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Investigation of the influence of a large steel plate on the magnetic field distribution of a magnetic proximity detection system

机译:大钢板对磁性接近检测系统磁场分布的影响研究

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摘要

A magnetic proximity detection system is mounted on a mobile mining machine to prevent underground workers from being pinned or struck by machine motion. The system generates magnetic fields around the machine to determine safe working distances. The miner-worn component measures the magnetic field in order to approximate location. Large masses of steel, such as those from mining equipment, can alter the magnetic field distribution. This affects the locational accuracy of the system, thus adversely impacting worker safety. To examine this problem, U.S. National Institute for Occupational Safety and Health researchers developed a method and test system to study the influence of a steel mass on the magnetic field distribution. The results show that a steel plate can strengthen the magnetic field perpendicular to the generator by up to 40 percent. Furthermore, they show that the degree of the influence on the field distribution is a function of distance. The results from this study can be used to further develop and improve the performance and reliability of electromagnetic proximity detection systems used in underground mining applications.
机译:磁性接近检测系统安装在移动采矿机上,以防止地下工人通过机器运动固定或击中。系统在机器周围生成磁场以确定安全工作距离。矿工成分测量磁场以近似位置。大量钢,如从采矿设备,可以改变磁场分布。这影响了系统的位置准确性,从而不利地影响了工人安全性。为了审查这个问题,美国国家职业安全和卫生研究所研究人员开发了一种研究钢块对磁场分布的影响的方法和测试系统。结果表明,钢板可以加强垂直于发电机的磁场高达40%。此外,他们表明对场分布的影响程度是距离的函数。本研究的结果可用于进一步发展和改进地下采矿应用中使用的电磁接近检测系统的性能和可靠性。

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