设计地震波记录仪,开发人类脚步探测算法

Y. Vistyzenko, Andriy Movchanyuk, M. Stepanov, J. Boiko
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引用次数: 0

摘要

介绍了用于记录人类脚步地震信号的地震信号记录仪的研制成果。采用记录仪设计采集地震信号并存储在PC机上,为下一步地震信号处理和创建信号检测分类算法做准备。本文概述了地震波的类型,并给出了它们的分类。确定了地震波传播的条件,阐明了瑞利波的特征。给出了地震传感器的设计结构。描述了地震传感器的具体功能,确定了电源的位置和条件以及外部接口的位置。介绍了使用机电换能器检波器传感器的特点和使用静止地球进行测量的特点。研究表明,开发地震信号传感器电路需要在其结构中放置输入放大器。给出了检波器的主要幅频特性和相频特性。给出了检波器等效电路、放大电路、低通滤波电路。给出了地震记录类型的说明,并对数字信号处理的特点提出了建议。地震信号处理的顺序与其从传感器通过放大级的传输有关,通过低通滤波器以使噪声和干扰最小化。下一步是向ADC发送信号。从检波器的灵敏度和相移的图示中可以看出,应特别注意与输出打开的传感器相对应的曲线。在形成最大等频响应的情况下,传感器的这种配置是最佳的。根据论文的结果,提出了记录仪所有主要模块的结构和原理图设计以及正确使用记录仪所需的软件功能。在现场实际条件下进行的试验表明,地震波记录技术方案的选择是正确的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
SEISMIC WAVE RECORDER DESIGN FOR DEVELOPMENT FOOTSTEP HUMAN DETECTION ALGORITHMS
The article shoving the results of development seismic signal recorder for purpose of registration human footstep seismic signals. Design of recorder was adopted for collection seismic signals and store it on PC, for next seismic signal processing and creation signal detection and classification algorithms. The article provides an overview of the types of seismic waves, their classification is given. The conditions for the propagation of seismic waves are determined, and the features of Rayleigh waves are clarified. The design structure of the seismic sensor has been developed. The specifics of the functioning of the seismic sensor are described, the place and conditions of power supply and placement of the external interface are recognized. The specifics of using the sensor of an electromechanical transducer - geophone and the features of measurements using a stationary earth are described. It is shown that the development of a seismic signal sensor circuit implies the placement of input amplifiers in its structure. The main amplitude-frequency and phase-frequency characteristics of the geophone are presented. Geophone equivalent circuit, amplifier circuit, low-pass filter circuit are presented. Illustrations of types of seismograms are given, recommendations on the features of digital signal processing are given. The order of seismic signal processing is connected with its transmission from the sensor through the amplifying stage, passing through a low-pass filter in order to minimize noise and interference. The next step is to send a signal to the ADC. From the presented graphs of sensitivity and phase shift of the geophone, it follows that special attention should be paid to the curve corresponding to the sensor with an open output. This configuration of the sensor is optimal in the context of the formation of the maximum equal frequency response. As papers result was proposed structural and schematic design for all main recorders blocks and software features that required for properly using recorder. Tests in real conditions on test sites have shown the correctness of the choice of schemes of technical solutions for the task of registering seismic waves.
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