We present the prototype of an Electric Field Detector (EFD) for space applications, that has been developed in the framework of the Chinese-Italian collaboration on the CSES (China Seismo-Electromagnetic Satellite) forthcoming missions. In particular CSES-1 will be placed in orbit in the early 2018. The detector consists of spherical probes designed to be installed at the tips of four booms deployed from a 3-axes stabilized satellite. The instrument has been conceived for space-borne measurements of electromagnetic phenomena such as ionospheric waves, lithosphere-atmosphere-ionosphere-magnetosphere coupling and anthropogenic electromagnetic emissions. The detector allows to measure electric fields in a wide band of frequencies extending from quasi-DC up to about 4MHz, with a sensitivity of the order of 1μV/m in the ULF band. With these bandwidth and sensitivity, the described electric field detector represents a very performing and updated device for electric field measurements in space. © 2018 Elsevier Ltd

A high-performance electric field detector for space missions

Conti, L.;Vannaroni, G.
2018-01-01

Abstract

We present the prototype of an Electric Field Detector (EFD) for space applications, that has been developed in the framework of the Chinese-Italian collaboration on the CSES (China Seismo-Electromagnetic Satellite) forthcoming missions. In particular CSES-1 will be placed in orbit in the early 2018. The detector consists of spherical probes designed to be installed at the tips of four booms deployed from a 3-axes stabilized satellite. The instrument has been conceived for space-borne measurements of electromagnetic phenomena such as ionospheric waves, lithosphere-atmosphere-ionosphere-magnetosphere coupling and anthropogenic electromagnetic emissions. The detector allows to measure electric fields in a wide band of frequencies extending from quasi-DC up to about 4MHz, with a sensitivity of the order of 1μV/m in the ULF band. With these bandwidth and sensitivity, the described electric field detector represents a very performing and updated device for electric field measurements in space. © 2018 Elsevier Ltd
2018
Earthquakes
Electric field measurement
Electric fields
Electromagnetic dispersion
Electromagnetic wave emission
Ionosphere
Ionospheric measurement
Magnetosphere
Orbits
Probes
Satellites
Software prototyping
Space applications, Electromagnetic emissions
Electromagnetic phenomena
Ionospheric waves
Measurements of
Satellite instruments
Space missions
Space-borne
Spherical probes, Electric variables measurement
Earthquake
Electric field detector
Electromagnetic emissions
Ionosphere
Magnetosphere
Satellite instruments
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14086/4827
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