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newsGoogle DeepMindTrust 88 · LabPublished 2mo agoLive · 1mo ago

Securing the future of AI agents

Securing internal systems with an AI Control Roadmap, combining traditional safeguards and real-time monitoring.

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repocnaebadi/ai-disclosure-handbookpaperAdvancing Omnimodal Embodied Agents from Isolated Skills to Everyday Physical Autonomyrepokrushna081/chakravyuh-aipaperAgent-Native Immune System: Architecture, Taxonomy, and EngineeringpaperDirect Causation in International Humanitarian Law and the Challenge of AI-Mediated Civilian Cyber OperationspaperMulti-Agentic System Leveraging Open-Source LLMs to Mitigate Disinformation ThreatspaperMESA: Prioritizing Vulnerable Communication Channels for Securing Multi-Agent Systemsrepoagentgateway/agentgatewayrepousestrix/strixrepoTh0rgal/sandboxed.shrepoTracecatHQ/tracecatrepodecocms/studiorepoairbytehq/airbyte-agent-sdkrepoduncatzat/vigilspaperBehind the Refusal: Determining Guardrail Activation via Behavioral MonitoringpaperOverview of Risk Assessment and Management for Intelligent Systems under the AI Act and BeyondpaperCriticality-Based Guard Rail Validation for AI Agent Decisions in Autonomous Telecom NetworkspaperDistributed Attacks in Persistent-State AI Controlrepoarthur-ai/arthur-enginerepoTencent/AI-Infra-Guardrepoapache/hertzbeatreposuperloglabs/superlogrepoDariuszNewecki/CORErepoTalEliyahu/Awesome-AI-Securityreponode9-ai/node9-proxyreposcitix/siclawrepokillertcell428/aigisrepocordum-io/cordumpaperTrustX Agent Risk Classification Framework (ARC): Risk-Tiering Internally Created Agentic AI Systemsreposcadastrangelove/awesome-ai-security-toolsrepoWhitzardAgent/AgentGuardpaperPractical Judgment, Virtue, and Intuition in the Use of Opaque AI-Enabled SystemspaperSMC-ES: Automated synthesis of formally verified control policiesrepopreloop/prelooppaperA Methodology for Auditable Trustworthiness Levels in AI Lifecycle GovernancepaperResearchArena: Evaluating Sabotage and Monitoring in Automated AI R&D

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