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Human Machine Interface for data acquisition systems applied in High Energy Physics

机译:人机界面,用于高能物理中的数据采集系统

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Nowadays high energy physics scientists build and design systems that are complex in terms of the huge amount of subsystems and individual components. A single subsystem may consist of a few tens of thousands digital and analogue channels and sensors. As a result, the data rates captured in modern systems may result in gigabytes per second. Complex systems could generate various alarms and provide other diagnostic information. Consequently, a huge number of variables are needed to control and monitor the system. It could be a real challenge to provide access to all alarms and diagnostic information in systems composed of thousands of channels. In this sense, it is necessary to develop a Human Machine Interfaces (HMI) that will be simple enough to describe a complex system and detailed enough to present all the relevant information to the operators. The purpose of this paper is to describe and propose an HMI scheme able to obtain and present data from High Energy Physics systems. The purpose of this paper is to evaluate HMI for complex systems. The prototype HMI described is based on the demonstration PXIe-based Neutron Flux Monitor (NFM) developed by the Department of Microelectronics and Computer Science. This NFM is going to provide essential information for plasma operation in the ITER plant. The HMI involves a Graphical User Interface and an Alarm Management Scheme, all based on the Experimental Physics and Industrial Control System (EPICS) framework. The Graphical User Interface (GUI) includes the use of several tools provided by the Control System Studio as well as JavaScript, rules and actions to dynamically present data to the operators. In regards to alarm management, a scheme is proposed to efficiently handle alarms by presenting the relevant information and controls to quickly react to alarms.
机译:如今,高能物理科学家构建和设计的系统在子系统和单个组件的数量方面非常复杂。单个子系统可能包含数万个数字和模拟通道以及传感器。结果,现代系统中捕获的数据速率可能会导致每秒千兆字节。复杂的系统可能会生成各种警报并提供其他诊断信息。因此,需要大量变量来控制和监视系统。在由数千个通道组成的系统中提供对所有警报和诊断信息的访问可能是一个真正的挑战。从这个意义上讲,有必要开发一种人机界面(HMI),该界面应足够简单以描述一个复杂的系统,并且足够详细以向操作员提供所有相关信息。本文的目的是描述和提出一种HMI方案,该方案能够从高能物理系统获得并呈现数据。本文的目的是评估复杂系统的HMI。所描述的HMI原型基于由微电子学和计算机科学系开发的基于PXIe的示范中子通量监测仪(NFM)。该NFM将为ITER工厂的等离子体操作提供必要的信息。 HMI包含一个图形用户界面和一个警报管理方案,全部基于实验物理和工业控制系统(EPICS)框架。图形用户界面(GUI)包括使用Control System Studio提供的多种工具以及JavaScript,规则和操作,以向操作员动态显示数据。关于警报管理,提出了一种方案,该方案通过呈现相关信息和控件以快速响应警报来有效地处理警报。

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