IntelliSee safety intelligence research built from AI detection and physical security analysis
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Strategic research for proactive safety leaders.

Open analysis on AI-powered physical security, detection architecture, compliance, policy, sector risk, and the operational shift from recorded video to verified response.

6Research streams
QATTDHS SAFETY Act context
2026Active policy tracking
FieldDeployment-informed analysis
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AI-Powered Threat Detection and Workplace Safety: The Definitive 2026 Guide to Proactive Computer Vision Working Technology Briefings
14 min readOpen access

AI-Powered Threat Detection and Workplace Safety: The Definitive 2026 Guide to Proactive Computer Vision

A reference guide for security, risk, and operations leaders evaluating AI-powered threat detection in 2026.

Key Numbers
$1B+Cost of workplace injuries to U.S. businesses every week (Liberty Mutual)
91%Security technology developers focusing R&D investment on AI (SIA, 2026)
2xYoY increase in AI adoption among physical security end users (Genetec, 2026)
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The Index

Every dispatch, ordered by date.

The Four-Variable ROI Framework for AI Physical SecurityROI FrameworksThe Four-Variable ROI Framework for AI Physical SecurityThe AI physical security ROI conversation has shifted from soft narrative to a four-variable economic model finance committees can defend. This Intelligence report walks through each variable with primary-source benchmarks for healthcare, K-12, manufacturing,...Dispatch No. 9716 min readRead dispatch The Agentic Security Operations Center: An Architecture ReferenceAgentic AIThe Agentic Security Operations Center: An Architecture ReferenceThe agentic security operations center decomposes into seven named architecture layers, mapped to NIST AI RMF, CSA AAGATE, MITRE ATLAS, and ISO/IEC 42001. A reference for security architects, CISOs, and risk officers evaluating, designing,...Dispatch No. 9816 min readRead dispatch How Computer Vision Models Handle Occlusion, Low Light, and Adversarial ConditionsTechnology BriefingsHow Computer Vision Models Handle Occlusion, Low Light, and Adversarial ConditionsThree failure modes determine whether a computer vision security platform actually performs in the field: occlusion, low light, and adversarial conditions. This briefing covers what the science says and how to evaluate vendors against...Dispatch No. 9916 min readRead dispatch The DHS SAFETY Act in AI Security: Designation, Certification, and What It Actually MeansMarket AnalysisThe DHS SAFETY Act in AI Security: Designation, Certification, and What It Actually MeansThe DHS SAFETY Act decoded for security buyers. QATT, Designated Technology, and Certified Anti-Terrorism Technology — what each tier means and which vendors hold which.Dispatch No. 10014 min readRead dispatch Perimeter Intrusion: The 90-Second Window That Defines Your Security PostureThreat IntelligencePerimeter Intrusion: The 90-Second Window That Defines Your Security PostureA reference for security directors on why the 30-90 second detection-to-response window defines perimeter security posture, and how AI changes the math.Dispatch No. 10114 min readRead dispatch Senior Living and Memory Care: The AI Fall Detection Standard of CareSector PlaybooksSenior Living and Memory Care: The AI Fall Detection Standard of CareA reference for senior living and memory care operators on how AI fall detection is becoming the standard of care, with regulatory and economic context.Dispatch No. 10215 min readRead dispatch State-by-State AI Security Legislation: Q2 2026 TrackerStandards & ComplianceState-by-State AI Security Legislation: Q2 2026 TrackerA field-grade tracker mapping the four state legislative categories shaping physical security AI procurement: biometric privacy, AI governance, school safety, and WPV statutes.Dispatch No. 10316 min readRead dispatch Healthcare Workplace Violence: The AI Detection PlaybookSector PlaybooksHealthcare Workplace Violence: The AI Detection PlaybookA regulatory and operational reference for hospital security, risk, and clinical leaders implementing AI detection inside a WVPP.Dispatch No. 10413 min readRead dispatch Autonomous Security: How Agentic AI Is Replacing Alert-First ArchitecturesAgentic AIAutonomous Security: How Agentic AI Is Replacing Alert-First ArchitecturesAgentic AI is replacing alert-first SOCs with autonomous response systems. A reference for buyers evaluating the shift in 2026.Dispatch No. 10512 min readRead dispatch AI-Powered Threat Detection and Workplace Safety: The Definitive 2026 Guide to Proactive Computer VisionTechnology BriefingsAI-Powered Threat Detection and Workplace Safety: The Definitive 2026 Guide to Proactive Computer VisionA 2026 reference for security, risk, and operations leaders evaluating AI threat detection: how it works, where it pays back, and what to ask vendors.Dispatch No. 10614 min readRead dispatch
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A research practice, not a content calendar.

Every dispatch is grounded in current standards, field-tested deployment patterns, primary-source research, and clear limits. The goal is not volume. The goal is better physical security decisions.

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