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个人资料

  • 直属机构:电子信息学院
  • 联系电话:
  • 性别:
  • 电子邮箱:yicai@suda.edu.cn
  • 专业技术职务:
  • 办公地址:苏州大学(本部)电子信息学院
  • 毕业院校:University of Maryland
  • 通讯地址:
  • 学位:博士(Ph. D.)
  • 邮编:
  • 学历:博士研究生
  • 传真:

个人简介

个人简介:个人简介:

网页http://web.suda.edu.cn/yicai

邮箱:yicai@suda.edu.cn

OSA Fellow Profile:

https://www.osa.org/en-us/awards_and_grants/fellow_members/fellow_profiles/yi_cai/

学生团建沙龙:

https://www.bilibili.com/video/BV1UH4y1P7ss/?spm_id_from=333.337.search-card.all.click&vd_source=9a3c7854ae326a9616c79c1ed7831683



蔡轶,美国马里兰大学电子工程系博士,苏州大学电子信息学院特聘教授,美国光学学会会士(OSA Fellow),国家级特聘专家,国家重点研发计划项目负责人,国家自然科学基金外国资深学者,江苏省外国特聘专家,江苏省创新团队负责人,江苏省外国专家工作室负责人。历任美国泰科海缆通讯公司前瞻研究部杰出研究员,美国华为(Futurewei)光传输部总监,美国中兴(ZTE TX)有线技术研究所主任。


具有20多年光通信领域前瞻技术研究和先进系统开发的经验积累。主要研究方向为超高速光传输技术,在应用于光传输系统的前向纠错码、数字信号处理、相干检测、芯片实现等方面进行了开拓性研究。主持研发了三代超长距海缆系统中的前向纠错码与信号处理技术,领军完成了100G、400G、800G相干系统DSP芯片算法研究。创造多项光纤传输技术领域世界纪录,在包括JLT,PTL,Optics Express等领域内顶级学术期刊和会议上发表论文150余篇,研究成果4次入选代表业界最高技术水准的国际光纤通信会议(OFC)和欧洲光通信会议(ECOC)期限后论文(Post-Deadline Paper)。受邀在包括OFC,ECOC在内的光通信领域重要国际会议上做大会报告(Tutorial)、特邀报告(Invited Talk)30余次。拥有30余项国际国内发明专利。先后当选OFC光电子系统技术委员会主席,OFC车载光纤通讯子系统技术研讨会主席,OFC光纤通信纠错码技术研讨会主席,OFC光纤传输能限研讨会主席。入选包括OFC、Photonics West、OECC、ACP等国际学术会议技术委员会委员。曾获美国泰科海缆通讯公司技术创新奖,美国泰科海缆通讯公司技术成就与贡献奖,美国国家专利局技术贡献奖。



学术兼职

· 国际光纤通信会议(OFC)光电子系统技术委员会主席

· 国际车载光纤通讯子系统技术研讨会主席

· 国际光纤通信纠错码技术研讨会主席

· 国际光纤通信高速传输技术研讨会主席

· 国际光信息与光网络大会(GOINC)光传输系统技术委员会主席

· 国际光纤通信会议(OFC)数字传输系统技术委员会委员

· 美国西部光电子会议(Photonics West),新一代光通讯技术委员会委员

· 国际光电及通信会议(OECC)传输系统技术委员会委员

· 亚洲通信与光子学国际会议(ACP)传输系统技术委员会委员

· 国际电子工程师协会(IEEE)新泽西分会电路与信号处理技术委员会委员

· 美国亚利桑那大学光通信实验室特邀顾问

· 美国光学协会/国际电子工程师协会光波导技术期刊(Journal of Lightwave Tech.)特约审稿人

· 国际电子工程师协会通信技术期刊(IEEE Transactions on Communications)特约审稿人

· 国际光电子技术通信期刊(IEEE/LEOS Photonics Technology Letters)特约审稿人

· 国际电子工程师协会通讯技术杂志(IEEE Communications Letters)特约审稿人

· 光电通讯期刊(Optics Communications)特约审稿人

· 光电子快报(Optics Express)特约审稿人


教育经历

教育经历:
  • 博士, 美国马里兰大学, 2001年5月, 通信工程
  • 硕士, 中国科学院上海技术物理研究所, 1998年7月, 信息与信号处理
  • 学士, 北京理工大学, 1992年7月, 光电工程

