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Assessing mental workload and situation awareness in the evaluation of computerized procedures in the main control room

机译:在主控制室评估计算机程序时评估精神工作量和情况意识

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摘要

Computerized procedure (CP) system has been developed in nuclear power plant (NPP) instrumentation and control (I&C) system. The system may include normal operating procedures (OPs), abnormal operating procedures (AOPs), alarm response procedures (ARPs), surveillance test procedures (STPs) and/or emergency operating procedures (EOPs). While there are many ways to evaluate computerized procedures design, the user's mental workload and situation awareness (SA) are particularly important considerations in the supervisory control of safety-critical systems. Users' mental workload and situation awareness may be influenced by human factor issues relating to computerized procedures, e.g., level of automation, dealing with (partially) unavailable I&C, switching to back-up system (e.g., paper-based procedures). Some of the positive impacts of CPs on operator performance include the following: tasks can be performed more quickly; overall workload can be reduced; cognitive workload can be minimized; fewer errors may be made in transitioning through or between procedures. However, various challenges have also been identified with CP systems. These should be addressed in the design and implementation of CPs where they are applicable. For example, narrower "field of view" provided by CP systems than with paper-based procedures could reduce crew communications and crewmember awareness of the status and progress through the procedure. Based on a human factors experiment in which each participant monitored and controlled multiple simulated reactors, this study applied the NASA-TLX instrument for assessing mental workload. For the assessment of situation awareness (SA), the present research used the situational awareness rating technique (SART). In support of summarizing the results of user interface evaluation along multiple dimensions (e.g., workload, SA), we propose advantages for the CPs compared to the paper-based procedures.
机译:核电厂(NPP)仪器仪表和控制(I&C)系统中已经开发了计算机程序(CP)系统。该系统可以包括正常操作程序(OP),异常​​操作程序(AOP),警报响应程序(ARP),监视测试程序(STP)和/或紧急操作程序(EOP)。尽管有许多方法可以评估计算机化程序设计,但用户的精神工作量和情况意识(SA)是安全关键系统的监督控制中特别重要的考虑因素。用户的心理工作量和状况意识可能会受到与计算机程序相关的人为因素问题的影响,例如自动化程度,处理(部分)不可用的I&C,切换到备用系统(例如基于纸张的程序)。 CP对操作员绩效的一些积极影响包括:可以更快地执行任务;可以减少整体工作量;认知工作量可以最小化;在过程之间或过程之间进行转换时,可能会减少错误。但是,CP系统也面临各种挑战。这些问题应在适用的CP的设计和实施中加以解决。例如,与基于纸质程序相比,CP系统提供的“视野”更窄,可以减少机组人员之间的交流,以及机组人员对程序状态和进度的了解。在一项人为因素实验的基础上,每个参与者监视和控制了多个模拟反应堆,这项研究应用了NASA-TLX仪器来评估精神负荷。为了评估情境意识(SA),本研究使用了情境意识评级技术(SART)。为了支持沿多个维度(例如,工作量,SA)总结用户界面评估的结果,与基于纸张的过程相比,我们提出了CP的优势。

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  • 来源
    《Nuclear Engineering and Design》 |2012年第9期|p.713-719|共7页
  • 作者单位

    Institute of Nuclear Energy Research, 1000, Wenhua Rd., Jiaan Village, Longtan Township, Taoyuan County 32546, Taiwan, ROC;

    Institute of Nuclear Energy Research, 1000, Wenhua Rd., Jiaan Village, Longtan Township, Taoyuan County 32546, Taiwan, ROC;

    Institute of Nuclear Energy Research, 1000, Wenhua Rd., Jiaan Village, Longtan Township, Taoyuan County 32546, Taiwan, ROC;

    Department of Industrial Engineering, Chung-Yuan Christian University, 200, Chung Pei Rd., Chung-Li 32023, Taiwan, ROC;

    Department of Industrial Engineering, Chung-Yuan Christian University, 200, Chung Pei Rd., Chung-Li 32023, Taiwan, ROC;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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