Session Details

[WP-B]Poster Session 2

Wed. Jul 2, 2025 4:00 PM - 5:30 PM JST
Wed. Jul 2, 2025 7:00 AM - 8:30 AM UTC
Poster Session-B (1F Main Hall)

[WP-B-1]An RSOP Monitoring Prototype Based on Improved HHT Algorithm

Sitong Xiao1, Lixia Xi1, Yao Xie1, Wanxin Zhao1, Linan Shan1, Yangan Zhang1, ○Xiaoguang Zhang1 (1. Beijing University of Posts and Telecommunications (China))
Comment()

[WP-B-2]Amplitude Mismatch-Based Imbalanced Mach-Zehnder Modulator for Fading Suppression in O-band 400 G PAM-4 CWDM4 Direct Detection System

○Limin Rong1, Weihao Ni1, Wei Wang1, Fan Li1 (1. Sun Yat-sen University (China))
Comment()

[WP-B-3]Quantization Noise Free Channel Equalization for Low-Oversampled Quantization Noise Shaping in DMT Signal Transmission

○Kaiyang Dong1, Meiqi Li1, Hong Wang1, Fan Li1 (1. Sun Yat-sen University (China))
Comment()

[WP-B-4]Closed-Form Analytical SRS model in Ultra-Broadband S+C+L WDM Systems via Geometric Acute Triangle Estimation

○Hong Liu1,2, Dongchen Zhang1,2, Baoluo Yan1,2, Hongyan Zhou3, Zhaolong Liao3, Jun wu3, Lei Zhang3, kezhi qiao1,2, hongbing zou1,2, zhiyong zhao1,2, chenwei zhang1,2, hu shi1,2 (1. WDM system department of wireline product R&D institute, ZTE Corp (China), 2. State Key Laboratory of Mobile Network and Mobile Multimedia Technology (China), 3. State Key Laboratory of Optical Fiber and Cable Manufacture Technology, Yangtze Optical Fibre and Cable Joint Stock Limited Company (China))
Comment()

[WP-B-5]Verification and Evaluation of Multi-path Interference Penalty in S+C+L Band Real Time Transmission over G.654.E Fiber

○Zhang dong chen1,5, Zou Hongqiang2, Dai Guangchong3, Zhai Rui3, Zhou Hongyan4, Liu Hong1,5, Yan Baoluo1,5, Wu Jun4, Liu Da2, Liao Zhaolong4, Luo Jun4, Wang Ruichun4, Ye Bing1,5, Qiao Kezhi1,5, Zou Hongbing1,5, Liu Yangguang1,5, Shi Hu1,5 (1. WDM system department of wireline product R&D institute (China), 2. China Mobile Communications Corporation Group Co., Ltd. (China), 3. China Mobile Communications Group Design Institute Co., Ltd. (China), 4. State Key Laboratory of Optical Fiber and Cable Manufacture Technology, Yangtze Optical Fibre and Cable Joint Stock Limited Company (China), 5. State Key Laboratory of Mobile Network and Mobile Multimedia Technology (China))
Comment()

[WP-B-6]Experimental Verification of Physical Layer Key Generation and Distribution Based on End-to-End Error Vector Phase

○Yanwen Zhu1, Yuang Li1, Xu Zhang1, Yi Huang1, Huibin Zhang1, Yixin Wang1, Jie Zhang1 (1. Beijing University of Posts and Telecommunications, Beijing (China))
Comment()

[WP-B-7]Performance Analysis of NOMA in SiPM-based VLC Systems

Feiyu Jiao1,2, Yansong Du1, Yuting Zhou1, Jingtong Yao1, Qiang Jin1, Bangyao Wang1, Zhancong Xu1, Juntian Qu1, ○Xun Guan1 (1. Tsinghua University (China), 2. Peng Cheng Lab (China))
Comment()

[WP-B-8]Optical Twin-SSB Detection Scheme Using Single Homodyne Receiver and FDE-Based Digital Signal Processing

○Jun Yokoyama1, Shoma Kanaya1, Kodai Watanabe1, Kai Ikuta1, Moriya Nakamura1 (1. Meiji University (Japan))
Comment()

