Weight Stacking Analysis of Delayless Subband Adaptive Algorithms for fMRI Active Noise Cancellation

A. Milani, G. Kannan, I. Panahi, R. Briggs, K. Gopinath
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引用次数: 9

Abstract

High level acoustic noise in fMRI scanners is a source of concern to patients and health care providers. Active noise control systems employing delayless subband adaptive filters have been shown effective in fMRI acoustic noise reduction [3] [4]. In this method [5], adaptive filtering is done in subbands and the subband weights are stacked together to construct the fullband filter weights. There are two types of stacking methods called FFT and FFT-2. These stacking methods introduce distortion which limit the noise reduction level. In this paper, we model the distortion and analyze the effect of distortion when different adaptive schemes (nLMS, APA, RLS) are used. This analysis helps in selecting the appropriate adaptive scheme and determining the optimum number of subbands.
fMRI主动降噪的无延迟子带自适应算法的权重叠加分析
功能磁共振成像扫描仪中的高水平噪声是患者和卫生保健提供者关注的一个来源。采用无延迟子带自适应滤波器的主动噪声控制系统在fMRI降噪方面已被证明是有效的[3][4]。该方法[5]在子带中进行自适应滤波,将子带权重叠加在一起构成全带滤波器权重。有两种类型的堆叠方法称为FFT和FFT-2。这些叠加方法引入了失真,限制了降噪水平。本文对不同自适应方案(nLMS、APA、RLS)下的畸变进行了建模,并分析了畸变的影响。这种分析有助于选择合适的自适应方案和确定最优子带数。
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