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Research on Metal Magnetic Memory Signal Singularity Detection

机译:金属磁记忆信号奇异性检测研究

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Two novel signal singularity detection (SSD) algorithms for metal magnetic memory (MMM) signal are put forward in this paper: the signal segmented fluctuation and the signal segmented dissimilarity. What the former results from is that the MMM signal corresponding to the stress concentrated area (SCA) fluctuates more heavily than non SCA while the latter is based on the fact that if the MMM signal, which has a definite length, is segmented in a certain interval, the stress concentrated segments (SCS) are generally far less than those which are not stress concentrated by number, and the signals of the non SCSs are similar to each other, but the signals from SCSs are dissimilar to those of non SCSs. The two methods have the advantage in the detection of the metallic work piece which is non defective in looks but fatigued as well as may be helpful to detect the singularity of the signals such as negative pressure wave, ultrasonic wave etc. Experimental result with real data demonstrates the effectiveness of the proposed algorithms. Moreover, the MMM SSD software implementation are considered.
机译:提出了两种新颖的金属磁记忆信号奇异点检测算法:信号分段波动和信号分段不相似,前者是由于MMM信号对应于应力集中区(SCA)的波动要比非SCA大得多,而后者则基于以下事实:如果将一定长度的MMM信号按一定间隔分段,则应力集中分段(SCS)通常远小于非SCA不是应力集中,非SCS的信号彼此相似,但来自SCS的信号却与非SCS信号不同,这两种方法在检测非金属工件方面具有优势。外观上有缺陷,但很疲劳,也可能有助于检测负压波,超声波等信号的奇异性。真实数据的实验结果表明所提算法的有效性。此外,考虑了MMM SSD软件的实现。

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