Sensing, computing, and communications for energy harvesting IoTs: A survey

D Ma, G Lan, M Hassan, W Hu… - … Surveys & Tutorials, 2019 - ieeexplore.ieee.org
With the growing number of deployments of Internet of Things (IoT) infrastructure for a wide
variety of applications, the battery maintenance has become a major limitation for the …

Internet of Things (IoT), mobile cloud, cloudlet, mobile IoT, IoT cloud, fog, mobile edge, and edge emerging computing paradigms: Disambiguation and research …

H Elazhary - Journal of network and computer applications, 2019 - Elsevier
Currently, we are experiencing a technological shift, which is expected to change the way
we program and interact with the world. Cloud computing and mobile computing are two …

The sensable city: A survey on the deployment and management for smart city monitoring

R Du, P Santi, M ** for the batteryless internet-of-things
J Hester, J Sorber - Proceedings of the 15th ACM Conference on …, 2017 - dl.acm.org
Batteryless, energy-harvesting sensing systems are critical to the Internet-of-Things (IoT)
vision and sustainable, long-lived, untethered systems. Unfortunately, develo** new …

RLMan: An energy manager based on reinforcement learning for energy harvesting wireless sensor networks

FA Aoudia, M Gautier, O Berder - IEEE Transactions on Green …, 2018 - ieeexplore.ieee.org
A promising solution for achieving autonomous wireless sensor networks is to enable each
node to harvest energy in its environment. To address the time-varying behavior of energy …

Efficient intermittent computing with differential checkpointing

S Ahmed, NA Bhatti, MH Alizai, JH Siddiqui… - Proceedings of the 20th …, 2019 - dl.acm.org
Embedded devices running on ambient energy perform computations intermittently,
depending upon energy availability. System support ensures forward progress of programs …