Structured evidence packs
Operational data and documents are normalised, checked, packaged and made verifiable through evidence packs that can be shared with authorised stakeholders.
Renewable-energy data becomes verified, traceable and finance-grade evidence for asset owners, operators, banks, auditors, insurers and investors.
Exported data from SCADA systems, inverters, dataloggers and meters is normalised into structured evidence packs, timestamped records and verification-ready proof bundles.
Renewable-energy data is fragmented across SCADA systems, inverters, dataloggers, meters, O&M reports, financial records and compliance documents.
This creates manual reconciliation, duplicated checks, weak audit trails, delayed due diligence, insurance friction and information asymmetry between asset owners, banks, auditors and investors.
IPPAN AgentOS Energy creates an evidence layer above renewable-energy operations. It does not replace SCADA, inverter systems, dataloggers, meters or O&M platforms.
Operational data and documents are normalised, checked, packaged and made verifiable through evidence packs that can be shared with authorised stakeholders.
Stakeholder-scoped permissions ensure each party sees only the evidence relevant to their role. Human approval gates control evidence submission and anchoring.
Evidence commitment hashes can be anchored to IPPAN L1 for independent, third-party verification. Anchoring is a controlled, gated operation — not automatic.
Each module structures a specific category of renewable-energy evidence. Status labels indicate current readiness level.
Central identity record for the asset: technical specs, location, data-source registry, and stakeholder map.
Monthly and quarterly production packs: metered output, specific yield, availability, and revenue-meter cross-checks.
Annual compliance packs: grid code certificates, environmental permits, safety inspections, and regulatory filings.
Revenue, cost, and financial-model evidence linked to production data for lender and investor reporting.
Policy schedules, warranty trackers, claims history, and loss-event documentation for insurers and lenders.
PR analysis, degradation tracking, thermographic inspections, and inverter fault logs for technical due diligence.
AI-assisted evidence review: automated anomaly detection, cross-pack consistency checks, and natural-language Q&A over the evidence corpus.
On-chain anchoring of evidence commitment hashes. Provides tamper-evident provenance and third-party verifiability.
The Energy Evidence Room is designed for multi-stakeholder environments. Each role accesses the evidence relevant to their function.
Full visibility over evidence packs. Prove asset performance and compliance to lenders, investors and insurers from a single governed environment.
Upload operational data and submit draft evidence packs. Structured evidence reduces manual reporting and ensures consistency across assets.
Access verified production and performance evidence before financing or refinancing an asset. Standardised packs reduce due-diligence effort.
Review all evidence packs with full provenance and audit trails. Verify commitment hashes against L1 anchors independently.
Access structured insurance evidence: policy schedules, warranty trackers, claims history and loss-event documentation.
View investor due-diligence packs, production summaries and financial model extracts. Verify evidence independently via L1 anchoring.
Receive compliance evidence in structured, verifiable formats. Grid code certificates and regulatory filings linked to asset evidence profiles.
Each evidence pack moves through a defined lifecycle. Stages marked as implemented are available in the current pilot flow. Remaining stages are funded roadmap milestones.
The current pilot flow demonstrates evidence preparation, normalisation, automated checking and commitment-hash generation. Hardened live L1 submission (Submitted → Confirmed → Verified) is a funded roadmap milestone.
The L1 submission pipeline is the defensible infrastructure layer that makes evidence independently verifiable. Anchor preparation and signing are implemented. The full submission-to-verification pipeline is a controlled pilot milestone.
Compute SHA-256 commitment hash over the finalised evidence pack.
Sign the commitment with an Ed25519 key pair.
Submit the signed commitment to the L1 gateway.
Receive transaction confirmation and block reference from L1.
Fetch the anchor record from L1 for local verification.
Compare local commitment hash against the L1-anchored record.
Detect submission failures, timeout, or rejection. No silent drops.
Idempotent retry with duplicate-submission prevention.
Deduplication logic ensures the same evidence pack is not anchored twice.
Every step logged: prepare, sign, submit, confirm, verify, fail.
Each evidence pack can be independently verified. The verifier compares the commitment hash, checks L1 anchor status, and reports any mismatches. Below is a preview using demo data.
Three levels define the path from pilot-ready evidence workflow to full production Energy Evidence Room with hardened L1 verification.
Organised evidence packs with normalisation, automated checks, and SHA-256 commitment hashes. Stakeholder-scoped access controls. Machine-readable and human-readable exports.
Commitment hashes submitted to an L1 ledger for on-chain anchoring. Third-party verification via public explorer. Dispute and supersession workflows.
AI agents perform cross-pack consistency analysis, anomaly detection, and natural-language due-diligence queries. Governed AI with audit trails — every AI-generated insight is traceable to source evidence.
IPPAN is explicit about what the Energy Evidence Room does and does not do.
Design-partner pilots start with a single asset or limited portfolio. IPPAN provides the evidence infrastructure; you bring the operational data. No SCADA integration, no unsupervised automation, no compliance guarantees.