SIGNAL FORMATION AND PROCESSING FEATURES FROM AUTODYNE RADAR WITH A WIDE FREQUENCY MODULATION BAND Рart ІІ. Increasing the Resolution of Autodyne Radar by Quasi-Static Correction of the Probe Pulse

Q4 Physics and Astronomy Radio Physics and Radio Astronomy Pub Date : 2022-01-01 DOI:10.15407/rpra27.02.121
G. Ermak, O. Vasilev, A. Varavin, M. Balaban, O. Fateev, V. Zheltov
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Abstract

Subject and Purpose. Proceeding from a mathematical model of the electronically tunable autodyne oscillator (Part І of this paper), essential features of the signal formation / signal processing procedure are considered, as implementable in an autodyne radar that may reveal nonlinearity in its modulation characteristic. The work is aimed at suggesting a digital technique to enable introduction of corrections to the frequency modulation law of the sounding signal and effectuate processing of the data from the close-range autodyne radar (improving its spatial resolution and accuracy of target range measurements). Methods and Methodology. The present analysis of the radiated signal formation and processing of the data from the autodyne radar has been carried out as numerical modeling of spectral, frequency and amplitude characteristics of the radar signals expected, as well as spectral processing of the experimental data from the frequency modulated autodyne radar. Results. An effective law of temporal variations has been suggested for the corrective control voltage of the Gunn diode-based Ka-band autodyne transceiver with a linear law of frequency modulation. The correspondent experimental studies were conducted with an autodyne close-range radar system of Ka-band employing an asymmetric linear frequency modulation with a 500 MHz band of frequency tuning. The use of digital methods for correcting the frequency modulation law has permitted improving the accuracy of target ranging and range resolution up to 0.3 ÷ 0.6 m, which figures correspond to the theoretical limit for the close-range homodyne radar with a 500 MHz tuning band. Conclusion. By linearizing the modulation characteristic of the oscillator and applying digital processing to the autodyne signal in the close-range radar system with a linear frequency modulation law it proves possible to reach ultimately high estimates for the accuracy and resolution of target range measurements. The results obtained can be helpful for developing radar sensors and radiofrequency meters with enhanced parameters and characteristics.
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宽调频波段AUTODYNE雷达信号形成与处理特点Рart ІІ。利用探测脉冲准静态校正提高自达因雷达分辨率
主题和目的。从电子可调谐自差振荡器的数学模型(本文的І部分)出发,考虑了信号形成/信号处理过程的基本特征,作为可实现的自差雷达,可以揭示其调制特性的非线性。这项工作的目的是提出一种数字技术,以便对探测信号的调频规律进行修正,并对近距离自差雷达的数据进行有效处理(提高其空间分辨率和目标距离测量的精度)。方法和方法论。本文对自差雷达辐射信号的形成和数据处理进行了分析,对预期雷达信号的频谱、频率和幅值特性进行了数值模拟,并对调频自差雷达实验数据进行了频谱处理。结果。本文提出了基于Gunn二极管的ka波段自差收发器的校正控制电压的有效时间变化规律,该规律具有线性调频规律。采用非对称线性调频和500 MHz波段频率调谐的ka波段自达因近距离雷达系统进行了相应的实验研究。利用数字方法对调频规律进行校正,使目标测距精度和距离分辨率提高到0.3 ~ 0.6 m,这一数字对应于500 MHz调谐波段近距离同差雷达的理论极限。结论。通过对振荡器的调制特性进行线性化,并利用线性调频规律对近距离雷达系统中的自差信号进行数字处理,最终可以达到较高的目标距离测量精度和分辨率。所得结果可为研制具有更强参数和特性的雷达传感器和射频计提供参考。
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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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