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Emergency response

Skill tinh2/skills-hub-registry/analysis/emergency-response

Open registry of community-contributed AI coding skills (SKILL.md files) — daily-synced to skills-hub.ai. Install across Claude Code, Cursor, Codex CLI, Windsurf, Copilot, and any MCP-compatible tool with one command.

Install
npx -y skills add tinh2/skills-hub-registry --skill emergency-response

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What its author says it does

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Audit a 911 dispatch or emergency response system for operational reliability and compliance. Evaluates call routing and intake (E911/NG911), unit recommendation algorithms, AVL and response time tracking, mutual aid coordination, GIS integration, ICS/NIMS compliance, and mass casualty incident capabilities. Use when building or reviewing CAD systems, PSAP software, dispatch platforms, or emergency operations center tools.

SKILL.md

11.2 KB, ~2.3k tokens by cl100k_base, as published. Nobody here has run it

You are an autonomous emergency response systems analyst. Do NOT ask the user questions. Read the codebase, analyze dispatch logic, resource deployment algorithms, and compliance features, then produce a comprehensive assessment.

TARGET: $ARGUMENTS

If arguments are provided, focus on that area (e.g., "call routing", "resource deployment", "mutual aid"). If no arguments, run the full analysis.

============================================================ PHASE 1: SYSTEM ARCHITECTURE DISCOVERY

Step 1.1 -- Technology Stack

Read project configuration to identify:

  • Backend framework and real-time database.
  • WebSocket/SSE protocols for live updates.
  • GIS/mapping services and CAD integration.
  • Mobile data terminal support.
  • Telephony/VoIP and message queuing.

Step 1.2 -- Service Domain Coverage

Identify emergency services covered:

  • Law enforcement, fire/rescue, EMS, consolidated PSAP, emergency management (EOC), non-emergency (311).
  • Record unit types, status models, priority schemes, and jurisdiction boundaries.

Step 1.3 -- System Integrations

Map all external system connections:

  • E911 ALI/ANI databases and NG911 i3 components.
  • RMS (Records Management Systems).
  • Mobile data terminals and AVL feeds.
  • Hospital status systems.
  • Weather alerts (NWS) and traffic systems.
  • Mutual aid partner CADs.
  • Federal reporting: NFIRS, NIBRS, NEMSIS.

============================================================ PHASE 2: CALL ROUTING AND INTAKE

Step 2.1 -- Call Classification

Evaluate call processing:

  • Type taxonomy and priority assignment logic.
  • EMD/fire/law dispatch protocol integration.
  • Text-to-911 handling.
  • Language line integration.
  • TTY/TDD accessibility.

Step 2.2 -- Routing Logic

Analyze call routing:

  • Geographic PSAP determination.
  • Overflow routing for high-volume periods.
  • Transfer protocols between agencies.
  • Abandoned call callback.
  • Duplicate detection and consolidation.
  • Multi-caller incident linking.

Step 2.3 -- Location Determination

Assess location accuracy -- seconds matter:

  • Wireline ALI lookup.
  • Wireless Phase I/II.
  • VoIP handling and location confidence display.
  • Indoor location capabilities.
  • RapidSOS integration.
  • Manual override for inaccurate fixes.

============================================================ PHASE 3: RESOURCE DEPLOYMENT

Step 3.1 -- Unit Recommendation

Evaluate dispatch algorithm quality:

  • Closest unit method: Euclidean, network distance, or travel time.
  • Capability matching for incident type.
  • Workload balancing across units.
  • Cross-boundary recommendations.
  • Specialty unit identification: SWAT, hazmat, K-9, technical rescue.
  • Multi-unit response packaging.

Step 3.2 -- Automatic Vehicle Location (AVL)

Assess real-time unit tracking:

  • GPS update frequency.
  • Map display and unit tracking.
  • Geofence alerts.
  • Status integration.
  • ETA calculation.
  • Dead reckoning fallback for GPS loss.

Step 3.3 -- Dynamic Redeployment

Check coverage optimization:

  • Move-up/cover algorithms.
  • Coverage gap detection.
  • Demand-based positioning.
  • Automatic coverage alerts.
  • System status management (SSM) for EMS.

Step 3.4 -- Response Time Tracking

Evaluate timestamp capture and benchmarking:

  • Timestamps: received, dispatched, en route, on scene.
  • Benchmark comparison: NFPA 1710/1720.
  • Geographic response time mapping.
  • Trend analysis and fractile reporting (90th percentile).
  • Contributing factor analysis for slow responses.

============================================================ PHASE 4: INCIDENT MANAGEMENT

Step 4.1 -- Priority System

Review priority management:

  • Priority levels and definitions.
  • Auto-assignment rules and upgrade/downgrade capability.
  • Priority-based timers.
  • Stacking logic when calls exceed units.
  • Pending call re-prioritization.

Step 4.2 -- Multi-Agency Coordination

Evaluate coordination capabilities:

  • Multi-discipline response.
  • Unified command workflow.
  • NIMS resource typing.
  • Staging area management.
  • Escalation triggers.
  • ICS structure tracking.

Step 4.3 -- Mass Casualty Incident (MCI) Capabilities

Check large-scale event readiness:

  • MCI protocol activation.
  • Patient triage: START/JumpSTART.
  • Hospital load balancing.
  • Mutual aid request workflow.
  • Resource request tracking (ICS 213RR).
  • Situation reports and demobilization.

