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Suppression of Hand Postural Tremor Via Active Force Control Method

机译:通过主动力控制方法抑制手势震颤

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This paper presents the behavior and the effective way to suppress the human hand postural tremor using the active force control method. The main advantages of proposed method include; its simple control technique, practically applicable in real-time due to the much lesser computational burden and the extra robustness feature the method generates. The actual tremor data from a Parkinson disease patient is validated through an artificial vibration exciter to investigate a tremor suppression technique based on mechatronics approach in which a proportional-derivative (PD) with active force control (AFC) strategy is applied to a four degree-of-freedom (4-DOF) hand model. The acceleration and displacement dynamic responses on the human hand model were captured and recorded using the light-weight accelerometer and laser displacement sensor for validation purpose. The results may be considered as raw data that can be used for further analysis of human tremor especially for Parkinson's disease patients, which can later be used to assist in developing strategies in the design and development of a hand tremor suppression device. A piezoelectric actuator is employed as the main active element within the AFC-based system for the compensation of the disturbances. Simulation results show that the proposed AFC-based scheme is very robust compared to conventional PD counterpart.
机译:本文介绍了使用主动力控制方法抑制人手姿势震颤的行为和有效方法。提出方法的主要优点包括;其简单的控制技术,实际上适用于实时,因为计算负担较小,额外的鲁棒性功能该方法生成。来自帕金森病患者的实际震颤数据通过人工振动激励器验证,以研究基于机电一体化方法的震颤抑制技术,其中将具有主动力控制(AFC)策略的比例衍生物(PD)施加到四度 - 自由(4-DOF)手模型。使用轻量级加速度计和激光位移传感器进行验证目的,捕获和记录人手模型上的加速度和位移动力响应。结果可以被视为原始数据,可用于进一步分析人类震颤的分析,特别是对于帕金森病患者,这可以用于帮助开发设计和开发的策略抖动抑制装置。压电致动器用作基于AFC的系统内的主要活性元件,用于补偿扰动。仿真结果表明,与传统PD对应相比,所提出的基于AFC的方案非常坚固。

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