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Parameter optimization of motion artifact canceling PPG-based heart rate sensor by means of cross validation

机译:基于交叉验证的运动伪影消除基于PPG的心率传感器的参数优化

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Photoplethysmography (PPG) is one of the simple and non-invasive heart rate (HR) sensing methods, but when applying it to a person during exercise, the output is contaminated with motion artifact (MA). Furthermore, when the pressure to stabilize the sensor on the skin surface is lower, extremely large values referred to as "outliers" are often observed in the sensed heart rate. To cancel the MA and reject the outliers, we have proposed an MA canceling PPG-based HR sensor, and have confirmed its effectivity for persons during vigorous exercises. However, the HR sensor contains several parameters to be adjusted to obtain better performance, although the number of experiments using subjects is limited due to its complexity. In this paper, we discuss a parameter optimization method for the MA canceling PPG-based HR sensor by means of cross validation. We apply the leave-one-out cross validation (LOOCV) to experimental data changing the values of the parameters, and then determine the ones which can minimize the root mean square error (RMSE). Finally, we show that the proposed HR sensor can achieve the RMSE of less than 7.1 beats per minute (bpm) for exercises of walking, running and jumping.
机译:光电容积描记法(PPG)是一种简单且无创的心率(HR)传感方法,但是在运动过程中将其应用到人身上时,其输出会受到运动伪影(MA)的污染。此外,当使传感器稳定在皮肤表面上的压力较低时,通常在感测到的心率中观察到称为“异常值”的极大值。为了消除MA并排除异常值,我们提出了一种基于MA消除PPG的HR传感器,并已确认其在剧烈运动中对人的有效性。但是,HR传感器包含几个要调整以获得更好性能的参数,尽管由于其复杂性,使用对象的实验次数有限。在本文中,我们通过交叉验证讨论了基于MA消除PPG的HR传感器的参数优化方法。我们将留一法交叉验证(LOOCV)应用于更改参数值的实验数据,然后确定可以最小化均方根误差(RMSE)的参数。最后,我们证明了所提出的HR传感器在步行,奔跑和跳跃时的运动均方根误差(RMSE)可以达到每分钟7.1节拍(bpm)以下。

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