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Attitude Dynamics and Control of Space Debris During Ion Beam Transportation (Paperback): Vladimir S. Aslanov, Alexander S.... Attitude Dynamics and Control of Space Debris During Ion Beam Transportation (Paperback)
Vladimir S. Aslanov, Alexander S. Ledkov
R4,454 Discovery Miles 44 540 Ships in 12 - 17 working days

Attitude Dynamics and Control of Space Debris During Ion Beam Transportation provides an overview of the cutting-edge research around the topic of contactless ion beam transportation for the removal of space debris. This practical guide covers topics such as space debris attitude motion, the motion of rigid materials in an inhomogeneous high-speed rarefied medium, gravity gradient torque, and more. The book examines and compares the various ways to control the spatial motion of space debris, such as engine thrust or altering the direction of the ion beam axis, and offers simple mathematical models for analyzing system behaviors.

Dynamics of Tethered Satellite Systems (Paperback): Vladimir S. Aslanov, Alexander S. Ledkov Dynamics of Tethered Satellite Systems (Paperback)
Vladimir S. Aslanov, Alexander S. Ledkov
R6,889 Discovery Miles 68 890 Ships in 10 - 15 working days

Aimed at engineering students and professionals working in the field of mechanics of space flight, this book examines space tether systems - one of the most forward-thinking directions of modern astronautics. The main advantage of this technology is the simplicity, profitability and ecological compatibility: space tethers allow the execution of various manoeuvers in orbit without costs of jet fuel due to the use of gravitational and electromagnetic fields of the Earth. This book will acquaint the reader with the modern state of the space tether's dynamics, with specific attention on the research projects of the nearest decades. This book presents the most effective mathematical models and the methods used for the analysis and prediction of space tether systems' motion; attention is also given to the influence of the tether on spacecraft's motion, to emergencies and chaotic modes.

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