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Comparison of linear and nonlinear feedback control of heart rate for treadmill running

机译:跑步机心率线性和非线性反馈控制的比较

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Heart rate can be used to define exercise intensity; feedback control systems for treadmills which automatically adjust speed to track arbitrary heart rate target profiles are therefore of interest. The aim of this study was to compare linear (L) and nonlinear (NL) controllers using quantitative performance measures. Sixteen healthy male subjects participated in the experimental L vs. NL comparison. The linear controller was calculated using a direct analytical design that employed an existing approximate plant model. The nonlinear controller had the same linear component, but it was augmented using static plant-nonlinearity compensation. At moderate-to-vigorous intensities, no significant differences were found between the linear and nonlinear controllers in mean RMS tracking error (2.34 vs. 2.25?bpm [L vs. NL], p =0.26) and average control signal power (51.7 vs. ?m~(2)/s~(2), p =0.16), but dispersion of the latter was substantially higher for NL (range 45.2 to 56.8 vs. 30.7 to ?m~(2)/s~(2), L vs. NL). At low speed, RMS tracking errors were similar, but average control signal power was substantially and significantly higher for NL (28.1 vs. ?m~(2)/s~(2) [L vs. NL], p 0.001). The performance outcomes for linear and nonlinear control were not significantly different for moderate-to-vigorous intensities, but NL control was overly sensitive at low running speed. Accurate, stable and robust overall performance was achieved for all 16 subjects with the linear controller. This points to disturbance rejection of very-low-frequency heart rate variability as the overriding challenge for design of heart rate controllers.
机译:心率可以用来定义运动强度。因此,自动调整速度以跟踪任意心率目标曲线的跑步机反馈控制系统受到关注。这项研究的目的是使用定量性能指标来比较线性(L)和非线性(NL)控制器。 16名健康男性受试者参加了实验L与NL比较。线性控制器是使用直接分析设计计算的,该设计采用了现有的近似工厂模型。非线性控制器具有相同的线性分量,但是使用静态工厂非线性补偿对其进行了扩充。在中等强度到剧烈强度下,线性和非线性控制器之间的均方根跟踪误差(2.34 vs. 2.25?bpm [L vs. NL],> 0.26)和平均控制信号功率之间没有发现显着差异。 (51.7 vs.?m~(2)/s~(2),p = 0.16),但是对于NL,后者的色散显着更高(范围45.2至56.8 vs. 30.7〜?m〜(2) / s〜(2),L对NL)。在低速时,RMS跟踪误差相似,但是NL的平均控制信号功率显着更高(28.1 vs.?m~(2)/s~(2)[L vs.NL],> 0.001)。对于中等强度到剧烈强度,线性和非线性控制的性能结果没有显着差异,但是在低运行速度下,NL控制过于敏感。使用线性控制器可以对所有16位受试者实现准确,稳定和强大的整体性能。这表明超低频心率变异性的干扰抑制是心率控制器设计的首要挑战。

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