{
  "answer": "Evaluate it through a complete safety and security case: threat model, sensing, false-positive and false-negative performance, delay and response timing, cyber resilience, communications denial, fail-safe behavior, lawful authority, human authorization boundaries, aviation and nuclear regulation, rights impacts, testing, independent review, incident response, and evidence of current operation. Cost or response speed alone is not dispositive.",
  "canonicalUrl": "https://xn--mwe.com/questions/how-evaluate-autonomous-security-at-nuclear-infrastructure/",
  "claimStatus": "PROJECT TECHNICAL PROPOSAL",
  "correctionStatus": "CURRENT K05 RELEASE",
  "id": "K01-ANSWER-082",
  "lastReviewed": "2026-08-16",
  "question": "How should autonomous security at nuclear infrastructure be evaluated?",
  "releaseId": "K12-2026-08-16",
  "researchCutoff": "2026-08-16",
  "shortAnswer": "Evaluate it through a complete safety and security case: threat model, sensing, false-positive and false-negative performance, delay and response timing, cyber resilience, communications denial, fail-safe behavior, lawful authority, human authorization boundaries, aviation and nuclear regulation, rights impacts, testing, independent review, incident response, and evidence of current operation. Cost or response speed alone is not dispositive.",
  "slug": "how-evaluate-autonomous-security-at-nuclear-infrastructure",
  "sourceRevalidatedAt": "2026-08-15T23:00:00Z",
  "status": "PROJECT TECHNICAL PROPOSAL",
  "topic": "security-resilience",
  "type": "Question"
}
