What are the best spacecraft engineering currently available to purchase? This article attempts to give you some answers to guide you in the process of purchasing the best spacecraft engineering to suit your needs. In our buying guide, we outline certain features to consider when buying spacecraft engineering. It is important to take time and research before you commit to purchasing.

Best spacecraft engineering

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1. Spacecraft Systems Engineering

Feature

Wiley

Description

This fourth edition of the bestselling Spacecraft Systems Engineering title provides the reader with comprehensive coverage of the design of spacecraft and the implementation of space missions, across a wide spectrum of space applications and space science. The text has been thoroughly revised and updated, with each chapter authored by a recognized expert in the field. Three chapters Ground Segment, Product Assurance and Spacecraft System Engineering have been rewritten, and the topic of Assembly, Integration and Verification has been introduced as a new chapter, filling a gap in previous editions.

This edition addresses front-end system-level issues such as environment, mission analysis and system engineering, but also progresses to a detailed examination of subsystem elements which represents the core of spacecraft design.This includes mechanical, electrical and thermal aspects, as well as propulsion and control. This quantitative treatment is supplemented by an emphasis on the interactions between elements, which deeply influences the process of spacecraft design.

Adopted on courses worldwide, Spacecraft Systems Engineering is already widely respected by students, researchers and practising engineers in the space engineering sector. It provides a valuable resource for practitioners in a wide spectrum of disciplines, including system and subsystem engineers, spacecraft equipment designers, spacecraft operators, space scientists and those involved in related sectors such as space insurance.

In summary, this is an outstanding resource for aerospace engineering students, and all those involved in the technical aspects of design and engineering in the space sector.

2. Architecting Spacecraft with SysML: A Model-based Systems Engineering Approach

Description

A Guide to Apply a Model-based Systems Engineering Approach with SysML to Specify and Architect Systems.

This book provides a straightforward guide to develop an architecture model of a Small Satellite using the Systems Modeling Language (SysML). SysML is a general-purpose modeling language used to specify and architect systems. Model-based Systems Engineering (MBSE) is intended to produce an integrated system model using SysML which reflects multiple views of the system to specify the interaction and interconnection of its components, and their functions, states, interfaces, and performance and physical characteristics. The system model can enhance quality, reuse, and shared understanding of the system.

This book can be used by instructors and students to learn how to apply MBSE with SysML, as well as practitioners of MBSE and organizations as a reference approach for their application.

3. Awesome Engineering Spacecraft

Description

Follow the developments of spacecrafts, as they have got more advanced, have travelled further and helped us explore the universe through engineering skill, design and ambition.

4. Spacecraft Systems Design and Operations

Description

Paperback: 638 pages Publisher: Kendall Hunt Publishing; 1 edition (July 31, 2004) Language: English ISBN-10: 0757510000 ISBN-13: 978-0757510007 Product Dimensions: 1.2 x 8.2 x 10.5 inches Shipping Weight: 3.6 pounds

5. The Pocket Encyclopedia of Spaceflight in Color: Manned Spacecraft

Description

A beautifully illustrated (80 pages of color plates), pocketbook-sized volume about the pioneering days of space travel. Encyclopedic text covers the technology and history of spacecraft up to the publication date.

6. Orion Spacecraft (Engineering Feats)

Description

Since the last flight of the Space Shuttle in 2011, Americas manned space program has been put on hold. NASA has been forced to rely on Russian and commercial spacecraft to ferry personnel and supplies to the International Space Station. But NASA scientists and engineers, and their colleagues in the spaceflight community, are working hard to return America to its former dominance in space via the Orion program. Orion, Americas next-generation spacecraft, is a Multi-Purpose Crew Vehicle. It is designed to carry 2 to 6 crew members into deep space. Similar to the Apollo capsule in appearance, but larger and much more advanced, it has already successfully completed its first unmanned test flight. In 2018, Orion will lift into space on a massive new rocket, especially designed for it, for the first time. The event, designated Exploration Mission 1, will mark the first of many steps along Americas path to the planet Marsand beyond.

