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Development of a Microcomputer-Based Data Acquisition System for the SuperSID Monitor in the Philippines

机译:在菲律宾为SuperSID监控器开发基于微机的数据采集系统

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The study of the changes in the behaviour of the Ionosphere is of great importance due to its influence on radio propagations. Stanford University's SuperSID monitor is used to study these changes by tracking the strength of very low frequency signals over time. The purpose of this research is to setup a SuperSID monitor in Manila, Philippines using a microcomputer as the main computing device. The Data Acquisition (DAQ) system includes a loop antenna, a preamplifier, a USB sound card, and a Raspberry Pi microcomputer. The system output is a SID data graph which is a plot of the relative VLF signal strength over time from NWC (19.8 kHz) and NDT (22.2 kHz) VLF transmitters. Pattern for the VLF signal strength during daytime was distinguished as more stable, compared to the fluctuations during night time. Also, the sunrise and sunset signatures were observed from the graph and were characterized as a gradual decay on VLF signal strength and as a sudden drop on VLF signal strength, respectively. To validate the signatures, it was compared to the actual civil twilight terminators over the monitor, the transmitter, and the midpoint or the center of minimum distance between the monitor (MIT-PH) and the transmitter. Based from the results, the minimum signal strengths from the SID graph correspond closely to the time when the civil twilight ends or starts over the midpoint of the monitor-transmitter pair.
机译:由于电离层对无线电传播的影响,因此研究电离层行为的变化非常重要。斯坦福大学的SuperSID监视器用于通过跟踪随时间变化的非常低频信号的强度来研究这些变化。这项研究的目的是使用微型计算机作为主要计算设备,在菲律宾马尼拉建立一个SuperSID监视器。数据采集​​(DAQ)系统包括环形天线,前置放大器,USB声卡和Raspberry Pi微计算机。系统输出是一个SID数据图,它是NWC(19.8 kHz)和NDT(22.2 kHz)VLF发射机的相对VLF信号强度随时间变化的曲线图。与夜间的波动相比,白天的VLF信号强度的模式更加稳定。同样,从图中观察到日出和日落信号,并分别表示为VLF信号强度的逐渐衰减和VLF信号强度的突然下降。为了验证签名,将其与监视器,发送器以及监视器(MIT-PH)与发送器之间最小距离的中点或中心的实际民用暮光终结者进行了比较。根据结果​​,SID图中的最小信号强度与民用暮光在监视/发送器对的中点结束或开始的时间非常接近。

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