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Diagnostic layer integration in FPGA-based pipeline measurement systems for HEP experiments

机译:在基于FPGA的管道测量系统中进行HEP实验的诊断层集成

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摘要

Integrated triggering and data acquisition systems for high energy physicsexperiments may be considered as fast, multichannel, synchronous, distributed, pipeline measurement systems. A considerable extension of functional, technological and monitoring demands, which has recently been imposed on them, forced a common usage of large field-programmable gate array (FPGA), digital signal processing-enhanced matrices and fast optical transmission for their realization. This paper discusses modelling, design, realization and testing of pipeline measurement systems. A distribution of synchronous data stream flows is considered in the network. A general functional structure of a single network node is presented. A suggested, novel block structure of the node model facilitates full implementation in the FPGA chip, circuit standardization and parametrization, as well as integration of functional and diagnostic layers. A general method for pipeline system design was derived. This method is based on a unified model of the synchronous data network node. A few examples of practically realized, FPGA-based, pipeline measurement systems were presented. The described systems were applied in ZEUS and CMS.
机译:用于高能物理实验的集成触发和数据采集系统可以被视为快速,多通道,同步,分布式,管道测量系统。最近对它们施加的功能,技术和监视需求的相当大的扩展,迫使大型现场可编程门阵列(FPGA),数字信号处理增强矩阵和快速光传输的普遍使用得以实现。本文讨论了管道测量系统的建模,设计,实现和测试。在网络中考虑同步数据流流的分布。提出了单个网络节点的一般功能结构。节点模型的一种建议的新颖块结构有助于在FPGA芯片中全面实施,电路标准化和参数化,以及功能层和诊断层的集成。推导了管道系统设计的通用方法。该方法基于同步数据网络节点的统一模型。给出了一些实际实现的,基于FPGA的管道测量系统的示例。所描述的系统应用于ZEUS和CMS。

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