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Two-Path All-pass Based Half-Band Infinite Impulse Response Decimation Filters and the Effects of Their Non-Linear Phase Response on ECG Signal Acquisition

机译:基于两路径全通的半带无限冲激响应抽取滤波器及其非线性相位响应对ECG信号采集的影响

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摘要

This paper is based on the novel use of a very high fidelity decimation filter chain for Electrocardiogram (ECG) signal acquisition and data conversion. The multiplier-free and multi-stage structure of the proposed filters lower the power dissipation while minimizing the circuit area which are crucial design constraints to the wireless noninvasive wearable health monitoring products due to the scarce operational resources in their electronic implementation. The decimation ratio of the presented filter is 128, working in tandem with a 1-bit 3rd order Sigma Delta (ΣΔ) modulator which achieves 0.04 dB passband ripples and -74 dB stopband attenuation. The work reported here investigates the non-linear phase effects of the proposed decimation filters on the ECG signal by carrying out a comparative study after phase correction. It concludes that the enhanced phase linearity is not crucial for ECG acquisition and data conversion applications since the signal distortion of the acquired signal, due to phase non-linearity, is insignificant for both original and phase compensated filters. To the best of the authors’ knowledge, being free of signal distortion is essential as this might lead to misdiagnosis as stated in the state of the art. This article demonstrates that with theirminimal power consumption and minimal signal distortion features, the proposed decimation filters can effectively be employed in biosignal data processing units.
机译:本文基于将超高保真抽取滤波器链用于心电图(ECG)信号采集和数据转换的新颖用途。所提出的滤波器的无乘法器和多级结构在降低功耗的同时将电路面积最小化,这是无线无创可穿戴健康监测产品的关键设计约束,因为其电子实现方式中的运营资源稀缺。所提供滤波器的抽取率为128,与1位三阶Sigma Delta(ΣΔ)调制器协同工作,该调制器可实现0.04 dB的通带纹波和-74 dB的阻带​​衰减。本文报道的工作通过在相位校正后进行比较研究,研究了提出的抽取滤波器对ECG信号的非线性相位影响。结论是,增强的相位线性度对于ECG采集和数据转换应用不是至关重要的,因为由于相位非线性,所采集信号的信号失真对于原始滤波器和相位补偿滤波器均无关紧要。据作者所知,无信号失真是必不可少的,因为这可能会导致现有技术中所述的误诊。本文证明,凭借其最小的功耗和最小的信号失真功能,提出的抽取滤波器可以有效地用于生物信号数据处理单元中。

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