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How Physicality Enables Trust: A New Era of Trust-Centered Cyberphysical Systems

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arxiv 2311.07492 v1 pith:DANIW3LL submitted 2023-11-13 cs.RO cs.MAcs.NIcs.SYeess.SY

classification cs.ROcs.MAcs.NIcs.SYeess.SY
keywords systemscyberphysicaltrustmulti-agentsecurityautonomycapabilitiesenable
verification ladder T0 review T1 audit T2 compute T3 formal
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Multi-agent cyberphysical systems enable new capabilities in efficiency, resilience, and security. The unique characteristics of these systems prompt a reevaluation of their security concepts, including their vulnerabilities, and mechanisms to mitigate these vulnerabilities. This survey paper examines how advancement in wireless networking, coupled with the sensing and computing in cyberphysical systems, can foster novel security capabilities. This study delves into three main themes related to securing multi-agent cyberphysical systems. First, we discuss the threats that are particularly relevant to multi-agent cyberphysical systems given the potential lack of trust between agents. Second, we present prospects for sensing, contextual awareness, and authentication, enabling the inference and measurement of ``inter-agent trust" for these systems. Third, we elaborate on the application of quantifiable trust notions to enable ``resilient coordination," where ``resilient" signifies sustained functionality amid attacks on multiagent cyberphysical systems. We refer to the capability of cyberphysical systems to self-organize, and coordinate to achieve a task as autonomy. This survey unveils the cyberphysical character of future interconnected systems as a pivotal catalyst for realizing robust, trust-centered autonomy in tomorrow's world.

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Cited by 3 Pith papers

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  1. Cyber Security of Sensor Systems for State Sequence Estimation: A Machine Learning Approach

    cs.CR 2025-06 reject novelty 6.0 of 10

    A consistency-check shell added to anomaly detection filters attacked sensor data for sequence estimators, matching a genie that knows the attacked sensors in simulated vehicle scenarios.

  2. Policy Stability for Measuring Operational Performance in Task Assignment with Time-Windows Under Internal Adversarial Influence

    cs.MA 2025-11 conditional novelty 5.0 of 10

    Under bounded arrivals and finite request time windows, a pickup-and-delivery policy is stable under the proposed observable cost metric exactly when its expected cumulative cancellations remain bounded.

  3. Resilient-Native and Intelligent Next-Generation Wireless Systems: Key Enablers, Foundations, and Applications

    cs.NI 2025-06 conditional novelty 4.0 of 10

    Resilience in wireless networks is formalized through recoverability and durability across four mathematical lenses and illustrated with simulation-based use cases.

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