利用移频键控信号检测和补偿机器人装置无线电控制信道干扰的方法

S. V. Dvornikov, S. S. Dvornikov, A. F. Kriachko
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引用次数: 0

摘要

本文讨论了一种恢复易受结构干扰的移频键控信号的方法。考虑了移频键控信号在无线电工程中应用的条件。它们选择作为控制信号是有根据和合理的。它显示了如何,作为结构干扰的结果,FSK信号的幅度值的包络函数的形状发生显著变化。此外,有用信号的角度参数也发生了变化。这些参数的变化随后被用作指示能量破坏效应施加在通道上的标志。研究了边缘效应在时域和频域的发生特征。确定了结构噪声与有用信号的容许幅值比,在此值下,效应才会显现出来,在此值下,处理信号的命名决定是错误的。一种以阶段序列的形式恢复受损调频信号的方法已经得到证实。在第一阶段,检测在设置结构干扰时产生的信号振幅拍的时间间隔。然后,为了恢复扭曲的信号,合成矩形脉冲,使其持续时间严格等于观察到拍的间隔。然后给出了失真信号的恢复程序。为此,将信号信息序列中检测到结构干扰效应的那部分脉冲与在第二阶段产生的补偿脉冲进行逻辑相加。为了阐明这些程序的实现,给出了该装置的框图,并说明了其工作原理。此外,本文还介绍了表征所提出技术有效性的主要结果。最后给出了评价该技术有效性的结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Method for Detecting And Compensating For Interference in Radio Control Channels of Robotic Devices Using Frequency-Shift Keying Signals
The article discusses a method for recovering frequency-shift keying signals susceptible to structural interference. The conditions under which frequency shift keying signals are used in radio engineering are considered. Their choice as control signals is substantiated and reasoned. It is shown how, as a result of structural interference, significant changes occur in the shape of the envelope function of the amplitude values of FSK signals. In addition, the angular parameters of the useful signal also change. These changes in parameters are then used as signs indicating that an energetic destructive effect is being exerted on the channel. The features of the occurrence of edge effects, which are manifested in the time and frequency domains, are investigated. The admissible amplitude ratios of the structural noise and the useful signal are substantiated, at which the effect is manifested, in which the wrong decision is made about the nomenclature of the processed signal. A method for restoring damaged FM signals in the form of a sequence of stages has been substantiated. At the first stage, there is a detection of time intervals with beats of the signal amplitude, which arise during the setting of structural interferences. After that, to restore the distorted signal, rectangular pulses are synthesized so that their duration is strictly equal to the interval within which beats are observed. And then the procedures for recovering the distorted signal are implemented. For this purpose, the logical addition of that part of the pulses of the information sequence of the signal, within which the effect of structural interference is detected, with the compensating pulses generated during the second stage, is performed. To clarify the implementation of these procedures, a block diagram of the device is given and the principle of its operation is explained. In addition, the article presents the main results characterizing the effectiveness of the proposed technique. The results of evaluating the effectiveness of the developed technique are presented.
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