Induction Balance Metal Detector Using Multi-Level Chirp Signal

E. Najafi, S. Hasanzadeh, Kourosh Kheradmandan
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Abstract

Detecting metals beneath the ground as well as recognizing their material was always a big challenge, especially for mine detection applications. This paper presents the capabilities of a novel induction balance metal detector that uses a multilevel chirp (MLC) signal and compares this new concept with the existing technologies. This method applies a chirp signal to a multilevel inverter as a transmitter. The search head receives the resulting waveform and detects the metal. This method is suitable for detecting metal substances such as military mines in short depths beneath the ground. The proposed approach is simulated in COMSOL and MATLAB software environment and is compared with the simulation and experimental results of the existing metal detector methods. The results show that 17% is increased in the detection depth compared to available methods with the proposed method. The method is also capable of discrimination between different materials.
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感应平衡金属探测器采用多级啁啾信号
探测地下金属并识别其材料一直是一个巨大的挑战,特别是对于地雷探测应用。本文介绍了一种采用多电平啁啾(MLC)信号的新型感应平衡金属探测器的性能,并将这种新概念与现有技术进行了比较。该方法将啁啾信号作为发射器应用于多电平逆变器。搜索头接收产生的波形并检测金属。该方法适用于探测地下较浅深度的军用地雷等金属物质。在COMSOL和MATLAB软件环境下对该方法进行了仿真,并与现有金属探测器方法的仿真和实验结果进行了比较。结果表明,与现有方法相比,该方法的检测深度提高了17%。该方法还能够区分不同的材料。
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