Theory and design methods of special space orbits

This book focuses on the theory and design of special space orbits. Offering a systematic and detailed introduction to the hovering orbit, spiral cruising orbit, multi-target rendezvous orbit, initiative approaching orbit, responsive orbit and earth pole-sitter orbit, it also discusses the concept,...

Full description

Saved in:
Bibliographic Details
Main Author: Zhang, Yasheng.
Other Authors: Xu, Yanli., Zhou, Haijun.
Format: eBook
Language: English
Published: Singapore : Springer, 2016.
Subjects:
ISBN: 9789811029486
9789811029479
Physical Description: 1 online resource (xi, 243 pages)

Cover

Table of contents

LEADER 05622cam a2200493Mi 4500
001 99618
003 CZ-ZlUTB
005 20240914112053.0
006 m o d
007 cr |n|||||||||
008 161202t20162017si ob 000 0 eng d
040 |a YDX  |b eng  |e pn  |c YDX  |d OCLCQ  |d N$T  |d IDEBK  |d EBLCP  |d GW5XE  |d OCLCF  |d N$T  |d IDB  |d UAB  |d OCLCQ  |d IOG  |d ESU  |d JBG  |d IAD  |d ICW  |d ICN  |d OTZ  |d OCLCQ  |d U3W  |d CAUOI  |d OCLCQ  |d KSU  |d OCLCQ  |d AUD  |d UKAHL  |d OCLCQ  |d VLB 
020 |a 9789811029486  |q (electronic bk.) 
020 |z 9789811029479 
035 |a (OCoLC)965148188  |z (OCoLC)964698677  |z (OCoLC)970021985  |z (OCoLC)971348684  |z (OCoLC)971520878  |z (OCoLC)971595189  |z (OCoLC)972809413  |z (OCoLC)972921057 
041 1 |a eng  |h chi 
100 1 |a Zhang, Yasheng. 
245 1 0 |a Theory and design methods of special space orbits /  |c Yashen Zhang, Yanli Xu, Haijun Zhou. 
264 1 |a Singapore :  |b Springer,  |c 2016. 
264 4 |c ©2017 
300 |a 1 online resource (xi, 243 pages) 
336 |a text  |b txt  |2 rdacontent 
337 |a počítač  |b c  |2 rdamedia 
338 |a online zdroj  |b cr  |2 rdacarrier 
505 0 |a Preface; Contents; Abstract; 1 Overview of Classical Orbits; 1.1 Recursive Orbit; 1.1.1 Recursive Orbit: Definition; 1.1.2 Different Orbital Periods; 1.1.3 Geostationary Earth Orbit and Its Applications; 1.2 Sun-Synchronous Orbit; 1.2.1 Sun-Synchronous Orbit: Definition; 1.2.2 Sun-Synchronous Orbit: Characteristics; 1.2.3 Sun-Synchronous Regression Orbit and Its Applications; 1.3 Frozen Orbit; 1.3.1 Frozen Orbit: Definition; 1.3.2 Molniya Orbit and Its Applications; 1.4 Stay Orbit; 1.4.1 Stay Orbit: Definition; 1.4.2 Stay Orbit: Applications; 1.5 Summary. 
505 8 |a 2 Special Space Orbit: Concept and Application2.1 Special Space Orbit: Concept; 2.1.1 Differences in Orbit Design Concepts; 2.1.2 Coupling of Orbit Control and Orbit Design; 2.1.3 Requirements for Special Space Application; 2.2 Types of Special Orbit; 2.2.1 Hovering Orbit; 2.2.2 Cruising Orbit; 2.2.3 Multi-Target Rendezvous Orbit; 2.2.4 Initiative Approaching Orbit; 2.2.5 Fast Responsive Orbit; 2.2.6 Earth Pole-Sitter Orbit; 2.3 Description of Special Space Orbit; 2.3.1 Orbit Element; 2.3.2 Non Singularity Orbit Elements; 2.3.3 Rectangular Coordinate Component; 2.4 Summary. 