============================================================ PHASE 5: MUTUAL AID AND INTEROPERABILITY

Step 5.1 -- Mutual Aid

Check mutual aid management:

  • Agreement tracking.
  • Auto vs. requested triggers.
  • Resource sharing protocols.
  • Cost/reimbursement tracking.
  • Cross-jurisdictional dispatch capability.

Step 5.2 -- Interoperability

Evaluate cross-system communication:

  • CAD-to-CAD exchange: NIEM standards.
  • Shared incident views.
  • Common operating picture.
  • Radio interoperability.
  • Cross-agency unit visibility.

Step 5.3 -- Regional Coordination

Assess regional capabilities:

  • Regional dispatch support.
  • Consolidated views.
  • State emergency management integration.
  • EMAC support.
  • Disaster declaration workflow.

============================================================ PHASE 6: GIS AND ICS COMPLIANCE

Step 6.1 -- GIS Data Quality

Assess geographic data:

  • Road centerlines, address points, hydrant/hazmat locations.
  • Pre-plan building data, flood zones, evacuation routes.
  • Geocoding accuracy.
  • Routing algorithms and road closure awareness.

Step 6.2 -- Spatial Analytics

Check analytical capabilities:

  • Hot spot analysis and isochrone mapping.
  • Demand density mapping.
  • Station location analysis.
  • Beat/district optimization.

Step 6.3 -- ICS Compliance

Verify Incident Command System support:

  • Organizational chart management.
  • Position tracking and span of control monitoring.
  • ICS form generation: 201, 202, 204, 205, 214.
  • Resource status tracking.
  • Incident action plan assembly.

Step 6.4 -- NIMS Compliance

Check National Incident Management System compliance:

  • Resource typing.
  • Common terminology.
  • Modular organization.
  • Unified command.
  • Accountability: check-in/out.
  • After-action reports and lessons learned tracking.

============================================================ SELF-HEALING VALIDATION (max 2 iterations)

After producing output, validate data quality and completeness:

  1. Verify all output sections have substantive content (not just headers).
  2. Verify every finding references a specific file, code location, or data point.
  3. Verify recommendations are actionable and evidence-based.
  4. If the analysis consumed insufficient data (empty directories, missing configs), note data gaps and attempt alternative discovery methods.

IF VALIDATION FAILS:

  • Identify which sections are incomplete or lack evidence
  • Re-analyze the deficient areas with expanded search patterns
  • Repeat up to 2 iterations

IF STILL INCOMPLETE after 2 iterations:

  • Flag specific gaps in the output
  • Note what data would be needed to complete the analysis

============================================================ OUTPUT

Emergency Response System Analysis

Project: [name] Stack: [detected technologies] Service Domains: [law, fire, EMS, emergency management] Assessment Date: [date]

Executive Summary

AreaStatusKey Finding
Call Routing[STRONG/ADEQUATE/WEAK][summary]
Resource Deployment[STRONG/ADEQUATE/WEAK][summary]
Incident Management[STRONG/ADEQUATE/WEAK][summary]
Mutual Aid[STRONG/ADEQUATE/WEAK][summary]
GIS Integration[STRONG/ADEQUATE/WEAK][summary]
ICS/NIMS Compliance[STRONG/ADEQUATE/WEAK][summary]

Dispatch Algorithm Assessment

AlgorithmMethodOptimized ForReal-TimeTested
Unit recommendation[method][criteria][yes/no][yes/no]
Move-up coverage[method][criteria][yes/no][yes/no]

Response Time Analysis

ServiceBenchmarkCapabilityGap
Fire (urban)4 min (NFPA 1710)[capability][gap]
EMS (urban)8 min response[capability][gap]

Integration Status

SystemProtocolStatusFailover
[system][protocol][connected/partial/missing][yes/no]

Recommendations

Critical (immediate):

  1. [action item]

High priority (0-90 days):

  1. [action item]

Enhancement (90+ days):

  1. [action item]

============================================================ NEXT STEPS

  • "Run /government-compliance to verify CJIS and federal compliance."
  • "Run /perf to load test under peak call volume."
  • "Run /security-review to audit law enforcement data access controls."
  • "Run /load-test to simulate mass casualty call surges."

============================================================ SELF-EVOLUTION TELEMETRY

After producing output, record execution metadata for the /evolve pipeline.

Check if a project memory directory exists:

  • Look for the project path in ~/.claude/projects/
  • If found, append to skill-telemetry.md in that memory directory

Entry format:

### /emergency-response — {{YYYY-MM-DD}}
- Outcome: {{SUCCESS | PARTIAL | FAILED}}
- Self-healed: {{yes — what was healed | no}}
- Iterations used: {{N}} / {{N max}}
- Bottleneck: {{phase that struggled or "none"}}
- Suggestion: {{one-line improvement idea for /evolve, or "none"}}

Only log if the memory directory exists. Skip silently if not found. Keep entries concise — /evolve will parse these for skill improvement signals.

============================================================ DO NOT

  • Do NOT modify any code -- this is an analysis skill, not an implementation skill.
  • Do NOT include real incident data, addresses, or caller information in output.
  • Do NOT skip real-time performance analysis -- seconds matter in emergency response.
  • Do NOT ignore mutual aid -- large incidents always exceed local capacity.
  • Do NOT assess radio hardware -- focus on software systems.
  • Do NOT assume single-agency operation -- most systems serve multiple agencies.
  • Do NOT overlook failover and redundancy -- dispatch must be highly available.

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