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Spacecraft Momentum Control Systems - Hamilton, Brian J.

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    Brand new, In English, Fast shipping from London, UK; Tout neuf, en anglais, expédition rapide depuis Londres, Royaume-Uni;ria9783319361741_dbm

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        Présentation Spacecraft Momentum Control Systems de Hamilton, Brian J. Format Broché

         - Livre Littérature Générale

        Livre Littérature Générale - Hamilton, Brian J. - 31/07/2016 - Broché - Langue : Anglais

        . .

      • Auteur(s) : Hamilton, Brian J. - Leve, Frederick A. - Peck, Mason A.
      • Editeur : Springer International Publishing Ag
      • Langue : Anglais
      • Parution : 31/07/2016
      • Format : Moyen, de 350g à 1kg
      • Nombre de pages : 268
      • Expédition : 411
      • Dimensions : 23.5 x 15.5 x 1.5
      • ISBN : 3319361740



      • Biographie:
        Frederick A. Leve Program Officer at the Air Force Research Laboratory, Air Force Office of Scientific Research, received his Ph.D. in Aerospace Engineering from the University of Florida in 2010. While at the University of Florida, he received the IAF Silver Hermann Oberth Medal and the AIAA Abe Zarem Award for Astronautics. Currently, he runs a basic research program in dynamical systems and control theory and leads the Autonomy Working Group. He has published many papers in the area of attitude dynamics and control, specifically with respect to momentum control systems and also performs research in under-actuated control, fault tolerant control, control allocation, analytical mechanics, and system identification. Dr. Leve is a recipient of the 2014 AFRL Early Career Award. Brian J. Hamilton Former Engineering Fellow at Honeywell Aerospace, received a BSEE with Honors from the University of Illinois, 1976. Mr. Hamilton has 42 years of experience at Honeywell (formerly, Sperry) and has participated in the development of CMG technology since its infancy. In later years, his research focus has been on CMG array control and steering, and the general application of momentum systems to agile spacecraft attitude control. Other areas of specialty include nonlinear modeling, controls design, system optimization and active magnetic suspension. Mr. Hamilton holds 12 patents. Mason A. Peck Professor of Astronautics at Cornell University, received his Ph.D. in Aerospace Engineering from the University of California, Los Angeles, in 2001. He has worked as an aerospace engineer since 1994 and has been on the faculty at Cornell since 2004. From late 2011 through early 2014, he was NASA's Chief Technologist. In that role, he served as the agency's chief strategist for technology investment and prioritization and advocate for innovation in aeronautics and space technology. His research lab focuses on fundamental research in space technology that can be advanced through flight experiments. Examples include Violet, a nanosatellite for demonstrating CMG steering laws, and KickSat, the world's first crowdfunded spacecraft. Dr. Peck holds 19 patents in the USA and the E.U. and has over 100 academic publications. He received the NASA Distinguished Public Service Medal in 2014.

        William Bialke Former Chief Engineer of Ithaco Space Systems, received a BSME with Honors from North Dakota State University in 1983. Mr Bialke has devoted his entire career to the development and manufacture of reaction wheels used on over 250 spacecraft, starting with Honeywell, and later as the architect of the Ithaco reaction wheel product line. He has written a number of papers on reaction wheel design tradeoffs, micro-vibration disturbance sources and bearing failure modes. He was lead investigator of a root cause analysis of on-orbit reaction wheel failures spanning 16 years, which led to a discovery of electrical discharge as the primary contributor to anomalies and failures in reaction wheel bearings. Mr. Bialke holds 6 patents.
        ...

        Sommaire:
        Overview and Context for Spacecraft Momentum Control.- Agile Spacecraft Dynamics and Control.- Requirements Development for Momentum-Control Systems.- Dynamics of Momentum-Control Devices.- Inner-Loop Control of Momentum-Control Devices.- CMG Arrays.- CMG Singularities.- Steering Algorithms.- Motors in Space.- Bearings and Lubrication in Space.- Integration and Test.- Commercial and Academic Flight Heritage of CMG.- Current State of the Art.

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