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Jhih-Heng Yan
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2020 – today
- 2024
- [c19]Li-Hsuan Chu, Yen-Lin Tung, Yong-Zen Huang, Jhih-Heng Yan, Kuang-Heng Shen:
Dynamic Wavelength Switching for Open All-Photonics Networks. NOMS 2024: 1-5 - 2023
- [c18]Shen-Chen Tsai, Jhih-Heng Yan, Kai-Ming Feng:
Enhancing NOMA performance in uplink MMW-RoF mobile fronthaul systems by using index modulation. OFC 2023: 1-3 - 2022
- [c17]Chang-Ying Lin, Jhih-Heng Yan, Kuan-Heng Chen, Kai-Ming Feng:
Polarization Crosstalk Reduction by Successive Interference Cancellation for Polarization- Tracking-Free PDM Radio over Fiber Mobile Fronthaul System. OFC 2022: 1-3 - 2021
- [c16]Yi-Hsuan Chen, Kuan-Heng Chen, Jhih-Heng Yan, The Anh Nguyen, Kai-Ming Feng, Ming-Chang M. Lee:
Integrated Tunable Sideband Suppressor for Application of Remote Optical Carrier Reuse. OFC 2021: 1-3 - [c15]Jhih-Heng Yan, Jin-Wei Hsu, Jian-Kai Huang, Yu-Yang Lin, Kai-Ming Feng:
NOMA-CoMP for 5G MMW Fiber Wireless Integration Fronthaul System with SFBC. OFC 2021: 1-3 - 2020
- [c14]Jhih-Heng Yan, Jian-Kai Huang, Yu-Yang Lin, Jin-Wei Hsu, Kai-Ming Feng:
A MMW Coordinate Multi-Point Transmission System for 5G Mobile Fronthaul Networks based on a Polarization-Tracking-Free PDM-RoF Mechanism. OFC 2020: 1-3
2010 – 2019
- 2019
- [c13]You-Wei Chen, Peng-Chun Peng, Jhih-Heng Yan, Shuyi Shen, Qi Zhou, Long Huang, Siming Liu, Rui Zhang, Kai-Ming Feng, Gee-Kung Chang:
Elastic Optical Transmission of 50 Gb/s/Lambda OFDM Based Mobile Fronthaul via DSP-Aided Sub-band Spreading. OFC 2019: 1-3 - [c12]Govind Sharan Yadav, Takehiro Tsuritani, Shohei Beppu, Hidenori Takahashi, Itsuro Morita, Kai-Ming Feng, Jhih-Heng Yan:
Dynamic complex deep Neural Network Nonlinear Equalizer for 64 QAM Long-haul Transmission Systems. OECC/PSC 2019: 1-3 - [c11]Jhih-Heng Yan, Kai-Hsiang Lin, Mengzhe Liao, Kai-Ming Feng:
Timing Synchronization Free Multi-User OFDM-RoF Uplink with Gold Sequence Multiplexing. OECC/PSC 2019: 1-3 - 2018
- [c10]Chien-Ju Chen, Jhih-Heng Yan, De-Hua Chen, Kai-Hsiang Lin, Kai-Ming Feng, Meng-Chyi Wu:
A 520-nm Green GaN LED with High Bandwidth and Low Current Density for Gigabits OFDM Data Communication. OFC 2018: 1-3 - [c9]Yu-Han Hung, Jhih-Heng Yan, Hsu-Hung Huang, Chin-Hao Tseng, Kai-Ming Feng, Sheng-Kwang Hwang:
First Demonstration of Doppler Compensation Technique Using Period-one Nonlinear Semiconductor Laser Dynamics for OFDM-RoF Coherent Detection. OFC 2018: 1-3 - [c8]Jhih-Heng Yan, Ya-Jou Cheng, Kai-Hsiang Lin, De-Hua Chen, Chien-Ju Chen, Kai-Ming Feng:
Multipath Interference Free Multi-LED Visible Light Communications with Gold Sequence Multiplexing. OFC 2018: 1-3 - [c7]Jhih-Heng Yan, Mu Xu, Hsu-Hung Huang, Mengzhe Liao, Kai-Ming Feng, Gee-Kung Chang:
A PDM based Spectral Aggregation and Cell Densification for 5G Point-to-Multipoint Mobile Fronthaul with a Polarization-tracking-free RAU Design. OFC 2018: 1-3 - 2017
- [c6]Yu-Han Hung, Jhih-Heng Yan, Kai-Ming Feng, Sheng-Kwang Hwang:
Period-one Nonlinear Semiconductor Laser Dynamics Enhanced Homodyne Detection in Photonic Millimeter-Wave Carrier Recovery for OFDM-RoF Uplinks. ECOC 2017: 1-3 - [c5]De-Hua Chen, Ya-Jou Cheng, You-Wei Chen, Jhih-Heng Yan, Kai-Ming Feng:
Phosphor-based LED visible light communication system bandwidth enhancement employing MC-CDMA. OFC 2017: 1-3 - [c4]Jhih-Heng Yan, Yu-Han Hung, Kun-Lin Shieh, Yi-Ting Liao, Sheng-Kwang Hwang, Kai-Ming Feng:
Experimental demonstration of a period-one (P1) nonlinear dynamic modulated optical OFDM signal employing to a millimeter wave (MMW) mobile fronthaul uplink. OFC 2017: 1-3 - 2016
- [j1]Mu Xu, Jhih-Heng Yan, Junwen Zhang, Feng Lu, Jing Wang, Lin Cheng, Daniel Guidotti, Gee-Kung Chang:
Bidirectional Fiber-Wireless Access Technology for 5G Mobile Spectral Aggregation and Cell Densification. JOCN 8(12): B104-B110 (2016) - 2015
- [c3]Kai-Ming Feng, Jhih-Heng Yan, You-Wei Chen, Bing-Chang Tsai:
An iterative SSBI reduction DSP for spectral efficiency enhancement in a multiband DDO-OFDM system. WOCC 2015: 53-57 - 2013
- [c2]Kai-Ming Feng, Jhih-Heng Yan, You-Wei Chen:
A simple >100-Gb/s multiband DDO-OFDM receiver for high splitting ratio long reach PON systems. ICICS 2013: 1-3 - [c1]Jhih-Heng Yan, You-Wei Chen, Kuan-Heng Shen, Kai-Ming Feng:
A 1∶128 high splitting ratio long reach PON based on a simple receiving design for ONU with 120-Gb/s double-sided multiband DDO-OFDM signal. OFC/NFOEC 2013: 1-3
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last updated on 2024-09-28 01:29 CEST by the dblp team
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