工作经历

工作经历:
  • 2012年-2020年, 美国ZTE TX有线技术研究所, 光通信数字信号处理(DSP)算法及芯片研发, 主任
  • 2011年-2012年, 美国Futurewei光传输部, 光通信数字信号处理(DSP)算法及芯片研发, 总监
  • 2001年-2011年, 美国SubCom海缆通讯公司前瞻技术部, 超长距超高速光纤传输技术, 杰出研究员
  • 1992年-1995年, 中原显示技术公司技术开发部, 全彩室外超大型视频显示系统, 产品研发工程师

社会职务

社会职务:社会职务:

   国际光纤通信会议(OFC)光电子系统技术委员会主席

   国际车载光纤通讯子系统技术研讨会主席

   国际光纤通信纠错码技术研讨会主席

   国际光纤通信高速传输技术研讨会主席

   国际光纤通信会议(OFC)数字传输系统技术委员会委员

   美国西部光电子会议(Photonics  West),新一代光通讯技术委员会委员

   国际光电及通信会议(OECC)传输系统技术委员会委员

   亚洲通信与光子学国际会议(ACP)传输系统技术委员会委员

   国际电子工程师协会(IEEE)新泽西分会电路与信号处理技术委员会委员

   美国亚利桑那大学光通信系统研究中心特邀顾问

    国际电子工程师协会光波导技术期刊(IEEE/OSA Journal of Lightwave Tech.)特约审稿人

   国际电子工程师协会通信技术期刊(IEEE Transactions on Communications)特约审稿人

   国际光电子技术通信期刊(IEEE/LEOS Photonics Technology Letters)特约审稿人

   国际量子电子学期刊(IEEE/LEOS Journal of Selected Topics in Quantum  Elect.)特约审稿人

   国际电子工程师协会通讯技术杂志(IEEE Communications Letters)特约审稿人

   光电通讯期刊(Optics Communications)特约审稿人

   光电子快报(Optics Express)特约审稿人

   光电子通信(Optics Letter)特约审稿人

   光网络期刊(Journal of Optical Networks)特约审稿人

   光通信与网络期刊(Journal of Optical Communications and Networking)特约审稿人


个人简介

个人简介:个人简介:

网页http://web.suda.edu.cn/yicai

邮箱:yicai@suda.edu.cn

OSA Fellow Profile:

https://www.osa.org/en-us/awards_and_grants/fellow_members/fellow_profiles/yi_cai/

学生团建沙龙:

https://www.bilibili.com/video/BV1UH4y1P7ss/?spm_id_from=333.337.search-card.all.click&vd_source=9a3c7854ae326a9616c79c1ed7831683



蔡轶,美国马里兰大学电子工程系博士,苏州大学电子信息学院特聘教授,美国光学学会会士(OSA Fellow),国家级特聘专家,国家重点研发计划项目负责人,国家自然科学基金外国资深学者,江苏省外国特聘专家,江苏省创新团队负责人,江苏省外国专家工作室负责人。历任美国泰科海缆通讯公司前瞻研究部杰出研究员,美国华为(Futurewei)光传输部总监,美国中兴(ZTE TX)有线技术研究所主任。


具有20多年光通信领域前瞻技术研究和先进系统开发的经验积累。主要研究方向为超高速光传输技术,在应用于光传输系统的前向纠错码、数字信号处理、相干检测、芯片实现等方面进行了开拓性研究。主持研发了三代超长距海缆系统中的前向纠错码与信号处理技术,领军完成了100G、400G、800G相干系统DSP芯片算法研究。创造多项光纤传输技术领域世界纪录,在包括JLT,PTL,Optics Express等领域内顶级学术期刊和会议上发表论文150余篇,研究成果4次入选代表业界最高技术水准的国际光纤通信会议(OFC)和欧洲光通信会议(ECOC)期限后论文(Post-Deadline Paper)。受邀在包括OFC,ECOC在内的光通信领域重要国际会议上做大会报告(Tutorial)、特邀报告(Invited Talk)30余次。拥有30余项国际国内发明专利。先后当选OFC光电子系统技术委员会主席,OFC车载光纤通讯子系统技术研讨会主席,OFC光纤通信纠错码技术研讨会主席,OFC光纤传输能限研讨会主席。入选包括OFC、Photonics West、OECC、ACP等国际学术会议技术委员会委员。曾获美国泰科海缆通讯公司技术创新奖,美国泰科海缆通讯公司技术成就与贡献奖,美国国家专利局技术贡献奖。



