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Load Balance with Imperfect Information in Structured Peer-to-Peer Systems

机译:结构化对等系统中具有不完美信息的负载均衡

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With the notion of virtual servers, peers participating in a heterogeneous, structured peer-to-peer (P2P) network may host different numbers of virtual servers, and by migrating virtual servers, peers can balance their loads proportional to their capacities. The existing and decentralized load balance algorithms designed for the heterogeneous, structured P2P networks either explicitly construct auxiliary networks to manipulate global information or implicitly demand the P2P substrates organized in a hierarchical fashion. Without relying on any auxiliary networks and independent of the geometry of the P2P substrates, we present, in this paper, a novel load balancing algorithm that is unique in that each participating peer is based on the partial knowledge of the system to estimate the probability distributions of the capacities of peers and the loads of virtual servers, resulting in imperfect knowledge of the system state. With the imperfect system state, peers can compute their expected loads and reallocate their loads in parallel. Through extensive simulations, we compare our proposal to prior load balancing algorithms.
机译:通过虚拟服务器的概念,参与异构结构化对等(P2P)网络的对等端可以托管不同数量的虚拟服务器,并且通过迁移虚拟服务器,对等端可以按其容量成比例地平衡其负载。为异构结构化P2P网络设计的现有和分散式负载平衡算法要么显式构造辅助网络以操纵全局信息,要么隐式要求以分层方式组织的P2P基板。在不依赖任何辅助网络且不依赖于P2P衬底的几何形状的情况下,我们在本文中提出了一种新颖的负载平衡算法,该算法的独特之处在于每个参与对等方都基于系统的部分知识来估计概率分布对等方的能力和虚拟服务器的负载,导致对系统状态的了解不完善。在不完善的系统状态下,对等方可以计算其预期的负载并并行地重新分配其负载。通过广泛的仿真,我们将我们的建议与先前的负载平衡算法进行了比较。

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