Power-over-Skin: Full-Body Wearables Powered By Intra-Body RF Energy
Authors
Powerful computing devices are now small enough to be easily worn on the body. However, batteries pose a major design and user experience obstacle, adding weight and volume, and generally requiring periodic device removal and recharging. In response, we developed Power-over-Skin, an approach using the human body itself to deliver power to many distributed, battery-free, worn devices. We demonstrate power delivery from on-body distances as far as from head-to-toe, with sufficient energy to power microcontrollers capable of sensing and wireless communication. We share results from a study campaign that informed our implementation, as well as experiments that validate our final system. We conclude with several demonstration devices, ranging from input controllers to longitudinal bio-sensors, which highlight the efficacy and potential of our approach.
Research Questions / Practical Problems
Question signals indexed for this paper.
- 67%
LumiWatch: On-Arm Projected Graphics and Touch Input
CHI '18· Haptic Wearables +1
- 67%
Soma-noti: Delivering Notifications Through Under Clothing Wearables
CHI '21· Haptic Wearables +1
- 67%
Next Steps for Epidermal Computing: Opportunities and Challenges for Soft On-Skin Devices
CHI '22· Haptic Wearables +1
- 67%
SkinPaper: Exploring Opportunities for Woven Paper as a Wearable Material for On-Skin Interactions
CHI '23· Haptic Wearables +1
- 67%
MoCaPose: Motion Capturing with Textile-integrated Capacitive Sensors in Loose-fitting Smart Garments
UbiComp '23· Haptic Wearables +1
- 67%
Lateralization Effects in Electrodermal Activity Data Collected Using Wearable Devices
UbiComp '24· Haptic Wearables +1
- 67%
SweatSkin: Rapidly Prototyping Sweat-Sensing On-Skin Interface Based on Microfluidics
UbiComp '24· Biosensors & Physiological Monitoring +1
- 67%
Skinergy: Machine-Embroidered Silicone-Textile Composites as On-Skin Self-Powered Input Sensors
UIST '23· Haptic Wearables +1
Based on Jaccard similarity of research subtopics & professions (≥60%)