Research of microprocessor device and software for remote control of a robotic system

Andrii Zuiev, Viktoriia Krylova, Anatolii Hapon, Stanislav Honcharov
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Abstract

The modern stage of the development of intelligent robotic systems is characterized by the expansion of fields of application, which is due to autonomous work and decision-making in conditions of uncertainty. The object of research is the system of remote control of robotic systems. During the remote control of robotic systems, problems arise that are associated with the use of wireless communication in real time. The article analyzes software and hardware implementations of various remote control systems suitable for use as part of autonomous robotic systems and analyzes promising microcontroller platforms for implementing a remote control device for a robotic system. A brief review of existing protocols for transmitting control signals using radio communication equipment and microprocessor platforms for the development of embedded systems is performed, among which a solution is selected for research. Several approaches to the control of a robotic system are highlighted – control using a wired connection and corresponding protocols, control via wireless communication or via the Internet, control via general-purpose network protocols. The target platform is chosen and justified, and the S.BUS protocol is analyzed with the provision of an algorithm for obtaining the values of the control channels from the S.BUS package. The structure and algorithm of functioning of the microprocessor remote control system based on the ESP32 microcontroller and the FreeRTOS OS are given. A study of the operation process of the proposed remote control system is carried out, for which it is placed on the chassis of a ground autonomous robotic system with four-wheel drive, and the delay time of the control signal from the receiver to the engine control modules is determined. According to the conducted analysis, the expediency of using specialized radio communication equipment with the S.BUS protocol for controlling executive devices as part of a robotic system, for precise movement control in real time, is shown.
研究用于远程控制机器人系统的微处理器装置和软件
智能机器人系统在现代发展阶段的特点是应用领域的扩大,这是由于在不确定条件下的自主工作和决策。研究对象是机器人系统的远程控制系统。在对机器人系统进行远程控制的过程中,会出现与实时使用无线通信相关的问题。文章分析了适合作为自主机器人系统一部分的各种遥控系统的软件和硬件实现,并分析了用于实现机器人系统遥控装置的前景看好的微控制器平台。简要回顾了利用无线电通信设备和微处理器平台传输控制信号的现有协议,以便开发嵌入式系统,并从中选出一个解决方案进行研究。重点介绍了控制机器人系统的几种方法--使用有线连接和相应协议进行控制、通过无线通信或互联网进行控制、通过通用网络协议进行控制。对目标平台进行了选择和论证,并分析了 S.BUS 协议,提供了从 S.BUS 软件包中获取控制通道值的算法。给出了基于 ESP32 微控制器和 FreeRTOS 操作系统的微处理器远程控制系统的结构和运行算法。对所提出的遥控系统的运行过程进行了研究,并将其置于带四轮驱动的地面自主机器人系统的底盘上,确定了从接收器到发动机控制模块的控制信号的延迟时间。分析结果表明,使用专门的无线电通信设备和 S.BUS 协议来控制机器人系统中的执行设备,以实现实时精确的运动控制,是可行的。
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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8 weeks
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