IMPROVEMENT OF THE METHODOLOGY FOR EVALUATING THE CARRIER FREQUENCY OF THE SIGNAL DURING DATA TRANSMISSION IN TELECOMMUNICATION CONTROL AND DISTANCE LEARNING SYSTEMS

Nahlah M.A.M Najm Nahlah M.A.M Najm, Nada Adnan Taher Nada Adnan Taher, Oleksandr Valchenko, Oleksandr Turovsky Oleksandr Valchenko, Oleksandr Turovsky
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Abstract

Effectiveness of the application of telecommunications systems is directly influenced by the effectiveness of the functioning of each component and device of its design. The article directly examines the issue of improving the carrier frequency estimation methodology for data transmission in telecommunication management and distance learning systems. The essence of the solution lies in proposals for improving the efficiency of frequency estimation at the input signal synchronization stage, which is presented on the example of a satellite telecommunication control system and distance learning. Namely, the analysis of modern satellite telecommunications systems was carried out and the features that affect the effectiveness of carrier frequency estimation and input signal synchronization were determined. The main inconsistencies are the low energy of the input signal receiving channel, significant signal frequency uncertainty, and the presence of "neighboring channels" receiving the input signal. It was determined that satellite communication systems during data transmission work in the mode with multi-station access in the variant of operation with frequency division of channels, which can receive data packets in the mode of multiple access or when providing a data reception channel on demand. At the same time, the operation of telecommunications systems can proceed both in continuous and in batch modes of receiving the input signal. It is considered that coherent processing of the input signal is carried out in demodulators of satellite telecommunications and interference-resistant coding is used. To solve the task of estimating the carrier frequency of the input signal in coherent demodulators of modern satellite telecommunications, considering the above-defined inconsistencies and features, the article proposes a methodical approach. The essence of this approach is to determine the potential boundary of variances of the obtained estimates of the carrier frequency and to develop algorithms for estimating the carrier frequency of the input signal separately for continuous and batch modes of input data transmission based on the fast Fourier transform. Keywords: Frequency, signal, uncertainty, carrier, estimation.
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电信控制和远程学习系统中数据传输过程中信号载波频率评估方法的改进
电信系统应用的有效性直接受到其设计的每个组件和设备的功能有效性的影响。本文直接探讨了电信管理和远程学习系统中数据传输载波频率估计方法的改进问题。该方案的核心在于提高输入信号同步阶段的频率估计效率,并以卫星通信控制系统和远程学习为例进行了分析。即对现代卫星通信系统进行了分析,确定了影响载波频率估计和输入信号同步有效性的特征。主要的不一致是输入信号接收通道能量低,信号频率不确定性显著,以及存在接收输入信号的“相邻通道”。确定了卫星通信系统在数据传输过程中工作在信道分频操作的多站接入模式下,可以在多站接入模式下接收数据包,也可以在按需提供数据接收信道时接收数据包。同时,在接收输入信号时,电信系统的操作可以以连续模式和批处理模式进行。认为在卫星通信解调器中对输入信号进行相干处理,并采用抗干扰编码。为了解决现代卫星通信相干解调器输入信号载波频率的估计问题,考虑到上述不一致性和特点,本文提出了一种系统的方法。该方法的实质是确定所获得的载波频率估计的潜在方差边界,并基于快速傅里叶变换开发用于连续和批处理输入数据传输模式的输入信号载波频率分别估计的算法。关键词:频率,信号,不确定性,载波,估计。
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