The research on optical wireless communication (OWC) has been going on for more than two decades. Particularly, visible light communication (VLC), as a means of OWC combining …
F Chen, J Bian, J Hu, N Sun, B Yang… - … Journal of Extreme …, 2022 - iopscience.iop.org
Inorganic-based micro light-emitting diodes (microLEDs) offer more fascinating properties and unique demands in next-generation displays. However, the small size of the microLED …
As wireless communication rapidly evolves and the demand for intelligent connectivity grows, the need for precise sensing integrated with efficient communication becomes …
Z Wang, Z Wei, Y Cai, L Wang, M Li, P Liu… - … Applied Materials & …, 2021 - ACS Publications
Cesium lead halide perovskite nanocrystals have recently become emerging materials for color conversion in visible light communication (VLC) and solid-state lighting (SSL), due to …
In the context in which severe visual impairment significantly affects human life, this article emphasizes the potential of Artificial Intelligence (AI) and Visible Light Communications …
Z Xu, W Niu, Y Liu, X Lin, J Cai, J Shi, X Wang… - Opto-Electronic …, 2023 - researching.cn
Although the 5G wireless network has made significant advances, it is not enough to accommodate the rapidly rising requirement for broader bandwidth in post-5G and 6G eras …
F Xu, Z Jin, T Tao, P Tian, G Wang, X Liu… - IEEE Electron …, 2022 - ieeexplore.ieee.org
A high-speed c-plane InGaN/GaN blue micro-scale light-emitting diodes (Micro-LEDs) with a pixel diameter of, and a high− 3 dB modulation bandwidth of 1.53 GHz at the current density …
T Lu, X Lin, W Guo, CC Tu, S Liu, CJ Lin… - Opto-Electronic …, 2022 - researching.cn
The evolution of next-generation cellular networks is aimed at creating faster, more reliable solutions. Both the next-generation 6G network and the metaverse require high transmission …
A record 4.343 Gbit/s green color micro-light-emitting-diode (μ-LED) based visible-light- communication (VLC) is demonstrated. We designed and fabricated the InGaN/GaN μ-LED …