Produktbild: Proceedings of the 2022 AAS/AIAA Astrodynamics Specialist Conference - Volume 2
Band 180 Vorbesteller

Proceedings of the 2022 AAS/AIAA Astrodynamics Specialist Conference - Volume 2

332,99 €

inkl. gesetzl. MwSt., Versandkostenfrei


Beschreibung

Produktdetails

Einband

Gebundene Ausgabe

Erscheinungsdatum

07.01.2027

Abbildungen

Approx. 410 p. 150 illus., 100 illus. in color.

Herausgeber

Atri Dutta + weitere

Verlag

Springer

Seitenzahl

487

Maße (B/H)

21/27,9 cm

Sprache

Englisch

ISBN

978-3-032-38427-0

Beschreibung

Portrait

Atri Dutta is a Professor in the Department of Aerospace Engineering, Wichita State University (WSU), with expertise in the areas of astrodynamics, control systems, mission design and optimization. His research focuses on low-thrust trajectory optimization, mission design for in-space neutrino detection experiments, CubeSat constellation design, and on-orbit servicing. At WSU, he directed the Disaster Resilience and Analytics Center from 2021-25. He is an Associate Fellow of American Institute of Aeronautics and Astronautics (AIAA). He is a member of American Astronautical Society (AAS) and Institute of Electrical and Electronic Engineers (IEEE). He serves on the Astrodynamics Technical Committee of AIAA. All his degrees are in Aerospace Engineering, with Bachelors (2002) from Indian Institute of Technology, Kharagpur, and M.S. (2005) & Ph.D. (2009) degrees from Georgia Tech.

David B. Spencer is the Vice President for Publications for The American Astronautical Society. In this role, he oversees the publications portfolio for the society. He is Professor Emeritus of Aerospace Engineering at Penn State University. He is also a Senior Project Leader at The Aerospace Corporation in Chantilly, Virginia.

Simone D’Amico is Associate Professor of Aeronautics and Astronautics and Geophysics (by Courtesy), Science Fellow at the Hoover Institution, Co-Founder and Chief Science Officer at EraDrive Inc. He is the Founding Director of the Stanford Space Rendezvous Laboratory, Founding Co-Director of the Center for AEroSpace Autonomy Research (CAESAR), and Director of the Undergraduate Program in Aerospace Engineering at Stanford. He has 20+ years of experience in research and development of autonomous spacecraft and distributed space systems. He developed and deployed the distributed Guidance, Navigation, and Control (GNC) system of several formation-flying, swarming, rendezvous and proximity operations missions (e.g. PRISMA, TanDEM-X, and STARLING). Dr. D’Amico is Fellow of AIAA and AAS. He is on the Advisory Board of four space start-ups focusing on distributed space systems. He was the recipient of several Best Paper Awards at AMOS (2025), IAF (2022), IEEE (2021), AIAA (2021), AAS (2019) conferences, and the M. Barry Carlton Award by IEEE (2020). He received the B.S. and M.S. degrees from Politecnico di Milano (2003) and the Ph.D. degree from Delft University of Technology (2010).

Ossama Abdelkhalik is a professor, and the Vance D. Coffman faculty chair, in the Department of Aerospace Engineering at Iowa State University, in Ames, Iowa. Dr. Abdelkhalik received his Ph.D. in aerospace engineering from Texas A&M University, College Station, TX, as well as a B.S. and M.S. degrees in aerospace engineering from Cairo University, Egypt. His research interests are in the areas of orbital mechanics, spacecraft dynamics, optimal control, and space trajectory optimization. He authored and co-authored more than 150 journal and conference articles, a book, and 7 patents. Dr. Abdelkhalik is Associate Fellow of AIAA, a senior member of the American Astronautical Society (AAS), IEEE, and a member of the AIAA Technical Committee on Astrodynamics. Dr. Abdelkhalik is the AIAA General Chair of the 2014 AAS/AIAA Space Flight Mechanics Meeting, and the 2022 AAS/AIAA Astrodynamics Specialist Conference.

Produktdetails

Einband

Gebundene Ausgabe

Erscheinungsdatum

07.01.2027

Abbildungen

Approx. 410 p. 150 illus., 100 illus. in color.

