首页> 外文期刊>IEEE transactions on very large scale integration (VLSI) systems >Design and Implementation of an Ultralow-Energy FFT ASIC for Processing ECG in Cardiac Pacemakers
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Design and Implementation of an Ultralow-Energy FFT ASIC for Processing ECG in Cardiac Pacemakers

机译:用于在心脏起搏器中加工ECG的UltraLow-Energy FFT ASIC的设计与实现

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In embedded biomedical applications, spectrum analysis algorithms such as fast Fourier transform (FFT) are crucial for pattern detection and have been the focus of continued research. In deeply embedded systems such as cardiac pacemakers, FFT-based signal processing is typically computed by application-specific integrated circuit (ASIC) to achieve low-power operation. This brief proposes a data-driven design approach for an FFT ASIC solution, which exploits the limited range of data encountered by these embedded systems. The optimizations proposed in this brief use the simple concept of hashing and lookup table to effectively reduce the number of arithmetic operations required to perform the FFT of an electrocardiogram (ECG) signal. By reducing the dynamic power consumption and overall energy footprint of FFT computation, the proposed design aims to achieve longer battery life for a cardiac pacemaker. The design is synthesized using a 90-nm standard cell library, and gate level switching activity is simulated to obtain accurate power consumption results. The proposed optimizations achieved a low energy consumption of 27.72 nJ per FFT, which is 14.22% lower than a standard 128-point radix-2 FFT when tested with actual ECG data collected from PhysioNet.
机译:在嵌入式生物医学应用中,频谱分析算法如快速傅里叶变换(FFT)对于模式检测至关重要,并且是持续研究的重点。在诸如心脏起搏器的深度嵌入式系统中,基于FFT的信号处理通常由应用专用的集成电路(ASIC)计算以实现低功率操作。本简要提出了一种用于FFT ASIC解决方案的数据驱动设计方法,其利用这些嵌入式系统遇到的有限数据。本简要建议的优化使用散列和查找表的简单概念,以有效地减少执行心电图(ECG)信号FFT所需的算术运算次数。通过降低FFT计算的动态功耗和整体能量足迹,所提出的设计旨在实现心脏起搏器的更长的电池寿命。使用90nm标准单元库合成设计,并模拟栅极电平切换活动以获得精确的功耗结果。所提出的优化,每FFT的低能量消耗为27.72 NJ,其比从地质收集的实际ECG数据进行测试时比标准的128点基数-2 FFT低14.22%。

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