7. Spacecraft Attitude Dynamics (Dover Books on Aeronautical Engineering)

Feature

Used Book in Good Condition

Description

Pointing a satellite in the right direction requires an extremely complex system one that describes the satellite's orientation and at the same time predicts and either uses or neutralizes external influences.
From its roots in classical mechanics and reliance on stability theory to the evolution of practical stabilization ideas, Spacecraft Attitude Dynamics offers comprehensive coverage of environmental torques encountered in space; energy dissipation and its effects on the attitude stability of spinning bodies; motion equation for four archetypical systems derived and used repeatedly throughout the text; orientation parameters (not limited to Euler angles); illustrations of key concepts with on-orbit flight data; and typical engineering hardware, with examples of the implementation of dynamic ideas.
Suitable as a text for advanced undergraduates and graduate students, this unified treatment is also a valuable reference for professional engineers studying the analysis and application of modern spacecraft attitude dynamics. The sole prerequisites are a fundamental knowledge of vector dynamics and matrix algebra. Over 250 diagrams appear throughout the text, along with extensive problem sets at the end of each chapter, 350 references (cited, interpreted, and placed in perspective to reinforce the material), and two helpful appendixes.

8. Spacecraft Systems Engineering 3rd Edition

Description

Following on from the hugely successful previous editions, the third edition of Spacecraft Systems Engineering incorporates the most recent technological advances in spacecraft and satellite engineering. With emphasis on recent developments in space activities, this new edition has been completely revised. Every chapter has been updated and rewritten by an expert engineer in the field, with emphasis on the bus rather than the payload.
Encompassing the fundamentals of spacecraft engineering, the book begins with front-end system-level issues, such as environment, mission analysis and system engineering, and progresses to a detailed examination of subsystem elements which represent the core of spacecraft design - mechanical, electrical, propulsion, thermal, control etc. This quantitative treatment is supplemented by an appreciation of the interactions between the elements, which deeply influence the process of spacecraft systems design.
In particular the revised text includes
* A new chapter on small satellites engineering and applications which has been contributed by two internationally-recognised experts, with insights into small satellite systems engineering.
* Additions to the mission analysis chapter, treating issues of aero-manouevring, constellation design and small body missions.
In summary, this is an outstanding textbook for aerospace engineering and design students, and offers essential reading for spacecraft engineers, designers and research scientists. The comprehensive approach provides an invaluable resource to spacecraft manufacturers and agencies across the world.

9. Fundamentals of Spacecraft Attitude Determination and Control (Space Technology Library)

Description

This book explores topics that are central to the field of spacecraft attitude determination and control. The authors provide rigorous theoretical derivations of significant algorithms accompanied by a generous amount of qualitative discussions of the subject matter. The book documents the development of the important concepts and methods in a manner accessible to practicing engineers, graduate-level engineering students and applied mathematicians. It includes detailed examples from actual mission designs to help ease the transition from theory to practice and also provides prototype algorithms that are readily available on the authors website.

Subject matter includes both theoretical derivations and practical implementation of spacecraft attitude determination and control systems. It provides detailed derivations for attitude kinematics and dynamics and provides detailed description of the most widely used attitude parameterization, the quaternion. This title alsoprovides a thorough treatise of attitude dynamics including Jacobian elliptical functions. It is the first known book to provide detailed derivations and explanations of state attitude determination and gives readers real-world examples from actual working spacecraft missions. The subject matter is chosen to fill the void of existing textbooks and treatises, especially in state and dynamics attitude determination. MATLAB code of all examples will be provided through an external website.

10. Manned Spacecraft Design Principles

Description

Manned Spacecraft Design Principles presents readers with a brief, to-the-point primer that includes a detailed introduction to the information required at the preliminary design stage of a manned space transportation system.

In the process of developing the preliminary design, the book covers content not often discussed in a standard aerospace curriculum, including atmospheric entry dynamics, space launch dynamics, hypersonic flow fields, hypersonic heat transfer, and skin friction, along with the economic aspects of space flight.

Key concepts relating to human factors and crew support systems are also included, providing users with a comprehensive guide on how to make informed choices from an array of competing options. The text can be used in conjunction with Pasquale Sforza's, Commercial Aircraft Design Principles to form a complete course in Aircraft/Spacecraft Design.

  • Presents a brief, to-the-point primer that includes a detailed introduction to the information required at the preliminary design stage of a manned space transportation system
  • Involves the reader in the preliminary design of a modern manned spacecraft and associated launch vehicle
  • Includes key concepts relating to human factors and crew support systems
  • Contains standard, empirical, and classical methods in support of the design process
  • Culminates in the preparation of a professional quality design report

Conclusion

All above are our suggestions for spacecraft engineering. This might not suit you, so we prefer that you read all detail information also customer reviews to choose yours. Please also help to share your experience when using spacecraft engineering with us by comment in this post. Thank you!
Jane Mathis