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The 40 MHz trigger-less DAQ for the LHCb Upgrade

机译:用于LHCb升级的40 MHz无触发DAQ

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摘要

The LHCb experiment will undergo a major upgrade during the second long shutdown (2018-2019), aiming to let LHCb collect an order of magnitude more data with respect to Run 1 and Run 2. The maximum readout rate of 1 MHz is the main limitation of the present LHCb trigger. The upgraded detector, apart from major detector upgrades, foresees a full read-out running at the LHC bunch crossing frequency of 40 MHz, using an entirely software based trigger. A new high-throughput PCIe Generation 3 based read-out board, named PCIe40, has been designed for this purpose. The read-out board will allow an efficient and cost-effective implementation of the DAQ system by means of high-speed PC networks. The network-based DAQ. system reads data fragments, performs the event building, and transports events to the High-Level Trigger at an estimated aggregate rate of about 32 Tbit/s. Different architecture for the DAQ can be implemented, such as push, pull and traffic shaping with barrel-shifter. Possible technology candidates for the foreseen event-builder under study are InfiniBand and Gigabit Ethernet. In order to define the best implementation of the event-builder we are performing tests of the event-builder on different platforms with different technologies. For testing we are using an event-builder evaluator, which consists of a flexible software implementation, to be used on small size test beds as well as on HPC scale facilities. The architecture of DAQ system and up to date performance results will be presented.
机译:LHCb实验将在第二次长时间关闭(2018-2019年)期间进行重大升级,目的是让LHCb相对于运行1和运行2收集更多数量级的数据。1MHz的最大读取速率是主要限制目前的LHCb触发信号。除了主要的探测器升级外,升级后的探测器还可以使用完全基于软件的触发器,以40 MHz的LHC束交叉频率运行一次完整的读数。为此设计了一种新的基于高吞吐量PCIe第三代的读取板,名为PCIe40。读出板将允许通过高速PC网络高效,经济地实施DAQ系统。基于网络的DAQ。系统读取数据片段,执行事件构建,然后以约32 Tbit / s的估计总速率将事件传输到高级触发器。可以为DAQ实现不同的体系结构,例如通过桶形移位器进行推,拉和流量整形。研究中可预见的事件生成器可能的技术候选人是InfiniBand和千兆以太网。为了定义事件构建器的最佳实现,我们正在使用不同技术的不同平台上对事件构建器进行测试。对于测试,我们使用事件构建器评估器,该评估器由灵活的软件实现组成,可在小型测试台以及HPC规模的设施上使用。将介绍DAQ系统的架构和最新的性能结果。

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