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Homepage>BS Standards>35 INFORMATION TECHNOLOGY. OFFICE MACHINES>35.240 Applications of information technology>35.240.99 IT applications in other fields>BS EN 16604-30-03:2020 Space. Space Situational Awareness Monitoring Observation System Data Message (OSDM)
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BS EN 16604-30-03:2020 Space. Space Situational Awareness Monitoring Observation System Data Message (OSDM)

BS EN 16604-30-03:2020

Space. Space Situational Awareness Monitoring Observation System Data Message (OSDM)

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Standard number:BS EN 16604-30-03:2020
Pages:46
Released:2020-07-17
ISBN:978 0 539 00224 9
Status:Standard
BS EN 16604-30-03:2020 Space Situational Awareness Monitoring Observation System Data Message (OSDM)

BS EN 16604-30-03:2020: Space Situational Awareness Monitoring Observation System Data Message (OSDM)

In the ever-expanding realm of space exploration and utilization, maintaining a comprehensive understanding of the space environment is crucial. The BS EN 16604-30-03:2020 standard, titled "Space Situational Awareness Monitoring Observation System Data Message (OSDM)," is an essential document for professionals and organizations involved in space situational awareness (SSA). Released on July 17, 2020, this standard provides a structured framework for the exchange of data related to space monitoring and observation systems.

Overview of the Standard

The BS EN 16604-30-03:2020 standard is a pivotal resource for those engaged in the monitoring and management of space activities. It outlines the specifications for data messages that are crucial for the effective operation of space situational awareness systems. This standard is designed to facilitate the seamless exchange of information between different entities involved in space observation, ensuring that data is communicated accurately and efficiently.

Key Features

  • Standard Number: BS EN 16604-30-03:2020
  • Pages: 46
  • Release Date: July 17, 2020
  • ISBN: 978 0 539 00224 9
  • Status: Standard

Importance of Space Situational Awareness (SSA)

Space Situational Awareness (SSA) is a critical component of modern space operations. It involves the detection, tracking, and prediction of the movement of objects in space, including satellites, space debris, and other celestial bodies. SSA is essential for ensuring the safety and sustainability of space activities, as it helps prevent collisions and manage the increasing congestion in Earth's orbit.

The BS EN 16604-30-03:2020 standard plays a vital role in enhancing SSA capabilities by providing a standardized approach to data messaging. This ensures that all stakeholders, from space agencies to private companies, can communicate effectively and share vital information about space objects and their trajectories.

Applications of the Standard

The BS EN 16604-30-03:2020 standard is applicable across a wide range of sectors within the space industry. Some of the key applications include:

  • Satellite Operations: Ensuring the safe and efficient operation of satellites by providing accurate data on potential collision risks and orbital paths.
  • Space Debris Management: Facilitating the tracking and mitigation of space debris, which poses a significant threat to both manned and unmanned space missions.
  • Research and Development: Supporting scientific research and technological development by providing reliable data for modeling and simulation of space environments.
  • International Collaboration: Enabling international cooperation by standardizing data exchange protocols, thus fostering collaboration between different countries and organizations.

Benefits of Implementing the Standard

Implementing the BS EN 16604-30-03:2020 standard offers numerous benefits to organizations involved in space activities:

  • Enhanced Safety: By providing accurate and timely data, the standard helps prevent collisions and other incidents that could jeopardize space missions.
  • Improved Efficiency: Standardized data messaging streamlines communication processes, reducing the time and resources required for data exchange.
  • Cost Savings: By minimizing the risk of collisions and other space-related incidents, organizations can avoid costly repairs and mission delays.
  • Global Compatibility: The standard ensures that data can be easily shared and understood by different entities worldwide, promoting international collaboration and understanding.

Conclusion

The BS EN 16604-30-03:2020 standard is an indispensable tool for anyone involved in space situational awareness and monitoring. By providing a clear and comprehensive framework for data messaging, it enhances the safety, efficiency, and sustainability of space operations. Whether you are a space agency, a private company, or a research institution, implementing this standard will help you stay at the forefront of space exploration and management.

With its detailed guidelines and specifications, the BS EN 16604-30-03:2020 standard is a must-have resource for ensuring the success and safety of your space endeavors. Embrace the future of space situational awareness with this essential standard and contribute to the sustainable and secure use of outer space.

DESCRIPTION

BS EN 16604-30-03:2020


This standard BS EN 16604-30-03:2020 Space. Space Situational Awareness Monitoring is classified in these ICS categories:
  • 35.240.99 IT applications in other fields
  • 49.140 Space systems and operations
1.1 Purpose: The Observing System Data Message (OSDM) is a standard message format to be used in the exchange of optical telescope, laser ranging station, and radar (observing systems) information between Space Situational Awareness (SSA) data providers, owners/operators of observing systems, and other parties. These messages can inform SSA data providers, which are the consumers of observing system output data, on the parameters of the observing systems. The OSDM standard will: a) enable consistent data exchange between observation data providers and SSA systems; b) facilitate data exchange automation and ingestion of observation data from different providers; c) facilitate SSA system architecture performance simulations; and d) provide a quick way to estimate the expected performance from one observing system.