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Highly balanced gradiometer systems based on HTS-SQUIDs for the use in magnetically unshielded environment

机译:基于HTS-SQUID的高度平衡梯度仪系统,用于非屏蔽电磁环境

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摘要

Two different concepts for gradiometer formation were tested applying high-temperature rf SQUIDs operated at 77 K in liquid nitrogen. All gradiometer systems are fully based on magnetometers. The first concept applies a compensating magnetometer at different positions to actively cancel the magnetic field at the location of other magnetometers. These magnetometers were arranged in an axial direction. In parts, a system of superconducting plates was used to align the relative magnetic orientation of the magnetometers. The outputs of these sensors were used to form a highly balanced electronic gradiometer. The second concept is based on electronic noise cancellation. A set of three magnetometers arranged in an axial direction was used to form an electronic second-order gradiometer. Different types of reference systems based on HTS-SQUID magnetometers and fluxgate sensors were applied to the gradiometer signal for achieving a high common mode rejection of the environmental disturbances. The performance of the different systems is demonstrated in a magnetically unshielded environment as well as in a shielded environment and the common mode rejection of homogeneous magnetic fields is measured. To demonstrate the performance of the systems, biomagnetic measurements have been performed in shielded and unshielded environments
机译:使用在液氮中在77 K下运行的高温rf SQUID测试了梯度计形成的两个不同概念。所有梯度计系统完全基于磁力计。第一个概念是在不同位置应用补偿磁力计,以主动消除其他磁力计所在位置的磁场。这些磁力计沿轴向布置。在零件中,使用超导板系统来对准磁力计的相对磁方向。这些传感器的输出用于形成高度平衡的电子梯度仪。第二个概念基于电子噪声消除。使用一组沿轴向布置的三个磁力计来形成电子二阶梯度仪。基于HTS-SQUID磁力仪和磁通门传感器的不同类型的参考系统被应用于梯度仪信号,以实现对环境干扰的高共模抑制。在非电磁屏蔽环境和屏蔽环境中展示了不同系统的性能,并测量了均匀磁场的共模抑制。为了演示系统的性能,已在屏蔽和非屏蔽环境中进行了生物磁测量

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