乌克兰流星无线电观测网络的形成和发展

Pub Date : 2021-07-01 DOI:10.15407/KNIT2021.03.085
F. Bushuev, M. Kaliuzhnyi, N. Kulichenko, A. Shulga, Y. Malynovskyi, S. Savchuk, L. Yankiv-Vitkovska, B. Hrudynin
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引用次数: 1

摘要

这使得在无线电范围内建立一个观测流星现象的网络成为可能,该网络由位于Mykolaiv(三个站),Rivne, Lviv和Hlukhiv的六个站组成。这些空间站有相同的硬件和软件。使用带有6个或8个水平振动器的Yagi-Uda天线和基于RTR2832U微芯片的SDR接收器接收无线电信号。台站软件对接收到的接收机正交探测器输出的无线电信号进行连续登记和分析,自动检测流星反射、形成的出现时刻,并通过电子邮件发送每日检测到的流星现象报告。每个观测站记录的流星事件数目每月都会在射电流星观测公报(RMOB)的网站上公布。本文介绍了该网络在2017-2019年获得的结果,证实了网络站点记录的流星数量的每日变化与已知的依赖性(在顶点和前顶点观测流星)以及三个流星雨(英仙座、双子座和象鼻仪座)的预期特征(时间和强度)之间的对应关系。文章中还提出了进一步研究的建议,旨在实现主要目标,即扩大关于流星现象的信息,包括估计流星体的运动学参数(速度、辐射量)及其与潜在危险小行星的关系。
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Formation and development of the Ukrainian network of meteor radio observations
During the decade of research, the Research Institute “Mykolaiv Astronomical Observatory” (RI “MAO”) developed hardware and software for monitoring, extracting, and calculating the parameters of meteor phenomena using the forward scattering by meteor ionized trail of the signals of over-the-horizon FM-stations broadcasted in the frequency range of 88—108 MHz. This allowed creating a network of observations of meteor phenomena in the radio range, which consists of six stations located in Mykolaiv (three stations), Rivne, Lviv, and Hlukhiv. The stations have identical hardware and software. Yagi-Uda antennas with six or eight horizontal vibrators and SDR receivers based at RTR2832U microchip are used to receive radio signals. The station software performs continuous registration and analysis of received radio signals at the output of quadrature detectors of the receivers, automatic detection of moments of appearances of meteor reflections, formation, and sending by e-mail daily reports on detected meteor phenomena. Equipment setup and current monitoring of stations operations are carried out by the RI «MAO» using remote access to station computers via the Internet. Monthly reports on the number of meteor events recorded by each station are posted on the site of Radio Meteor Observation Bulletin (RMOB). The article presents the results, obtained by the network in 2017—2019, confirming a correspondence of daily variations in the number of meteors registered by network stations, to the known dependence (observation of meteors in the apex and antapex), as well as a correspondence between the expected characteristics (in time and intensity) of three meteor showers (Perseids, Geminids and Quadrantids) and that had been obtained by the network. Recommendations are also given in the article for additional research aimed at achieving the main goal, namely, expanding information about meteor phenomena, including the estimating of kinematic parameters (velocities, radiants) of meteoroids and their relationship with potentially hazardous asteroids.
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