PD CEN/CLC/TR 17603-10-02:2021
Space engineering. Verification guidelines
Standard number: | PD CEN/CLC/TR 17603-10-02:2021 |
Pages: | 100 |
Released: | 2021-11-01 |
ISBN: | 978 0 539 16240 0 |
Status: | Standard |
PD CEN/CLC/TR 17603-10-02:2021 Space Engineering. Verification Guidelines
Standard Number: PD CEN/CLC/TR 17603-10-02:2021
Pages: 100
Released: 2021-11-01
ISBN: 978 0 539 16240 0
Name: Space engineering. Verification guidelines
Status: Standard
Overview
Embark on a journey through the cosmos with the PD CEN/CLC/TR 17603-10-02:2021 Space Engineering. Verification Guidelines. This comprehensive standard is an essential resource for professionals in the aerospace industry, providing detailed guidelines and methodologies for the verification of space engineering projects. Released on November 1, 2021, this 100-page document is a cornerstone for ensuring the reliability and success of space missions.
Why Choose This Standard?
The PD CEN/CLC/TR 17603-10-02:2021 is meticulously crafted to address the unique challenges faced in space engineering. It offers a structured approach to verification, ensuring that all components and systems meet the stringent requirements necessary for space exploration. Whether you are involved in the design, development, or testing of space systems, this standard provides the critical insights needed to achieve excellence.
Key Features
- Comprehensive Coverage: Spanning 100 pages, this standard covers all aspects of verification in space engineering, from initial design to final testing.
- Up-to-Date Information: Released in 2021, it incorporates the latest advancements and best practices in the field.
- ISBN: 978 0 539 16240 0, ensuring easy reference and cataloging.
- Structured Guidelines: Provides a clear and systematic approach to verification, making it easier to implement and follow.
- Industry Standard: Recognized and adopted by professionals and organizations worldwide, ensuring consistency and reliability in space engineering projects.
Who Should Use This Standard?
This standard is indispensable for a wide range of professionals in the aerospace sector, including:
- Aerospace Engineers: Gain a deeper understanding of verification processes to enhance the reliability of your designs.
- Project Managers: Ensure that all project components meet the required standards and specifications.
- Quality Assurance Specialists: Implement robust verification methodologies to maintain high standards of quality.
- Researchers and Academics: Utilize the latest guidelines to inform your studies and research in space engineering.
Benefits of Adopting This Standard
Adopting the PD CEN/CLC/TR 17603-10-02:2021 standard offers numerous benefits, including:
- Enhanced Reliability: Ensure that all systems and components are thoroughly verified, reducing the risk of failures during missions.
- Improved Efficiency: Streamline the verification process with clear guidelines, saving time and resources.
- Increased Confidence: Gain the confidence of stakeholders by adhering to a recognized and respected standard.
- Global Recognition: Align with international best practices, facilitating collaboration and acceptance in the global aerospace community.
Detailed Content
The PD CEN/CLC/TR 17603-10-02:2021 standard is divided into several key sections, each focusing on a critical aspect of verification in space engineering:
- Introduction: Provides an overview of the standard, its purpose, and scope.
- Verification Process: Detailed guidelines on the verification process, including planning, execution, and documentation.
- Verification Methods: Describes various verification methods, such as analysis, inspection, testing, and demonstration.
- Verification Levels: Outlines the different levels of verification, from component to system level.
- Verification Documentation: Guidance on the preparation and management of verification documentation.
- Case Studies: Real-world examples and case studies to illustrate the application of the guidelines.
Conclusion
The PD CEN/CLC/TR 17603-10-02:2021 Space Engineering. Verification Guidelines is an invaluable resource for anyone involved in the field of space engineering. Its comprehensive coverage, up-to-date information, and structured approach make it an essential tool for ensuring the success and reliability of space missions. By adopting this standard, you can enhance the quality and efficiency of your verification processes, gain the confidence of stakeholders, and align with international best practices.
Invest in the future of space exploration with the PD CEN/CLC/TR 17603-10-02:2021 standard and take your space engineering projects to new heights.
PD CEN/CLC/TR 17603-10-02:2021
This standard PD CEN/CLC/TR 17603-10-02:2021 Space engineering. Verification guidelines is classified in these ICS categories:
- 49.140 Space systems and operations
This handbook provides additional information for the application of the verification standard EN 16603-10-02 to a space system product.
This handbook does not contain requirements and therefore cannot be made applicable. In case of conflict between the standard and this handbook, the standard prevails.
This handbook is relevant for both the customer and the supplier of the product during all project phases.
To facilitate the cross-reference, this handbook follows as much as is practical, the structure of the standard and quotes the requirements, to make it self standing and easier to read (the text from the standard is in italic).
As the Standard applies to different products at different product levels from single equipment to the overall system (including space segment hardware and software, launchers and Transportation Systems, ground segment, Verification tools, and GSE) several examples of tailoring, to match the specificity of each application, are proposed in Annex B.
Specific discipline related verification aspects are covered in other dedicated standards and handbooks. In particular the detailed aspects for Testing are covered in the EN 16603-10-03 and in its corresponding handbook TR 17603-10-03.
The application of the requirements of the standard to a particular project is intended to result in effective product verification and consequently to a high confidence in achieving successful product operations for the intended use, in this respect this handbook has the goal to help reaching these objectives.