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基于数字补相的磁控管雷达用信号处理方法 被引量:2
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作者 范明意 《现代电子》 2002年第3期33-36,共4页
很多老雷达采用磁控管发射机,由于其发射初相是随机变化的。故信号处理非常困难。传统的信号处理多采用相干振荡器实现相干检波,而相干振荡器的初相是由发射主波确定的。由于发射主波的前后缘一般很差,故定相精度很不理想。因而信号处... 很多老雷达采用磁控管发射机,由于其发射初相是随机变化的。故信号处理非常困难。传统的信号处理多采用相干振荡器实现相干检波,而相干振荡器的初相是由发射主波确定的。由于发射主波的前后缘一般很差,故定相精度很不理想。因而信号处理的改善因子受到很大制约。另一种方法是采用数字稳定技术(DSU).用发射取样与回波卷积来补偿随机初相。实现起来较复杂,成本也较高。这里介绍的数字补相技术也用发射样本来求取发射初相。然后在数字域对回波进行补偿。这种方法在实用中取得了很好的效果,对地物的改善因子超过30dB,而且实现方式简单,避免了卷积运算,只需做复数乘法运算。 展开更多
关键词 数字补相 磁控管雷达 信号处理方法 发射主波 相干振荡器 对消器
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Damage characteristics of thermally treated granite under uniaxial compression: Insights from active and passive ultrasonic techniques 被引量:2
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作者 GUO Pei WU Shun-chuan +1 位作者 JIANG Ri-hua ZHANG Guang 《Journal of Central South University》 SCIE EI CAS CSCD 2022年第12期4078-4093,共16页
To explore the effects of thermal treatment on cracking processes in granite, granite samples were thermally treated at 25-400 ℃ and then loaded under uniaxial compression. Active ultrasonic testing and passive acous... To explore the effects of thermal treatment on cracking processes in granite, granite samples were thermally treated at 25-400 ℃ and then loaded under uniaxial compression. Active ultrasonic testing and passive acoustic emission(AE) monitoring were combined to monitor the damage characteristics of the samples. The uniaxial compression strength(UCS) of the sample treated at 200 ℃ shows no apparent change compared with that of the nonheated sample, while the UCS increases at 300 °C and decreases at 400 ℃. As the temperature increases from 25 to 400 ℃, the initial P-wave velocity(Vp) decreases gradually from 4909 to 3823 m/s, and the initial Vpanisotropy ε increases slightly from 0.03 to 0.09. As the axial stress increases, ε increases rapidly in the crack closure stage and unstable cracking stage. The attenuation of ultrasonic amplitude spectra also shows an obvious anisotropy. Besides, the main location magnitude of AE events decreases after thermal treatment, and low-frequency AE events and high-amplitude AE events increasingly occur. However, there is insufficient evidence that the treatment temperature below 400 ℃ has a significant effect on the temporal characteristics, source locations, and b-values of AE. 展开更多
关键词 uniaxial compression thermal treatment acoustic emission ULTRASONIC B-VALUE dominant frequency
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