Design of Intelligent Drop Fuse

Xiaomin Qin, Yujian Tang

Abstract


This paper introduces the design of an intelligent drop fuse. This study analyzes the system composition of intelligent drop fuse and introduces the hardware and software design principles, architecture, and implementation method of intelligent drop fuse. This design mainly applies to the intelligent fuse terminal in the station area, which is used to monitor the position signal of the drop fuse in real time, report the fuse drop state information, and effectively shorten the fault location and troubleshooting time, so as to reduce complaints and provide services. The wireless communication module implements a weighted random back-off transmission algorithm, which can determine the transmission time and priority of data according to the urgency of data in the process of data transmission, avoid data collision, and ensure the arrival of data as much as possible.

 

Doi: 10.28991/HEF-2020-01-03-04

Full Text: PDF


Keywords


Intelligence; Fuses; Distribution Network; Internet of Things Technology; Real Time Monitoring.

References


Wang Tao, Zhang Donghua, he Zhiyi, et al. (2011) “Research and design of control system for electric vehicle charging pile” Hubei Electric Power, 35(1):11-12.

Meng, X., & Pian, Z. (2016). Theoretical Basis for Intelligent Coordinated Control. Intelligent Coordinated Control of Complex Uncertain Systems for Power Distribution Network Reliability, 15–50. doi:10.1016/b978-0-12-849896-5.00002-7.

Miao, X. (2018). Research on Accelerated Address Search Method for Intelligent Distribution Network Equipment Identification and Lookup. 2018 China International Conference on Electricity Distribution (CICED). doi:10.1109/ciced.2018.8592045.

Liu Shihan, Qi Shengnan, Wang Quanshan. (2018) “Smart socket design based on Bluetooth technology”. China Science and Technology Information, (10): 47-49.

Srinivasan, C. R., Rajesh, B., Saikalyan, P., Premsagar, K., & Yadav, E. S. (2019). A review on the different types of internet of things (IoT). Journal of Advanced Research in Dynamical and Control Systems, 11(1), 154-158.

Xu An'an. (2018) “Design and implementation of wireless smart home control system”. Anhui University, Hefei, Anhui, China.

Wang, Q., & Wang, Y. G. (2018). Research on Power Internet of Things Architecture for Smart Grid Demand. 2018 2nd IEEE Conference on Energy Internet and Energy System Integration (EI2). doi:10.1109/ei2.2018.8582132.

Shao, S., Ma, X., & Yuan, W. (2020). Research on Construction and Application of Power Distribution Internet of Things. Journal of Physics: Conference Series, 1634, 012038. doi:10.1088/1742-6596/1634/1/012038.

Yuan, L., Yu, X., Ding, E., Zhao, X., Feng, S., Zhang, D., Liu, T., Wang, W., & Huang, Y. (2020). Research on key technologies of human-machine-environment states perception in mine Internet of things. Tongxin Xuebao/Journal on Communications, 41(2), 1-12. doi:10.11959/j.issn.1000-436x.2020036.

Hu, X., Sun, L., Zhou, Y., & Ruan, J. (2020). Review of operational management in intelligent agriculture based on the Internet of Things. Frontiers of Engineering Management, 7(3), 309–322. doi:10.1007/s42524-020-0107-3.

Turber, S., vom Brocke, J., Gassmann, O., & Fleisch, E. (2014). Designing Business Models in the Era of Internet of Things. Lecture Notes in Computer Science, 17–31. doi:10.1007/978-3-319-06701-8_2.

Wu, W., & Zhu, Y. (2020). Intelligent Terminal Monitoring System of Distribution Network for 5G Network. 2020 4th International Conference on Power and Energy Engineering (ICPEE). doi:10.1109/icpee51316.2020.9311059.

Deng Wei, Jiang Zhe, Liu Honglin. (2018) “Software and hardware design and implementation of a relay intelligent socket based on Internet of things protocol”. Internet of Things Technology, 8 (03): 35-36.

Xiaoniu, Y., CaiYi, L., & Jianliang, X. (2010). Software Radio Technology and Application. Beijing Institute of Technology Press, ISBN: 7563504370; 6-20, Beijing, China.

Lai Yuqiang, Wang Jiachen (2002). Architecture and key technologies of software radio”. Journal of armed police Engineering College, China.

Lu Di. (2020). Experiment on resistance value, current and temperature of fast fuse. Xi'an Power Electronics Technology Research Institute, Electrical Equipment, China.

Turber, S., vom Brocke, J., Gassmann, O., & Fleisch, E. (2014). Designing Business Models in the Era of Internet of Things. Lecture Notes in Computer Science, 17–31. doi:10.1007/978-3-319-06701-8_2.


Full Text: PDF

DOI: 10.28991/HEF-2020-01-03-04

Refbacks

  • There are currently no refbacks.


Copyright (c) 2021 Xiaomin Qin, Yujian Tang