对象关系空间索引

H. Kriegel, M. Pfeifle, Marco Pötke, T. Seidl, Jost Enderle
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引用次数: 7

摘要

为了为包含空间数据类型和谓词的查询生成有效的执行计划,数据库系统必须配备适当的索引结构、查询处理方法和优化规则。尽管可用的可扩展索引框架为空间访问方法无缝集成到查询优化和执行的标准过程提供了一个网关,但它们并不能促进空间访问方法本身的实际实现。数据库开发人员通常不会选择对数据库内核进行内部增强。在并发控制、恢复服务和缓冲区管理中嵌入定制的面向块的索引结构会导致大量的实现工作和维护成本,并有削弱整个系统可靠性的风险。通过将索引操作委托给外部进程,可以保持服务器的稳定性,但是由于上下文切换和进程间通信,这种方法会导致严重的性能瓶颈。因此,我们提出了对象关系空间访问方法的范例,它完全适合公共关系数据模型,并与现有对象关系数据库系统的可扩展索引框架高度兼容,允许用户定义特定于应用程序的访问方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Object-Relational Spatial Indexing
In order to generate efficient execution plans for queries comprising spatial data types and predicates, the database system has to be equipped with appropriate index structures, query processing methods, and optimization rules. Although available extensible indexing frameworks provide a gateway for seamless integration of spatial access methods into the standard process of query optimization and execution, they do not facilitate the actual implementation of the spatial access method itself. An internal enhancement of the database kernel is usually not an option for database developers. The embedding of a custom block-oriented index structure into concurrency control, recovery services and buffer management would cause extensive implementation efforts and maintenance cost, at the risk of weakening the reliability of the entire system. The server stability can be preserved by delegating index operations to an external process, but this approach induces severe performance bottlenecks due to context switches and inter-process communication. Therefore, we present the paradigm of object-relational spatial access methods that perfectly fits to the common relational data model and is highly compatible with the extensible indexing frameworks of existing object-relational database systems allowing the user to define application-specific access methods.
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