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Generation of uniform magnetic field using a single-layer solenoid with multi-current method

机译:单层螺线管多电流法产生均匀磁场

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摘要

The magnetic field of a single-layer solenoid (length L=1020 mm, average radius R=114.67 mm, pitch p=1.0001 mm and wire diameter d=0.799 mm) with a multi-current method was calculated to improve the uniformity and optimized by using Legendre polynomials. The optimum conditions obtained by the calculations for the uniform magnetic field lead to insensitive magnetic field with respect to the radius variations. Therefore, the uncertainty of the generated magnetic field within ±2 cm from the center of the solenoid amounts to about 1 × 10?7 normalized by the central magnetic field. The solenoid coil constant was measured to be 1.2548214 mT/A obtained under compensation of the Earth’s magnetic field in 25 °C air.
机译:计算了多电流方法的单层螺线管的磁场(长度L = 1020 mm,平均半径R = 114.67 mm,节距p = 1.0001 mm,导线直径d = 0.799 mm),以提高均匀性并优化通过使用勒让德多项式。通过计算获得的均匀磁场的最佳条件导致相对于半径变化的不敏感磁场。因此,从螺线管的中心起±2cm以内产生的磁场的不确定度约为由中心磁场归一化的1×10 7。电磁线圈常数经测量为1.2548214 mT / A,是在25°C的空气中通过补偿地球磁场获得的。

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  • 来源
    《MAPAN》 |2009年第1期|9-14|共6页
  • 作者单位

    Center for Electricity ampamp Magnetism Korea Research Institute of Standards and Science (KRISS) P.O. Box 102 Yuseong Daejon 305-340 Rep. of Korea;

    Mendeleyev Institute for Metrology (VNIIM) 19 Moskovsky pr. St.Petersburg Russia;

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