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Self Organized Replica Overlay Scheme for P2P Networks

机译:P2P网络的自组织副本覆盖方案

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Peer-to-Peer (P2P) systems are widely used for data sharing applications in an autonomous and decentralized mode. P2P systems are suitable for large-scale distributed environments in which nodes can share resources other than data such as computing power, memory and network bandwidth. Some of important parameters that affect the performance of P2P systems are peer availability, data availability, network overhead, overlay structure, churn rate, and data access time. In this paper a self organized replica overlay scheme "Improved Hierarchical Quorum Consensus" (IHQC) for P2P systems is proposed. This scheme organizes replicas in a Self Organized Hierarchical Logical Structure (SOHLS) that has special properties. The scheme improves performance of the system by reducing search time to form read/write quorums, reducing probability of accessing stale data, improving degree of intersection among consecutive quorums and reducing network overhead. This scheme is highly fault tolerant (tolerate up to faults) due to replication of data and inherits the best property of Read-One-Write-All (ROWA) protocol in a dynamic environment of P2P network. The architecture for IHQC is also proposed for implementing the scheme that supports improved performance of P2P systems. This scheme also maximizes the degree of intersection set of read and write quorums; hence, having higher probability to get updated data as compared to all other schemes. The mathematical correctness of the scheme is also presented in the paper. The results of simulation study of the proposed scheme also support and verify its better performance than Random and Hierarchical Quorum Scheme.
机译:对等(P2P)系统广泛用于自动和分散模式下的数据共享应用程序。 P2P系统适用于大型分布式环境,在这种环境中,节点可以共享除数据之外的资源,例如计算能力,内存和网络带宽。影响P2P系统性能的一些重要参数是对等可用性,数据可用性,网络开销,覆盖结构,流失率和数据访问时间。在本文中,提出了一种针对P2P系统的自组织副本覆盖方案“改进的分层仲裁共识”(IHQC)。此方案将副本组织为具有特殊属性的自组织层次逻辑结构(SOHLS)。该方案通过减少搜索时间来形成读/写仲裁,减少访问陈旧数据的可能性,提高连续仲裁之间的相交度以及减少网络开销,从而提高了系统的性能。由于数据的复制,该方案具有很高的容错能力(可容忍最多的错误),并在动态的P2P网络环境中继承了Read-One-Write-All(ROWA)协议的最佳属性。还提出了IHQC的体系结构,以实现支持P2P系统性能改进的方案。此方案还使读写仲裁的相交集最大化。因此,与所有其他方案相比,获得更新数据的可能性更高。本文还提出了该方案的数学正确性。与随机和分层仲裁方案相比,该方案的仿真研究结果也支持并验证了其更好的性能。

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