学术兼职

· 国际光纤通信会议(OFC)光电子系统技术委员会主席

· 国际车载光纤通讯子系统技术研讨会主席

· 国际光纤通信纠错码技术研讨会主席

· 国际光纤通信高速传输技术研讨会主席

· 国际光信息与光网络大会(GOINC)光传输系统技术委员会主席

· 国际光纤通信会议(OFC)数字传输系统技术委员会委员

· 美国西部光电子会议(Photonics West),新一代光通讯技术委员会委员

· 国际光电及通信会议(OECC)传输系统技术委员会委员

· 亚洲通信与光子学国际会议(ACP)传输系统技术委员会委员

· 国际电子工程师协会(IEEE)新泽西分会电路与信号处理技术委员会委员

· 美国亚利桑那大学光通信实验室特邀顾问

· 美国光学协会/国际电子工程师协会光波导技术期刊(Journal of Lightwave Tech.)特约审稿人

· 国际电子工程师协会通信技术期刊(IEEE Transactions on Communications)特约审稿人

· 国际光电子技术通信期刊(IEEE/LEOS Photonics Technology Letters)特约审稿人

· 国际电子工程师协会通讯技术杂志(IEEE Communications Letters)特约审稿人

· 光电通讯期刊(Optics Communications)特约审稿人

· 光电子快报(Optics Express)特约审稿人


社会职务

社会职务:社会职务:

   国际光纤通信会议(OFC)光电子系统技术委员会主席

   国际车载光纤通讯子系统技术研讨会主席

   国际光纤通信纠错码技术研讨会主席

   国际光纤通信高速传输技术研讨会主席

   国际光纤通信会议(OFC)数字传输系统技术委员会委员

   美国西部光电子会议(Photonics  West),新一代光通讯技术委员会委员

   国际光电及通信会议(OECC)传输系统技术委员会委员

   亚洲通信与光子学国际会议(ACP)传输系统技术委员会委员

   国际电子工程师协会(IEEE)新泽西分会电路与信号处理技术委员会委员

   美国亚利桑那大学光通信系统研究中心特邀顾问

    国际电子工程师协会光波导技术期刊(IEEE/OSA Journal of Lightwave Tech.)特约审稿人

   国际电子工程师协会通信技术期刊(IEEE Transactions on Communications)特约审稿人

   国际光电子技术通信期刊(IEEE/LEOS Photonics Technology Letters)特约审稿人

   国际量子电子学期刊(IEEE/LEOS Journal of Selected Topics in Quantum  Elect.)特约审稿人

   国际电子工程师协会通讯技术杂志(IEEE Communications Letters)特约审稿人

   光电通讯期刊(Optics Communications)特约审稿人

   光电子快报(Optics Express)特约审稿人

   光电子通信(Optics Letter)特约审稿人

   光网络期刊(Journal of Optical Networks)特约审稿人

   光通信与网络期刊(Journal of Optical Communications and Networking)特约审稿人


研究领域

研究领域:

1. 高速光通信技术

2. 数字信号处理在光通信中的应用

3. 人工智能与机器学习在光通信中的应用

4. 相干光通信算法及芯片实现

5. 光电集成电路技术

6. 模拟/数字混合信号处理技术

7. 光纤传输系统建模、仿真、实验

8. 光纤分布式传感、通感一体化技术 


开授课程

开授课程:课程教学:

科研项目

科研项目:
  • 1、国家科技部重点研发项目,负责人
  • 2、国家外国资深学者项目,负责人
  • 3、国家自然科学基金面上项目,负责人
  • 4、江苏省外国专家项目,负责人
  • 5、江苏省外国专家工作室,负责人
  • 6、苏州市外国专家工作室,负责人

