This article describes a spacecraft attitude stabilization system that uses a set of 12 low power magnetic torquers. The low power magnetic torquer consists of a hard magnetic material rod inside a solenoid. Discharging a capacitor through the solenoid winding generates a current pulse that changes the magnetic dipole moment of the rod when required. The interaction of this magnetic dipole moment with the Earth's magnetic field creates a torque on the rod that is used to stabilize the attitude of a spacecraft in low Earth orbit to a local vertical orientation. Pulse width modulating the low power magnetic torquers is shown to improve significantly the precision with which the spacecraft can be aligned with the local vertical. This system is compared by means of computer simulation to a similar one that uses conventional electromagnet torquers and is shown to use about two orders of magnitude less power and energy.


    Access

    Access via TIB

    Check availability in my library

    Order at Subito €


    Export, share and cite



    Title :

    Pulse width modulating low power magnetic torquers for precise spacecraft attitude stabilization


    Additional title:

    Lagestabilisierung von Raumfahrzeugen durch pulsweitenmodulierte elektromagnetische Drehmomenterzeuger mit geringem Leistungsverbrauch


    Contributors:
    Polites, M. (author) / Quarles, C. (author) / Kaderbek, D. (author)


    Publication date :

    2005


    Size :

    12 Seiten, 8 Quellen




    Type of media :

    Article (Journal)


    Type of material :

    Print


    Language :

    English





    Magnetic spacecraft attitude stabilization with two torquers

    Alger, Mike / de Ruiter, Anton | Elsevier | 2021



    A spacecraft attitude stabilization system with low-power magnetic torquers

    Polites, M / Quarles, C / Kadebek, D et al. | SAGE Publications | 2004


    A spacecraft attitude stabilization system with low-power magnetic torquers

    Polites, M. / Quarles, C. / Kadebek, D. et al. | Tema Archive | 2004