run-2的CMS实验新DAQ系统的性能

J. Andre, A. Andronidis, U. Behrens, J. Branson, P. Brummer, O. Chaze, C. Contescu, B. G. Craigs, S. Cittolin, G. Darlea, C. Deldicque, Z. Demiragli, M. Dobson, S. Erhan, J. Fulcher, D. Gigi, F. Glege, G. Gomez-Ceballos, J. Hegeman, A. Holzner, Raul Jimenez-Estupianan, L. Masetti, F. Meijers, E. Meschi, R. Mommsen, S. Morović, V. O’dell, L. Orsini, C. Paus, M. Pieri, A. Rácz, H. Sakulin, C. Schwick, T. Reis, D. Simelevicius, P. Zejdl
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引用次数: 7

摘要

欧洲核子研究中心(CERN)大型强子对撞机(LHC)的CMS实验数据采集系统(DAQ)以100 kHz的速率组装事件,以超过100GB/s的总吞吐量将事件数据传输到高水平触发(HLT)场。HLT农场以大约1khz的输出速率选择并分类有趣的事件进行存储和离线分析。在2013-2014年加速器关闭期间,对DAQ系统进行了重新设计。这次升级的动机是双重的。首先,计算节点、网络和存储基础设施的寿命即将结束。其次,为了在更高的LHC亮度和增加事件堆积的情况下保持物理性能,正在升级一些子探测器,增加读出通道数量和所需的吞吐量,并用基于microtca的DAQ接口取代检测器外读出电子器件。新的DAQ体系结构利用了计算机行业的最新发展。数据集中采用10/ 40gbit /s以太网技术,事件构建选择56Gbit/s Infiniband FDR CLOS网络(总吞吐量≈4tb /s)。升级后的DAQ - HLT接口完全是基于文件的,基本上解耦了DAQ和HLT系统。完整构建的事件通过网络文件系统通过10/40 Gbit/s以太网传输到HLT。HLT接受的事件集合和相应的元数据在传输到场外之前在全局文件系统上进行缓冲。HLT农场和数据采集性能的监控是基于Elasticsearch分析工具。本文介绍了该系统的需求、实现和性能。报告了LHC质子-质子运行的第一年以及2015年重离子铅-铅运行的经验。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Performance of the new DAQ system of the CMS experiment for run-2
The data acquisition system (DAQ) of the CMS experiment at the CERN Large Hadron Collider (LHC) assembles events at a rate of 100 kHz, transporting event data at an aggregate throughput of more than 100GB/s to the Highlevel Trigger (HLT) farm. The HLT farm selects and classifies interesting events for storage and offline analysis at an output rate of around 1 kHz. The DAQ system has been redesigned during the accelerator shutdown in 2013-2014. The motivation for this upgrade was twofold. Firstly, the compute nodes, networking and storage infrastructure were reaching the end of their lifetimes. Secondly, in order to maintain physics performance with higher LHC luminosities and increasing event pileup, a number of sub-detectors are being upgraded, increasing the number of readout channels as well as the required throughput, and replacing the off-detector readout electronics with a MicroTCA-based DAQ interface. The new DAQ architecture takes advantage of the latest developments in the computing industry. For data concentration 10/40 Gbit/s Ethernet technologies are used, and a 56Gbit/s Infiniband FDR CLOS network (total throughput ≈ 4Tbit/s) has been chosen for the event builder. The upgraded DAQ - HLT interface is entirely file-based, essentially decoupling the DAQ and HLT systems. The fully-built events are transported to the HLT over 10/40 Gbit/s Ethernet via a network file system. The collection of events accepted by the HLT and the corresponding metadata are buffered on a global file system before being transferred off-site. The monitoring of the HLT farm and the data-taking performance is based on the Elasticsearch analytics tool. This paper presents the requirements, implementation, and performance of the system. Experience is reported on the first year of operation with LHC proton-proton runs as well as with the heavy ion lead-lead runs in 2015.
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