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A New Stable Peer-to-Peer Protocol With Non-Persistent Peers: The Group Suppression Protocol

机译:具有非持久性对等点的新的稳定对等协议:组抑制协议

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Recent studies have suggested that the stability of peer-to-peer networks may rely on persistent peers, who dwell on the network after they obtain the entire file. In the absence of such peers, one piece becomes extremely rare in the network, which leads to instability. Technological developments, however, are poised to reduce the incidence of persistent peers, giving rise to a need for a protocol that guarantees stability with non-persistent peers. We propose a novel peer-to-peer protocol, the group suppression protocol, to ensure the stability of peer-to-peer networks under the scenario that all the peers adopt non-persistent behavior. Using a suitable Lyapunov potential function, the group suppression protocol is proven to be stable when the file is broken into two pieces, and detailed experiments demonstrate the stability of the protocol for arbitrary number of pieces. We define and simulate a decentralized version of this protocol for practical applications. Straightforward incorporation of the group suppression protocol into BitTorrent while retaining most of BitTorrent's core mechanisms is also presented. Subsequent simulations show that under certain assumptions, BitTorrent with the official protocol cannot escape from the missing piece syndrome, but BitTorrent with group suppression does.
机译:最近的研究表明,对等网络的稳定性可能依赖于持久性对等体,这些持久性对等体在获得整个文件后便会驻留在网络上。在没有这种对等方的情况下,一个在网络中变得极为罕见,从而导致不稳定。但是,技术发展有望降低持久性对等体的发生率,因此需要一种协议来保证非持久性对等体的稳定性。我们提出了一种新颖的对等协议,即组抑制协议,以确保在所有对等体都采用非持久性行为的情况下,对等网络的稳定性。使用合适的Lyapunov势函数,当文件分为两部分时,组抑制协议被证明是稳定的,详细的实验证明了该协议对于任意数量的文件的稳定性。我们为实际应用定义并模拟了该协议的分散版本。还介绍了将组抑制协议直接合并到BitTorrent中,同时保留了大多数BitTorrent的核心机制。随后的仿真显示,在某些假设下,具有官方协议的BitTorrent无法逃脱丢失片综合症,但具有组抑制的BitTorrent可以逃脱。

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