Cross-Framework Mapping

Azure Security BenchmarkvsIEEE 1686

See exactly how Azure Security Benchmark controls map to IEEE 1686. Pre-computed mappings, identified gaps, and coverage analysis.

10
Controls Mapped
44
Gaps Found
17%
Coverage

According to the TheArtOfService Compliance Knowledge Graph:

Azure Security Benchmark maps to IEEE 1686 with 17% coverage across 9 directly mapped controls. Analysis of 54 Azure Security Benchmark controls identifies 45 compliance gaps — primarily concentrated in Identity Management.

Source: TheArtOfService Knowledge Graph | 54 controls analysed | 718 frameworks | 332K+ cross-framework mappings

Control Mappings

Showing 10 of 10 mapped controls across 4 domains. Sign up to explore all 332K+ mappings across 718 frameworks.

Azure Security Benchmark: Cloud Governance(2 mappings)

ASB-03Cloud risk assessment2 targets
IEEE1686-IR-Recovery-Reporting-Exercises-Drills-RECOVIEEE 1686 - Incident Response + Recovery from Failed Update + Reporting to Authorities + Coordination with Sector-Specific Agencies + Exercises and Drills
IEEE1686-Section5.1-AccessControl-Accounts-Roles-Password-Session-RemoteIEEE 1686 Section 5.1 - Electronic Access Account Management + Roles + Password + Failed Login + Session + Remote Access + Personnel

Azure Security Benchmark: Data Protection in Cloud(2 mappings)

ASB-11Data classification for cloud
IEEE1686-Scope-IED-Substation-Automation-2022-IEC-NERC-NIST-CoordIEEE 1686 - Scope + Intelligent Electronic Devices (IEDs) + Substation Automation + 2022 Edition + Coordination with IEC 62351 + IEC 62443 + NERC CIP + NIST SP 800-82
ASB-14Data backup and recovery in cloud
IEEE1686-IR-Recovery-Reporting-Exercises-Drills-RECOVIEEE 1686 - Incident Response + Recovery from Failed Update + Reporting to Authorities + Coordination with Sector-Specific Agencies + Exercises and Drills

Azure Security Benchmark: Cloud Infrastructure Security(3 mappings)

ASB-16Virtual network segmentation
IEEE1686-Section5.2-5.3-AuditLog-Retention-Export-MonitoringIEEE 1686 Section 5.2 + 5.3 - Audit Trail Records + Retention + Export + Supervisory Monitoring and Control + Network Security Monitoring
ASB-19Image and template hardening
IEEE1686-Section5.5-5.6-5.7-5.8-Firmware-ConfigSW-TimeSync-DataAtRestIEEE 1686 Section 5.5-5.8 - Firmware Quality + Configuration Software Security + Time Synchronisation + Data Protection at Rest + Patch + Malware + Hardening + Vulnerability
ASB-20Cloud configuration management
IEEE1686-Section5.5-5.6-5.7-5.8-Firmware-ConfigSW-TimeSync-DataAtRestIEEE 1686 Section 5.5-5.8 - Firmware Quality + Configuration Software Security + Time Synchronisation + Data Protection at Rest + Patch + Malware + Hardening + Vulnerability

Azure Security Benchmark: Cloud Operations & Monitoring(3 mappings)

ASB-21Cloud security monitoring and logging
IEEE1686-Section5.2-5.3-AuditLog-Retention-Export-MonitoringIEEE 1686 Section 5.2 + 5.3 - Audit Trail Records + Retention + Export + Supervisory Monitoring and Control + Network Security Monitoring
ASB-22Incident response in cloud
IEEE1686-IR-Recovery-Reporting-Exercises-Drills-RECOVIEEE 1686 - Incident Response + Recovery from Failed Update + Reporting to Authorities + Coordination with Sector-Specific Agencies + Exercises and Drills
ASB-24Cloud change management
IEEE1686-Section5.5-5.6-5.7-5.8-Firmware-ConfigSW-TimeSync-DataAtRestIEEE 1686 Section 5.5-5.8 - Firmware Quality + Configuration Software Security + Time Synchronisation + Data Protection at Rest + Patch + Malware + Hardening + Vulnerability

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What are the key differences between Azure Security Benchmark and IEEE 1686?

Azure Security Benchmark has 54 controls across its framework, while IEEE 1686 covers 7 controls. Direct mapping analysis identifies 9 overlapping controls (17% coverage). The frameworks diverge most significantly in Identity Management, where 5 Azure Security Benchmark controls have no direct IEEE 1686 equivalent.

How many controls map between Azure Security Benchmark and IEEE 1686?

Of 54 total Azure Security Benchmark controls, 9 map directly to IEEE 1686 controls — representing 17% coverage. The remaining 45 controls represent compliance gaps requiring additional documentation or compensating controls to satisfy both frameworks simultaneously.

What are the compliance gaps when mapping Azure Security Benchmark to IEEE 1686?

45 Azure Security Benchmark controls have no direct equivalent in IEEE 1686. The highest concentration of gaps is in Identity Management with 5 unmapped controls. These gaps represent areas where additional controls, policies, or documentation must be created to achieve compliance with both frameworks.

Which control domains have the most gaps between Azure Security Benchmark and IEEE 1686?

The domain with the highest gap count is Identity Management (5 gaps). Export the full domain-by-domain gap breakdown via the Professional tier to generate a prioritised remediation roadmap.

This platform provides educational compliance tools, not legal, regulatory, or professional compliance advice. Cross-framework mappings are AI-assisted interpretations and do not reproduce or replace official standards. Framework names and trademarks belong to their respective owners. Consult qualified professionals for your specific compliance requirements. See our Terms of Service.