Buch, Englisch, 304 Seiten
Buch, Englisch, 304 Seiten
ISBN: 978-1-394-44696-4
Verlag: John Wiley & Sons Inc
Evaluate spacecraft effectiveness across missions with rigorous analytical methods
Evaluating how well spacecraft systems perform across diverse mission profiles requires structured analytical models and quantifiable indicators. Spacecraft System Design and Performance Evaluation Technology delivers the classification frameworks, evaluation processes, and indicator design methods needed to assess satellite capabilities for communication and remote sensing missions systematically.
The book covers the historical development of spacecraft effectiveness evaluation, methods for designing analysis models, and calculation methods for single and signal effectiveness indicators, addressing remote sensing satellite applications. Readers gain access to new technologies and trends in evaluation methodology that support spacecraft design optimization, multi-mission implementation scheme development, and top-level design and planning of spacecraft systems.
The book also covers: - The spacecraft effectiveness evaluation process from classification through indicator design to final performance assessment across multiple mission types
- Calculation methods for single and signal effectiveness indicators applicable to different satellite types and operational scenarios
- Remote sensing satellite applications in environmental protection and forestry, with evaluation frameworks tailored to these specific mission profiles
- Methods for designing analytical models that support optimization of spacecraft systems and development of multi-mission implementation schemes
- New achievements and emerging trends in spacecraft effectiveness evaluation technology for space-ground integrated systems
Researchers and professionals in spacecraft design will find the analytical frameworks and evaluation methods directly applicable to their work. Graduate students and professors studying advanced spacecraft technology and design gain structured approaches to task analysis and effectiveness evaluation for complex space-ground integrated systems.




