Estimation of the synchronization error for spaced-apart ground points of satellite communication

R. Kovalev, V. V. Kornienko, V. N. Ratushnak
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Abstract

A significant number of patents and publications in the open press show the intensity of the ongoing research to create new methods of synchronization and specialized ground-based equipment for frequency-time synchronization. The article considers the implementation of an autonomous synchronization system between ground-based satellite communication points, which is used in conditions of unfavorable reception or absence of signals from global navigation satellite systems. The paper presents studies on the assessment of the error of time synchronization of geographically separated ground points of satellite communications. The basics of constructing the receiving equipment of a radio engineering system are considered and the mutual correlation of the reference signal of the receiving equipment and the received input synchronization signal is calculated. The results of field tests of mutual synchronization equipment are presented, where the potential synchronization accuracy of equipment at ground objects with previously unknown coordinates was determined, while the synchronization equipment provided measurement of the signal propagation time from one ground object to another with the formation of universal time scales on points. The method of mutual synchronization of linked points is carried out by the duplex method at a frequency of 1065 MHz (request) and 625 MHz (response) by phase-code-manipulated signals with a base equal to 1023 and a duration of 0,1 ms.
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卫星通信间隔接地点同步误差的估计
公开出版物上的大量专利和出版物表明了正在进行的研究的强度,以创造新的同步方法和用于频率-时间同步的专用地面设备。本文考虑在地面卫星通信点之间实现自主同步系统,该系统用于接收不良或缺乏全球导航卫星系统信号的情况。本文研究了卫星通信地理分离地面点时间同步误差的评估。考虑了无线电工程系统接收设备的构造基础,并计算了接收设备的参考信号与接收到的输入同步信号的相互关系。给出了相互同步设备的现场测试结果,其中确定了设备在先前未知坐标的地物上的潜在同步精度,而同步设备通过在点上形成通用时标来测量信号从一个地物到另一个地物的传播时间。链接点的相互同步的方法是通过双工方法在1065MHz(请求)和625MHz(响应)的频率下通过具有等于1023的基址和0.1ms的持续时间的相位码操作信号来执行的。
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24
审稿时长
8 weeks
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