Probabilistic reliability evaluation of autonomous navigation for firefighting robots in uncertain environments

Autor/innen

Zhaowei Zhou
Shanghai fire research institute of MEM, Shanghai 200032, China
Ruikun Li
Shanghai fire research institute of MEM, Shanghai 200032, China
Fang Cong
Shanghai fire research institute of MEM, Shanghai 200032, China
Wei Shi
Shanghai fire research institute of MEM, Shanghai 200032, China

Über dieses Buch

Autonomous navigation is a mission-critical capability for firefighting robots operating in hazardous, unstructured, and highly uncertain environments. However, existing evaluation approaches are largely based on deterministic performance metrics and provide limited support for quantifying navigation reliability under uncertainty. This limitation hinders objective benchmarking and standardized assessment across different robotic platforms and operating conditions. This paper proposes an uncertainty-aware reliability assessment framework for autonomous navigation of firefighting robots. The framework integrates multi-source sensing, trajectory reconstruction, deviation analysis, and probabilistic performance evaluation into a unified pipeline. A nearest-neighbor-based trajectory matching method is employed to quantify discrepancies between reference and executed trajectories under asynchronous and non-uniform sampling conditions. To move beyond deterministic evaluation, key performance indicators, including trajectory deviation, completion time, and obstacle avoidance success rate, are modeled as stochastic variables, from which probabilistic reliability measures are derived. Experimental studies were conducted in controlled environments with static, dynamic, and complex obstacle configurations. The results show that the proposed framework effectively captures both navigation accuracy and performance variability across scenarios. In particular, the reliability metrics provide a more informative assessment than conventional threshold-based indicators by explicitly reflecting the probability of satisfying navigation requirements under uncertainty. The proposed framework offers a systematic and quantitative approach for reliability assessment of autonomous navigation systems and provides practical value for performance benchmarking, system validation, and algorithm improvement in firefighting robotics and related mobile robotic applications.

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Veröffentlicht

21.08.2026

Lizenz

Creative Commons License

Dieses Werk steht unter der Lizenz Creative Commons Namensnennung 4.0 International.

Zitationsvorschlag

Probabilistic reliability evaluation of autonomous navigation for firefighting robots in uncertain environments. (2026). In REC 2026 - 11th International Workshop on Reliable Engineering Computing: Reliability Computations in a Data and Model-Driven World (pp. 432-444). TUDObooks. https://doi.org/10.17877/tudobooks-11.172