Development of locators of small metallic bodies buried in the ground

B. Roston
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引用次数: 8

Abstract

The paper deals with two recent developments in the design of audio-frequency metal locators. The first is the introduction of discrimination against low-conductivity magnetic bodies for the purpose of suppressing unwanted signals. A solution is described which forms the basis of a number of these locators. The principle is to utilize the existence of a phase difference between desired and undesired signals. The need for a more radical departure from the established principles is then examined and the second development (locator No. 7) is discussed. In this locator an alternating magnetic field is set up over a large area, and local field distortions, due to metallic bodies, are observed directly by means of a balanced-coil system. In this way it is possible to attain high sensitivity and operating speed, to eliminate interference between operators, and, for war-time applications, to safeguard the user from booby-traps sensitive to an alternating field.
地下埋藏小金属体定位器的研制
本文介绍了音频金属定位器设计的两个最新进展。首先是为了抑制不需要的信号,引入了对低导电性磁体的鉴别。描述了一种解决方案,它构成了许多这些定位器的基础。原理是利用期望信号和不期望信号之间存在的相位差。然后检查是否需要更彻底地偏离既定原则,并讨论第二个发展(定位器7号)。在该定位器中,在大面积上建立交变磁场,并通过平衡线圈系统直接观察到由于金属体引起的局部场畸变。通过这种方式,可以获得高灵敏度和操作速度,消除操作员之间的干扰,并且对于战时应用,可以保护用户免受对交变场敏感的饵雷。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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