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A multi-state reliability evaluation model for P2P networks

机译:P2P网络的多状态可靠性评估模型

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The appearance of new service types and the convergence tendency of the communication networks have endowed the networks more and more P2P (peer to peer) properties. These networks can be more robust and tolerant for a series of non-perfect operational states due to the non-deterministic server-client distributions. Thus a reliability model taking into account of the multi-state and non-deterministic server-client distribution properties is needed for appropriate evaluation of the networks. In this paper, two new performance measures are defined to quantify the overall and local states of the networks. A new time-evolving state-transition Monte Carlo (TEST-MC) simulation model is presented for the reliability analysis of P2P networks in multiple states. The results show that the model is not only valid for estimating the traditional binary-state network reliability parameters, but also adequate for acquiring the parameters in a series of non-perfect operational states, with good efficiencies, especially for highly reliable networks. Furthermore, the model is versatile for the reliability and maintainability analyses in that both the links and the nodes can be failure-prone with arbitrary life distributions, and various maintainability schemes can be applied.
机译:新服务类型的出现和通信网络的融合趋势赋予网络越来越多的P2P(对等)特性。由于不确定的服务器-客户端分布,这些网络对于一系列非完美的操作状态可能更加健壮和容忍。因此,对于网络的适当评估,需要考虑多状态和非确定性服务器-客户端分配属性的可靠性模型。在本文中,定义了两个新的性能指标来量化网络的整体和局部状态。提出了一种新的时变状态转换蒙特卡洛仿真模型,用于多状态P2P网络的可靠性分析。结果表明,该模型不仅对估计传统的二元状态网络可靠性参数有效,而且对于在一系列非完美运行状态下获取参数均具有较高的效率,特别是对于高度可靠的网络而言。此外,该模型对于可靠性和可维护性分析是通用的,因为链接和节点都可能具有任意寿命分布,并且容易出现故障,并且可以应用各种可维护性方案。

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