Task Offloading and Resource Allocation Strategy Based on Deep Learning for Mobile Edge Computing. [PDF]
Yu Z, Xu X, Zhou W.
europepmc +1 more source
Pressure‐Induced Capacity Recovery and Performance Enhancements in LTO/NMC‐LCO Batteries
This work explores the effects of different pressurization methods on prismatic industrial‐grade high‐power lithium titanate oxide (LTO) batteries, both on pristine and aged cells. Continuously applied pressure of 0.3 MPa reduces capacity loss by 42% compared to unpressurized aged cells.
Ahmed Chahbaz+8 more
wiley +1 more source
Research on secure transport strategy of mobile edge computing based on deep reinforcement learning
In mobile edge computing, the process of task unloading will face security problems such as information leakage and eavesdropping. To improve the unloading efficiency of mobile edge computing system, the physical layer security transmission strategy of ...
WANG Yijun+4 more
doaj
LightEyes: A Lightweight Fundus Segmentation Network for Mobile Edge Computing. [PDF]
Guo S.
europepmc +1 more source
Follow Me at the Edge: Mobility-Aware Dynamic Service Placement for Mobile Edge Computing [PDF]
Tao Ouyang, Zhi Zhou, Xu Chen
openalex +1 more source
Analyzing Electronic Excitations and Exciton Binding Energies in Y6 Films
The Y6 molecule is used for increasing the efficiency of organic solar cells. The exciton binding energy is calculated for ensembles of Y6 molecules that are representative of the typically used films. The calculations show that the excitons typically spread out over many molecules.
Sahar Javaid Akram+2 more
wiley +1 more source
A Task Scheduling Optimization Method for Vehicles Serving as Obstacles in Mobile Edge Computing Based IoV Systems. [PDF]
Feng M, Yao H, Li J.
europepmc +1 more source
A Mobile Edge Computing-assisted video delivery architecture for wireless heterogeneous networks
Yue Li+3 more
openalex +2 more sources
UAV-Enabled Mobile Edge Computing: Offloading Optimization and Trajectory Design [PDF]
Fuhui Zhou+3 more
openalex +1 more source
Understanding the Role of Hydrogen and Oxygen in Electronic Phase Changes of Nickelates
The reversible exchange of hydrogen and oxygen in solids is key to their electronic and electro‐chemical functionality. A combination of methods is employed to study the interaction of hydrogen with a prototypical quantum material in a non‐destructive and time‐dependent manner.
Laura Guasco+12 more
wiley +1 more source