Yang Liu

Orcid: 0000-0003-3240-2875

Affiliations:
  • Philips Electronics Ltd., Hong Kong
  • Chinese University of Hong Kong, Department of Electronic Engineering, Hong Kong (PhD 2007)


According to our database1, Yang Liu authored at least 29 papers between 2008 and 2023.

Collaborative distances:
  • Dijkstra number2 of five.
  • Erdős number3 of four.

Timeline

Legend:

Book 
In proceedings 
Article 
PhD thesis 
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Links

Online presence:

On csauthors.net:

Bibliography

2023
Design Consideration, Numerical and Experimental Analyses of Mode-Division-Multiplexed (MDM) Silicon Photonics Integrated Circuit with Sharp Bends.
Sensors, March, 2023

Wideband and Channel Switchable Mode Division Multiplexing (MDM) Optical Power Divider Supporting 7.682 Tbit/s for On-Chip Optical Interconnects.
Sensors, January, 2023

Bi-Directional Free-Space Visible Light Communication Supporting Multiple Moveable Clients Using Light Diffusing Optical Fiber.
Sensors, 2023

Optical Beam Steerable and Flexible Data Rate Orthogonal Frequency Division Multiplexing Non-Orthogonal Multiple Access (OFDM-NOMA) Visible Light Communication.
Proceedings of the Optical Fiber Communications Conference and Exhibition, 2023

Lightweight Light-Diffusing Fiber Transmitter Equipped Unmanned-Aerial-Vehicle (UAV) for Large Field-of-View (FOV) Optical Wireless Communication.
Proceedings of the Optical Fiber Communications Conference and Exhibition, 2023

Free-Space Visible Light Communication with Downstream and Upstream Transmissions Supporting Multiple Moveable Receivers Using Light-Diffusing Fiber.
Proceedings of the Optical Fiber Communications Conference and Exhibition, 2023

2022
3D Visible Light-Based Indoor Positioning System Using Two-Stage Neural Network (TSNN) and Received Intensity Selective Enhancement (RISE) to Alleviate Light Non-Overlap Zones.
Sensors, 2022

Optical Beam Steerable Visible Light Communication (VLC) System Supporting Multiple Users Using RGB and Orthogonal Frequency Division Multiplexed (OFDM) Non-Orthogonal Multiple Access (NOMA).
Sensors, 2022

Wide Field-of-View (FOV) Light-Diffusing Fiber Optical Transmitter for Rolling Shutter based Optical Camera Communication (OCC).
Proceedings of the Optical Fiber Communications Conference and Exhibition, 2022

Long Short-Term Memory Neural Network to Enhance the Data Rate and Performance for Rolling Shutter Camera Based Visible Light Communication (VLC).
Proceedings of the Optical Fiber Communications Conference and Exhibition, 2022

Actively Steerable Integrated Optical Phased Array (OPA) for Optical Wireless Communication (OWC).
Proceedings of the Optical Fiber Communications Conference and Exhibition, 2022

Using Received-Signal-Strength (RSS) Pre-Processing and Convolutional Neural Network (CNN) to Enhance Position Accuracy in Visible Light Positioning (VLP).
Proceedings of the Optical Fiber Communications Conference and Exhibition, 2022

High Speed RGB Visible Light Communication (VLC) Using Digital Power-Domain Multiplexing (DPDM) of Orthogonal Frequency Division Multiplexed (OFDM) Signals.
Proceedings of the Optical Fiber Communications Conference and Exhibition, 2022

High-speed White Light Visible Light Communication (VLC) Based on Semipolar (20-21) Blue micro-Light Emitting Diode (µ-LED).
Proceedings of the Optical Fiber Communications Conference and Exhibition, 2022

2021
Using Pixel-per-bit Neural Network for Two Rolling Shutter Patterns Decoding in Optical Camera Communication (OCC).
Proceedings of the 30th Wireless and Optical Communications Conference, 2021

Using Machine Learning and Light Spatial Sequence Arrangement for Copying Positioning Unit Cell to Reduce Training Burden in Visible Light Positioning (VLP).
Proceedings of the 30th Wireless and Optical Communications Conference, 2021

Using DIALux and Regression-based Machine Learning Algorithm for Designing Indoor Visible Light Positioning (VLP) and Reducing Training Data Collection.
Proceedings of the Optical Fiber Communications Conference and Exhibition, 2021

Long Short-Term Memory Neural Network for Mitigating Transmission Impairments of 160 Gbit/s PAM4 Microring Modulation.
Proceedings of the Optical Fiber Communications Conference and Exhibition, 2021

Z-Score Averaging Neural Network and Background Content Removal for High Performance Rolling Shutter based Optical Camera Communication (OCC).
Proceedings of the Optical Fiber Communications Conference and Exhibition, 2021

4.36 Tbit/s Silicon Chip-to-Chip Transmission via Few-Mode Fiber (FMF) using 2D Sub-wavelength Grating Couplers.
Proceedings of the Optical Fiber Communications Conference and Exhibition, 2021

Embedded Orthogonal-Frequency-Division-Multiplexing (OFDM) to Color-Shift-Keying (CSK) Modulation for Laser-Diode based Visible Light Communication (VLC).
Proceedings of the Optical Fiber Communications Conference and Exhibition, 2021

3.129-Gbit/s OFDM Visible Light Communication Using Semipolar Green μ-Light Emitting Diode (μ-LED) Array.
Proceedings of the Optical Fiber Communications Conference and Exhibition, 2021

High Bandwidth Semipolar (20-21) μ-LED Serving as Photo-Receiver for Visible Light Communication.
Proceedings of the European Conference on Optical Communication, 2021

2020
Received-Signal-Strength (RSS) Based 3D Visible-Light-Positioning (VLP) System Using Kernel Ridge Regression Machine Learning Algorithm With Sigmoid Function Data Preprocessing Method.
IEEE Access, 2020

Compact Mode Division MUX/DEMUX Using Enhanced Evanescent-Wave Coupling on Silicon-on-Insulator (SOI) Platform for 11-Tbit/s Broadband Transmission.
IEEE Access, 2020

Enabling Techniques for Optical Wireless Communication Systems.
Proceedings of the Optical Fiber Communications Conference and Exhibition, 2020

3-D Indoor Visible Light Positioning (VLP) System based on Linear Regression or Kernel Ridge Regression Algorithms.
Proceedings of the IEEE Globecom Workshops, 2020

2015
A practical in-home illumination consideration to reduce data rate fluctuation in visible light communication.
IEEE Wirel. Commun., 2015

2008
Silicon Photonics Research in Hong Kong: Microresonator Devices and Optical Nonlinearities.
IEICE Trans. Electron., 2008


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