Study on a Novel Network Nod Monitoring System based on the Spherical Multi-robot

Shuxiang Guo, Ran Wang, Jian Guo, Jigang Xu
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Abstract

The spherical multi-robot system is mainly used for water quality monitoring in large-scale aquaculture. The main research content of this article is how to realize the multi-robot system effectiveness of data transmission. Or, when the detection range is too large, the multi-robot system adopts the centralized control mode, once the instability of the central robot network occurs. If the data can not be fed back to the user, how to ensure the control ability of the entire multi-robot system. Novel network nod monitoring system has the advantages of Ad Hoc network, self - repair and not limited by the distance of router. It has been widely used in various fields. At the same time, cloud platform communication technology has also been widely used in the field of the Internet of Things. Its advantages are multi-purpose function, long transmission distance, strong safety performance, etc. By adopting self - owned cloud platform structure and the novel network nod monitoring system. It improves the flexibility and reliability of the multi-robot system and ensures the efficiency of large-scale data acquisition. In this paper, a Mesh network architecture and a network system based on cloud platform for spherical multi-robot systems are proposed. The experimental results show that it is feasible to construct the whole node monitoring system based on Mesh. With this system, the multi-robot system can accomplish more complex tasks.
基于球形多机器人的新型网络节点监控系统研究
球形多机器人系统主要用于大规模水产养殖的水质监测。本文的主要研究内容是如何实现多机器人系统的有效数据传输。或者,当检测范围太大时,多机器人系统采用集中控制方式,一旦发生中心机器人网络的不稳定。如果不能将数据反馈给用户,如何保证整个多机器人系统的控制能力。新型网络节点监控系统具有自组网、自修复、不受路由器距离限制等优点。它已被广泛应用于各个领域。同时,云平台通信技术也在物联网领域得到了广泛的应用。其优点是多功能、传输距离长、安全性能强等。采用自主云平台结构和新颖的网络节点监控系统。提高了多机器人系统的灵活性和可靠性,保证了大规模数据采集的效率。本文提出了球面多机器人系统的Mesh网络架构和基于云平台的网络系统。实验结果表明,构建基于Mesh的全节点监控系统是可行的。利用该系统,多机器人系统可以完成更复杂的任务。
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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