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A Mixed Approach for Clock Synchronization in Distributed Data Acquisition Systems

机译:分布式数据采集系统中时钟同步的混合方法

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摘要

Proper timing synchronization is important when data from sensors are acquired by different devices. This paper proposes a simple but effective solution for System on Chip (SoC) architectures that integrates a general-purpose Field Programmable Gate Array (FPGA) with a CPU. The proposed approach relies on a network synchronization protocol implemented in software, such as Network Time Protocol (NTP) or Precision Time Protocol (PTP), and uses the FPGA to generate a clock reference that is maintained in step with the synchronized system clock. The clock generated by the FPGA is obtained from the FPGA oscillator via appropriate fractional clock division. Clock drift is avoided via a software program that periodically compares the FPGA and the system counters, respectively, and adjusts the fractional clock divider in order to slightly adjust the FPGA clock frequency using a Proportional Integral controller. A specific implementation is presented on the RedPitaya platform, generating a 1 MHz clock in step with the NTP synchronized system clock. The presented system has been used in a distributed data acquisition system for fast transient recording in the neutral beam test facility for the ITER nuclear fusion experiment.
机译:当来自不同设备获取来自传感器的数据时,正确的时序同步非常重要。本文为片上系统 (SoC) 架构提出了一种简单而有效的解决方案,该解决方案将通用现场可编程门阵列 (FPGA) 与 CPU 集成在一起。所提出的方法依赖于在软件中实现的网络同步协议,例如网络时间协议(NTP)或精确时间协议(PTP),并使用 FPGA 生成与同步系统时钟保持同步的 clock reference。FPGA 生成的 clock 是通过适当的小数 clock division 从 FPGA oscillator 获得的。通过软件程序避免 clock drift,该程序会定期分别比较 FPGA 和系统计数器,并调整小数 clock divider 以使用 Proportional Integral 控制器稍微调整 FPGA clock frequency 。在 RedPitaya 平台上提出了一个特定的实现,生成一个与 NTP 同步系统时钟同步的 1 MHz 时钟。所提出的系统已用于分布式数据采集系统,用于 ITER 核聚变实验的中性束测试设施中的快速瞬态记录。

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