图书简介
Space debris and asteroid impacts pose a very real, very near-term threat to Earth. In order to help study and mitigate these risks, the Stardust program was formed in 2013. This training and research network was devoted to developing and mastering techniques such as removal, deflection, exploitation, and tracking. This book is a collection of many of the topics addressed at the Final Stardust Conference, describing爐he latest in asteroid monitoring and how engineering efforts can help us reduce space debris. It is a selection of studies bringing together specialists from universities, research institutions, and industry, tasked with the mission of pushing the boundaries of space research with innovative ideas and visionary concepts.Topics covered by the Symposium:Orbital and Attitude Dynamics ModelingLong Term Orbit and Attitude EvolutionParticle Cloud Modeling and SimulationCollision and Impact Modelling and Simulation, Re-entry Modeling and SimulationAsteroid Origins and CharacterizationOrbit and Attitude DeterminationImpact Prediction and Risk Analysis, Mission Analysis-Proximity Operations, Active Removal/Deflection Control Under Uncertainty, Active Removal/Deflection Technologies, and Asteroid Manipulation
Preface.- Section 1: Mission to Asteroids.- Chapter 1:燨ptimization of Asteroid Capture Missions using Earth Resonant Encounters.- Chapter 2:燛valuating Proximity Operations through High-fidelity Asteroid Deflection Evaluation Software (HADES).- Chapter 3:燩rediction of Orbital Parameters for Undiscovered Potentially Hazardous Asteroids Using Machine Learning.- Section 2: Orbit and Uncertainty Propagation.- Chapter 4:燛xploring Sensitivity of Orbital Dynamics with Respect to Model Truncation. The Frozen Orbits Approach.- Chapter 5:燗 Parametric Study of the Orbital Lifetime of Super GTO and SSTO Orbits Based on Semi-Analytical Integration.- Chapter 6:燨n the Use of Positive Polynomials for the Estimation of Upper and Lower Expectations in Orbital Dynamics.- Section 3: Space Debris Monitoring, Mitigation, and Removal.- Chapter 7:燭rajectory Generation Method for Robotic Free-Floating Capture of a Non- Cooperative, Tumbling Target.- Chapter 8:燭axonomy of LEO Space Debris Population for ADR Capture Methods Selection.- Chapter 9:燫emote Sensing for Planar Electrostatic Characterization using the Multi-Sphere Method.- Chapter 10:燗ctive Debris Removal and Space Debris Mitigation using Hybrid Propulsion Solutions.- Chapter 11:燭he Puzzling Case of the Deep-Space Debris WT1190F: A Test Bed for Advanced SSA Techniques.- Chapter 12:燚evelopment of a Debris Index.- Section 4: Re-Entry Analysis and Design for Demise.- Chapter 13: A Multidisciplinary Approach of Demisable Tanks? Re-Entry.- Chapter 14:燚esign-for-Demise Analysis using the SAM Destructive Re-Entry Model.- Chapter 15:燣ow-Fidelity Modelling for Aerodynamic Characteristics of Re-Entry Objects.- Chapter 16:燫e-Entry Predictions of Potentially Dangerous Uncontrolled Satellites: Challenges and Civil Protection Applications.- Chapter 17:燯ncertainty Quantification for Destructive Re-Entry Risk Analysis ? JAXA Perspective.
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