论文

论文:
  • 1、Z. Tian, H. Huang, H. Xu, Y. Gong, Q. He, J. Huang, Z. Feng, Y. Wang, X. Wang, D. Zou, X. Wang, L. Sun, M. Luo, J. Zhao, G. Liu, G. Shen, and Y. Cai,"Enhanced Clock Tone Detection Using a Normalized Interpolated-Power Gardner Phase Detector for Bandwidth-Limited Optical Fiber Transmissions. "in IEEE J. Lightw. Technol., vol. 43, no. 23, pp. 10435−10446, Dec. 2025.
  • 2、Z. Tian, Z. Feng, Z. Chen, Q. He, W. Guo, D. Zou, H. Huang, L. Sun, Y. Luan, L. Mei, M. Luo, J. Zhao, G. Liu, G. Shen, and Y. Cai,"102.47Tb/s WDM Transmission in the Extended C L Band over 1260.65km of G.654.E Fiber with Hybrid Raman/EDFAs," ACP 2025, Suzhou, China, Nov. 2025.
  • 3、Z. Chen, Z. Tian, Z. Feng, D. Zou, H. Huang, L. Sun, G. Liu, and Y. Cai,"Single Pulse Assisted Front-End Response Estimation and Pre-compensation for Bandwidth-Limited Coherent Optical Communication Systems," ACP 2025, Suzhou, China, Nov. 2025.
  • 4、Z. Feng, Z. Tian, Z. Chen, D. Zou, H. Huang, and Y. Cai,"Noise-Aware Sequence Detection in Bandwidth-Limited Coherent Optical Communication Systems," ACP 2025, Suzhou, China, Nov. 2025.
  • 5、W. Li, D. Zou, Z. Lin, Z. Zhang, H. Huang, and Y. Cai,"Performance Enhanced Φ-OTDR Enabled by Frequency-Multiplexed Barker Pulse Coding," ACP 2025, Suzhou, China, Nov. 2025.
  • 6、T. Sun, Z. Tian, Q. Wang, H. Huang, D. Zou, and Y. Cai,"Iterative Demodulation and Decoding of Combined Trellis-Coded Modulation and LDPC Coding for Optical Fiber Communications," ACP 2025, Suzhou, China, Nov. 2025, pp. 1-3.
  • 7、柴旭东, 田中星, 李宛欣,等. 基于光场重建算法的低成本差分自相干检测系统[J/OL]. 光学学报, 1-13, Nov. 2025.
  • 8、夏鲁鹏, 田中星, 黄欢,等. 基于CAP调制的高频谱效率可见光通信系统中子带间干扰迭代补偿算法[J/OL]. 光学学报, 1-19, Nov. 2025.
  • 9、Z. Lin, X. Lin, W. Li, Z. Tian, X. Chai, D. Zou, W. Xie, Y. Dong, and Y. Cai,"Rapid few-shot tabular machine learning for Φ-OTDR event classification," Optics Express, vol. 33, no. 17, pp. 36646–36662, Aug. 2025.
  • 10、J. Yao, D. Zou, W.Wang, Z. Tian, Z. Feng, H. Huang, F. Li, G. Liu, G. Shen, and Y.Cai,"Partial response DFE guided ultra-low complexity FTN signaling for high spectral efficiency intra-DCI," Optics Express, vol. 33, no. 17, pp. 36199, Aug. 2025.
  • 11、Y. Wang, H. Huang, Z.Tian, D. Zou, G. Shen, and Y. Cai,"ISI-Mitigation-Based Carrier Phase Estimation for Coherent Multi-Symbol Modulated Systems," OECC/PSC 2025, Sapporo, Japan, Jul. 2025, pp. 1–4.
  • 12、D. Zou, W. Wang, Q. Sui, F. Li, and Y. Cai,"Evaluation of Capacity-Achieving Distributions for Memoryless IM-DD Fiber-Optic Channels," Journal of Lightwave Technology, vol. 43, no. 7, pp. 3118-3130, Apr. 2025.
  • 13、D. Zou, W. Wang, M. Yin, W. Ni, Z. Tian, H. Huang, F. Li, and Y. Cai,"Probabilistic Shaping for Peak Power Constrained IM-DD Systems: Perspective of Envelope Control," OFC 2025, San Francisco, USA, Apr. 2025, paper, M2G.5.
  • 14、Q. Liang, X. Lai, Z. Li, W. Sheng, L.Sun, Y. Cai, G. Shen, and G.Liu,"Optical Communications in Autonomous Driving Vehicles: Requirements,Challenges, and Opportunities," Journal of Lightwave Technology, vol. 43. no. 4, pp. 1690-1699, Feb. 2025.
