Physics and Astronomy-Physics and Astronomy (miscellaneous)
CiteScore
0.60
自引率
0.00%
发文量
18
审稿时长
8 weeks
期刊最新文献
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