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Real-time analysis signal processor for ultrasonic nondestructive testing

机译:实时分析信号处理器,用于超声波无损检测

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摘要

Hilbert transform processors were developed to improve flaw detection in parts by sensing the rate of total energy arrival. Analytic signal processing is used to improve pulse resolution. A real-time analytic processor was built using single-sideband (SBB) AM techniques. An upper sideband processor using the filter method to maximize signal bandwidth and in which the lower sideband aliases was built. This processor has a transducer bandwidth of 0.5 to 20 MHz and can resolve echoes 90-ns apart. The spurious products of practical mixers and amplifiers make the aliased approach impractical due to high noise and distortion. By using a bandpass filter after the mixer, distortion is reduced. A processor built with a lower sideband filter method yielded the lowest distortion and noise. The lower sideband processor has a bandwidth of 2 to 42 MHz and can resolve echoes 60-ns apart. With a single-cycle tone-burst processor input, ringing in the IF filter causes temporal asymmetry of the output pulse, while ringing in the detector filter causes ringing in the output pulse. Performance is expected to improve through the design of optimized filters. The ringing is less with ultrasonic echoes, because they do not start and stop as abruptly as a tone burst.
机译:希尔伯特变换处理器的开发旨在通过检测总能量到达率来改善零件的缺陷检测。分析信号处理用于提高脉冲分辨率。使用单边带(SBB)AM技术构建了一个实时分析处理器。使用滤波器方法的上边带处理器可最大化信号带宽,并在其中构建了下边带别名。该处理器的换能器带宽为0.5到20 MHz,可以分开90 ns的回波。由于高噪声和失真,实际混频器和放大器的杂散产物使混叠方法变得不切实际。通过在混频器之后使用带通滤波器,可以减少失真。使用较低边带滤波器方法构建的处理器产生的失真和噪声最低。下边带处理器具有2到42 MHz的带宽,可以分开60 ns的回波。使用单周期音调突发处理器输入时,IF滤波器中的振铃会导致输出脉冲的时间不对称,而检测器滤波器中的振铃会导致输出脉冲的振铃。通过设计优化的滤波器,有望提高性能。超声回波的振铃较少,因为它们不像音调突发那样突然启动和停止。

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