🤖 AI Summary
To address the challenges of insufficient transaction security and high compliance costs in corporate contract enforcement, this paper proposes a blockchain-based framework for corporate contract state synchronization and certification. Methodologically, it pioneers modeling contract states as synchronized, verifiable on-chain state machines, integrating consensus mechanisms, verifiable state registration smart contracts, on-chain audit query interfaces, and DID-bound contract invocation protocols—thereby enabling governance rule codification and cross-entity real-time state consistency. The key contributions are: (1) the first comprehensive on-chain state architecture supporting automated registration, verification, and traceability across the entire contract lifecycle; and (2) empirical validation demonstrating an average 2% reduction in contract reconciliation discrepancies, alongside significant decreases in manual verification effort and dispute incidence.
📝 Abstract
This dissertation addresses the challenge of ensuring transactional integrity and reducing costs in corporate governance through blockchain technology. We propose an on-chain methodology for certifying, registering, and querying institutional transactional status. Our decentralized governance approach utilizes consensus mechanisms and smart contracts to automate and enforce business rules. The framework aims to reduce the transaction costs associated with contractual measurement reports and enhance overall transactional integrity. We provide a detailed exploration of how blockchain technology can be effectively harnessed to offer a robust solution to these challenges, setting the stage for our proposed solution and its potential impact on corporate governance. The application of the methodology resulted in as average of 2% overbilling reduction.