[WP-B-9]Delay Characteristics of Reservoir-Computing-Based Nonlinear Equalizer with Tapped Delay Line for Optical Nonlinearity Compensation

○Tsuyoshi Yamada1, Kai Ikuta1, Yuta Ito1, Soya Shimomura1, Takumi Yamamoto1, Shunya Uchide1, Moriya Nakamura1 (1. Meiji University (Japan))
Comment()

[WP-B-10]Non-Orthogonal Multiple Access (NOMA) Based Optical Beam Steerable and Dividable Optical Wireless Communication Using Spatial Light Modulator (SLM)

○Yu-Han Lin1, Yin-He Jian1, Chi-Wai Chow1, Chien-Hung Yeh2, Yu-Heng Hong3, Hao-Chung Kuo3 (1. National Yang Ming Chiao Tung University (Taiwan), 2. Feng Chia University (Taiwan), 3. Hon Hai Research Institute (Taiwan))
Comment()

[WP-B-11]Activation-Function-Dependent Characteristics of Complex-Valued Reservoir-Computing-Based Nonlinear Equalizer for Fiber-Optic Nonlinearity Compensation

○Takumi Yamamoto1, Kai Ikuta1, Yuta Ito1, Tsuyoshi Yamada1, Shunya Uchide1, Soya Shimomura1, Moriya Nakamura1 (1. Meiji University (Japan))
Comment()

[WP-B-12]Adaptive Post-Equalizer with Extended Kalman Filtering for Equalization-Enhanced Phase Noise Compensation

○Jiahao Chen1, Yaojun Qiao1 (1. Beijing University of Posts and Telecommunications (China))
Comment()

[WP-B-13]Fast Digital Coherent Detection in Optical Communications Enabled by Quaternion Operations

○Kizuku Ochiri1, Kai Ikuta1, Satoshi Shimizu2, Hideaki Furukawa2, Moriya Nakamura1 (1. Meiji University (Japan), 2. National Institute of Information and Communications Technology (NICT) (Japan))
Comment()

[WP-B-14]Investigation of Real-time Multiplication using an Optical Multilevel Coherent Modulator

Shumpei Kinoshita1, ○Qingchuan Huang1, Tetsuya Kawanishi1,2 (1. Waseda University (Japan), 2. National Institute of Information and Communications Technology (Japan))
Comment()

[WP-B-15]Stability of Outdoor MMF Transmission up to 20 GHz for Inter-Building Network

Chumphon Kaewmalee1, Nutwipa Pinkhumpee1, Tanet Jitsanthea1, Sitthichok Nakprasert1, ○Panus Kowatcharakul1, UKRIT MANKONG1, Keizo Inagaki2, Tetsuya Kawanishi3 (1. CHIANG MAI UNIVERSITY (Thailand), 2. National Institute of Information and Communications Technology (Japan), 3. Waseda University (Japan))
Comment()

[WP-B-16]An Adaptive Control System for Satellite-Ground Laser Communication Based on Integrated Sensing and Communication

○Mingyuan Wu1, Hui Yang1, Wenxin Liu1, Qiuyan Yao1, Jie Zhang1, Mohamed Cheriet2 (1. StateKey Laboratory of Information Photonics and Optical Communications,Beijing University of Posts and Telecommunications (China), 2. Synchromedia Laboratory for Multimedia Communication in Telepresence,Synchromedia Laboratory for Multimedia Communication in Telepresence (Canada))
Comment()

[WP-B-18]Deep-learning-assisted Turbulence-resistant 1024-ary OAM-SK UOWC

○Lin Weiqing1,2, Deng Dongmei1,2 (1. South China Normal University (China), 2. School of Optoelectronic Science and Engineering (China))
Comment()

[WP-B-19]Robustness Evaluation of Coherence Shift-keying Scheme in Complex Underwater Channels

○Yanghong Li1, Dongmei Deng1 (1. South China Normal University (China))
Comment()

[WP-B-20]Dispersion Compensation Characteristics of Equalizers Using Complex-Valued Reservoir Computing for Optical Fiber Transmission

