Efficient variant transaction injection protocols and adaptive policy optimisation for decentralised ledger systems

Bruno Andriamanalimanana, Chen-Fu Chiang, Jorge E. Novillo, Sam Sengupta, Ali Tekeoglu
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Abstract

For decentralised cryptocurrency systems, it is important to provide users an efficient network. One performance bottleneck is the latency issue. To address this issue, we provide four protocols to utilise the resources based on the traffic in the network to alleviate the latency in the network. To facilitate the verification process, we discuss three variant injection protocols: Periodic Injection of Transaction via Evaluation Corridor (PITEC), Probabilistic Injection of Transactions (PIT) and Adaptive Semi-synchronous Transaction Inject (ASTI). The injection protocols are variants based on the given assumptions of the network. The goal is to provide dynamic injection of unverified transactions to enhance the performance of the network. The Adaptive Policy Optimisation (APO) protocols aim at optimising a cryptocurrency system's own house policy. The house policy optimisation is translated into a 0/1 knapsack problem. The APO protocol is a fully polynomial time approximation scheme for the decentralised ledger system.
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分布式账本系统的高效变体事务注入协议和自适应策略优化
对于去中心化的加密货币系统,为用户提供一个高效的网络是很重要的。一个性能瓶颈是延迟问题。为了解决这个问题,我们提供了四种协议,根据网络中的流量来利用资源,以减轻网络中的延迟。为了方便验证过程,我们讨论了三种不同的注入协议:通过评估走廊周期性注入交易(PITEC),概率注入交易(PIT)和自适应半同步事务注入(ASTI)。注入协议是基于给定网络假设的变体。目标是提供未经验证的事务的动态注入,以增强网络的性能。自适应策略优化(APO)协议旨在优化加密货币系统自己的内部策略。房屋政策优化被转化为一个0/1背包问题。APO协议是分布式账本系统的一个完全多项式时间近似方案。
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