Creating large scale database servers

J. Becla, A. Hanushevsky
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引用次数: 6

Abstract

The BaBar experiment at the Stanford Linear Accelerator Center (SLAC) is designed to perform a high precision investigation of the decays of B-meson produced from electron-positron interactions. The experiment, started in May 1999, will generate approximately 300 TB/year of data for 10 years. All of the data will reside in objectivity databases (object oriented databases), accessible via the Advanced Multi-threaded Server (AMS). To date, over 70 TB of data have been placed in Objectivity/DB, making it one of the largest databases in the world. Providing access to such a large quantity of data through a database server is a daunting task. A full-scale testbed environment had to be developed to tune various software parameters and a fundamental change had to occur in the AMS architecture to allow it to scale past several hundred terabytes of data. Additionally, several protocol extensions had to be implemented to provide practical access to large quantities of data. The paper describes the design of the database and the changes that we needed to make in the AMS for scalability reasons and how the lessons we learned would be applicable to virtually any kind of database server seeking to operate in the Petabyte region.
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创建大型数据库服务器
斯坦福直线加速器中心(SLAC)的BaBar实验旨在对电子-正电子相互作用产生的b介子衰变进行高精度研究。这项实验于1999年5月开始,将在10年内每年产生大约300 TB的数据。所有数据将驻留在客观性数据库(面向对象数据库)中,通过高级多线程服务器(Advanced Multi-threaded Server, AMS)访问。迄今为止,已有超过70 TB的数据被存放在客观性/数据库中,使其成为世界上最大的数据库之一。通过数据库服务器提供对如此大量数据的访问是一项艰巨的任务。必须开发一个全面的测试平台环境来调整各种软件参数,并且必须对AMS体系结构进行根本性的更改,以允许其扩展到数百tb以上的数据。此外,必须实现几个协议扩展,以提供对大量数据的实际访问。本文描述了数据库的设计,以及出于可伸缩性的原因我们需要在AMS中进行的更改,以及我们所吸取的经验教训如何适用于几乎任何一种试图在pb级区域中运行的数据库服务器。
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