Efficiency of Hysteresis Rods in Small Spacecraft Attitude Stabilization

المؤلفون المشاركون

Sanz-Andrés, Ángel
Farrahi, Assal

المصدر

The Scientific World Journal

العدد

المجلد 2013، العدد 2013 (31 ديسمبر/كانون الأول 2013)، ص ص. 1-17، 17ص.

الناشر

Hindawi Publishing Corporation

تاريخ النشر

2013-12-31

دولة النشر

مصر

عدد الصفحات

17

التخصصات الرئيسية

الطب البشري
تكنولوجيا المعلومات وعلم الحاسوب

الملخص EN

A semiempirical method for predicting the damping efficiency of hysteresis rods on-board small satellites is presented.

It is based on the evaluation of dissipating energy variation of different ferromagnetic materials for two different rod shapes: thin film and circular cross-section rods, as a function of their elongation.

Based on this formulation, an optimum design considering the size of hysteresis rods, their cross section shape, and layout has been proposed.

Finally, the formulation developed was applied to the case of four existing small satellites, whose corresponding in-flight data are published.

A good agreement between the estimated rotational speed decay time and the in-flight data has been observed.

نمط استشهاد جمعية علماء النفس الأمريكية (APA)

Farrahi, Assal& Sanz-Andrés, Ángel. 2013. Efficiency of Hysteresis Rods in Small Spacecraft Attitude Stabilization. The Scientific World Journal،Vol. 2013, no. 2013, pp.1-17.
https://search.emarefa.net/detail/BIM-1032939

نمط استشهاد الجمعية الأمريكية للغات الحديثة (MLA)

Farrahi, Assal& Sanz-Andrés, Ángel. Efficiency of Hysteresis Rods in Small Spacecraft Attitude Stabilization. The Scientific World Journal No. 2013 (2013), pp.1-17.
https://search.emarefa.net/detail/BIM-1032939

نمط استشهاد الجمعية الطبية الأمريكية (AMA)

Farrahi, Assal& Sanz-Andrés, Ángel. Efficiency of Hysteresis Rods in Small Spacecraft Attitude Stabilization. The Scientific World Journal. 2013. Vol. 2013, no. 2013, pp.1-17.
https://search.emarefa.net/detail/BIM-1032939

نوع البيانات

مقالات

لغة النص

الإنجليزية

الملاحظات

Includes bibliographical references

رقم السجل

BIM-1032939