Design of a Low-power Compass FIR Filter for Electrocardiogram Signals Noise Removal

IF 1.3 Q3 COMPUTER SCIENCE, INFORMATION SYSTEMS
Kuang-Hao Lin, Guan-Zhou Lai, Bowen Peng, Ping-Seng Tseng
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引用次数: 0

Abstract

In recent years, electrocardiogram measuring instruments have been developing towards miniaturization, which has also promoted the development of miniaturization of circuits and low power consumption. FIR filters are suitable for filtering out noise and revealing the obvious characteristic waveforms in an electrocardiogram, but they have high power consumption. Therefore, under the premise of maintaining stable performance and the advantages of low power consumption, this paper proposed a new architecture named the compass form FIR filter. When the high order number M = 256, the power consumption of the linear phase form was 28.2112 mW, while the power consumption of the compass form FIR was 24.0749 mW. The power consumption of the compass FIR was lower than that of the linear phase form FIR, with a difference of 4.1363 mW. Therefore, the compass form FIR filter designed in this paper had the advantages of low power consumption and high filtering performance under set conditions and high order specifications.
用于心电图信号去噪的低功耗罗经FIR滤波器设计
近年来,心电图测量仪器向着小型化方向发展,这也推动了电路小型化和低功耗的发展。FIR滤波器适用于滤除噪声和显示心电图中明显的特征波形,但其功耗较高。因此,在保持性能稳定和低功耗优点的前提下,本文提出了一种新的结构,命名为罗盘型FIR滤波器。当高阶数M = 256时,线性相位形式的功耗为28.2112 mW,而罗盘形式的FIR功耗为24.0749 mW。罗盘型FIR的功耗比线性相位型FIR低,相差4.1363 mW。因此,本文设计的圆规型FIR滤波器具有功耗低、在设定条件下、高阶规格下滤波性能好的优点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
IET Networks
IET Networks COMPUTER SCIENCE, INFORMATION SYSTEMS-
CiteScore
5.00
自引率
0.00%
发文量
41
审稿时长
33 weeks
期刊介绍: IET Networks covers the fundamental developments and advancing methodologies to achieve higher performance, optimized and dependable future networks. IET Networks is particularly interested in new ideas and superior solutions to the known and arising technological development bottlenecks at all levels of networking such as topologies, protocols, routing, relaying and resource-allocation for more efficient and more reliable provision of network services. Topics include, but are not limited to: Network Architecture, Design and Planning, Network Protocol, Software, Analysis, Simulation and Experiment, Network Technologies, Applications and Services, Network Security, Operation and Management.
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