High-precise multi-cell indoor visible light positioning based on machine learning for Indoor millimeter-wave/terahertz communication assistance
Yitong Li, Jianguo Yu, Naibo Zhang, Kun Deng, Jun Liu, Ruiliang Song
Yitong Li, Jianguo Yu, Naibo Zhang, Kun Deng, Jun Liu, Ruiliang Song
Manikanth Karnati, Jackson Rodrigues, Gagan Raju, Edwin Pious, Vathsala Patil, Adarsh Kudva, et al.
Also available via: IEEE Photonics Journal
Qihang Wang, Wen Zhou, Sicong Xu, Siqi Wang, Jie Zhang, Xin Lu, et al.
Photonic-assisted terahertz integrated sensing and communication (THz-ISAC) enables efficient utilization of spectral and hardware resources, yet existing research remains in the preliminary stage, suffering from limitations such as short coverage range, offline digital signal pr…
Yun-Han Chang, Chi-Wai Chow, Yu‐Heng Hong, Hao-Chung Kuo
TL;DR: This work puts forward and presents the first demonstration up to the authors’ knowledge a wide field-of-view (FOV) and bidirectional UAV-assisted OWC system using optical-camera-based under-sampled phase shift on-off keying (UPS-OOK) format.
Unmanned-aerial-vehicle (UAV)-assisted optical-wireless-communication (OWC) systems offer several advantages, including data offloading, high flexibility, high mobility, and the ability to temporarily handle unexpected data surges during catastrophic situations. However, some cha…
L. Lauro, A. Aadhi, I. Alamgir, B. Fischer, P. Dmitriev, C. Mazoukh, et al.
TL;DR: This work presents and discusses their recent work on a tunable neuromorphic photonic reservoir based on a nonlinear amplifying loop mirror and places it within the broader context of recent advances in photonic reservoir computing.
Neuromorphic photonics has emerged as a promising route for brain-inspired information processing, with optical neural networks offering a path beyond key bandwidth and energy bottlenecks of conventional electronic hardware. Within this landscape, photonic reservoir computing has…
Violeta Liuba Calin, Nicolae Tarba, Mona Mihailescu, Adrian Vasile Dumitru, Ana Lucia Asmarandei, Andrei Marian Niculae, et al.
Jaeyeong Ha, Jaehyun Park, Yang Huang
TL;DR: This paper proposes a high-reliability MIMO VLC system architecture employing spatially separated receiver units, where each unit utilizes an analog-aggregated angular diversity receiver with a multi-directional photoresistor array, and introduces a current mirror-based analog pre-conditioning circuit.
Visible light communication (VLC) has emerged as a promising technology for next-generation wireless communication systems, particularly for indoor positioning and massive Internet of Things (IoT) networks, due to its immunity to electromagnetic interference and high directivity.…