  • 15、H. Huang, H. Zhang, W. Mei, J. Li, Y. Cai, A. Swindlehurst, and Z. Han,"Integrated sensing and communication under DISCO physical-layer jamming attacks," IEEE Wireless Co mmunications Letters, vol. 13, no. 11, pp. 3044-3048, Nov. 2024.
  • 16、J. Huang, Z. Tian, H. Xu, C. Zhang, Y. Gong, Q. He, M. Luo, H. Huang, L. Sun, G. N. Liu, G. Shen, and Y. Cai,"Interval-Reduced Godard Clock Recovery Algorithm for Severely Bandwidth-Limited Optical Fiber Transmission Systems," IPC 2024, Rome, Italy, Nov. 2024, pp. 1–2.
  • 17、X. Liu, C. Hu, Y. Cai, and J. Zhao,"Exponential-Memory-Polynomial-Based Nonlinear Equalizer for C-Band IM/DD Systems," IEEE Photonics Technology Letters, vol. 36, no. 21, pp. 1261-1264, Nov. 2024.
  • 18、H. Huang, L. Dai, H. Zhang, C. Zhang, Z. Tian, Y. Cai, A. Swindlehurst, and Z. Han,"DISCO might not be funky: Random intelligent reflective surface configurations that attack," IEEE Wireless Communications, vol. 31, no. 5, pp. 76-82, Oct. 2024.
  • 19、Z. Tian, H. Huang, J. Huang, H. Xu, Z. Feng, Y. Gong, Q. He, M. Luo, L. Sun, G. N. Liu, G. Shen, and Y. Cai,"Normalized-Interpolated-Power Gardner Phase Detector for Optical Fiber Transmission Systems with Severe Bandwidth Limitation," ECOC 2024, Frankfurt, Germany, Sep. 2024, pp. 886–889.
  • 20、Y. Zhang, H. Huang, H. Zhang, B. Di, W. Mei, J. Yuan, and Y. Cai,"Disco Intelligent Omni-Surface Based Fully-Passive Jamming Attacks," IEEE/CIC ICCC 2024, Hangzhou, China, Aug. 2024, pp. 1881–1886.
  • 21、H. Huang, L. Dai, H. Zhang, Z. Tian, Y. Cai, C. Zhang, A. Swindlehurst, and Z. Han,"Anti-jamming precoding against disco intelligent reflecting surfaces based fully-passive jamming attacks," IEEE Transactions on Wireless Communications, vol. 23, no. 18, pp. 9315-9329, Aug. 2024.
  • 22、W. Sheng, C. Liu, J. Xiao, L. Sun, Y. Cai, H. Fu, Q. Li, and G. Liu,"Complex-valued recurrent neural network equalizer with low complexity for a 120-Gbps 50-km optical PAM-4 IM/DD system," Optics Express, vol. 32, no. 16, pp. 27624-27634, Jul. 2024.
  • 23、K. Zhang, Z. Tian, H. Huang, H. Xu, C. Zhang, L. Sun, G. N. Liu, and Y. Cai,"Simplification of LUT-based BCJR Sequence Detection for Optical Fiber Transmissions with Correlated Multi-Symbol Modulation," OECC 2024, Melbourne, Australia, Jul. 2024, pp. 1-3.
  • 24、Z. Feng, Z. Tian, H. Xu, K. Zhang, C. Zhang, C. Jiang, H. Huang, L. Sun, X. Wang, G. Liu, Q. Zhang, F. Zhang, G. Shen, and Y. Cai,"Low-complexity MLSE for coherent optical fiber transmission systems with symbol correlation," Optics Express, vol. 32, no. 14, pp.24985-24999, Jul. 2024.
  • 25、X. Chai, Z. Tian, X. Wang, C. Jiang, H. Huang, and Y. Cai,"PD-Assisted Differential Detection and Optical Field Reconstruction for Short-Reach Optical Fiber Transmissions," OECC 2024, Melbourne, Australia, Jul. 2024, pp. 1–3.
  • 26、J. Chen, X. Lai, L. Sun, Y. Cai, G. Shen, and G. Liu,"Real-time Equalization for Bandwidth-Constrained Optical Interconnects in Intra-Vehicle Networks," OECC 2024, Melbourne, Australia, Jul. 2024.
