Skip to main content
Log in

Magnetic field experiment on the Freja satellite

  • Published:
Space Science Reviews Aims and scope Submit manuscript

    We’re sorry, something doesn't seem to be working properly.

    Please try refreshing the page. If that doesn't work, please contact support so we can address the problem.

Abstract

Freja is a Swedish scientific satellite mission to study fine scale auroral processes. Launch was October 6, 1992, piggyback on a Chinese Long March 2C, to the present 600×1750 km, 63° inclination orbit. The JHU/APL provided the Magnetic Field Experiment (MFE), which includes a custom APL-designed Forth, language microprocessor. This approach has led to a truly generic and flexible design with adaptability to differing mission requirements and has resulted in the transfer of significant ground analysis to on-board processing. Special attention has been paid to the analog electronic and digital processing design in an effort to lower system noise levels, verified by inflight data showing unprecedented system noise levels for near-Earth magnetic field measurements, approaching the fluxgate sensor levels. The full dynamic range measurements are of the 3-axis Earth's magnetic field taken at 128 vector samples s−1 and digitized to 16 bit, resolution, primarily used to evaluate currents and the main magnetic field of the Earth. Additional 3-axis ‘AC’ channels are bandpass filtered from 1.5 to 128 Hz to remove the main field spin signal, the range is±650 nT. These vector measurements cover Pc waves to ion gyrofrequency magnetic wave signals up to the oxygen gyrofrequency (∼40 Hz). A separate, seventh channel samples the spin axis sensor with a bandpass filter of 1.5 to 256 Hz, the signal of which is fed to a software FFT. This on-board FFT processing covers the local helium gyrofrequencies (∼160 Hz) and is plotted in the Freja Summary Plots (FSPs) along with disturbance fields. First data were received in the U.S. October 16 from Kiruna, Sweden via the Internet and SPAN e-mail networks, and were from an orbit a few hours earlier over Greenland and Sweden. Data files and data products, e.g., FSPs generated at the Kiruna ground station, are communicated in a similar manner through an automatic mail distribution system in Stockholm to PIs and various users. Distributed management of spacecraft operations by the science team is also achieved by this advanced communications system.

An exciting new discovery of the field-aligned current systems is the high frequency wave power or structure associated with the various large-scale currents. The spin axis ‘AC’ data and its standard deviation is a measure of this high-frequency component of the Birkeland current regions. The exact response of these channels and filters as well as the physics behind these wave and/or fine-scale current structures accompanying the large-scale currents is being pursued; nevertheless, the association is clear and the results are used for the MFE Birkeland current monitor calculated in the MFE microprocessor. This monitor then sets a trigger when it is greater than a commandable, preset threshold. This ‘event’ flag can be read by the system unit and used to remotely command all instruments into burst mode data taking and local memory storage. In addition,Freja is equipped with a 400 MHz ‘Low Speed Link’ transmitter which transmits spacecraft hcusekeeping that can be received with a low cost, portable receiver. These housekeeping data include the MFE auroral zone current detector; this space weather information indicates the location and strength of ionospheric current systems that directly impact communications, power systems, long distance telephone lines and near-Earth satellite operations. The JHU/APL MFE is a joint effort with NASA/GSFC and was co-sponsored by the Office of Naval Research and NASA/Headquarters in cooperation with the Swedish National Space Board and the Swedish Space Corporation.

This is a preview of subscription content, log in via an institution to check access.

Access this article

Price excludes VAT (USA)
Tax calculation will be finalised during checkout.

Instant access to the full article PDF.

Similar content being viewed by others

References

  • Acuña, M. H.: 1974, ‘Fluxgate Magnetometers for Outer Planets Exploration’,IEEE Trans. Magnetics Mag-10, 519.

    Google Scholar 

  • Acuña, M. H., Scearce, S. C., Seek, J. B., and Scheifele, J.: 1978,The Magsat Vector Magnetometer — A Precision Fluxgate Magnetometer for the Measurement of the Geomagnetic Field, NASA TM-79656.

  • Anderson, B. J., Takahashi, K., Erlandson, R. E., and Zanetti, L. J.: 1990, ‘Pcl Pulsations Observed by AMPTE/CCE in the Earth's Outer Magnetosphere’, Geophys. Res. Letters17, 1853.

    Google Scholar 

  • Anderson, B. J., Potemra, T. A., Bythrow, P. F.,. Zanetti, L. J., Holland, D. B., and Winningham, J. D.: 1993, ‘Auroral Currents During the Magnetic Storm of November 8 and 9, 1991: Observations from the Upper Atmosphere Research Satellite Particle Environment Monitor’,Geophys. Res. Letters 20, 1327.

    Google Scholar 

  • Ballard, B., Henshaw, R., and Zaremba, T.: 1984, ‘Forth Direct Execution Processors in the Hopkins Ultraviolet Telescope’,The Journal of Forth Application and Research 2, 33–47.

