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A Resilient P2P Architecture for Mobile Resource Sharing

机译:一种用于移动资源共享的弹性P2P架构

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Peer-to-peer (P2P) systems present a unique medium for resource sharing among cliques of participants (peers) in a distributed and self-organized manner. With the advent of mobile users and the increasing power of mobile devices, the spectrum of P2P capabilities should scale. Peers establish transient or persistent relationships with other peers based on mutual interest. Communicating peers may use intermediary peers to forward communication messages, if a direct link is beyond their communication range. A critical design parameter is establishing a resilient communication topology, yet reduce the overhead of control messages required to instill and maintain it. This rises as a significant hindrance in mobile environments, which pose additional challenges on P2P networks due to the heterogeneity of nodes, limited resources, dynamic contexts in addition to the inherited wireless network stringencies. Thus far, efforts in establishing P2P networks via super peers (SPs) have been capped by considering a subset of peer properties to evaluate their candidacy. This paper presents RobP2P, a robust architecture to construct mobile P2P networks and efficiently maintain network state. RobP2P introduces a SP selection protocol based on a dynamic score function that takes into account peers' capabilities and context, such as location and quality of connectivity. The paper also presents an agile utility function through which SPs can delegate monitoring responsibilities to comparably powerful and stable peers to ensure self-healing topology maintenance. We present an elaborate performance evaluation of RobP2P implemented on Network Simulator NS-3. Our results illustrate the efficiency of RobP2P, its resilience to failures, and the improvements in lowering overhead traffic while reliably maintaining the consistency of network state.
机译:对等(P2P)系统提供了一种独特的介质,用于以分布式和自组织的方式在参与者(对等)群体之间共享资源。随着移动用户的到来和移动设备功能的增强,P2P功能的范围应不断扩大。对等方基于共同的利益与其他对等方建立暂时或持久的关系。如果直接链接超出其通信范围,则通信对等方可以使用中间对等方转发通信消息。一个关键的设计参数是建立弹性的通信拓扑,但要减少注入和维护它所需的控制消息的开销。这成为移动环境中的重大障碍,由于节点的异构性,有限的资源,除了继承的无线网络严格性之外的动态上下文,这在P2P网络上带来了其他挑战。到目前为止,已经通过考虑对等属性的子集来评估其候选资格来限制通过超级对等(SP)建立P2P网络的工作。本文介绍了RobP2P,它是一种健壮的体系结构,可构建移动P2P网络并有效维护网络状态。 RobP2P引入了基于动态评分功能的SP选择协议,该功能考虑了对等方的功能和上下文,例如连接的位置和质量。本文还提出了一种敏捷实用程序功能,SP可以通过该功能将监视职责委派给功能相对强大且稳定的对等方,以确保自我修复的拓扑维护。我们介绍了在Network Simulator NS-3上实现的RobP2P的详细性能评估。我们的结果说明了RobP2P的效率,它对故障的恢复能力以及在降低开销流量的同时提高了可靠性,同时可靠地保持了网络状态的一致性。

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