用四元数加权傅立叶线性组合器建模三维地震信号

K. Adhikari, S. Tatinati, K. Veluvolu, K. Nazarpour
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引用次数: 4

摘要

生理性震颤是一种不自觉的、有节奏的身体运动,特别是手的运动。在显微外科手术中,由生理性震颤引起的手持式手术器械的振动会造成不可接受的不精确性。为了纠正这个问题,已经开发了许多基于自适应滤波的方法来模拟震颤,以从显微手术装置的尖端去除震颤。现有的地震建模算法,如加权傅立叶线性组合算法及其扩展,分别对地震信号的x、y、z维度进行独立运算。这些算法忽略了三维空间之间的动态耦合。我们假设,与现有方法相比,考虑这些耦合信息的系统可以更准确地模拟震颤。研究人员记录了5名新受试者的震颤数据,并用一种新颖的四元数加权傅立叶线性组合器(QwFLC)建模。我们将所提出的QwFLC算法与传统的wFLC算法的建模性能进行了比较。结果表明,QwFLC以提高计算复杂度为代价,将建模性能提高了约20%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modeling 3D tremor signals with a quaternion weighted Fourier Linear Combiner
Physiological tremor is an involuntary and rhythmic movement of the body specially the hands. The vibrations in hand-held surgical instruments caused by physiological tremor can cause unacceptable imprecision in microsurgery. To rectify this problem, many adaptive filtering-based methods have been developed to model the tremor to remove it from the tip of microsurgery devices. The existing tremor modeling algorithms such as the weighted Fourier Linear Combiner (wFLC) algorithm and its extensions operate on the x, y, and z dimensions of the tremor signals independently. These algorithms are blind to the dynamic couplings between the three dimensions. We hypothesized that a system that takes these coupling information into account can model the tremor with more accuracy compared to the existing methods. Tremor data was recorded from five novice subjects and modeled with a novel quaternion weighted Fourier Linear Combiner (QwFLC). We compared the modeling performance of the proposed QwFLC with that of the conventional wFLC algorithm. Results showed that QwFLC improves the modeling performance by about 20% at the cost of higher computational complexity.
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