首页> 外文期刊>IEEE transactions on neural systems and rehabilitation engineering >Control strategies for integration of electric motor assist and functional electrical stimulation in paraplegic cycling: utility for exercise testing and mobile cycling
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Control strategies for integration of electric motor assist and functional electrical stimulation in paraplegic cycling: utility for exercise testing and mobile cycling

机译:截瘫骑行中电动助力和功能性电刺激整合的控制策略:运动测试和移动骑行的工具

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Aim: The aim of this study was to investigate feedback control strategies for integration of electric motor assist and functional electrical stimulation (FES) for paraplegic cycling, with particular focus on development of a testbed for exercise testing in FES cycling, in which both cycling cadence and workrate are simultaneously well controlled and contemporary physiological measures of exercise performance derived. A second aim was to investigate the possible benefits of the approach for mobile, recreational cycling. Methods: A recumbent tricycle with an auxiliary electric motor is used, which is adapted for paraplegic users, and instrumented for stimulation control. We propose a novel integrated control strategy which simultaneously provides feedback control of leg power output (via automatic adjustment of stimulation intensity) and cycling cadence (via electric motor control). Both loops are designed using system identification and analytical (model-based) feedback design methods. Ventilatory and pulmonary gas exchange response profiles are derived using a portable system for real-time breath-by-breath acquisition. Results: We provide indicative results from one paraplegic subject in which a series of feedback-control tests illustrate accurate control of cycling cadence, leg power control, and external disturbance rejection. We also provide physiological response profiles from a submaximal exercise step test and a maximal incremental exercise test, as facilitated by the control strategy. Conclusion: The integrated control strategy is effective in facilitating exercise testing under conditions of well-controlled cadence and power output. Our control approach significantly extends the achievable workrate range and enhances exercise-test sensitivity for FES cycling, thus allowing a more stringent characterization of physiological response profiles and estimation of key parameters of aerobic function. We further conclude that the control approach can significantly improve the overall performance of mobile recreational cycling.
机译:目的:本研究的目的是研究截瘫自行车运动中电动助力和功能性电刺激(FES)集成的反馈控制策略,特别着重于FES自行车运动测试的试验台的开发,其中两种自行车节奏同时控制工作率和工作效率,并得出运动表现的当代生理指标。第二个目的是研究这种方法对于移动,休闲自行车的可能的好处。方法:使用带有辅助电动机的卧式三轮车,它适合截瘫患者,并用于控制刺激。我们提出了一种新颖的集成控制策略,该策略可同时提供腿部力量输出(通过刺激强度的自动调节)和骑车脚踏圈速(通过电动机控制)的反馈控制。使用系统识别和分析(基于模型)反馈设计方法来设计两个回路。通气和肺部气体交换响应曲线是使用便携式系统导出的,用于实时逐呼吸采集。结果:我们提供了来自一个截瘫患者的指示性结果,其中一系列反馈控制测试说明了自行车节奏,腿部力量控制和外部干扰抑制的精确控制。在控制策略的帮助下,我们还提供了次最大运动步长测试和最大增量运动测试的生理反应曲线。结论:在良好的节奏和功率输出的条件下,综合控制策略可有效地促进运动测试。我们的控制方法极大地扩展了可达到的工作范围,并增强了FES骑行的运动测试敏感性,从而可以更严格地表征生理反应曲线并评估有氧功能的关键参数。我们进一步得出结论,该控制方法可以显着改善移动休​​闲自行车的整体性能。

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