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Closed-Loop Cadence and Instantaneous Power Control on a Motorized Functional Electrical Stimulation Cycle

机译:电动功能电气刺激周期上的闭环磁节和瞬时功率控制

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Motorized functional electrical stimulation (FES) cycling is a rehabilitation therapy in which electrical stimulation is used to activate lower body muscles to pedal a cycle in conjunction with motorized assistance. FES cycling has been demonstrated to improve cardiovascular parameters, muscle mass, and motor control of people with neurological conditions (NCs). A common FES cycling objective is simultaneous cadence and power (torque) tracking; however, it is unclear how to best coordinate the FES and motor contributions and if power should be tracked instantaneously or averaged over a period of time. This article develops a new FES cycling controller using a switched Lyapunov-like dwell-time analysis for the nonlinear, uncertain cycling system to conclude global exponential cadence tracking and uniformly ultimately bounded power tracking. To evaluate the performance of the developed controller, comparisons are made with two previously developed FES cycling controllers through experiments on seven able-bodied participants and six participants with NCs. For a desired cadence of 50 RPM and a desired power of 10 W, the developed controller demonstrated the smallest tracking errors with an average cadence and power error of 0.01 +/- 1.03 RPM and 0.00 +/- 0.94 W, respectively, in the able-bodied population and an average cadence and power error of 0.02 +/- 1.87 RPM and 0.00 +/- 2.46 W, respectively, in the population of people with NCs. Results suggest that the electric motor should be used to track cadence and the FES induced muscle torques should be used to track instantaneous power.
机译:电动功能电刺激(FES)循环是一种康复治疗,其中电刺激用于激活下半身肌肉,以与机动辅助结合踏板。 FES循环已被证明是为了提高心血管参数,肌肉质量和具有神经状况(NCS)的人的电机控制。共同的FES循环目标是同时节奏和功率(扭矩)跟踪;但是,目前尚不清楚如何最好地协调FES和电机贡献,如果应瞬间跟踪电源或在一段时间内平均均衡。本文使用像非线性,不确定循环系统的交换Lyapunov样式停留时间分析开发新的FES自行车控制器,以得出全球指数节奏跟踪和均匀最终有界电力跟踪。为了评估开发控制器的性能,通过在七个能够拥有的七个能够和NCS的六位参与者上进行实验,使用两个先前开发的FES自行车控制器进行比较。对于所需的50rpm的节奏和10 w的所需功率,开发控制器分别展示了能够 - 在NCS人口中,分别的人口和0.02 +/- 1.87 rpm和0.02 + / -2.46 W的平均点心和电力误差。结果表明,电动机应用于跟踪节奏,FES诱导肌肉扭矩应用于跟踪瞬时功率。

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