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A New Server Selection Strategy for Reliable Server Pooling in Widely Distributed Environments

机译:广泛分布式环境中可靠服务器池的新服务器选择策略

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In order to provide a generic, application-independent and resource-efficient framework for server redundancy and session failover, the IETF RSerPool WG is currently standardizing the Reliable Server Pooling (RSerPool) framework. Server redundancy has to take load distribution and load balancing into consideration since these issues are crucial for the system performance. There has already been some research on the server selection strategies of RSerPool for different application scenarios. In particular, it has been shown that the adaptive Least Used selection usually provides the best performance. This strategy requires up-to-date load information of the services, which has to be propagated among distributed pool management components. But network delay (which is realistic for systems being widely distributed to achieve availability in case of regional servers failures) as well as caching of information may both lead to obsolete load information. Therefore, the purpose of this paper is to analyse and evaluate the performance of a new server selection rule to cope with update latencies. Especially, we will also analyse the impact of different workload parameters on the performance of the new server selection strategy.
机译:为了为服务器冗余和会话故障转移提供泛型,应用程序独立和资源有效的框架,IETF RSERPOOL WG目前正在标准化可靠的服务器池(RSERPOOL)框架。服务器冗余必须考虑负载分布和负载平衡,因为这些问题对于系统性能至关重要。对于不同的应用场景,已经有一些关于RserPool的服务器选择策略的研究。特别地,已经表明,自适应最少使用的选择通常提供最佳性能。此策略需要对服务的最新加载信息,该信息必须在分布式池管理组件之间传播。但是,网络延迟(对于在区域服务器故障的情况下广泛分布以实现可用性的系统是现实的,并且信息缓存可能会导致过时的负载信息。因此,本文的目的是分析和评估新的服务器选择规则的性能,以应对更新延迟。特别是,我们还将分析不同工作负载参数对新服务器选择策略性能的影响。

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