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Improving the Scalability of Cloud-Based Resilient Database Servers

机译:改善基于云的弹性数据库服务器的可伸缩性

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Many rely now on public cloud infrastructure-as-a-service for database servers, mainly, by pushing the limits of existing pooling and replication software to operate large shared-nothing virtual server clusters. Yet, it is unclear whether this is still the best architectural choice, namely, when cloud infrastructure provides seamless virtual shared storage and bills clients on actual disk usage. This paper addresses this challenge with Resilient Asynchronous Commit (RAsC), an improvement to a well-known shared-nothing design based on the assumption that a much larger number of servers is required for scale than for resilience. Then we compare this proposal to other database server architectures using an analytical model focused on peak throughput and conclude that it provides the best performance/cost trade-off while at the same time addressing a wide range of fault scenarios.
机译:现在,许多服务器主要依靠公共云基础架构即服务提供数据库服务器,这主要是通过突破现有池化和复制软件的限制来运行大型无共享虚拟服务器集群。然而,目前尚不清楚这是否仍然是最佳的架构选择,即何时云基础架构提供无缝的虚拟共享存储并向客户端收取实际磁盘使用费。本文使用弹性异步提交(RAsC)解决了这一挑战,它基于一个假设,即规模所需的服务器数量比弹性所需的服务器数量大得多,这是对众所周知的无共享设计的改进。然后,我们使用针对峰值吞吐量的分析模型将该建议与其他数据库服务器体系结构进行比较,得出的结论是,它提供了最佳的性能/成本折衷,同时解决了各种故障情况。

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