A low power and smart power unit for kinetic self-sustainable wearable devices
2020 (English) In: Proceedings, Institute of Electrical and Electronics Engineers Inc. , 2020Conference paper, Published paper (Refereed)
Abstract [en]
A novel trend to achieve long-lifetime or even self-sustainable wearable devices is to exploit energy harvesting from environmental or body energy. Their power management circuits need to be carefully designed to enable a small-size energy-efficient wearable system, supporting multiple power domains ranging from mW in an active mode to nW in sleep modes. This work presents a fully configurable smart power unit suitable for kinetic energy harvesting transducers, Kinetron MGS, enabling self-sustainability for wearable devices. The proposed power management circuit hosts a low power microcontroller to manage the energy harvesting, voltage conversion from batteries, and wake-up circuits to exit low power states automatically. The source and the load power points are decoupled with multiple DC-DC converters aiming to supply loads with adaptive voltage scaling and high reliability. Experimental results using commercial micro-kinetic generators show the flexibility and efficiency of this approach: the proposed power supply unit achieves a quiescent current of 57 nA and a maximum load current of 300 mA, delivered with a harvesting efficiency of 79 %. We evaluate the proposed system with commercial kinetic energy harvesting transducer generating 1.18 mW when worn on the ankle during walking. © 2020 IEEE.
Place, publisher, year, edition, pages Institute of Electrical and Electronics Engineers Inc. , 2020.
Keywords [en]
Analog integrated circuits, DC-DC converters, Energy efficiency, Energy harvesting, Kinetic energy, Kinetics, Sustainable development, Transducers, Voltage scaling, Wearable computers, Adaptive voltage scaling, Energy efficient, Low-power microcontrollers, Power management circuits, Power supply unit, Quiescent currents, Voltage conversion, Wearable systems, Low power electronics
Identifiers URN: urn:nbn:se:miun:diva-41570 DOI: 10.1109/ICECS49266.2020.9294783 ISI: 000612696300004 Scopus ID: 2-s2.0-85099464001 ISBN: 9781728160443 (print) OAI: oai:DiVA.org:miun-41570 DiVA, id: diva2:1536180
Conference ICECS 2020 - 27th IEEE International Conference on Electronics, Circuits and Systems
2021-03-102021-03-102021-04-30 Bibliographically approved