基于PPS秒脉冲的多余物信号同步采集系统设计
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国家自然科学基金资助项目(51607059;51077022);黑龙江省自然科学基金资助项目(QC2017059);黑龙江省博士后基金资助项目(LBH-Z16169);黑龙江省高校基本科研业务资助项目(HDRCCX-201604);黑龙江省教育厅科技成果培育资助项目(TSTAU-C2018016);黑龙江大学校内资助项目(HDJMRH201912;2012TD007;QL2015)

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Design of synchronous acquisition system for loose particle signal based on PPS second pulse
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    摘要:

    为实现密封电子设备内部多余物信号的同步采集,设计了一个基于秒脉冲(PPS)的多余物信号同步采集系统。针对多通道的多余物信号同步采集一致性差的问题,采用双微控制单元(MCU)控制与内存共享结构,将信号采集过程中的数据读写分离,通过北斗PPS触发外部中断,实现各通道信号采集的同步,引用协调通用时间(UCT)为单脉冲内采集的多通道信号设置标签,进行传输信号的再同步。测试表明,各通道信号采集的同步误差在微秒范围内,信号的时间标签一致,为多余物信号的检测提供了重要参考价值。

    Abstract:

    In order to realize the synchronous collection of loose particle signals generated inside sealed electronic equipment, a synchronous acquisition system for loose particle signal based on Pulse Per Second(PPS) is designed. Aiming at the problem of poor consistency in the synchronous acquisition of multi-channel loose particle signals, a dual Microcontroller Unit(MCU) control and memory sharing structure is adopted to realize the separation of data reading and data writing during the signal collection process. The external interrupt is triggered by Beidou PPS, and the synchronous collection of the signals in each channel is realized. By setting the Universal Time Coordinated(UCT) as the label of the multi-channel signal collected in a single pulse, the resynchronization of the transmission signal is realized. The test shows that the synchronization error of signal collection in each channel is at the magnitude of microsecond, and the time label of the signal is correct, which provides an important reference for the detection of loose particle signals.

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孙志刚,高萌萌,蒋爱平,王国涛,郜雷阵.基于PPS秒脉冲的多余物信号同步采集系统设计[J].太赫兹科学与电子信息学报,2021,19(4):733~738

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  • 收稿日期:2020-06-29
  • 最后修改日期:2020-08-03
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  • 在线发布日期: 2021-08-25
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