Ream, Jodie B and Weiss, Benjamin P and Oran, Rona and Raymond, Carol A and Polanskey, Carol A and Wenkert, Daniel D and Elkins-Tanton, Linda T and Hart, Richard A and Russell, Christopher T and Merayo, Jose M G (2022) Magnetic gradiometry using frequency-domain filtering. Measurement Science and Technology, 33 (1). 015104. ISSN 0957-0233
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Abstract
Accurate measurements of ambient planetary and interplanetary magnetic fields using spacecraft magnetometers typically require accounting for interfering magnetic fields generated by the flight system (FS). The most common method for removing FS-generated time-variable magnetic fields is narrow-band and low-pass filtering of magnetic field data in the frequency domain. However, if fluctuations in the ambient field contain frequencies overlapping those in the FS field, it can be difficult to construct a filter that will not affect both signals. Here we present an alternate method for removing FS time-variable signatures from magnetic field measurements. For spacecraft that make use of a magnetic gradiometer (i.e. with two or more instruments on a boom at different distances from the center of the spacecraft), the dominant frequencies in the FS field can be identified using spectra of the differenced field components. The amplitudes of the FS field at those frequencies can then be suppressed without removing spectral peaks present in the ambient field. We demonstrate the successful application of this method, referred to as gradiometry peak suppression, both to modeled data sets and to 128 Hz Venus Express magnetometer data.
Item Type: | Article |
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Subjects: | STM One > Computer Science |
Depositing User: | Unnamed user with email support@stmone.org |
Date Deposited: | 21 Jun 2023 06:37 |
Last Modified: | 15 Sep 2025 03:51 |
URI: | http://note.send2pub.com/id/eprint/1426 |