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Advanced Hybrid Information Processing. 7th EAI International Conference, ADHIP 2023, Harbin, China, September 22-24, 2023, Proceedings, Part IV

Research Article

Design of Substation Battery Remote Monitoring System Based on LoRa Technology

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BibTeX Plain Text
  • @INPROCEEDINGS{10.1007/978-3-031-50552-2_4,
        author={Chen Zhao and Dong Yang and Xiao Xu and Gongying Zhang and Qirui Xu},
        title={Design of Substation Battery Remote Monitoring System Based on LoRa Technology},
        proceedings={Advanced Hybrid Information Processing. 7th EAI International Conference, ADHIP 2023, Harbin, China, September 22-24, 2023, Proceedings, Part IV},
        proceedings_a={ADHIP PART 4},
        year={2024},
        month={3},
        keywords={LoRa Technology Substation Battery Remote Monitoring System},
        doi={10.1007/978-3-031-50552-2_4}
    }
    
  • Chen Zhao
    Dong Yang
    Xiao Xu
    Gongying Zhang
    Qirui Xu
    Year: 2024
    Design of Substation Battery Remote Monitoring System Based on LoRa Technology
    ADHIP PART 4
    Springer
    DOI: 10.1007/978-3-031-50552-2_4
Chen Zhao1,*, Dong Yang1, Xiao Xu1, Gongying Zhang1, Qirui Xu1
  • 1: Suzhou Power Supply Company
*Contact email: 17755711383@163.com

Abstract

The function module of the current substation battery remote monitoring system is generally one-way, and the monitoring range is limited, leading to the extension of the monitoring response time. Therefore, the design of the substation battery remote monitoring system based on LoRa technology is proposed. According to the actual monitoring needs and standards, first build the main controller MCU, access the A/D conversion circuit, establish GPRS monitoring sensor device, and complete the color design of the system hardware; On this basis, the multi-target form is adopted to break the restriction of the monitoring range, and the multi-target remote monitoring function module is established. The associated monitoring range is limited. At the same time, the monitoring storage database is constructed to complete the design of the system software. The final test results show that the final monitoring response time is better controlled below 0.5s for the operation of six batteries, indicating that this method has better monitoring effect, stronger pertinence and practical application value.

Keywords
LoRa Technology Substation Battery Remote Monitoring System
Published
2024-03-24
Appears in
SpringerLink
http://dx.doi.org/10.1007/978-3-031-50552-2_4
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