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Self Biofeedback Control of Oxygen Consumption (Vo_2) during Cycling Exercise: Based on its Real Time Estimate

机译:自循环运动期间氧气消费品(VO_2)的自生物融产控制:基于其实时估计

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The aim of this paper is to develop the self biofeedback (SBF) control of oxygen consumption (Vo_2) during cycling exercise. The developed system uses an estimator that can predict Vo_2 in real time by using the measurements of heart rate (HR), respiratory rate (RespR) and frequency of exercising activity, this terms is known as Exercise Rate (ER). The biofeedback command is given to the exercising subject in terms of the desired action required by the subject to achieve the targeted Vo_2 (Vo_(2target)) profile. The desired action is determined by the SBF system based on the current estimates of Vo_2 and is communicated to the exercising subject by flashing an indicator on the computer screen. The results obtained in this study demonstrate that the estimator developed for cycling exercise is capable of estimating Vo_2 in real time. The developed system is tested on six healthy male subjects. The obtained results show that the SBF system performs well with the average steady state error in terms of Root Mean Square Error (RMSE) of 1 ml/min/Kg during low intensity exercise and with RMSE of 1.6426 ml/min/Kg during high intensity exercise.
机译:本文的目的是在骑自行车运动期间开发自生物融产(SBF)控制氧气消耗(VO_2)。开发系统使用估计器可以通过使用心率(HR)的测量,呼吸率(RESPR)和锻炼活动的频率来实时预测VO_2,该术语称为运动率(ER)。就受试者需要实现目标VO_2(VO_(2target))简介,生物反馈命令给予锻炼主题。所需动作由SBF系统基于VO_2的当前估计来确定,并且通过在计算机屏幕上闪烁指示器来传送到锻炼主题。本研究中获得的结果表明,用于循环运动的估计能够实时估计VO_2。开发系统在六个健康的男性受试者上进行了测试。所得结果表明,在低强度运动期间,SBF系统在1ml / min / kg的根均方误差(RMSE)方面的平均稳态误差良好,并且在高强度期间RMSE为1.6426ml / min / kg锻炼。

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