一种基于多状态耦合的消火栓通信心跳自适应调度方法

By using multi-state coupling modeling and adaptive adjustment of the heartbeat scheduling coefficient, the problem of unbalanced reporting rhythm in the fire hydrant communication heartbeat mechanism under conditions of traffic fluctuation and link limitation is solved, thereby realizing the real-time status of fire hydrant operation and efficient utilization of communication resources.

CN122138189BActive Publication Date: 2026-07-17NANJING ZHONGCHUANG ELECTRONIC TECHNOLOGY CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
NANJING ZHONGCHUANG ELECTRONIC TECHNOLOGY CO LTD
Filing Date
2026-04-30
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

In existing technologies, the fire hydrant communication heartbeat mechanism lacks the ability to comprehensively analyze the equipment operating status, pipeline flow changes, and communication link carrying capacity, resulting in an imbalance in reporting rhythm, link congestion, and decreased resource utilization efficiency in scenarios with frequent flow fluctuations or channel occupancy changes.

Method used

By using multi-state coupling modeling, a trigger tiered hierarchy is constructed. Combining the equipment operating status, pipeline traffic characteristics, and communication link status, a heartbeat scheduling coefficient is generated to achieve adaptive adjustment of the communication heartbeat reporting interval.

Benefits of technology

It improves the real-time performance and stability of fire hydrant operation status monitoring, enhances the utilization efficiency of communication resources, and optimizes the dynamic adaptability of heartbeat rhythm under traffic fluctuations or link constraints.

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Abstract

本发明公开了一种基于多状态耦合的消火栓通信心跳自适应调度方法,涉及通信调度技术领域,用于解决在流量波动显著或信道占用变化频繁的场景下出现上报节奏失衡、链路拥塞加剧及通信资源利用效率下降的问题,通过在消火栓阀门触发过程中引入设备运行状态、流量变化特征及通信链路状态的多状态耦合分析机制,构建基于物理出流变化与链路承载能力的触发分档层级,并结合历史心跳到达时间提取通信节律特征,融合无线重传行为对链路可靠性进行量化评估,在此基础上生成心跳调度系数并对通信心跳上报间隔进行自适应调节,在流量波动明显或链路受限条件下实现心跳节奏的动态优化,提高消火栓运行状态监测的实时性、稳定性及通信资源利用效率。
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