基于iMx6UL与时钟同步技术的微震监测系统设计  被引量:6

Design of microseismic monitoring system based on iMx6UL and clock synchronization technology

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作  者:孙学波 陈发兵[1,2] 王元杰 SUN Xue-bo;CHEN Fa-bing;WANG Yuan-jie(Mining and Design Department,Tiandi Science and Technology Co.,Ltd.,Beijing 100013,China;Mining and Design Branch,China Coal Research Institute,Beijing 100013,China)

机构地区:[1]天地科技股份有限公司开采设计事业部,北京100013 [2]煤炭科学研究总院开采设计研究分院,北京100013

出  处:《煤炭工程》2020年第5期106-110,共5页Coal Engineering

基  金:中国煤炭科工集团面上基金(2017MS006)。

摘  要:针对目前微震监测设备以普通单片机与非实时性应用系统带来的速度低、误差大等问题,设计了一款以高速ARM为处理器的高精度微震监测系统。该系统采用支持IEEE1588标准的高速处理器iMx6UL为主控MCU,选用Linux操作系统,结合24位AD采集芯片。实现了对磁电式振动传感器的高速数据采集、打印同步时间戳、数据网络传输,上层计算机进行震动定位计算。测试结果表明该系统数据测量精确,定位计算误差小,满足冲击地压矿井的使用。In view of low speed and large error of ordinary single-chip computer and non-real-time application system in current microseismic monitoring equipment,a high-precision microseismic monitoring system is designed with high-speed ARM processor. The major MCU of the system is iMx6UL,a high-speed processor supporting IEEE1588 standard,with Linux Operating System and 24-bit AD acquisition chip. Through this system, high-speed data acquisition of magnetoelectric vibration sensor, synchronous time stamp printing and data network transmission are realized, and vibration location calculation is carried out by the upper computer. The test results show that the system has accurate data measurement and small positioning calculation error,which can meet the needs of rock burst mine.

关 键 词:ARM 微震监测 IEEE1588 LINUX 冲击地压 

分 类 号:TD676[矿业工程—矿山机电]

 

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