一种核电站安全仪控仿真系统的多平台适配方法及系统

By constructing a multi-platform simulation task behavior classification set, communication path set, and thread channel binding structure, the compatibility problem of the nuclear power plant safety instrumentation and control simulation system in cross-platform deployment was solved, task response consistency and synchronous scheduling were achieved, and the system adaptability and deployment efficiency were improved.

CN121348800BActive Publication Date: 2026-07-17JIANGSU NUCLEAR POWER CORP +1

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
JIANGSU NUCLEAR POWER CORP
Filing Date
2025-09-30
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

Existing nuclear power plant safety instrumentation and control simulation systems suffer from compatibility issues when deployed across platforms, leading to communication delays, graphics misalignment, scheduling failures, and abnormal driver loading. They lack cross-platform operation capabilities and cannot meet the requirements of digitalization and localization.

Method used

By constructing a multi-platform simulation task behavior classification set, communication path set, thread channel binding structure, and scheduling mapping, we can achieve task response consistency and synchronous scheduling, including task frequency analysis, path bandwidth matching, thread and channel coordination, and adjust the response rhythm to ensure cross-platform synchronization.

Benefits of technology

It has achieved consistent adaptation and synchronous scheduling of the nuclear power plant safety instrumentation and control simulation system in a multi-platform environment, improved the system's adaptability and deployment efficiency, and ensured the periodic consistency of task response and data transmission efficiency.

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Abstract

本发明涉及核电站安全仪控系统仿真技术领域,具体为一种核电站安全仪控仿真系统的多平台适配方法及系统,其包括获取仿真模块任务与频率分布,识别跳跃行为聚合指令节点,归类仿真行为特征提取通信路径,匹配任务与带宽生成适配集合,提取线程通道构建绑定结构,分析调度节奏生成协调结果,确认调度一致性生成适配完成结果。本发明通过提取任务频率与响应特征构建行为分类,归集交互模式与逻辑序列并聚合,筛选匹配通信路径建立共享集合,提取线程分配节奏构建通道绑定关系,统计调用周期调整任务节拍,协调路径使用与线程调度,完成多平台任务绑定与节奏分布同步,实现任务响应、链路调度与通道调用协同。
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