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Real-time quantification of human physiological state in high temperature environments based on variable weight theory

机译:基于可变权重理论的高温环境中人体生理状态的实时定量

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摘要

Accurate real-time evaluation of human physiological state is significant for safety guidance and early warning for people in high temperature environments. The constant weight method often makes the evaluation results deviating from reality. In this paper, the variable weight theory is adopted to solve above problem. Firstly, a human physiological state evaluation system is proposed. Secondly, the constant weight and variable weight methods are used to obtain the weights of the indexes. Thus, the comprehensive evaluation score is obtained to quantify the human physiological state. Finally, a case study is conducted to demonstrate and verify the proposed evaluation system. It indicates that, the variable weight of rectal temperature, skin temperature, systolic pressure and heart rate is 0.2 similar to 0.77, 0.11 similar to 0.61, 0.03 similar to 0.31, 0.03 similar to 0.31, respectively. And the weights of the skin temperature and the rectal temperature account for a relatively large proportion, ranging from 50% to 92%. The physiological parameters with small constant weight may account for a larger percentage in the evaluation when the physiological parameters reach an extremely harmful condition. This paper can provide more reasonable and scientific method in physiological state quantification for people in high temperature environments.
机译:对于人体生理状态的准确实时评估对于高温环境中的人们的安全指导和预警是显着的。恒重方法通常使评估结果偏离现实。在本文中,采用了可变权重理论来解决上述问题。首先,提出了人体生理状态评估系统。其次,使用恒定重量和可变权重方法来获得索引的权重。因此,获得了综合评价评分以量化人体生理状态。最后,进行了案例研究以证明和验证所提出的评估系统。表明,与0.61,0.03相似的0.77,0.11,类似于0.31,0.03的直肠温度,皮肤温度,收缩压和心率为0.2的直肠温度,皮肤温度,收缩压和心率为0.2的可变重量。并且皮肤温度的重量和直肠温度占比例相对较大,范围为50%至92%。当生理参数达到极其有害的情况时,具有小恒重的生理参数可能占评估中的较大百分比。本文可以为高温环境中的人们提供更合理和科学的方法。

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