在大型网络和云中进行实时搜索的自底向上方法

Misbah Uddin, R. Stadler
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引用次数: 6

摘要

网络系统,如电信网络和云基础设施,产生并保存大量的配置和操作数据。这项工作的目标是通过一个名为网络搜索的实时搜索过程使所有这些数据可用,这将实现新的实时管理解决方案。本文对网络搜索系统的设计做出了一些贡献。我们设计的关键元素是一个弱结构的信息模型,它包括空间属性、一种支持与位置和模式无关的搜索查询的查询语言、一个点对点架构、一个用于可扩展查询处理的回声协议,以及一个用于有效路由空间查询的索引协议。执行网络搜索的数据保存在靠近数据源的本地实时数据库中。该设计遵循自底向上的方法,因为查询路由的拓扑是从底层网络拓扑构造的。我们已经在云测试平台上构建了系统的原型,并开发了使用网络搜索功能的应用程序。试验台测量表明,设计一个低延迟、低开销、可扩展到100,000个节点的网络搜索系统是可行的。空间查询的模拟结果表明,查询处理实现的响应时间和产生的开销接近于最优协议,并且在严重混乱的情况下保持准确。
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A bottom-up approach to real-time search in large networks and clouds
Networked systems, such as telecom networks and cloud infrastructures, generate and hold vast amounts of configuration and operational data. The goal of this work is to make all this data available through a real-time search process named network search, which will enable new real-time management solutions. The thesis contains several contributions towards engineering a network search system. Key elements of our design are a weakly structured information model that includes spatial properties, a query language that supports location- and schema-oblivious search queries, a peer-to-peer architecture, an echo protocols for scalable query processing, and an indexing protocol for efficient routing for spatial queries. The data against which network search is performed is maintained in local real-time databases close to the data sources. The design follows a bottom-up approach in the sense that the topology for query routing is constructed from the underlying network topology. We have built a prototype of the system on a cloud testbed and developed applications that use network search functionality. Testbed measurements suggest that it is feasible to engineer a network search system that processes queries at low latency and low overhead and that can scale to 100'000 nodes. Simulation results for spatial queries show that query processing achieves response times and incurs overhead close to an optimal protocol, and that it remains accurate under significant churn.
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