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Processing information from magnetic field sensors in helmet mounted cueing systems

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
In the XXI century, magnetic measurements are widely used in many diverse applications. In this paper, we present the practical application of magnetic measurements in the Helmet Mounted Cueing System (HMCS) on board military aircraft . We start with the research problem and proposed solutions (idea). Next, the theoretical basis of the helmet’s system operation are described. Herein, we include the characteristics of the Earth’s magnetic fi eld and the modeling of this (WMM 2015, IGRF 12, EMM2017), as well as the theory of magnetic fi eld distribution as generated in fl at coils, Helmholtz coils and anti-Helmholtz coils. In the later detailed part, we describe the metrological aspects of HMCS applications and the characteristics therein of diff erent magnetometers used in the tests, plus example test results. Finally, we describe ongoing research, while in the summary, we present further research possibilities and potential directions of research in the avionic implementation of magnetic phenomena in HMCS systems.
Rocznik
Strony
36--42
Opis fizyczny
Bibliogr. 22 poz.
Twórcy
  • AIR FORCE INSTITUTE OF TECHNOLOGY, Księcia Bolesława 6, Warsaw, Poland
autor
  • AIR FORCE INSTITUTE OF TECHNOLOGY, Księcia Bolesława 6, Warsaw, Poland
autor
  • AIR FORCE INSTITUTE OF TECHNOLOGY, Księcia Bolesława 6, Warsaw, Poland
Bibliografia
  • [1] ADIS 16405, Analog Devices, Triaxial Inertial Sensor with Magnetometer, datasheet, www.analog.com [date of access: 20.01.2020]
  • [2] AMI305, Aichi Steel, datasheet, www.aichi-mi.com [date of access: 20.01.2020]
  • [3] ARNAUD, C., ET AL.: The US/UK World Magnetic Model for 2015-2020: Technical Report, National Geophysical Data Center, NOAA
  • [4] COSMOL Multiphysics® Modeling Software, www.cosmol.com [date of access: 20.01.2020]
  • [5] DE TROYE D.J., CHASE R.J.: The Calculations and Measurements of Helmholtz Coil Fields, Army Research Laboratory, ARL-TN-35, November 1994
  • [6] ERWAN T., ET AL.: International Geomagnetic Reference Field: the 12th generation, Earth, Planets and Space 2015, 67, 67-79
  • [7] FXSO8700Q, 6-axial sensor with integrated linear accelerometer and magnetometer, technical data, Rev. 8-25 April 2017, www. nxp.com [date of access: 20.01.2020]
  • [8] https://www.aichi-steel.co.jp [date of access: 20.01.2020]
  • [9] http://www.intermagnet.org [date of access: 20.01.2020]
  • [10] https://www.ngdc.noaa.gov/geomag/EMM/ [date of access: 20.01.2020]
  • [11] https://www.swpc.noaa.gov/ [date of access: 20.01.2020]
  • [12] IEEE SENSORS JOURNAL, Advances in Magnetic Field Sensors, VOL. 10, NO. 6, JUNE 2010
  • [13] JAVOR E.R., ANDERSON, T.: Design of Helmholtz Coil for Low Frequency Magnetic Field Susceptibility Testing, Naval Undersea Warfare Center, Division Nevport, USA 1998
  • [14] KNOEPFEL H.E., Magnetic Fields. A Comprehensive Theoretical Treatise for Practical Use, A Wiley-Interscience Publication, Toronto 2000
  • [15] RASH C.: Helmet Displays in Aviation. Helmet Mounted Display. Design Issues for Rotary-Wing Aircraft, USA, Fort Rucker 2009
  • [16] RMI3100 Geomagnetic Sensor, datasheet, www.pnicorp.com [date of access: 20.01.2020]
  • [17] SZELMANOWSKI A.: Helmet Mounted Cueing System NSC- 1 ORION for military helicopters with Integrated Avionics System, Air Force Institute of Technology, Warsaw, Poland 2013
  • [18] TUMAŃSKI, S.: Modern magnetic field sensors – a review, Electrotechnical Review, R. 89 nr 10.2013
  • [19] UCHIYAMA T., ET AL.: Recent Advances of Pico-Tesla Resolution Magneto-Impedance Sensor Based on Amorphous Wire CMOS IC MI Sensor. IEEE Trans. of Magnetics, vol 48(11), 3833-3839, November 2012
  • [20] WOLFRAM MATHEMATICA, www.wolfram.com [date of access: 20.01.2020]
  • [21] XEN1210 Magnetic Sensor, datasheet, www.sensixs.nl [date of access: 20.01.2020]
  • [22] YOUK H.: Numerical study of quadruple magnetic traps for neutral atoms: anti=Helmholtz coils and a U-chip, Department of Physic, University of Toronto 2004
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-0ef8e3ce-3b74-45b9-a691-e7db25ef46c1
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