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An empirical regression model toward optimized ergonomic conditions for monitoring room operators using RSM

机译:利用RSM监控房间运营商优化符合人体工程学条件的经验回归模型

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Purpose - This study aims to provide an ergonomic design of the monitoring room that has resulted in safe, functional and comfortable environment for the operators, which may lead to improve the efficiency. Currently, uses of closed-circuit televisions to monitor the critical environments are widely applicable. The information is continuously transferred and analyzed through a center called monitoring room. Design/methodology/approach - Here, through creating a systematic analysis, a series of experiments was performed initially to evaluate and then optimize the parameters such as illumination, visual angle, operator-screen distance, number of scenes display in a single screen, workstation height, screen dimension and monitoring time that may affect the visual skill of the operators. Taguchi orthogonal array was used to analyze the significance of parameters on operator's response time to a threat. The five parameters were distinguished as significant. Later response surface methodology was utilized to optimize the parameters. Findings - Quadratic empirical model developed for the response time exposes the optimum response time was achievable at illumination of 500 lux, visual angle of 13°, operator-screen distance of 60 cm, three scenes, workstation height of 120 cm, screen dimension of 34" and monitoring time of 15 min. This shortened the response time by 28 per cent. The adequacy of the fitted model was successfully verified using the confirmation test with α = 95 per cent. Originality/value - The novelty of this work lies in the application of a systematic statistical analysis, which enables considering the interaction among the noise parameters and controllable one simultaneously. Furthermore, the obtained regression model can widely be used for adjusting the parameters accordingly based on various anthropometric data.
机译:目的 - 本研究旨在提供监控室的符合人体工程学设计,导致运营商的安全,功能和舒适的环境,可能导致提高效率。目前,使用闭路电视监控关键环境是广泛适用的。通过称为监控室的中心连续转移和分析信息。设计/方法/方法 - 通过创建系统分析,最初执行一系列实验来评估,然后优化在单个屏幕中显示照明,视角,操作员屏幕距离,场景数如照明,视角,操作员屏幕距离,工作站中的参数可能影响运营商的可视化技能的高度,屏幕尺寸和监视时间。 Taguchi正交阵列用于分析参数对运营商对威胁的响应时间的重要性。该五个参数具有重要意义。以后的响应面方法用于优化参数。调查结果 - 为响应时间开发的二次实证模型暴露了500勒克斯照明的最佳响应时间,可视角度为13°,操作员屏幕距离为60厘米,三场景,工作站高度为120厘米,屏幕尺寸为34 “并监测15分钟的时间。这缩短了响应时间为28%。使用α= 95%的确认测试成功验证了拟合模型的充分性。原创/价值 - 这项工作的新颖性在于应用一个系统的统计分析,这使得能够考虑噪声参数和同时控制的一个之间的相互作用。另外,所得到的回归模型可以广泛地用于调整参数相应地基于各种人体测量数据。

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