Minimization of Base-Line Drift Interference from ECG Signal Using FPGA Based Adaptive Filter

P. Bhaskar, A. Kasture
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引用次数: 5

Abstract

Baseline wander noise removal from Electrocardiogram (ECG) signal is very complex problem. In ECG signal baseline wander noise distorts the low frequency segments. The low frequency segment in ECG is ST segment. Heart attack related information is retrained from ST segment, so it is very necessary to have a noise free ECG signal. This paper presents development and implementation of architecture for a LMS based Adaptive filter using Spartan 3s400pq208-4 board and Xilinx system Generator (XSG) software, to minimize the Baseline wander noise (0.15 to 0.3Hz) from Electrocardiogram (ECG) signal. The signals under experiment are retrieved from MIT-BIH database and are added with Baseline wander noise. Efficient removal of Baseline wander noise is verified and observations are noted to get desirable SNR. This research work is carried out by using FPGA for adaptive filter using LMS Algorithm to remove Baseline wander noise to prevent low frequency component of ECG signal.
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基于FPGA的自适应滤波器最小化心电信号的基线漂移干扰
心电信号的基线漂移噪声去除是一个非常复杂的问题。在心电信号基线中,漂移噪声会使低频部分失真。心电的低频段是ST段。心梗相关信息从ST段进行再训练,因此获得无噪声的心电信号是非常必要的。本文利用Spartan 3s400pq208-4板和Xilinx system Generator (XSG)软件开发和实现了基于LMS的自适应滤波器架构,以最大限度地减少心电图(ECG)信号的基线漂移噪声(0.15至0.3Hz)。实验信号从MIT-BIH数据库中检索,并加入基线漫游噪声。验证了基线漫游噪声的有效去除,并记录了观测结果以获得理想的信噪比。本研究工作是利用FPGA进行自适应滤波,利用LMS算法去除基线漂移噪声,防止心电信号的低频成分。
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