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Spectral Kurtosis based system for transients' detection: Application to termite targeting

机译:基于光谱峰值的瞬变检测系统:应用于白蚁靶向的应用

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In this paper we present the operation results of a portable computer-based measurement equipment conceived to perform non-destructive testing of suspicious termite infestations. Its signal processing module is based in the Spectral Kurtosis (SK) and it can be applied to numerous kinds of transients' detection. We introduce the de-noising complement of the discrete wavelet transform (DWT) and we study how can it serves to reduce subjectiveness. The SK pattern allows the targeting of alarms and activity signals. The DWT complements the SK, by keeping the successive approximations of the termite emissions, supposed more non-Gaussian (less noisy) and with less entropy than the detail approximations. For a given mother wavelet, the maximum acceptable level, in the wavelet decomposition tree, which preserves the insects' emissions features, depends on the comparative evolution of the approximations details' entropies, and the value of the global spectral kurtosis associated to the approximation of the separated signals. The paper explains the detection criterion by showing different types of real-life recordings (alarms, activity, and background).
机译:在本文中,我们介绍了设想的便携式计算机的测量设备的运行结果,以对可疑白蚁侵扰的不破坏性测试。其信号处理模块基于光谱峰(SK),它可以应用于多种瞬态检测。我们介绍了离散小波变换(DWT)的去噪补品,我们研究了如何降低主观性。 SK模式允许定位警报和活动信号。通过保持白蚁排放的连续近似,DWT补充了SK,假设更多的非高斯(较少嘈杂)和比细节近似的熵较少。对于给定的母小波,在小波分解树中保留昆虫的排放特征的最大可接受水平取决于近似细节的熵的比较演化,以及与近似的全局光谱峰值的值分离信号。本文通过显示不同类型的现实生活记录(警报,活动和背景)解释检测标准。

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