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DUAL-TREE WAVELET PACKET TRANSFORM FOR ULTRASONIC DATA TRANSMISSION THROUGH METAL STRUCTURES

机译:通过金属结构进行超声数据传输的双树小波包变换

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Data communication through metallic structures is generally encountered in manufacturing equipment and process monitoring and control. This paper presents a signal processing technique for enhancing the signal-to-noise ratio and high-bit data transmission rate in ultrasound-based wireless data transmission through metallic structures. A multi-carrier coded-ultrasonic wave modulation scheme is firstly investigated to achieve high-bit data rate communication while reducing inter-symbol inference and data loss, due to the inherent signal attenuation, wave diffraction and reflection in metallic structures. To improve the signal-to-noise ratio, dual-tree wavelet packet transform (DT-WPT) has been investigated to separate multi-carrier signals under noise contamination, given its properties of shift-invariance and flexible time frequency partitioning. A new envelope extraction and threshold setting strategy for selected wavelet coefficients is then introduced to retrieve the coded digital information. Experimental studies are performed to evaluate the effectiveness of the developed signal processing method for manufacturing.
机译:通过金属结构的数据通信通常在制造设备和过程监控和控制中遇到。本文介绍了通过金属结构提高超声基无线数据传输中的信噪比和高位数据传输速率的信号处理技术。首先研究了多载波编码超声波调制方案,以实现高比特数据速率通信,同时降低符号间的推断和数据丢失,由于固有的信号衰减,波衍射和金属结构中的反射。为了提高信噪比,已经研究了双树小波分组变换(DT-WPT)以在噪声污染下分离多载波信号,因为其转移不变性和灵活的时间频率分区。然后引入了用于所选小波系数的新的包络提取和阈值设置策略以检索编码的数字信息。进行实验研究以评估制造的发达信号处理方法的有效性。

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