The dynamic wireless charging system of suspension inspection robot

Author:

Deng Siming,Liu Feifei,Zhong Xiangxing

Abstract

Abstract Intelligent inspection robots can monitor the behavior of poultry in real-time according to the production management needs of standardized poultry breeding, and gradually replace the method of artificial inspection to become a new method for farm detection. The good performance of its power system is the basis for ensuring the extension of the inspection cycle. In a humid environment, the traditional power supply method will cause the wear, leakage, and heating of the wires, which causes the safety of the farm to be guaranteed. Therefore, this article designed a suspension inspection robot system with dynamic wireless charging functions. It can run steadily at high temperatures, high humidity, and high dust environment, and use radio energy transmission technology based on induction coupling principles to move the inspection robot to dynamic wireless charging. The coupling quality is used to improve the transmission efficiency of the system, and it provides a reference for the design of the wireless charging coupling device of the inspection robot in the future.

Publisher

IOP Publishing

Subject

Computer Science Applications,History,Education

Reference8 articles.

1. Design of aware robot system and improved comprehensive evaluation model for piggery environment;Li;Journal of Northeast Agricultural University,2021

2. Wireless Charging of Electric Taxis: Understanding the Facilitators and Barriers to Its Introduction;Oliveira;Sustainability,2020

3. Overview of research status and application of wireless energy transmission technology;Fan;Transactions of China Electrotechnical Society,2019

4. Inductively Coupled Power Transmission - Concept, Design, and Application;Green;Transactions of the Institution of Professional Engineers New Zealand Electrical/mechanical/chemical Engineering,1995

5. Dynamic Wireless Charging for Inspection Robots Based on Decentralized Energy Pickup Structure;Liu;IEEE Trans. Ind. Inform.,2018

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