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A Gas Leakage Localization Method Based on a Virtual Ultrasonic Sensor Array

机译:基于虚拟超声传感器阵列的漏气定位方法

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摘要

In traditional sensory array-based acoustic emission methods that are used for gas leakage localization, the localization resolution depends on the spatial aperture of the array, that is, the number of sensors. Most of the existing methods use small arrays that can only achieve low-resolution localization results because of limitations such as the amplitude and phase consistency, the complexity and cost of the system. This paper reports the first application of a virtual phased array for gas leakage detection to obtain high-resolution localization results. This method uses a virtual linear ultrasonic sensor array composed of only two sensors to acquire leakage signals. Then, we use the virtual beamforming algorithm based on the cross-power spectrum to estimate the location of the leakage source. Several experiments were conducted to evaluate the effectiveness and operability of the proposed method. The impacts of various factors on the performance of the localization technique are compared and discussed, including factors such as the number of sensors and the distance between the leak hole and virtual array. The results demonstrate that the proposed method accurately and reliably localizes gas leakages.
机译:在用于气体泄漏定位的传统的基于传感器阵列的声发射方法中,定位分辨率取决于阵列的空间孔径,即传感器的数量。由于诸如幅度和相位一致性,系统的复杂性和成本之类的限制,大多数现有方法使用的小阵列只能获得低分辨率的定位结果。本文报道了虚拟相控阵在气体泄漏检测中获得高分辨率定位结果的首次应用。该方法使用仅由两个传感器组成的虚拟线性超声传感器阵列来获取泄漏信号。然后,我们使用基于互功率谱的虚拟波束成形算法来估计泄漏源的位置。进行了几次实验,以评估该方法的有效性和可操作性。比较并讨论了各种因素对定位技术性能的影响,包括诸如传感器数量以及泄漏孔与虚拟阵列之间的距离等因素。结果表明,该方法能够准确,可靠地定位气体泄漏。

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