Application-Driven Model of a PPG Sensing Modality for the Informed Design of Self-Powered, Wearable Healthcare Systems | IEEE Conference Publication | IEEE Xplore

Application-Driven Model of a PPG Sensing Modality for the Informed Design of Self-Powered, Wearable Healthcare Systems


Abstract:

The convergence of self-powered technology with on-body wearable applications creates impactful opportunities for more personalized healthcare. PPG sensing is recognized ...Show More

Abstract:

The convergence of self-powered technology with on-body wearable applications creates impactful opportunities for more personalized healthcare. PPG sensing is recognized as a primary method for recovering physiological information but remains relatively high-power compared to the available energy harvesting options in an on-body self-powered context, limiting reliability. This paper introduces a PPG sensing model based on a differential regulated cascode TIA to demonstrate the power, signaling, and circuit tradeoffs that exist for self-powered PPG operation. The model shows that body-worn μW to sub-μW self-powered PPG operation is theoretically achievable and provides insight on challenges and limitations.
Date of Conference: 12-14 October 2020
Date Added to IEEE Xplore: 28 September 2020
Print ISBN:978-1-7281-3320-1
Print ISSN: 2158-1525
Conference Location: Seville, Spain

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