Chun-Ting Lin
National Chiao Tung University
175 Papers
1.4K Citations
Chun-Ting Lin is an academic researcher from National Chiao Tung University. The author has contributed to research in topics: Radio over fiber & Orthogonal frequency-division multiplexing. The author has an hindex of 26, co-authored 170 publications.
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Papers
Performance Comparison of OFDM Signal and CAP Signal Over High Capacity RGB-LED-Based WDM Visible Light Communication
TL;DR: Compared with OFDM, the CAP scheme shows competitive performance and provides an alternative spectrally efficient modulation for next generation optical wireless networks.
189
Hybrid Optical Access Network Integrating Fiber-to-the-Home and Radio-Over-Fiber Systems
Chun-Ting Lin,Jyehong Chen,Peng-Chun Peng,Cheng-Feng Peng,Wei-Ren Peng,Bi-Shiou Chiou,Sien Chi,Sien Chi +7 more
TL;DR: In this article, the authors demonstrate simultaneous generation and transmission of a wired-line BB signal and a wireless RF signal on a single wavelength, using one external modulator, and demonstrate that the hybrid signals transmitted over standard single-mode fiber (SSMF) do not suffer from periodic performance fading due to fiber dispersion.
Optical Millimeter-Wave Signal Generation Using Frequency Quadrupling Technique and No Optical Filtering
TL;DR: In this article, a frequency quadrupling system using a single integrated Mach-Zehnder modulator without a narrowband optical filter was proposed to remove undesired optical sidebands.
Optical Millimeter-Wave Signal Generation Via Frequency 12-Tupling
TL;DR: In this paper, the feasibility of optical millimeter-wave signal generation using frequency 12-tupling was demonstrated using two sixth-order optical sidebands with optical carrier and undesired harmonic distortion suppression ratios of 20 and 30 dB.
149
1.1-Gb/s White-LED-Based Visible Light Communication Employing Carrier-Less Amplitude and Phase Modulation
TL;DR: In this paper, a 1.1-Gb/s visible light communication (VLC) system employing carrierless amplitude and phase modulation (CAP) and a commercially available phosphorescent white light emitting diode (LED) was demonstrated.