ASGA™ Complete Standards & Modules Index
Autonomous Systems Governance ArchitectureOfficial Autonomous Operational Governance Map for Autonomous
Systems, AI Agents, Robotics, Autonomous Vehicles, Industrial
Automation, Critical Infrastructure, Human-AI Environments, and
Future Autonomous Ecosystems
This document serves as the official OOF® autonomous operational
governance map and structural index used for autonomous operational
governance identification, autonomous governance classification,
autonomous operational diagnostics, autonomous architecture
navigation, and autonomous operational problem placement across AI
systems, autonomous systems, robotics, industrial automation,
cyber-physical systems, Human-AI environments, and future autonomous
ecosystems.
ASGA™ consists of 10 Parent Standards and 50 Core Modules .
Additional standards and modules may be added when new governable
autonomous operational spaces are identified. However, the standards
and modules listed below form the core structural backbone of ASGA™.
1. Autonomous Identity Standard (AIS)
Governed Space: Autonomous Operational IdentityCore Question: Who is the autonomous operational actor?
Modules:
- Autonomous Identity Verification Module
- Autonomous Identity Attribution Module
- Autonomous Identity Continuity Module
- Autonomous Identity Lifecycle Module
- Autonomous Identity Trust Module
2. Autonomous Authority Standard (AAS)
Governed Space: Autonomous Operational AuthorityCore Question: Who has authority to perform autonomous operations?
Modules:
- Operational Authority Assignment Module
- Operational Authority Delegation Module
- Operational Authority Validation Module
- Operational Authority Restriction Module
- Operational Authority Revocation Module
3. Autonomous Execution Standard (AES)
Governed Space: Autonomous ExecutionCore Question: What autonomous actions may be executed?
Modules:
- Execution Authorization Module
- Operational Tool Governance Module
- Execution Boundary Module
- Runtime Execution Monitoring Module
- Safe Execution Termination Module
4. Autonomous Constraint Standard (ACS)
Governed Space: Autonomous Operational ConstraintsCore Question: Which operational constraints may never be violated?
Modules:
- Operational Constraint Definition Module
- Operational Constraint Enforcement Module
- Policy Constraint Module
- Safety Constraint Module
- Constraint Exception Governance Module
5. Autonomous Risk & Trust Standard (ARTS)
Governed Space: Autonomous Operational Risk & TrustCore Question: What level of operational risk and trust is
acceptable?
Modules:
- Operational Risk Classification Module
- Operational Trust Evaluation Module
- Trust Degradation Module
- Trust Recovery Module
- Operational Risk Escalation Module
6. Autonomous Coordination Standard (ACOS)
Governed Space: Autonomous Operational CoordinationCore Question: How do autonomous systems coordinate operations?
Modules:
- Autonomous Coordination Module
- Operational Synchronization Module
- Shared Objective Coordination Module
- Operational Conflict Resolution Module
- Coordination Integrity Module
8. Autonomous Operational Accountability Standard (AOAS)
Governed Space: Autonomous Operational AccountabilityCore Question: How is accountability preserved throughout autonomous
operation?
Modules:
- Operational Accountability Attribution Module
- Operational Accountability Continuity Module
- Operational Accountability Evidence Module
- Operational Accountability Validation Module
- Operational Accountability Traceability Module
9. Autonomous Compatibility Standard (ACPS)
Governed Space: Autonomous Operational CompatibilityCore Question: How do autonomous systems remain operationally
compatible?
Modules:
- Operational Interoperability Module
- Protocol Compatibility Module
- Cross-System Trust Module
- Governance Compatibility Module
- Compatibility Validation Module
10. Autonomous Evolution Standard (AEVS)
Governed Space: Autonomous EvolutionCore Question: How may autonomous systems evolve while remaining
governable?
Modules:
- Evolution Authorization Module
- Self-Modification Governance Module
- Evolution Traceability Module
- Evolution Validation Module
- Evolution Auditability Module
ASGA™ Architecture Summary
Parent Standards: 10Core Modules: 50
Core Governed Spaces
- Autonomous Operational Identity
- Autonomous Operational Authority
- Autonomous Execution
- Autonomous Operational Constraints
- Autonomous Operational Risk & Trust
- Autonomous Operational Coordination
- Autonomous Operational Escalation
- Autonomous Operational Accountability
- Autonomous Operational Compatibility
- Autonomous Evolution
ASGA™ Navigation Layer
Core Questions MapAIS → Who is the autonomous operational actor?
AAS → Who has authority to perform autonomous operations?
AES → What autonomous actions may be executed?
ACS → Which operational constraints may never be violated?
ARTS → What level of operational risk and trust is acceptable?
ACOS → How do autonomous systems coordinate operations?
AESS → When and how should autonomous operation escalate?
AOAS → How is accountability preserved throughout autonomous
operation?
ACPS → How do autonomous systems remain operationally compatible?
AEVS → How may autonomous systems evolve while remaining governable?
Architectural Position
ASGA™ governs the complete autonomous operational lifecycle.The architecture progresses:
Autonomous Identity → Autonomous Authority → Autonomous Execution →
Autonomous Constraints → Autonomous Risk & Trust → Autonomous
Coordination → Autonomous Escalation → Autonomous Operational
Accountability → Autonomous Compatibility → Autonomous Evolution
Together these standards govern how autonomous systems establish
identity, receive authority, execute operations, remain within
operational constraints, manage operational risk, coordinate with
other systems, escalate exceptional situations, preserve
accountability, maintain compatibility, and evolve while remaining
continuously governable throughout autonomous operation.