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Right-of-Stake: Deterministic and Fair Blockchain Leader Election with Hidden Leader

机译:股权权:确定性和公平的区块链领导人选举与隐藏的领导人

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Mainstream applications typically require a trusted authority where application clients will connect to obtain a service. In the blockchain decentralized environment, this trusted authority or the leader changes frequently and is selected randomly depending on the protocol. Such procedures may take an unacceptable amount of time or resources to establish the leader causing overheads, latency or processing issues if mainstream applications are to adopt the blockchain. Focusing on these issues, we present Right-of-Stake (RoS), a novel approach in a synchronous blockchain network to deterministically elect a leader or block proposer out of a group of participants, each with different stakes. This procedure is completed in a guaranteed equitable manner while removing the need for Proof-of-Work’s (PoW) aggressive-resource computations or Proof-of-Stake’s (PoS) inter-node negotiations. Besides, through the use of zero-knowledge range proofs, RoS has a distinct advantage of being able to hide the identity of future leaders until the point when the leader surfaces to propose the block. We also simulate RoS and show that it can recover from Denial-of-Service attacks which have been a point of contention in arguments against deterministic leader election protocols. We view RoS as a possible consensus replacement for blockchains that require an improved leader election process when deployed for mainstream applications.
机译:主流应用程序通常需要受信任的权限,应用程序客户端将在此连接以获得服务。在区块链去中心化环境中,此受信任的权威或领导者经常更改,并根据协议随机选择。如果主流应用程序要采用区块链,则此类过程可能会花费不可接受的时间或资源来建立领导者,从而导致开销,延迟或处理问题。着眼于这些问题,我们提出了一种在同步区块链网络中的新颖权利(RoS),可以确定性地从一组参与者中选出一个领导者或一个阻止提议者,每个参与者都有不同的利益。此过程以保证公平的方式完成,同时无需进行工作量证明(PoW)积极资源计算或权益证明(PoS)节点间协商。此外,通过使用零知识范围证明,RoS具有显着的优势,即能够隐藏未来领导者的身份,直到领导者浮出水面提议该区块为止。我们还模拟了RoS,并表明它可以从拒绝服务攻击中恢复,而拒绝服务攻击已成为确定性领导人选举协议争论的焦点。我们认为RoS可能是区块链的共识替代品,而区块链在部署到主流应用程序时需要改进的领导者选举流程。

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