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Analysis of Noise Characteristics of Multichannel Systems of the Formation of Signals of Georadars with Synthesized Aperture

机译:合成孔径雷达雷达信号形成的多通道系统噪声特性分析

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摘要

The noise characteristics of multichannel systems of forming signals based on hybrid frequency synthesizers with automatic compensation of phase distortions of direct digital synthesizers, which are used in the composition of georadars with synthesized aperture, are investigated. It is established that the phase noise of the output signals of the formers at the 1 kHz detuning from the carrier oscillation at the output frequencies of the devices in the range from 500 to 3500 MHz is characterized by a level of minus 100 - minus 130 dB. In this case, the circuit of the signal former based on a hybrid frequency synthesizer with direct digital synthesizer as a reference oscillator of a phase locked loop is characterized by the worst noise characteristics but with the highest degree of autocompensation (about 13 dB). Conversely, the circuit of the signal former based on a hybrid frequency synthesizer with direct digital synthesizer as a support generator of the phase-locked loop has the best phase noises level from the considered variants of devices and least degree of autocompensation (about 6 dB).
机译:研究了具有直接补偿频率合成器相位失真的混合频率合成器的多通道成象系统的噪声特性,该合成器用于合成孔径的地质雷达组成中。可以确定的是,在500至3500 MHz范围内的设备输出频率处,与载波振荡失谐的,在1 kHz时,前者的输出信号的相位噪声的特征是负100-负130 dB 。在这种情况下,基于具有直接数字合成器作为锁相环参考振荡器的混合频率合成器的信号形成器的电路具有最差的噪声特性,但具有最高的自动补偿程度(约13 dB)。相反,基于所考虑的器件变体,基于直接频率合成器的混合频率合成器和直接数字合成器作为支持发生器的信号形成器的电路具有最佳的相位噪声水平,并且自动补偿程度最低(约6 dB) 。

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