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Input-Feature Correlated Asynchronous Analog to Information Converter for ECG Monitoring

机译:用于ECG监视的具有输入特性的异步模数转换器

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This paper illustrates an architectural design of a novel variable input-feature correlated asynchronous sampling and time-encoded digitization approach for source compression and direct feature extraction from physiological signals. The complete architecture represents an analog-to-information (A2I) converter, designed for ultra-low-power mixed-signal very-large-scale integrated implementation. The device will be suitable for long-term wearable monitoring of physiological signals, such as electrocardiogram (ECG). We show representative case studies on QRS detection in an ECG signal utilizing the proposed A2I converter to prove the functionality of the design. Simulation results show large source compression in the ECG signal and more than 98% efficiency in the detection of the Q, R, and S waves for challenging ECG waveforms, all with extremely low-power and storage requirements.
机译:本文说明了一种新颖的可变输入特征相关异步采样和时间编码数字化方法的体系结构设计,该方法用于源压缩和从生理信号中直接提取特征。完整的体系结构代表了一个模数信息(A2I)转换器,专为超低功耗混合信号超大规模集成实现而设计。该设备将适合对生理信号(例如心电图(ECG))进行长期可穿戴式监视。我们展示了利用拟议的A2I转换器在ECG信号中QRS检测的代表性案例研究,以证明设计的功能。仿真结果表明,ECG信号中的信号源压缩较大,并且对于具有挑战性的ECG波形,Q,R和S波的检测效率高达98%,所有这些都具有极低的功耗和存储要求。

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