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A distributed and intelligent system approach for the automatic inspection of steam-generator tubes in nuclear power plants

机译:核电厂蒸汽发生器管道自动检查的分布式智能系统方法

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The inspection of steam-generator (SG) tubes in a nuclear power plant (NPP) is a time-consuming, laborious, and hazardous task because of several hard constraints such as a highly radiated working environment, a tight task schedule, and the need for many experienced human inspectors. This paper presents a new distributed intelligent system architecture for automating traditional inspection methods. The proposed architecture adopts three basic technical strategies in order to reduce the complexity of system implementation. The first is the distributed task allocation into four stages: inspection planning (IF), signal acquisition (SA), signal evaluation (SE), and inspection data management (IDM). Consequently, dedicated subsystems for automation of each stage can be designed and implemented separately. The second strategy is the inclusion of several useful artificial intelligence techniques for implementing the subsystems of each stage, such as an expert system for IP and SE and machine vision and remote robot control techniques for SA. The third strategy is the integration of the subsystems using client/server-based distributed computing architecture and a centralized database management concept. Through the use of the proposed architecture, human errors, which can occur during inspection, can be minimized because the element of human intervention has been almost eliminated; however, the productivity of the human inspector can be increased equally. A prototype of the proposed system has been developed and successfully tested over the last six years in domestic NPP's.
机译:核电厂(NPP)中的蒸汽发生器(SG)管道的检查是一项耗时,费力且危险的任务,因为它存在一些严格的约束条件,例如高度辐射的工作环境,紧凑的任务计划以及需要对于许多经验丰富的人类检查员。本文提出了一种用于自动化传统检测方法的新型分布式智能系统架构。所提出的体系结构采用了三种基本技术策略,以降低系统实现的复杂性。第一个是将分布式任务分配分为四个阶段:检查计划(IF),信号采集(SA),信号评估(SE)和检查数据管理(IDM)。因此,可以单独设计和实现用于每个阶段自动化的专用子系统。第二种策略是包含用于实现每个阶段子系统的几种有用的人工智能技术,例如用于IP和SE的专家系统以及用于SA的机器视觉和远程机器人控制技术。第三种策略是使用基于客户端/服务器的分布式计算架构和集中式数据库管理概念来集成子系统。通过使用建议的体系结构,可以将检查过程中可能发生的人为错误降到最低,因为几乎消除了人为干预的因素;但是,可以同样提高人工检查员的生产率。在过去的六年中,已开发了拟议系统的原型并在国内NPP上成功进行了测试。

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