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Nonlinear Static Output Feedback Control for Human Heart Rate during Treadmill Exercise

机译:跑步机运动中人心率的非线性静态输出反馈控制

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This paper presents a new control method for the nonlinear human heart beat rate dynamics during treadmill exercise. The reference trajectory represents a desired heart rate profile suggested by the physician. The goal is to design the treadmill speed input for tracking control purposes. Using Lyapunov stability arguments, we propose a parsimonious static output feedback (SOF) scheme for real-time implementation where the system nonlinearity is incorporated in the control law to guarantee the control performance. In particular, the SOF controller is robust with respect to the convex polytopic uncertainty. The design procedure is recast as an LMI-based optimization and therefore can be easily solved with available numerical solvers. Moreover, it can be extended to handle other tracking and/or disturbance rejection objectives. The proposed control method can be applied to a wide class of polytopic uncertain systems subject to a cone-bounded nonlinearity. The effectiveness of our feedback design is demonstrated with both simulation and experimental results in training exercises.
机译:本文提出了一种新的控制方法,用于跑步机运动过程中非线性的人心跳速率动力学。参考轨迹代表医生建议的期望心率曲线。目的是设计用于跟踪控制目的的跑步机速度输入。利用Lyapunov稳定性参数,我们提出了一种用于实时实现的简约静态输出反馈(SOF)方案,其中系统非线性被纳入控制律中以保证控制性能。特别是,SOF控制器对于凸多面体不确定性具有鲁棒性。设计过程被重铸为基于LMI的优化,因此可以使用可用的数值求解器轻松解决。此外,它可以扩展为处理其他跟踪和/或干扰抑制目标。所提出的控制方法可以应用于受锥边界非线性影响的多种多主题不确定系统。在训练演习中,模拟和实验结果都证明了我们的反馈设计的有效性。

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