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首页> 外文期刊>IEEE Transactions on Control Systems Technology >Feedback Control of Oxygen Uptake During Treadmill Exercise
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Feedback Control of Oxygen Uptake During Treadmill Exercise

机译:跑步机运动过程中氧气摄取的反馈控制

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摘要

Regulation of exercise intensity is important for aerobic training and for exercise testing. Automatic control of oxygen uptake therefore has potential for use in exercise prescription and in tests to establish markers of cardiopulmonary status. The aim of this study was to investigate the feasibility of automatic feedback control of oxygen uptake during submaximal treadmill exercise. Six healthy male subjects aged 36.0 $pm $ 12.2 years (mean $pm$ standard deviation) ran on a computer-controlled treadmill while oxygen uptake was measured in real time using a breath-by-breath cardiopulmonary monitoring system. Linear dynamic models of oxygen-uptake response to changes in treadmill speed were obtained empirically using least squares optimization, and the models subjected to a cross-validation procedure. This resulted in selection of a first-order model with a time constant of 47 s. This model was used to design linear feedback controllers with a range of closed-loop bandwidth specifications. When implemented, each controller continuously monitored oxygen uptake and adjusted the commanded treadmill speed in real time in order to track a prespecified oxygen uptake profile. A series of closed-loop control tests illustrate that a single, fixed-parameter controller designed using a dynamic model from just one subject is robust enough to provide satisfactory control of a desired oxygen uptake profile for all subjects tested. Our results confirm the feasibility and robustness of automatic feedback control of oxygen uptake during treadmill exercise. Feedback regulation of exercise intensity via oxygen uptake may contribute to prescription of optimal training and testing programmes.
机译:运动强度的调节对于有氧训练和运动测试很重要。因此,自动控制吸氧量有可能用于运动处方和测试中以建立心肺功能标记。这项研究的目的是研究亚最大跑步机运动过程中氧气摄入自动反馈控制的可行性。六名健康男性受试者年龄36.0 $ pm $ 12.2岁(平均$ pm $标准偏差)在计算机控制的跑步机上奔跑,同时使用逐呼吸式心肺监测系统实时测量了摄氧量。使用最小二乘优化通过经验获得线性变化的氧气摄取对跑步机速度变化的响应的动态模型,并对该模型进行交叉验证。这导致选择了时间常数为47 s的一阶模型。该模型用于设计具有一系列闭环带宽规格的线性反馈控制器。实施后,每个控制器都会连续监测氧气吸收并实时调整命令的跑步机速度,以便跟踪预先指定的氧气吸收曲线。一系列闭环控制测试表明,仅使用一个对象的动态模型设计的单个固定参数控制器就足够健壮,可以为所有测试对象提供令人满意的所需氧气吸收曲线控制。我们的结果证实了跑步机锻炼过程中自动反馈控制摄氧的可行性和鲁棒性。通过吸氧来调节运动强度的反馈可能有助于制定最佳的训练和测试计划。

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