A novel centralized slow control and board management solution for ATCA blades based on the Zynq Ultrascale+ System-on-Chip

A novel centralized slow control and board management solution for ATCA blades based on the Zynq Ultrascale+ System-on-Chip
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基于 Zynq Ultrascale 片上系统的新型 ATCA 刀片集中式慢速控制和板管理解决方案

DOI:
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发表时间:
2020
影响因子:
--
通讯作者:
O. Sander
O. Sander
中科院分区:
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文献类型:
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作者:
L. Ardila;A. Cascadan;L. Calligaris;D. Tcherniakhovski;M. Balzer;M. Weber;O. Sander

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用于高能物理实验的数据采集系统 (DAQ) 利用复杂的 FPGA 来处理前所未有的高数据速率,尤其是在数据处理链的第一阶段。随着额外的本地处理智能直接放置在 ATCA 叶片上的探测器附近,开发和调试这些系统的复杂性也会增加。另一方面,也需要复杂的慢速控制。在这篇文章中,我们介绍了一种针对基于 ATCA 的系统的新颖解决方案,它将 IPMI(一种基于 Linux 的慢速控制软件)和用于自定义慢速控制任务的 FPGA 结合在一个 Zynq Ultrascale+ (ZUS+) 片上系统 (SoC) 模块中。
Data acquisition systems (DAQ) for high energy physics experiments utilize complex FPGAs to handle unprecedented high data rates, especially in the first stages of the data processing chain. The complexity of developing and commissioning these systems increases as additional local processing intelligence is placed closer to the detector directly on the ATCA blades. On the other hand, sophisticated slow control is as well desired. In this contribution, we introduce a novel solution for ATCA based systems, which combines the IPMI, a Linux based slow-control software, and an FPGA for custom slow-control tasks in one single Zynq Ultrascale+ (ZUS+) System-on-Chip (SoC) module.
影响因子: 1.4
作者:
G. Hall
通讯作者: G. Hall
APOLLO ATCA 平台
DOI: 10.22323/1.370.0120
发表时间: 2020
期刊: Topical Workshop on Electronics for Particle Physics (TWEPP2019
影响因子: --
作者:
Hazen, Eric Shearer;Albert, A.;Butler, J.;Demiragli, Z.;Finelli, K.;Gastler, D.;Hazen, E.;Rohlf, J.;Yuan, S.;Costa de Paiva, T
通讯作者: Costa de Paiva, T