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Enterprise AI Analysis: PRISM: Proof-Carrying Artifact Generation through LLM × MDE Synergy and Stratified Constraints

Enterprise AI Analysis

PRISM: Proof-Carrying Artifact Generation through LLM × MDE Synergy and Stratified Constraints

PRISM unifies Large Language Models with Model-Driven Engineering to generate regulator-ready artifacts and machine-checkable evidence for safety- and compliance-critical domains.

Key Impact Metrics

PRISM delivers significant improvements in efficiency, correctness, and auditability across safety-critical domains.

0% Reduction in Manual Remediation
0% Structural Correctness
0 Average Repair Iterations
0% Audit Coverage

Deep Analysis & Enterprise Applications

Select a topic to dive deeper, then explore the specific findings from the research, rebuilt as interactive, enterprise-focused modules.

Setting the Stage for PRISM

An overview of Model-Driven Engineering, Large Language Models (LLMs), and the existing pain points in current MDE pipelines, highlighting the need for a new approach to safety-critical artifact generation.

The UMM-ICM-CVG Framework

Detailed explanation of PRISM's core architecture, including the Unified Meta-Model (UMM) for semantic backbone, the Integrated Constraint Model (ICM) for constraint aggregation, and Constraint-Guided Verifiable Generation (CVG) for enforcement and repair.

Rigorous Performance Validation

Analysis of PRISM's performance on single-file and multi-file AUTOSAR component generation, assessing structural correctness, semantic consistency, repair efficiency, and cross-domain transferability in legal contexts.

Future Directions and Impact

Summary of PRISM's contributions to verifiable artifact generation, discussion of current limitations, and outlines for future work, emphasizing incremental validation, fine-grained strategies, and audit-guided fine-tuning.

Enterprise Process Flow

Unified Meta-Model (UMM)
Integrated Constraint Model (ICM)
Constraint-Guided Verifiable Generation (CVG)
80% Reduction in Routine Artifact Construction through PRISM's Automation

Cross-Domain Evaluation: Brussels I bis Jurisdiction

Metric Baseline (LLM-only) RAG PRISM
Legal Correctness 0.200 0.300 0.467
Schema Compliance 1.000
Rule Satisfaction 1.000

Case Study: Brussels I bis Regulation

PRISM was applied to Private International Law (PIL) jurisdiction determination under the Brussels I bis Regulation. This cross-domain evaluation showcased the architecture's transferability, demonstrating layered constraint enforcement and improved doctrinal validity compared to LLM-only and RAG approaches.

Key Takeaways:

  • Higher Legal Correctness (0.467 for PRISM vs. 0.200/0.300 for Baseline/RAG)
  • Perfect Schema-Pass and Rule-OK (1.000)
  • Enhanced Promotion Accuracy (0.933)

Calculate Your Potential ROI with PRISM

Estimate the time and cost savings PRISM could bring to your organization by automating safety-critical artifact generation.

Estimated Annual Savings $0
Hours Reclaimed Annually 0

Your Roadmap to Verifiable AI Integration

A phased approach to integrate PRISM into your existing MDE and compliance workflows.

Phase 01: Meta-Model & Constraint Foundation

Establish the Unified Meta-Model (UMM) from existing schemas and natural language specifications. Integrate core structural and semantic constraints into the ICM, ensuring auditable provenance.

Phase 02: Constraint-Guided Generation Pilot

Deploy PRISM for single-artifact generation in a pilot domain, leveraging Layer-1 enforcement for structural correctness and Layer-2 validation for semantic compliance. Train and onboard core engineering teams.

Phase 03: Multi-File System & Audit Integration

Scale PRISM to multi-file systems, addressing cross-file dependencies and global invariants. Integrate audit trails and machine-checkable evidence with existing certification processes.

Phase 04: Audit-Guided Repair & Continuous Improvement

Implement Audit-Guided Repair (AGR) for automated and human-in-the-loop repair. Continuously refine constraint models and generation strategies based on feedback and performance metrics.

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Unlock the power of verifiable AI-assisted engineering for your safety-critical and compliance-driven projects.

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