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A design framework for distributed data acquisition and triggering systems in high energy physics experiments

机译:高能量物理实验中分布式数据采集和触发系统的设计框架

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We present the first conceptual results in the design of an object-oriented framework that tackles recurrent problems encountered when developing acquisition and triggering systems for high-energy physics experiments. These problems include software/hardware frontier definition and the impact of both intrinsic and performance-related distribution on software development. Based on the UML (Unified Modeling Language) extension mechanisms and a real-time CORBA (Common Object Request Broker Architecture) implementation, the framework aims at providing 1) high-level concepts for flexible hardware-software separation, and 2) simple mechanisms for transparently deriving distribution automatically from system-level definitions. The framework will therefore implement design patterns that result from our experience of HEP (High Energy Physics) TDAQ (Trigger and Data Acquisition) system development.
机译:我们介绍了一个面向对象框架的第一个概念结果,该框架在开发高能物理实验的采集和触发系统时遇到经常发生的问题。这些问题包括软件/硬件前沿定义以及内在和性能相关分发对软件开发的影响。基于UML(统一建模语言)扩展机制和实时CORBA(常见对象请求代理体系结构)实现,该框架旨在为灵活硬件 - 软件分离提供1)高级概念,以及2)简单的机制从系统级定义自动透明地导出分布。因此,该框架将实现由我们HEP(高能量物理)TDAQ(触发和数据采集)系统开发的经验产生的设计模式。

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