High-performance power spectral/bispectral estimator for biomedical signal processing applications using novel memory-based FFT processor

IF 2.2 3区 工程技术 Q3 COMPUTER SCIENCE, HARDWARE & ARCHITECTURE Integration-The Vlsi Journal Pub Date : 2024-07-20 DOI:10.1016/j.vlsi.2024.102241
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Abstract

This research paper proposes a novel robust high-performance power spectrum estimator, and bispactral power density analyzer that has outstanding capabilities in estimating noisy biomedical signal's power spectrum, and bispectrum. Biomedical signals usually are exposed to several sources of noises such as electrical noise from environmental noise from external sources, electrical equipment, and biological noise from the body. Therefore, accuracy and reliability are the most important feature of these systems in processing non-stationary biomedical signals. The proposed computationally-efficient architecture is based on a radix-8 memory-based 1024-point Blackman-Tuckey method power spectral density (PSD) estimator. The proposed nonparametric estimator uses a novel shared-resource CORDIC-Ⅱ unit to avoid multiplications in FFT computation, as well as filtering operations implemented in folded architectures. In order to merge two FFTs, the module uses bidirectional fractional delay filters to estimate half delay samples. By using modified safe-scaling, valid final output would be achieved, without any averaging operation. The proposed and competing designs are implemented on Artix-7 FPGA which is an ideal option for DSP applications. As final results demonstrate, the hardware has a remarkable capability in operating in short word-lengths which allows high-performance in low-power applications to compute the power spectrum and bicoherence of a vital signal.

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利用基于内存的新型 FFT 处理器为生物医学信号处理应用提供高性能功率谱/双谱估计器
本研究论文提出了一种新型稳健的高性能功率谱估计器和双频谱功率密度分析仪,它在估算有噪声的生物医学信号的功率谱和双频谱方面具有出色的能力。生物医学信号通常会受到多种噪声源的影响,如来自外部的环境噪声、电气设备的电气噪声和来自人体的生物噪声。因此,准确性和可靠性是这些系统处理非稳态生物医学信号的最重要特征。所提出的计算效率架构是基于radix-8内存的1024点Blackman-Tuckey方法功率谱密度(PSD)估计器。所提出的非参数估计器使用新颖的共享资源 CORDIC-Ⅱ 单元,避免了 FFT 计算中的乘法运算以及折叠式架构中的滤波操作。为了合并两个 FFT,该模块使用双向分数延迟滤波器来估计半延迟样本。通过使用修改后的安全缩放,可实现有效的最终输出,而无需任何平均操作。提议的设计和竞争设计都是在 Artix-7 FPGA 上实现的,这是 DSP 应用的理想选择。最终结果表明,该硬件具有在短字长条件下运行的出色能力,可在低功耗应用中高性能地计算重要信号的功率谱和双相干性。
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来源期刊
Integration-The Vlsi Journal
Integration-The Vlsi Journal 工程技术-工程:电子与电气
CiteScore
3.80
自引率
5.30%
发文量
107
审稿时长
6 months
期刊介绍: Integration''s aim is to cover every aspect of the VLSI area, with an emphasis on cross-fertilization between various fields of science, and the design, verification, test and applications of integrated circuits and systems, as well as closely related topics in process and device technologies. Individual issues will feature peer-reviewed tutorials and articles as well as reviews of recent publications. The intended coverage of the journal can be assessed by examining the following (non-exclusive) list of topics: Specification methods and languages; Analog/Digital Integrated Circuits and Systems; VLSI architectures; Algorithms, methods and tools for modeling, simulation, synthesis and verification of integrated circuits and systems of any complexity; Embedded systems; High-level synthesis for VLSI systems; Logic synthesis and finite automata; Testing, design-for-test and test generation algorithms; Physical design; Formal verification; Algorithms implemented in VLSI systems; Systems engineering; Heterogeneous systems.
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