基于神经网络的手术机器人震颤消除算法

Jing Luo, Yu Li, Xiaoli Liu, Jianwen Hu, Bo Wang
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引用次数: 0

摘要

作为远程操作机器人的代表,基于远程操作的手术机器人在医疗领域得到了广泛的应用。一般来说,与传统的外科手术相比,使用手术机器人可以在控制和术后恢复方面大大保证显微手术的性能。然而,外科医生在手术过程中的生理震颤对手术机器人的性能有很大的影响。为了消除震颤信号的影响,本文提出了一种基于神经网络的算法。对于所提出的基于神经网络的方法,我们开发了一个混合小波基函数来处理可变的震颤信号。此外,该方法利用良好的非线性映射和泛化能力,不依赖于先验结构参数,可以有效地消除地震信号。为了评价所提方法的性能,利用不同频率和幅值的震颤信号,对5种不同的神经网络震颤滤波器进行了对比实验。实验结果验证了该算法能够达到抑制震颤信号处理误差的性能。可以注意到,利用所开发的基于神经网络的滤波器可以保证手术机器人的控制性能。该方法还可以作为一种滤波器,用于抑制加工过程中的振动,如微铣削中的颤振。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Neural-network-based Algorithm for Cancelling Tremor in Surgical Robots
As a representation of teleoperated robots, surgical robots based on teleoperation are widely applied in the medical field. Generally, it can greatly guarantee the performance of microsurgery in terms of control and postoperative recovery by using a surgical robot in comparison with traditional surgical operation. However, the performance of surgical robots is greatly disturbed by the physiological tremor of surgeon in the process of operation. In order to cancel the impacts of tremor signal, a neural-network-based (NN-based) algorithm is developed in this paper. For the proposed NN-based approach, we develop a hybrid wavelet basis function to deal with the variable tremor signal. Additionally, the proposed method can cancel the tremor signals based on the excellent ability of nonlinear mapping and generalization and does not rely on a priori structural parameters. In order to evaluate the performance of the proposed method, comparative experiments of five different kinds of NN-based tremor filter are performed by using tremor signals with different frequencies and amplitudes. Experimental results validated that the proposed algorithm can achieve the performance of suppressing the tremor signal of the processing error. It is can be noted that the surgical robots can ensure the control performance of the surgical robots by using the developed NN-based filter. The developed method can also be applied as a filter for suppressing vibrations of processing operations in the future, such as chatter in micro-milling.
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