软件部署
能量收集
计算机科学
微生物燃料电池
供应
可再生能源
无线
稳健性(进化)
系统工程
环境科学
工程类
电气工程
功率(物理)
电信
发电
软件工程
物理
基因
化学
量子力学
生物化学
作者
B. Yen,Laura Jaliff,Louis Alberto Gutierrez,Philothei Sahinidis,Seldon E. Bernstein,John F. Madden,Stuart G Taylor,Colleen Josephson,Pat Pannuto,Weitao Shuai,George Wells,Nivedita Arora,Josiah Hester
出处
期刊:Proceedings of the ACM on interactive, mobile, wearable and ubiquitous technologies
[Association for Computing Machinery]
日期:2023-12-19
卷期号:7 (4): 1-40
摘要
Human-caused climate degradation and the explosion of electronic waste have pushed the computing community to explore fundamental alternatives to the current battery-powered, over-provisioned ubiquitous computing devices that need constant replacement and recharging. Soil Microbial Fuel Cells (SMFCs) offer promise as a renewable energy source that is biocompatible and viable in difficult environments where traditional batteries and solar panels fall short. However, SMFC development is in its infancy, and challenges like robustness to environmental factors and low power output stymie efforts to implement real-world applications in terrestrial environments. This work details a 2-year iterative process that uncovers barriers to practical SMFC design for powering electronics, which we address through a mechanistic understanding of SMFC theory from the literature. We present nine months of deployment data gathered from four SMFC experiments exploring cell geometries, resulting in an improved SMFC that generates power across a wider soil moisture range. From these experiments, we extracted key lessons and a testing framework, assessed SMFC's field performance, contextualized improvements with emerging and existing computing systems, and demonstrated the improved SMFC powering a wireless sensor for soil moisture and touch sensing. We contribute our data, methodology, and designs to establish the foundation for a sustainable, soil-powered future.
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