球形水陆两栖机器人多机器人协同无线通信控制系统研究

Shuxiang Guo, Xin Li, Jian Guo
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引用次数: 3

摘要

在多机器人协同控制系统中,机器人将完成一个共同的任务,因此机器人之间的良好通信具有重要意义。提出了一种球形水陆两栖机器人多机器人协同控制系统。该方法的目的是建立一个支持多个机器人连接的点到多点网络。在此基础上,提出了多机器人协同控制系统,实现了领导机器人引导从机器人的主从方式。多机器人协同控制系统是解决大量相对团队机器人协调问题的一种新方法,它的灵感来源于许多方面。实验结果表明,采用XBee模块结合ZigBee协议向机器人传输控制信号是一种有效的方式。ZigBee通信模式非常适合低功耗、低数据传输的应用,可以考虑水陆两栖机器人之间的通信约束。实验结果表明,采用XBee通信模块可以在低功耗环境下有效传输信号,所提出的通信控制系统在低信噪比环境下具有优异的性能。该通信系统非常适用于低功耗环境,多机器人协同无线通信系统可用于水下探测与环境侦察、军事防御等。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Study on a multi-robot cooperative wireless communication control system for the spherical amphibious robot
In multi-robot cooperative control system where robots will complete a common task, it is significant to have a better communication among robots. This paper proposed a multi-robot cooperative control system for the spherical amphibious robot. The aim of this method is to set up a point to multipoint network which supports multiple robots link in. Moreover, Multi-robot cooperative control system is given to achieve master-slave approaches, where leader robot guides the slave robots. Multi-robot cooperative control system is a novel approach to the coordination of large numbers of relatively team robots which takes its inspiration from many aspects. We carried out some experiments, and experimental results indicated that using XBee modules with ZigBee protocol to transmit control signal to the robot is an efficiency way. ZigBee communication mode is very suitable for low power consumption, and low data transmission applications, which can be taken into consideration about the communication constraints among amphibious robots. The experimental results indicated that signals are transmitted efficiently in the low power environment by using XBee communications module, and proposed communication control system has excellent performance in low SNR environments. This communication system is very suitable in the low power environment, and the multi-robot cooperative wireless communication system can be used to underwater detection and environmental reconnaissance and military defense, etc.
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