Magnetic field generator for the calibration of magnetometers and electromagnetic compatibility (EMC) and electromagnetic interference (EMI) compliance

被引:0
|
作者
Katiyar, Anurag Kumar [1 ]
Prakash, Alok [1 ]
Dubey, Satya Kesh [1 ]
机构
[1] CSIR, Electromagnet Metrol Sect, Natl Phys Lab, New Delhi 110012, India
关键词
Helmholtz coil; magnetic field generation; electromagnetic compatibility (EMC); electromagnetic interference (EMI); magnetic field therapy;
D O I
10.1080/10739149.2024.2362195
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
A standard magnetic field generation system from 1 to 30 mu T between DC and 20 kHz has been demonstrated for the calibration of DC/AC magnetometers. The system includes a laboratory-designed Helmholtz coil, shunt resistor, digital multimeter, and dedicated power source. The DC coil constant of the Helmholtz coil was determined to be 10.586 mu T/A using a single-axis fluxgate magnetometer. The homogeneity analysis was carried out for the Helmholtz coil to identify the uniformity along the x, y, and z axes. The system for DC generation was standardized and compared by measuring the field values using a single-axis fluxgate magnetometer. Further, the system was validated for AC generation by a search coil with a known turn area (1.3767 +/- 0.0027 m2). Moreover, the measured magnetic field values using a search coil were compared with a commercial magnetometer to identify the variation in generated and measured magnetic fields. The described system can have significant utilities in calibration, electromagnetic interference electromagnetic interference/electromagnetic compatibility (EMI/EMC) testing, magnetic susceptibility testing, and magnetic field therapy applications. The expanded uncertainty of the Helmholtz coil in generating a magnetic field was 0.2-1.6% (at k = 2) from DC to 20 kHz.
引用
收藏
页数:16
相关论文
共 50 条
  • [41] Electromagnetic Interference (EMI) Testing of Electrical Equipment
    Maughan, Clyde V.
    [J]. 2011 ELECTRICAL INSULATION CONFERENCE (EIC), 2011, : 340 - 344
  • [42] Special section on EMC-EMI fields of electromagnetic technologies
    Mutoh, N
    Ohnishi, K
    Matsui, N
    [J]. IEEE TRANSACTIONS ON INDUSTRIAL ELECTRONICS, 2003, 50 (06) : 1074 - 1077
  • [43] Some aspects of electromagnetic interference, electromagnetic compatibility and geomagnetic induced currents
    Salinas, Ener
    [J]. XVI MEETING OF PHYSICS, 2018, 1143
  • [44] Software controlled generator for electromagnetic compatibility evaluation
    Gajewski, P
    Lopatka, J
    [J]. SIGNAL PROCESSING FOR TELECOMMUNICATIONS AND MULTIMEDIA, 2005, 27 : 211 - 219
  • [45] Calibration and Localization of Optically Pumped Magnetometers Using Electromagnetic Coils
    Iivanainen, Joonas
    Borna, Amir
    Zetter, Rasmus
    Carter, Tony R.
    Stephen, Julia M.
    McKay, Jim
    Parkkonen, Lauri
    Taulu, Samu
    Schwindt, Peter D. D.
    [J]. SENSORS, 2022, 22 (08)
  • [46] Electromagnetic compatibility (EMC) in electric power supply (EPS) systems
    Kartashev, I.I.
    [J]. Elektrotekhnika, 2001, (04): : 57 - 61
  • [47] DESIGN OF NPPCI ELECTRONIC EQUIPMENT TO ACHIEVE ELECTROMAGNETIC COMPATIBILITY (EMC)
    EVANGELATOS, G
    [J]. ATOMIC ENERGY REVIEW, 1978, 16 (02) : 339 - 343
  • [48] ''Designing for EMC'' - A case study for developing a course in electromagnetic compatibility
    Nelson, RM
    [J]. IEEE TRANSACTIONS ON EDUCATION, 1997, 40 (04) : 283 - 286
  • [49] A REVIEW OF ELECTROMAGNETIC COMPATIBILITY INTERFERENCE MEASUREMENT METHODOLOGIES
    MA, MT
    KANDA, M
    CRAWFORD, ML
    LARSEN, EB
    [J]. PROCEEDINGS OF THE IEEE, 1985, 73 (03) : 388 - 411
  • [50] Electromagnetic compatibility, interference, and susceptibility in EET programs
    Lozano-Nieto, A
    Ofosu, W
    [J]. JOURNAL OF ENGINEERING TECHNOLOGY, 2000, 17 (02): : 32 - 36