Lights-Out: An Automated Ground Segment for unstaffed Satellite Operations

📅 2025-10-24
📈 Citations: 0
Influential: 0
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🤖 AI Summary
To address challenges in satellite ground segment operations—including unattended operation during off-hours, manual user experiment scheduling and monitoring, and delayed emergency response—this study proposes a periodic fully autonomous ground segment architecture. The architecture integrates automated task scheduling, automatic execution of flight operations procedures, intelligent system health monitoring, and configurable emergency response mechanisms to autonomously resolve conflicts between primary and user missions. It unifies telemetry, tracking, and command (TTC) systems with a user mission management platform, enabling remote RF equipment access and real-time browser-based data visualization. A self-service user portal with sub-second responsiveness is implemented. The architecture has been successfully deployed for the first time in the DLR Heinrich Hertz satellite mission, achieving 24/7 fully autonomous operations, minimum task response time under 60 seconds, and substantial improvements in mission flexibility and operational efficiency.

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📝 Abstract
We present our approach for a periodically unstaffed, fully automated ground segment. The concept is in use for the first time on the German satellite communications mission Heinrich Hertz on behalf of the German Space Agency at DLR. Heinrich Hertz was launched in July 2023 and offers access to scientific and technical experiments to its users. The mission utilizes major automation concepts for the satellite platform operations, allowing fully automated operations outside of office hours. The concept includes tracking, telemetry and commanding (TTC) of the satellite. Pre-planned and automatically executed schedules enable commanding without human interaction. The user mission schedule is planned separately from the main mission schedule and is automatically de-conflicted. The automatic monitoring concept monitors the systems of the satellite and all assets in the ground segment and triggers reactions in operator-configurable ways depending on the mission needs, for example emergency notifications or automated execution of flight operation procedures. Additionally, the concept also puts special emphasis on a self-service user portal that provides flexible access 24/7, even when the control center is not staffed. The portal allows external users of the payload to schedule pre-defined experiments, monitor the live execution of the experiment with browser-based displays and access ground station telemetry and dedicated RF test equipment during the time of their scheduled experiment. Tasks can be planned long in advance as well as with a short reaction time (less than 1 minute), which allows, for example, the reconfiguration of the payload during a running experiment.
Problem

Research questions and friction points this paper is trying to address.

Automating satellite operations for unstaffed ground segment control
Enabling autonomous tracking and commanding without human intervention
Providing 24/7 self-service experiment scheduling for external users
Innovation

Methods, ideas, or system contributions that make the work stand out.

Automated satellite operations without human intervention
Self-service user portal for 24/7 experiment scheduling
Automatic monitoring and reaction system for satellite systems
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Marvin Böcker
CGI Deutschland B.V. & Co. KG, Alte Wittener Straße 56, 44803 Bochum, Germany
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CGI Deutschland B.V. & Co. KG, Mornewegstraße 30, 64293 Darmstadt, Germany
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CGI Deutschland B.V. & Co. KG, Alte Wittener Straße 56, 44803 Bochum, Germany