○Shunya Uchide1, Soya Shimomura1, Takumi Yamamoto1, Tsuyoshi Yamada1, Yuta Ito1, Kai Ikuta1, Takahide Sakamoto2, Naokatsu Yamamoto2, Moriya Nakamura1 (1. Meiji University (Japan), 2. National Institute of Information and Communications Technology (NICT) (Japan))
Comment()

[WP-B-21]FEC-assist Decision-Directed Equalization for Bandwidth-limited Optical Interconnection

○Xuanwei Liu1, Yuyao Wen1, Junyuan Song1, Shaonan Liu1, Jun Ming1, Hailian He1, Mujia Mu1, Ze Dong1 (1. Beijing Institute of Technology (China))
Comment()

[WP-B-22]An Optical Localization System Based on Encoding Angle of Departure

○Lev Azarkh1, Jean-Paul Linnartz1, Hans-Jürgen Hartmann1 (1. Eindhoven University of Technology (Netherlands))
Comment()

[WP-B-23]Concatenated Multi-level Coded Four-dimensional Modulation for Short-reach Coherent Optical Transmission

○wen yuyao1, ming jun1, liu shaonan1, dong ze1 (1. Beijing Institute of Technology (China))
Comment()

[WP-B-24]Frequency Domain Joint Monitoring of DGD and PDL in Optical Coherent Communication Systems Using CAZAC Sequences

Linsheng Fan1, Gao Ye1,2, Zhongliang Sun1, Linguo Cao1, Hao Si1,2, Jianwei Tang1, Shunfeng Wang1, Fan Jiang1, Junpeng Liang1, Weisheng Liang Hu1, ○Jinlong Wei1 (1. Pengcheng Laboratory (PCL) (China), 2. South China University of Technology (China))
Comment()

[WP-B-25]Proposal of FFT-based Kramers-Kronig Receiver for FSO Communication System

○ZEHUA LI1, Amila Kariyawasam1, Shunji Kimura1 (1. Kyushu University (Japan))
Comment()

[WP-B-26]Maximum A Posteriori Probability Phase Recovery for 256-QAM Modulated Signals in Coherent Optical Communications

○Wenqiang Ma1, Shuai Liu1, Xinwei Du1, Qian Wang2, Pooi-Yuen Kam3 (1. Bejing Normal-Hong Kong Baptist University (China), 2. Zhejiang Universityof Technology (China), 3. The Chinese University of Hong Kong (Shenzhen) (China))
Comment()

[WP-B-27]Fast and Robust Preamble Design Based on OCDM Waveforms for Coherent Access Network

○Muhammad Hilmi Othman Othman1, Xing Ouyang1,2, Paul Townsend1,2 (1. Tyndall National Institute (Ireland), 2. University College Cork (Ireland))
Comment()

[WP-B-28]A Cascaded Equalizer in 256-QAM Optical Fiber Communication Systems

○Xuecheng Ren1, Taowei Jin1, Hong Lin1, Jing Zhang1, Jinjiang Li1, Kun Qiu1 (1. University of Electronic Science and Technology of China (China))
Comment()

[WP-B-29]Line-by-Line Comb Noise Measurements Using an Electro-Optic Comb Local Oscillator

○Alex Bennett1, Zun Htay1, Florian Emaury2, Andrea Pertoldi2, Benjamin Rudin2, Zhixin Liu1 (1. University College London (UK), 2. Menhir Photonics (Switzerland))
Comment()

[WP-B-30]Optimized Blind Transition Detection for Pruned Transition-Based DFE in Directly Modulated Optical Transceivers

○Benedictus Yohanes Bagus Widhianto1, Hao-Chun Tsui1, Jyehong Chen1 (1. National Yang Ming Chiao Tung University (Taiwan))
Comment()

[WP-B-31]Turbulence-Resilient Visible Light Communication System Utilizing NLTCP Coding and Polarization Multiplexing Reception

○Zhuoran Hu1, Xiangdong Zhang1, Zhe Feng1, Zhiwu Chen1, Zengyi Xu1, Nan Chi1 (1. Fudan University (China))
Comment()