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融合多因素的疲劳健康监测
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作者 刘硕 秦雨鸿 +4 位作者 马伟 梁栗炎 杨琳 施景彬 岳瑞娟 《计算机科学与应用》 2014年第5期103-111,共9页
针对VDT (Video Display Terminal,视屏显示终端)作业引发的一系列健康问题,构建智能化疲劳健康检测系统。本系统利用多参数累计评分方法计算用户健康指数,基于用户对计算机的有效操作时间及健康指数计算疲劳值,用以智能化控制用户休息... 针对VDT (Video Display Terminal,视屏显示终端)作业引发的一系列健康问题,构建智能化疲劳健康检测系统。本系统利用多参数累计评分方法计算用户健康指数,基于用户对计算机的有效操作时间及健康指数计算疲劳值,用以智能化控制用户休息提示的时间间隔与评价用户疲劳状态。系统具备智能化疲劳休息提示,基于用户生理信息及其参数变化趋势的健康评价等功能。用户通过系统可了解自身健康,并在计算机操作过程中时常进行休息,避免长时间VDT作业对身体造成伤害。用户调研结果显示,本系统在功能体验上优于市场上同类别的健康系统,在大众健康保健方面具有良好的应用前景。 展开更多
关键词 视屏显示终端 疲劳健康监测 健康评价
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In-situ quantitative monitoring of fatigue crack using fastest time of flight diffraction method 被引量:2
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作者 杜朝亮 王奕首 +2 位作者 高东岳 刘科海 卿新林 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2012年第11期2679-2684,共6页
Due to the cyclic loading and longtime exposure under extreme environment conditions, fatigue cracks often generate in the aircraft metal structures, i.e. wing skin, fuselage skin, strigners, pylons. These cracks coul... Due to the cyclic loading and longtime exposure under extreme environment conditions, fatigue cracks often generate in the aircraft metal structures, i.e. wing skin, fuselage skin, strigners, pylons. These cracks could cause severe damages to the aircraft structures. Thus the position and size monitoring of fatigue cracks in the metal structures is very important to manufacturers as well as maintenance personnel for significantly improving the safety and reliability of aircraft. Much progress has been made for crack position monitoring in the past few years. However, the crack size monitoring is still very challenging. Fastest time of flight diffraction (FTOFD) method was developed to monitor both the position and size of a crack. FTOFD method uses an integrated sensor network to activate and receive ultrasonic waves in a structure. Diffraction waves will be generated when the ultrasonic waves pass a crack. These diffraction waves are received and analyzed to get the position and size of the crack. The experiment results show that the monitored size of the simulated crack is very close to the real size of the crack, and for frequencies of 350 and 400 kHz, the monitoring errors are both smaller than 5%. 展开更多
关键词 structure health monitoring fatigue crack diffraction waves crack size quantification
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