    Google Scholar 

  • Burke, W. J., Hardy, D. A., Rich, F. J., Kelly, M. C., Smiddy, M., Shuman, B., Sagalyn, R. C., Vancour, R. P., Wipman, P. J. L., and Lai, S. T.: 1980, ‘Electrodynamic Structure of the Late Evening Sector of the Auroral Zone’,J. Geophys. Res. 85, 1179.

    Google Scholar 

  • Bythrow, P.F., Doyle, M. A., Potemra, T. A., Zanetti, L. J., Huffman, R. E., Meng, C.-I., Hardy, D. A., Rich, F. J., and Heelis, R. A.: 1986, ‘Multiple Auroral Arcs and Birkeland Currents: Evidence for Plasma Sheet Boundary Waves’,Geophys. Res. Letters 13, 805.

    Google Scholar 

  • Eliasson, L.et al.: 1994, ‘The Freja Particle Instrument’,Space Sci. Rev. 70, 000 (this issue).

  • Engebretson, M. J., Zanetti, L. J., Potemra, T. A., and Acuña, M. H.: 1986, ‘Harmonically Sructured ULF Pulsations Observed by the AMPTE/CCE Magnetic Field Experiment’,Geophys. Res. Letters 13, 905.

    Google Scholar 

  • Erlandson, R. E., Zanetti, L. J., and Potemra, T. A.: 1989, ‘Magnetic Fluctuations from 0 to 26 Hz Observed from a Polar Orbiting Satellite’,IEEE Trans. on Plasma Sci. 17, 196.

    Google Scholar 

  • Erlandson, R. E., Zanetti, L. J., Potemra, T. A., Block, L. P., and Holmgren, G.: 1990, ‘Viking Magnetic and Electric Field Observations of PC1 Waves at High Latitudes’,J. Geophys. Res. 95, 5941.

    Google Scholar 

  • Gordon, D. I. and Brown, R. E.: 1972, ‘Recent Advances in Fluxgate, Magnetometry’,IEEE Trans. Magnetics Mag-8, 76.

    Google Scholar 

  • Grahn, S.et al.: 1994, ‘The Freja Spacecraft’,Space Sci. Rev. 70, 000 (this issue).

  • Hayes, J. R., Fraeman, M. E., Williams, R. L., and Zaremba, T.: 1987, ‘An Architecture for the Direct Execution of the Forth Programming Language, Proceedings, of the Second International Conference on Architectural Support for Programming Languages and Operating System’,The Compute Society of the IEEE, pp. 42–49.

  • Iijima, T., Potemra, T. A., and Zanetti, L. J.: 1990, ‘Large-Scale Characteristics of Magnetospheric Equatorial Currents’,J. Geophys. Res. 95, 991.

    Google Scholar 

  • Marklund, G.et al.: 1994, ‘The Freja Electric Field Instrument’,Space Sci. Rev. 70, 000 (this issue).

  • Mauk, B. H., and Zanetti, L. J.: 1987, ‘Magnetospheric Electric Fields and Currents’,Rev. Geophys. Space Phys. 25, 541.

    Google Scholar 

  • Potemra, T. A., Zanetti, L. J., Bythrow, P. F., Erlandson, R. E., Lundin, R., Marklund, G. T., Block, L. P., and Lindqvist, P.-A.: 1988, ‘Resonant Geomagnetic Field Oscillations and Birkeland Currents in the Morning Sector’,J. Geophys. Res. 93, 2661.

    Google Scholar 

  • Potemra, T. A., Zanetti, L. J., Erlandson, R. E., Bythrow, P. F., Gustafsson, G., Acuña, M. H., and Lundin, R.: 1987, ‘Observations of Large-Scale Birkeland Currents with Viking’,Geophys. Res. Letters 14, 419.

    Google Scholar 

  • Zanetti, L. J., Potemra, T. A., Anderson, B., Erlandson, R. E., Holland, D. B., Acuna, M. H., Kappenman, J., Lesher, R., and Feero, W.: 1994, ‘Freja Magnetic Field Measurements and the Sunburst Monitor System’,Geophys. Res. Letters (in press).

  • Zanetti, L. J., Baumjohann, W., Potemra, T. A., and Bythrow, P. F.: 1984, IN T. A. Potemra (ed.), ‘Three-Dimensional Birkeland-Ionospheric Current Systems Determined from MAGSAT’,Magnetospheric Currents, Geophysical Monograph 28, 131–136.

  • Zanetti, L. J., Potemra, T. A., Iijima, T., and Baumjohann, W.: 1991, ‘Equatorial, Birkeland, and Ionospheric Currents of the Magnetospheric Storm Circuit’,Magnetospheric Substorms, AGU Monograph 64, 111–122.

    Google Scholar 

Download references

Author information

Authors and Affiliations

Consortia

Additional information

Freja Magnetic Field Experiment Team

Rights and permissions

Reprints and permissions

About this article

Cite this article

Freja Magnetic Field Experiment Team. Magnetic field experiment on the Freja satellite. Space Sci Rev 70, 465–482 (1994). https://doi.org/10.1007/BF00756882

Download citation

  • Received:

  • Issue Date:

  • DOI: https://doi.org/10.1007/BF00756882

Keywords

Navigation