USING ESP32 MICROCONTROLLER FOR PHYSICAL SIMULATION OF THE WIRELESS REMOTE CONTROL MODEM

IF 0.2 Q4 COMPUTER SCIENCE, HARDWARE & ARCHITECTURE
T. A. Vakaliuk, O. V. Andreiev, T. M. Nikitchuk, V.V. Osadchyi, O. F. Dubyna
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 Objective of the work is a practical verification of the possibility of using a phase-pulse modulation of the linear-frequencymodulated signal for transmission a control commands through physical modeling using microcontrollers.
 Method. Analytical calculations of the change in time of the voltage at the input and output of the device for optimal processing of the linear frequency-modulated signal were carried out exclusively using the computing capabilities of the microcontroller. The graphs of changes in time of the relevant parameters were built with the help of Excel using the data output to the monitor of the serial port of the Arduino IDE software environment. A digital oscilloscope with a USB host was used to monitor the operation of a wireless modem to transmit control commands to a moving object.
 Results. Analytical calculations and physical modeling using a modern microcontroller proved the operability of the lowfrequency part the wireless remote control modem with using phase-pulse modulation of the linear frequency-modulated signal.
 Conclusions. The possibility of using phase-pulse modulation of the linear-frequency modulated signal for the transmission of control commands is considered. This method of transmitting the information component, unlike the existing methods, does not require changing the parameters of the linear frequency modulated signal. The use in the receiver of optimal processing of a linearfrequency-modulated signal of sufficiently big base will allow of the wireless transmission of the commands for controlling a moving object in conditions of the intentional interference. The use of modern microcontrollers made it possible to conduct a practical test of the functionality of the low-frequency part the wireless remote control modem with phase-pulse modulation of the linear-frequency modulated signal through physical modeling.","PeriodicalId":43783,"journal":{"name":"Radio Electronics Computer Science Control","volume":"234 1","pages":"0"},"PeriodicalIF":0.2000,"publicationDate":"2023-10-14","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Radio Electronics Computer Science Control","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.15588/1607-3274-2023-3-20","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"Q4","JCRName":"COMPUTER SCIENCE, HARDWARE & ARCHITECTURE","Score":null,"Total":0}
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Abstract

Context. Due to the need for practical implementation of the theoretical provisions of the proposed method of the wireless transmission of the commands for controlling a moving object in conditions of intentional interference. Objective of the work is a practical verification of the possibility of using a phase-pulse modulation of the linear-frequencymodulated signal for transmission a control commands through physical modeling using microcontrollers. Method. Analytical calculations of the change in time of the voltage at the input and output of the device for optimal processing of the linear frequency-modulated signal were carried out exclusively using the computing capabilities of the microcontroller. The graphs of changes in time of the relevant parameters were built with the help of Excel using the data output to the monitor of the serial port of the Arduino IDE software environment. A digital oscilloscope with a USB host was used to monitor the operation of a wireless modem to transmit control commands to a moving object. Results. Analytical calculations and physical modeling using a modern microcontroller proved the operability of the lowfrequency part the wireless remote control modem with using phase-pulse modulation of the linear frequency-modulated signal. Conclusions. The possibility of using phase-pulse modulation of the linear-frequency modulated signal for the transmission of control commands is considered. This method of transmitting the information component, unlike the existing methods, does not require changing the parameters of the linear frequency modulated signal. The use in the receiver of optimal processing of a linearfrequency-modulated signal of sufficiently big base will allow of the wireless transmission of the commands for controlling a moving object in conditions of the intentional interference. The use of modern microcontrollers made it possible to conduct a practical test of the functionality of the low-frequency part the wireless remote control modem with phase-pulse modulation of the linear-frequency modulated signal through physical modeling.
采用esp32单片机对无线遥控调制解调器进行物理仿真
上下文。由于实际实施理论规定的需要,所提出的无线传输命令的方法用于在故意干扰条件下控制移动物体。 该工作的目的是实际验证使用线性调频信号的相位脉冲调制的可能性,通过使用微控制器的物理建模来传输控制命令。 方法。为了优化线性调频信号的处理,对器件输入和输出电压的时间变化进行了分析计算,并利用微控制器的计算能力进行了专门的计算。将数据输出到Arduino IDE软件环境的串口监视器,借助Excel绘制相关参数的时间变化率图。使用带USB主机的数字示波器监测无线调制解调器向移动物体发送控制命令的操作。 结果。利用现代单片机进行分析计算和物理建模,验证了无线遥控modem低频部分采用线性调频信号的相位脉冲调制的可操作性。 结论。考虑了用线性调频信号的相位脉冲调制来传输控制命令的可能性。这种传输信息分量的方法,与现有的方法不同,不需要改变线性调频信号的参数。在接收机中使用足够大基数的线性调频信号的最佳处理将允许在有意干扰的条件下无线传输用于控制移动物体的命令。现代微控制器的使用使得通过物理建模对线性-频率调制信号进行相位脉冲调制的无线遥控调制解调器的低频部分的功能进行实际测试成为可能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Radio Electronics Computer Science Control
Radio Electronics Computer Science Control COMPUTER SCIENCE, HARDWARE & ARCHITECTURE-
自引率
20.00%
发文量
66
审稿时长
12 weeks
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