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March 16, 20260 citationsOpen Access

Safety-Bounded Autonomy: Architectural Safety Enforcement for Distributed Robotic Systems

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ABAndreas Blumer

Key Points

  • This research aims to develop an architectural framework that ensures safe behavior in autonomous robotic systems operating in unpredictable environments.
  • Introduction of safety-bounded autonomy concept.
  • Development of governance layers for real-time monitoring and authorization.
  • Integration of safety constraint verification into robotic control architecture.
  • Design of framework suitable for distributed robot fleets.
  • Establishment of mechanisms that dynamically constrain robot capabilities.
  • Demonstration of improved safety during autonomous operation.
  • Ability to scale and coordinate safety governance across multiple robots.

Abstract

Autonomous robotic systems increasingly operate in dynamic and partially unpredictable environments such as logistics facilities, manufacturing sites, and public spaces. As autonomy levels increase, ensuring safe and bounded system behavior becomes a central challenge. This paper introduces the concept of safety-bounded autonomy, an architectural approach that constrains robotic decision-making and execution through explicit runtime safety enforcement mechanisms. Instead of relying solely on design-time verification, the proposed architecture introduces governance layers that monitor, authorize, and constrain robot capabilities during system operation. The framework integrates capability authorization, safety constraint verification, and runtime monitoring into the control architecture of autonomous robotic systems. By embedding safety enforcement directly within the system architecture, autonomous behavior can be dynamically restricted to predefined safety boundaries while still enabling adaptive operation. The paper further discusses how safety-bounded autonomy can scale to distributed robot fleets by introducing coordinated governance mechanisms across multiple autonomous agents. The approach contributes to emerging research on trustworthy AI, cyber-physical systems safety, and architectural governance for autonomous robotic platforms.

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Cite This Study

Andreas Blumer (2026) studied this question.

synapsesocial.com/papers/69b79ea18166e15b153ac4b7https://doi.org/10.5281/zenodo.19023331
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