Decentralized control, low-complexity, flexible and efficient communications are the requirements of an architecture that aims to scale blockchains beyond the current state. Such properties are attainable by reducing ledger size and providing parallel operations in the blockchain. Sharding is one of the approaches that lower the burden of the nodes and enhance performance. However, the current solutions lack the features for resolving concurrency during cross-shard communications. With multiple participants belonging to different shards, handling concurrent operations is essential for optimal sharding. This issue becomes prominent due to the lack of architectural support and requires additional consensus for cross-shard communications. Inspired by hybrid Proof-of-Work/Proof-of-Stake (PoW/PoS), like Ethereum, hybrid consensus and 2-hop blockchain, we propose Reinshard, a new blockchain that inherits the properties of hybrid consensus for optimal sharding. Reinshard uses PoW and PoS chain-pairs with PoS sub-chains for all the valid chain-pairs where the hybrid consensus is attained through Verifiable Delay Function (VDF). Our architecture provides a secure method of arranging nodes in shards and resolves concurrency conflicts using the delay factor of VDF. The applicability of Reinshard is demonstrated through security and experimental evaluations. A practical concurrency problem is considered to show the efficacy of Reinshard in providing optimal sharding.
翻译:分散控制、低复杂度、灵活高效的通信是旨在将链块扩大至当前状态之外的架构的要求。这些特性可以通过减少分类账规模和提供链块中的平行操作来实现。硬化是降低节点负担和增强性能的方法之一。但是,目前的解决方案缺乏解决交叉碎裂通信过程中的锥体问题的特点。由于多个参与者属于不同的碎片,处理并行操作对于最佳裁剪至关重要。由于缺乏建筑支持,这一问题变得十分突出,需要就交叉硬化通信达成更多共识。受混合工作/促进工作/支持(PoW/POS)的启发,例如Etheyum、混合共识和2Hop块链等。我们提议,Reinshard是一个新的链体系,它继承了混合共识的特性,以最佳的软化软化通信。Reinshard使用PoW和Pos-pas-pairs的连锁链是所有有效的链,因为混合共识是通过可核查的延迟功能(VDF)(VDF)实现的。我们的建筑结构提供了一种通过硬性硬性硬性硬性的硬性硬性硬性安全性硬性硬性硬性硬性硬性硬性硬性硬性硬性硬性硬性硬性硬性硬性硬性硬性硬性反应评估,在展示的硬性硬性硬性硬性硬性硬性硬性硬性能能能能能能能能能能能能能能展示。