Scalable frameworks are architectural designs and development methodologies that allow systems to handle increasing workloads and user demands without compromising performance. These frameworks are engineered to expand capacity efficiently, supporting growth in transaction volume, data processing, or user concurrency. Their design is critical for the long-term viability of digital platforms.
Context
In the cryptocurrency sector, scalable frameworks are a persistent topic of discussion, particularly concerning the transaction throughput limitations of existing blockchain protocols. News often covers advancements in layer-2 scaling solutions, sharding technologies, and alternative consensus mechanisms aimed at improving the capacity of decentralized networks.
This research introduces a novel architecture combining DIDs, ZKPs, Hyperledger Fabric, OAuth 2.0, and CQRS to forge a secure, scalable, and privacy-centric framework for decentralized multi-agent decision-making.
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