计量自动化终端上行通信故障检测方法和系统

By employing server-side batch testing and a dual-channel communication strategy, the system monitors the data characteristics of metering automation terminals in real time and performs fault analysis. This solves the problems of low efficiency and poor accuracy in uplink communication fault detection of metering automation terminals, enabling rapid and accurate fault location and detection, and improving terminal reliability and operational efficiency.

CN122420172APending Publication Date: 2026-07-17FOSHAN NANHAI DUOBAO ELECTRIC APPLIANCE INSTALLATION CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
FOSHAN NANHAI DUOBAO ELECTRIC APPLIANCE INSTALLATION CO LTD
Filing Date
2026-06-16
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

The detection of uplink communication faults in existing automated metering terminals relies on manual offline operations, which is inefficient and susceptible to human factors, making it difficult to detect and resolve faults in a timely manner, thus affecting data accuracy and system operational efficiency.

Method used

A server-side batch detection method is adopted, which uses the internal detection module of the metering automation terminal to monitor data characteristics in real time, generate verification information, and use a dual-channel communication strategy to upload the verification information to the server for fault detection. Combined with the data backtracking model, the internal faults of the terminal are analyzed.

Benefits of technology

It enables rapid and accurate uplink communication fault detection, reduces manual intervention, improves detection efficiency and accuracy, lowers implementation costs, and enhances terminal reliability and operational stability.

✦ Generated by Eureka AI based on patent content.

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Abstract

本发明涉及计量自动化终端技术领域,具体公开了一种计量自动化终端上行通信故障检测方法和系统,其中,该方法包括步骤:基于所述计量自动化终端内部的侦测模块实时侦测对应计量数据在计量自动化终端中不同器件模块之间传递的数据特征;根据收集到的计量数据生成校验码信息,并整合校验码信息和数据特征获取校验信息;利用第一通信模块将计量数据上传至服务器端,利用第二通信模块将校验信息发送给多个附近的计量自动化终端;利用服务器端根据计量数据和校验信息对计量自动化终端进行故障检测;该方法充分利用了终端网络的分布式特性,能快速定位故障终端,大大提高了故障检测效率并通过多重数据校验和传输冗余,提高检测准确性和可靠性。
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