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Ride comfort analysis with physiological parameters for an e-health train.

机译:乘坐具有生理参数的舒适性分析,用于电子保健火车。

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Transportation by train has numerous advantages over road transportation, especially with regard to energy efficiency, ecological features, safety, and punctuality. However, the contrast in ride comfort between standard road transportation and train travel has become a competitive issue. The ride comfort enhancement technology of tilting trains (TTX) is a particularly important issue in the development of the Korean high-speed railroad business. Ride comfort is now defined in international standards such as UIC13 and ISO2631. The Korean standards such as KSR9216 mainly address physical parameters such as vibration and noise. In the area of ride comfort, living quality parameter techniques have recently been considered in Korea, Japan, and Europe. This study introduces biological parameters, particularly variations in heart rate, as a more direct measure of comfort. Biological parameters are based on physiological responses rather than on purely external mechanical parameters. Variability of heart rate and other physiological parameters of passengers are measured in a simulation involving changes in the tilting angle of the TTX. This research is a preliminary study for the implementation of an e-health train, which would provide passengers with optimized ride comfort. The e-health train would also provide feedback on altered ride comfort situations that can improve a passenger's experience and provide a healthcare service on the train. The aim of this research was to develop a ride comfort evaluation system for the railway industry, the automobile industry, and the air industry. The degree of tilt correlated with heart rate, fatigue, and unrelieved alertness.
机译:与公路运输相比,火车运输具有许多优势,特别是在能源效率,生态特征,安全性和守时性方面。然而,标准道路运输和火车旅行之间在乘坐舒适性方面的对比已经成为竞争问题。倾斜列车(TTX)的乘坐舒适性增强技术是韩国高速铁路业务发展中特别重要的问题。现在,UIC13和ISO2631等国际标准已定义了乘坐舒适性。韩国标准(例如KSR9216)主要处理诸如振动和噪声之类的物理参数。在乘坐舒适性方面,最近在韩国,日本和欧洲考虑了生活质量参数技术。这项研究引入了生物学参数,尤其是心率的变化,作为更直接的舒适度度量。生物学参数基于生理反应,而不是纯粹基于外部机械参数。在涉及TTX倾斜角度变化的模拟中测量乘客的心率和其他生理参数的变化。这项研究是实施电子卫生火车的初步研究,该火车将为乘客提供最佳的乘坐舒适性。电子保健火车还将提供有关乘坐舒适性状况变化的反馈,从而改善乘客的体验并在火车上提供医疗保健服务。这项研究的目的是为铁路工业,汽车工业和航空工业开发一种乘坐舒适性评估系统。倾斜程度与心率,疲劳和未缓解的警觉性相关。

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