  • 27、H. Huang, H. Zhang, Y. Cai, Y. Zhang, A L. Swindlehurst, and Z. Han,"IRS-Enhanced Anti-Jamming Precoding Against DISCO Physical Layer Jamming Attacks," ICC 2024, Denver, USA, Jun. 2024, pp. 3743–3748.
  • 28、H. Deng, W. Guo, Y. Cai, and J. Zhao,"A Robust Timing Recovery Algorithm for Faster-than-Nyquist Digital Multi-band System," OFC 2024, San Diego, USA, Mar. 2024, pp. 1–3.
  • 29、L. Zhang, L. Sun, R. Xu, J. Xiong, L. Ma, B. Chen, J. Li, Y. Cai, G. Shen, and G. N. Liu,"1.024-Tbit/s CDM-SDM Coherent PON over 10-km Weakly-Coupled MCF,"OFC 2024, San Diego, USA, Mar. 2024, paper Th1E.4.
  • 30、D. Hu, J. Cai, J. Xiong, L. Ma, B. Chen, Y. Cai, and G. Liu,"Mitigating the Strong Inter-Core Crosstalk during MCF Transmissions by Neural-Network-Equalizer-Based MIMO-DSP and Approaches for Its Simpliffcation," MDPI photonics 2024,11(3),196, Feb. 2024.
  • 31、H. Huang, Y. Zhang, H. Zhang, Y. Cai, A. Swindlehurst, and Z. Han,"Disco intelligent reflecting surfaces: Active channel aging for fully-passive jamming attack," IEEE Transactions on Wireless Communications, vol. 23, no. 1, pp. 806-819, Jan. 2024.
  • 32、L. Sun, L. Zhang, M. Mao, B. Chen, J. Xiong, L. Ma, J. Li, G. Liu, Y. Cai, Z. Li, and G. Shen,"Demonstration of an 800G CDM-SDM coherent PON utilizing weakly coupled multicore fibers with CDM tributary manipulation," Optics Letters, vol. 48, no. 24, pp. 6368-6371, Dec. 2023.
  • 33、H. Xu, Z. Tian, K. Zhang, C. Zhang, J. Huang, C. Jiang, H. Huang, X. Wang, L. Sun, G. N. Liu, and Y. Cai,"Low-Complexity Sequence Detection for Optical Fiber Transmissions with Correlated Multi-Symbol Modulation," ACP/POEM 2023, Wuhan, China, Nov. 2023, pp. 1-4.
  • 34、Z. Tian, C. Jiang, X. Chai, X. Wang, H. Huang, J. Zhou, and Y. Cai,"Advanced Recursive Algorithm Based Electronic Polarization Tracking for PDM-DQPSK Differential Detection Optical Transmission Systems," ACP/POEM 2023, Wuhan, China, Nov. 2023.
  • 35、W. Ni, F. Li, W. Wang, Z. Luo, X. Yi, Y. Cai, and Z. Li,"Low power consumption reduced state and transition MLSE in optical interconnects," Science China Information Sciences, vol. 66, 209303, Oct. 2023.
  • 36、蔡轶, 姜晨旭, 王霄洲, 王甫涵, 田中星, 孙林, 王晓玲, 刘宁, 沈纲祥, 周俊, 郝祥勇, 庞胜清. 面向中短距应用的差分自相干光纤传输系统. 光学学报, 43(15): 1506004, Aug. 2023.
  • 37、W. Wang, F. Li, D. Zou, W. Ni, Q. Sui, X. Yi, Y. Cai, and Z. Li,"Suppressed Noise Enhancement Equalization Combined with Nonlinear-MLSE Techniques for Bandwidth-limitation IM/DD System," Journal of Lightwave Technology, vol. 1, no. 1, pp. 1-9, Jul. 2023.
  • 38、Y. Cai, Z. X. Tian, H. S. Xu, H. Huang, J. Huang, X. B. Dong,"Correlated Multi-Symbol Modulation for Optical Fiber Transmissions," OECC 2023, Shanghai, China, Jul. 2023, pp. 1–5.
  • 39、C. Jiang, Y. Cai, X. Wang, Z. Tian, F. Wang, and H. Huang,"Cross-polarization error correction enhanced polarization-division-multiplexed differential detection system for optical fiber communications," OECC 2023, Shanghai, China, Jul. 2023.
  • 40、L. Sun, G. Liu, Y. Cai, and G. Shen,"Comparisons between weakly- and strongly-coupled multicore fibers for the submarine optical communications," OECC 2023, Shanghai, China, Jul. 2023.
