spacecraft collision avoidance technology

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Spacecraft Collision Avoidance Technology
Author :
Publisher : Academic Press
Release Date :
ISBN 10 : 0128180110
Pages : 208 pages
Rating : /5 ( users)
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Spacecraft Collision Avoidance Technology presents the theory and practice of space collision avoidance. The title gives models of time and space environment, their impact on high-precision orbit prediction, considers optimal orbit determination methods and models in different warning stages, and establishes basic models for warning and avoidance. Chapters present an outline of spacecraft collision warning strategy, elaborate on the basics of orbital calculation for collision avoidance, consider space object detection technology, detail space environment and object orbit, give a method for spacecraft collision warning orbit calculation, and finally, demonstrate a strategy for spacecraft collision warning and avoidance.

Spacecraft Collision Avoidance Technology

Spacecraft Collision Avoidance Technology presents the theory and practice of space collision avoidance. The title gives models of time and space environment, their impact on high-precision orbit prediction, considers optimal orbit determination methods and models in different warning stages, and establishes basic models for warning and avoidance. Chapters present an

GET BOOK!
Spacecraft Collision Avoidance Technology

Spacecraft Collision Avoidance Technology presents the theory and practice of space collision avoidance. The title gives models of time and space environment, their impact on high-precision orbit prediction, considers optimal orbit determination methods and models in different warning stages, and establishes basic models for warning and avoidance. Chapters present an

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Trajectory Optimization for Spacecraft Collision Avoidance

The last several decades have resulted in an unfortunate byproduct of space exploration and development: orbital debris. Satellites in Low Earth Orbit have been required to make an ever increasing number of course corrections in order to avoid collisions. Despite efforts to the contrary, collisions continue to occur, each time

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Protecting the Space Station from Meteoroids and Orbital Debris

Download or read online Protecting the Space Station from Meteoroids and Orbital Debris written by Division on Engineering and Physical Sciences,Commission on Engineering and Technical Systems,Committee on International Space Station Meteoroid/Debris Risk Management, published by National Academies Press which was released on 1997-02-02. Get Protecting the

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Protecting the Space Shuttle from Meteoroids and Orbital Debris

The space shuttle orbiter has already been struck many times by small meteoroids and orbital debris, but it has not been damaged severely. There is a real risk, however, that a meteoroid or debris impact could one day force the crew to abort a mission or might result in loss

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Safety Design for Space Systems

Progress in space safety lies in the acceptance of safety design and engineering as an integral part of the design and implementation process for new space systems. Safety must be seen as the principle design driver of utmost importance from the outset of the design process, which is only achieved

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Orbital Debris

Since the beginning of space flight, the collision hazard in Earth orbit has increased as the number of artificial objects orbiting the Earth has grown. Spacecraft performing communications, navigation, scientific, and other missions now share Earth orbit with spent rocket bodies, nonfunctional spacecraft, fragments from spacecraft breakups, and other debris

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Limiting Future Collision Risk to Spacecraft

Derelict satellites, equipment and other debris orbiting Earth (aka space junk) have been accumulating for many decades and could damage or even possibly destroy satellites and human spacecraft if they collide. During the past 50 years, various National Aeronautics and Space Administration (NASA) communities have contributed significantly to maturing meteoroid and

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ELECTROMAGNETIC COMPATIBILITY OF COLLISION AVOIDANCE SYSTEMS WITH PROPOSED MARITIME SATELLITE AND AERONAUTICAL SATELLITE SYSTEMS

Download or read online ELECTROMAGNETIC COMPATIBILITY OF COLLISION AVOIDANCE SYSTEMS WITH PROPOSED MARITIME SATELLITE AND AERONAUTICAL SATELLITE SYSTEMS written by United States. Department of Commerce. Office of Telecommunications,Raymond Delbert Jennings, published by Unknown which was released on 1972. Get ELECTROMAGNETIC COMPATIBILITY OF COLLISION AVOIDANCE SYSTEMS WITH PROPOSED MARITIME SATELLITE AND

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Spacecraft Collision Probability

The amount of space debris is growing at an alarming rate, raising concern about its collision with operational spacecraft. This book analyzes the probability of such a collision when the orbits of two approaching objects are based on measurements with inherent errors. Many recent papers have dealt with the methodology

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Collision free Optimal Reconfiguration for Satellites in Relative Motion

Satellites flying in close proximity can provide many advantages over a single monolithic system. However, the balance between minimising fuel and maintaining safe trajectories creates the inevitable dilemma of trading fuel for safety or vice versa to preserve formation life. Multi-satellite trajectory planning for proximity operations is traditionally completed days

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Safety Design for Space Systems

Introduction to space safety -- The space environment : natural and induced -- Overview of bioastronautics -- Basic principles of space safety -- Human rating concepts -- Life support systems safety -- Emergency systems -- Collision avoidance systems -- Robotic systems safety -- Meteoroid and debris protection -- Noise control design

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Orbital Data Applications for Space Objects

This book introduces readers to the application of orbital data on space objects in the contexts of conjunction assessment and space situation analysis, including theories and methodologies. It addresses the main topics involved in space object conjunction assessment, such as: orbital error analysis of space objects; close approach analysis; the

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Proceedings of 2019 Chinese Intelligent Systems Conference

This book showcases new theoretical findings and techniques in the field of intelligent systems and control. It presents in-depth studies on a number of major topics, including: Multi-Agent Systems, Complex Networks, Intelligent Robots, Complex System Theory and Swarm Behavior, Event-Triggered Control and Data-Driven Control, Robust and Adaptive Control, Big Data

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Automated Rendezvous and Docking of Spacecraft

The definitive reference for space engineers on rendezvous and docking/berthing (RVD/B) related issues, this book answers key questions such as: How does the docking vehicle accurately approach the target spacecraft? What technology is needed aboard the spacecraft to perform automatic rendezvous and docking, and what systems are required

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