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Advanced visualization system for monitoring the ATLAS TDAQ network in real-time

机译:先进的可视化系统,用于实时监控ATLAS TDAQ网络

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The trigger and data acquisition (TDAQ) system of the ATLAS experiment at CERN comprises approximately 2500 servers interconnected by three separate Ethernet networks, totaling 250 switches. Due to its real-time nature, there are additional requirements in comparison to conventional networks in terms of speed and performance. A comprehensive monitoring framework has been developed for expert use. However, non experts may experience difficulties in using it and interpreting data. Moreover, specific performance issues, such as single component saturation or unbalanced workload, need to be spotted with ease, in real-time, and understood in the context of the full system view. We addressed these issues by developing an innovative visualization system where the users benefit from the advantages of 3D graphics to visualize the large monitoring parameter space associated with our system. This has been done by developing a hierarchical model of the complete system onto which we overlaid geographical, logical and real-time monitoring information. This article briefly describes the network monitoring framework and introduces the system's visualization challenges and previous limitations. The functionality, design and implementation of the 3D visualization system are then described in detail, with a focus on the model design, user interaction, navigation mechanisms and methods used to achieve scalability when rendering and updating many objects in real-time.
机译:CERN的ATLAS实验的触发和数据采集(TDAQ)系统包括大约2500台服务器,这些服务器通过三个独立的以太网网络互连,总共250台交换机。由于其实时性,与常规网络相比,在速度和性能方面还有其他要求。已经开发了一个综合的监控框架供专家使用。但是,非专家可能会在使用它和解释数据时遇到困难。此外,需要轻松,实时地发现特定的性能问题,例如单个组件饱和或工作负载不平衡,并在整个系统视图的上下文中加以理解。我们通过开发创新的可视化系统解决了这些问题,用户可以从3D图形的优势中受益,以可视化与我们的系统关联的大型监视参数空间。这是通过开发整个系统的分层模型完成的,在该模型上我们叠加了地理,逻辑和实时监视信息。本文简要介绍了网络监视框架,并介绍了系统的可视化挑战和以前的限制。然后详细描述3D可视化系统的功能,设计和实现,重点关注模型设计,用户交互,导航机制和用于实时渲染和更新许多对象时实现可伸缩性的方法。

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