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Evaluation of Analog vs. ASIC Input/Filter Stage for Multimodal Biopotential Wearable Sensor Data Acquisition

机译:多模态生物电势可穿戴传感器数据采集的模拟与ASIC输入/滤波器级评估

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摘要

The current trends in wearable sensor technology suggest that, in the next decade or so, garments will commonly include some form of biometric/biopotential measurement system and will be of great value for gathering ambulatory metadata for remote diagnosis. In parallel, the introduction of new powerful mixed-signal devices will enhance the possibility of garments including cost-effective biopotential measurements, over the classical analog signal conditioning configurations. This paper presents the use of a recently introduced ASIC device (ADS1298) for measuring ECG, EEG and EMG data, towards developing a multimodal biopotential measurement system. Two programmable analog filter configurations are tested for comparison. The results show that adjusting the analog filters to accommodate different biopotentials is an unfeasible task in comparison with the ASIC device, which proved useful for measuring common biopotentials: ECG, EMG and EEG, and thus is more suitable for wearable sensor applications.
机译:可穿戴式传感器技术的当前趋势表明,在未来十年左右的时间里,服装通常将包括某种形式的生物特征/生物电势测量系统,并且对于收集动态元数据以进行远程诊断具有重要价值。同时,与传统的模拟信号调理配置相比,新型功能强大的混合信号设备的推出将增加包括成本有效的生物电势测量在内的服装可能性。本文介绍了使用最新推出的ASIC器件(ADS1298)来测量ECG,EEG和EMG数据,以开发多峰生物电势测量系统。测试了两种可编程模拟滤波器配置以进行比较。结果表明,与ASIC器件相比,调节模拟滤波器以适应不同的生物电势是一项不可行的任务,事实证明,该器件可用于测量常见的生物电势:ECG,EMG和EEG,因此更适合可穿戴传感器应用。

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