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Cross-Framework Defense Map

SI-13 — Predictable Failure Prevention

Trace this SP 800-53 control to NIST CSF outcomes, CUI requirements, D3FEND defensive techniques, ATT&CK relationships, and related learning resources.

SI — System and Information Integrity · NIST SP 800-53 Release 5.2.0

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NIST SP 800-53 control context

SI-13 — Predictable Failure Prevention

While MTTF is primarily a reliability issue, predictable failure prevention is intended to address potential failures of system components that provide security capabilities. Failure rates reflect installation-specific consideration rather than the industry-average. Organizations define the criteria for the substitution of system components based on the MTTF value with consideration for the potential harm from component failures. The transfer of responsibilities between active and standby components does not compromise safety, operational readiness, or security capabilities. The preservation of system state variables is also critical to help ensure a successful transfer process. Standby components remain available at all times except for maintenance issues or recovery failures in progress.

Read the official statement, discussion, parameters, enhancements, and assessment methods →

Outcome layer

NIST CSF 2.0 informative references

These CSF Subcategories list this base control or one of its enhancements in the imported NIST informative reference.

CUI protection layer

NIST SP 800-171 and SP 800-172

SP 800-171 requirements sourcing this control

No relationship is present in the currently imported source datasets.

SP 800-172 enhanced requirements sourcing this control

No relationship is present in the currently imported source datasets.
Defensive engineering layer

MITRE D3FEND techniques

No relationship is present in the currently imported source datasets.
Adversary layer

MITRE ATT&CK relationships

Curated mitigation mappings

No relationship is present in the currently imported source datasets.

Inferred behavior relationships

Experimental: These relationships are inferred through D3FEND and must be validated against architecture, telemetry, and threat context.

No relationship is present in the currently imported source datasets.
Relationship boundaries

Use the map without overclaiming.

A CSF informative reference is not an equivalence statement. A source-control relationship is not proof of implementation. A D3FEND semantic relationship is not a product claim. An inferred ATT&CK link is a hypothesis for engineering analysis.

Bare Metal Cyber is an independent educational publisher and is not affiliated with or endorsed by NIST or MITRE. Informative references and cross-framework relationships support navigation and analysis; they do not establish compliance, applicability, equivalence, control inheritance, or guaranteed mitigation effectiveness.