  • 41、Z. Luo, H. He, Y. Xu, M. Xiang, Y. Cai, Y. Qin, and S. Fu,"Accelerating Transmitter Dispersion Eye Closure Quaternary Assessment by Deep Transfer Learning Technique," Journal of Lightwave Technology, vol. 41, no 13, pp. 4381-4388, Jul. 2023.
  • 42、L. Sun, Y. Cai et al.,"On the Impact of Spatial Mode Dispersion for Strongly-Coupled Multicore Fiber Submarine Transmission," OFC 2023, San Diego, USA, Mar. 2023, pp. 1–3.
  • 43、L. Sun, J. Zhang, G. Zhou, B. Chen, G. Liu, Yi Cai, Z. Li, C. Lu, and G. Shen,"Theoretical investigations of weakly- and strongly-coupled multi-core fibers for the applications of optical submarine communications under power and fiber count limits," Optics Express, vol. 31, no. 3, pp. 4615-4629, Jan. 2023.
  • 44、Z. Tian, Y. Cai, L. Sun, H. Xu, C. Xiong, M. Gao, C. Jiang, X. Dong, B. Xia, G. Liu, and G. Shen,"Improving the spectral efficiency of visible light communications by a super-Nyquist multi-band CAP modulation," Optics Letters, vol. 47, no. 23, pp. 6069−6072, Dec. 2022.
  • 45、L. Sun, G. Liu, Y. Cai, J. Du, Z. He, Z. Li, C. Lu, and G. Shen,"Mitigating the Inter-Core Crosstalk of Multicore Fiber Transmission by Orthogonal Filtering," IEEE Photonics Technology Letters. vol. 34, no. 24, pp. 1373-1376, Dec. 2022.
  • 46、L. Sun, G. Liu, Y. Cai, G. Shen, J. Zhang, Z. Li, and C. Lu,"Theoretical Analysis of Weakly-coupled Multicore Fibers' Potentials in Subsea Communications," ACP (IPOC) 2022, Shenzhen, China, Nov. 2022.
  • 47、W. Wang, D. Zou, W. Ni, Z, Li, F. Li, and Y. Cai,"Pattern-Dependent Equalization for PAM-4 IM/DD System with Severe Bandwidth Limitation," ACP (IPOC) 2022, Shenzhen, China, Nov. 2022.
  • 48、W. Ni, F. Li, M. Yin, Z. Chen, W. Wang, D. Zou, Y. Cai, Q. Sui, and Z. Li,"Decision region partition aided MLSE for O-band 65-Gbaud PAM-4 system over 40-km transmission with a severe bandwidth constraint," Optics Express, vol. 47, no.17, pp. 4387-4390, Sep. 2022.
  • 49、L. Sun, J. Xiao, Y. Cai, G. Shen, G. Liu, and C. Lu,"Complex-valued decision feedback equalizer for optical IMDD signals with adaptive manipulations in time and amplitude domains," Optics Letters, vol. 47, no. 17, pp. 4391-4394, Sep. 2022.
  • 50、L. Sun, Y. Cai, J. Zhang, G. Shen, C. Lu, and G. Liu,"Enhanced Optical IMDD Communication Through Real-Time Sensing of MZM Bias Drift," OECC/PSC 2022, Toyama, Japan, Jul. 2022.
  • 51、X. Wang, F. Li, M. Yin, Z. Luo, S. Qin, W. Wang, Y. Cai, and Z. Li,"Correlation-based transceiver in-phase/quadrature skew in-field calibration in dual-polarization coherent optical transmission system," Optics Express, vol. 30, no. 13, pp. 22712–22729, Jun. 2022.
  • 52、L. Sun, J. Xiao, Y. Cai, G. Shen, G. Liu, and C. Lu,"Low-latency and efficient retiming and equalizing scheme for a 112-Gbps bandwidth-limited optical PAM-4 system," Optics Express, vol. 30, no. 9, pp. 14565–14573, Apr. 2022.
  • 53、L. Zhang, K. Tao, W. Qian, W. Wang, J. Liang, Y. Cai, and Z. Feng,"Real-Time FPGA Investigation of Interplay Between Probabilistic Shaping and Forward Error Correction," Journal of Lightwave Technology, vol. 40, no. 5, pp. 1339–1345, Mar. 2022.
  • 54、Y. Cai, H. