Oracle & Verifiable Compute
Bring real-world data on-chain and prove off-chain computations with cryptographic guarantees.
Three-Plane Architecture
How Accuboard bridges off-chain data and computation to the Accumulate network
Features
Trusted data and verifiable computation for the Accumulate ecosystem
Data Feeds
Aggregate and verify off-chain data from multiple sources with configurable trust thresholds and freshness requirements.
Verifiable Random Functions
Provably fair randomness for on-chain applications. Cryptographically guaranteed, publicly verifiable, and bias-resistant.
Computation Proofs
Prove off-chain computations without re-executing them. Zero-knowledge proofs anchor results to the Accumulate ledger.
Multi-Source Aggregation
Median, weighted average, and outlier detection across multiple data providers for maximum reliability.
Threshold Signatures
Distributed trust with no single point of failure. Multiple independent nodes must agree before data is committed on-chain.
Accumulate Anchoring
All proofs and data attestations are anchored to Accumulate's immutable ledger for permanent, tamper-proof verification.
Use Cases
Real-world applications powered by trusted data and verifiable computation
DeFi Price Feeds
Reliable asset pricing for lending, trading, and derivatives. Multi-source aggregation with outlier detection ensures accurate, manipulation-resistant data.
Gaming & NFTs
Verifiable randomness for fair loot drops and gameplay mechanics. Players can independently verify that outcomes were not manipulated.
Enterprise Data
Trusted supply chain data and IoT sensor verification. Prove provenance and integrity of real-world measurements on-chain.
Roadmap
Building the oracle and verifiable compute layer for Accumulate
Architecture Design
CompleteThree-plane architecture defined. Data ingestion, compute verification, and consensus anchoring patterns established.
Data Feed MVP
In ProgressMinimum viable data feed system with multi-source aggregation, outlier detection, and Accumulate anchoring.
VRF & Compute
PlannedVerifiable random functions, zero-knowledge computation proofs, and threshold signature infrastructure.