Herausgeber

Verlag

Springer

Seitenzahl

487

Maße (B/H)

21/27,9 cm

Sprache

Englisch

ISBN

978-3-032-38427-0

Herstelleradresse

Springer Nature Customer Service Center GmbH
Europaplatz 3
69115 Heidelberg
DE
ProductSafety@springernature.com

Noch keine Bewertungen vorhanden

Verfassen Sie die erste Bewertung zu diesem Artikel

Helfen Sie anderen Kundinnen und Kunden durch Ihre Meinung.

Kundinnen und Kunden meinen

Bewertungen (0)

  • Produktbild: Proceedings of the 2022 AAS/AIAA Astrodynamics Specialist Conference - Volume 2
  • Part 8: Spacecraft Guidance, Navigation, and Control.- Chapter 24: Paper AAS 22-844: Sequential linearization-based station keeping with optical navigation for NRHO.- Chapter 25: Paper AAS 22-628: Attitude control for flight phase of quadruped robots in low-gravity environment using reaction wheels and swing legs.- Chapter 26: Paper AAS 22-651: Modelling of Propellant Slosh Dynamics and its Application in Control Stability Study of Lunar Landing Mission.- Chapter 27: Paper AAS 22-790: Generalized Formalism for Variable-Mass-Property Spacecraft Dynamics Utilizing Rigid Body Motion on Lie Groups.- Chapter 28: Paper AAS 22-512: Equivalence and Calibration of Euler Angles with Less Nonlinear Attitude Parameterizations.- Part 9: Special Session: Juno Mission & James Webb Space Telescope.- Chapter 29: Paper AAS 22-538: Orbit Determination Performance Of The Ganymede Flybys By The Juno Spacecraft.- Chapter 30: Paper AAS 22-539: Orbit Determination Performance Of The Jupiter Eclipse Avoidance Maneuver By The Juno Spacecraft.- Chapter 31: Paper AAS 22-595: Design and Implementation of the Juno Eclipse Avoidance Maneuver.- Chapter 32: Paper AAS 22-598: Design of the Juno Extended Mission Trajectory.- Chapter 33: Paper AAS 22-599: Juno Orbit Determination and Maneuver Operations: Early Orbit Phase Through End of Prime Mission.- Chapter 34: Paper AAS 22-610: Planning and Execution of the Three Mid-Course Correction Maneuvers for the James Webb Space Telescope.- Chapter 35: Paper AAS 22-611: Flight Dynamics Planning and Operations Support for the JWST Mission.- Part 10: Trajectory, Mission, and Maneuver Design and Optimization.- Chapter 36: Paper AAS 22-624: Optimal Control in the Circular Restricted Three-Body Problem Using Integration Constants.- Chapter 37: Paper AAS 22-569: Concurrent Optimization of Gravity-Assist Low-Thrust Trajectory with Power and Propulsion Subsystem Sizing.- Chapter 38: Paper AAS 22-771: Dynamically Leveraged Automated (N) Multibody Trajectory Optimization (DyLAN).- Chapter 39: Paper AAS 22-759: Advances in Koopman Operator Theory for Optimal Control Problems in Space Flight.- Chapter 40: Paper AAS 22-623: James Webb Space Telescope Trajectory, Communications, and Instrumentation Comprehensive Analysis.- Chapter 41: Paper AAS 22-639: Trajectory Design for a Secondary Payload within a Complex Gravitational Environment: the Khon-1 Spacecraft.- Chapter 42: Paper AAS 22-683: Radial Optimal Control Software (ROCS):  An Adaptive Solver Based on Radial Basis Functions.- Chapter 43: Paper AAS 22-709: Minimum-Fuel LEO-to-HEO Orbit Transfer Using Multi-Domain Gaussian Quadrature Collocation.- Chapter 44: Paper AAS 22-549: Low-Thrust Transfer Design for the LISA Mission via the Libration Points SEL1 and SEL2.- Chapter 45: Paper AAS 22-816: Mission Design for the Sherpa GEO Pathfinder.- Chapter 46: Paper AAS 22-631: Fundamental attitude dynamic characteristics of solar sails in low-Earth orbit with active control.