E3D

Author:

Arabi Abul Al1ORCID,Wang Xue2ORCID,Zhang Yang2ORCID,Kim Jeeeun1ORCID

Affiliation:

1. HCIed Lab, Texas A&M University, College Station, Texas, USA

2. HiLab, University of California, Los Angeles, California, USA

Abstract

The increase of distributed embedded systems has enabled pervasive sensing, actuation, and information displays across buildings and surrounding environments, yet also entreats huge cost expenditure for energy and human labor for maintenance. Our daily interactions, from opening a window to closing a drawer to twisting a doorknob, are great potential sources of energy but are often neglected. Existing commercial devices to harvest energy from these ambient sources are unaffordable, and DIY solutions are left with inaccessibility for non-experts preventing fully imbuing daily innovations in end-users. We present E3D, an end-to-end fabrication toolkit to customize self-powered smart devices at low cost. We contribute to a taxonomy of everyday kinetic activities that are potential sources of energy, a library of parametric mechanisms to harvest energy from manual operations of kinetic objects, and a holistic design system for end-user developers to capture design requirements by demonstrations then customize augmentation devices to harvest energy that meets unique lifestyle.

Funder

National Science Foundation

Publisher

Association for Computing Machinery (ACM)

Subject

Computer Networks and Communications,Hardware and Architecture,Human-Computer Interaction

Reference87 articles.

1. Journal of Physics: Conference Series;Adamski Krzysztof

2. Modelling of Electromagnetic Energy Harvester with Rotational Pendulum Using Mechanical Vibrations to Scavenge Electrical Energy

3. Mobiot: Augmenting Everyday Objects into Moving IoT Devices Using 3D Printed Attachments Generated by Demonstration

4. Nivedita Arora , Ali Mirzazadeh , Injoo Moon , Charles Ramey , Yuhui Zhao , Daniela C Rodriguez , Gregory D Abowd , and Thad Starner . 2021 . MARS: Nano-Power Battery-free Wireless Interfaces for Touch , Swipe and Speech Input. In The 34th Annual ACM Symposium on User Interface Software and Technology. 1305--1325 . Nivedita Arora, Ali Mirzazadeh, Injoo Moon, Charles Ramey, Yuhui Zhao, Daniela C Rodriguez, Gregory D Abowd, and Thad Starner. 2021. MARS: Nano-Power Battery-free Wireless Interfaces for Touch, Swipe and Speech Input. In The 34th Annual ACM Symposium on User Interface Software and Technology. 1305--1325.

5. Towards Augmented Fabrication

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