505 8 |a 3 Theory and Design Method of Hovering Orbit3.1 Hovering Orbit: Concept; 3.2 Design of Fixed-Point Hovering Orbit; 3.2.1 Dynamic Model; 3.2.1.1 Mathematical Model of the Impulse Thrust; 3.2.1.2 Mathematical Model of Continuous Thrust; 3.2.1.3 Feasibility Analysis; 3.2.2 Open-Loop Control; 3.2.3 Closed Loop Control; 3.2.3.1 Hovering Control Based on Lyapunov Method; 3.2.3.2 Simulation Analysis; 3.3 Design of Regional Hovering Orbit; 3.3.1 Analysis of Confined Area Configuration; 3.3.1.1 Description of Confined Area Configuration; 3.3.1.2 Typical Confined Area Configurations. 
505 8 |a 3.3.1.3 Analysis of Confined Area Configuration3.3.2 Control of Regional Hovering Orbit; 3.3.2.1 Control Model of Relative Motion; 3.3.2.2 Constraints in Orbit Design; 3.3.3 Regional Hovering Orbit of Single-Pulse Trust; 3.3.3.1 Minimum Rate of Energy Consuming Mode; 3.3.3.2 Fixed Time Mode; 3.3.4 Regional Hovering Orbit of Multi-Pulse Trust; 3.4 Design of Displaced Geostationary Orbit; 3.4.1 Displaced Orbit Deviating from Orbit Plane; 3.4.2 Displaced Orbit in Orbit Plane; 3.4.3 Energy Analysis of Orbit Displacement; 3.5 Summary; 4 Theory and Design Method of Spiral Cruising Orbit. 
505 8 |a 4.1 Spiral Cruising Orbit: Concept4.2 Precision Analysis of Relative Motion Model; 4.2.1 Accurate Relative Motion Dynamics Equation; 4.2.2 Simplification of Relative Motion Dynamics Equation; 4.2.3 Precision Analysis of Relative Motion Dynamics Model; 4.2.4 Analysis of Relative Motion Dynamics Model of Cruising Spacecraft; 4.3 Traversal Cruising Orbit: Design; 4.3.1 Design Method Based on Hill Equation; 4.3.2 Design Method Based on E/I Vector Method; 4.3.3 Design Constraint; 4.3.4 Simulation Analysis; 4.4 Design of the Round-Trip Itinerant Orbit; 4.4.1 Design Method; 4.4.2 Design Constraints. 
504 |a Includes bibliographical references. 
506 |a Plný text je dostupný pouze z IP adres počítačů Univerzity Tomáše Bati ve Zlíně nebo vzdáleným přístupem pro zaměstnance a studenty 
520 |a This book focuses on the theory and design of special space orbits. Offering a systematic and detailed introduction to the hovering orbit, spiral cruising orbit, multi-target rendezvous orbit, initiative approaching orbit, responsive orbit and earth pole-sitter orbit, it also discusses the concept, theory, design methods and application of special space orbits, particularly the design and control method based on kinematics and astrodynamics. In addition the book presents the latest research and its application in space missions. It is intended for researchers, engineers and postgraduates, especially those working in the fields of orbit design and control, as well as space-mission planning and research. 
590 |a SpringerLink  |b Springer Complete eBooks 
650 0 |a Orbits. 
650 0 |a Orbital mechanics. 
655 7 |a elektronické knihy  |7 fd186907  |2 czenas 
655 9 |a electronic books  |2 eczenas 
700 1 |a Xu, Yanli. 
700 1 |a Zhou, Haijun. 
776 0 8 |i Print version:  |a Zhang, Yasheng.  |t Theory and design methods of special space orbits.  |d Singapore : Springer, 2016  |z 9811029474  |z 9789811029479  |w (OCoLC)959596476 
856 4 0 |u https://proxy.k.utb.cz/login?url=https://link.springer.com/10.1007/978-981-10-2948-6  |y Plný text 
992 |c NTK-SpringerENG 
999 |c 99618  |d 99618 
993 |x NEPOSILAT  |y EIZ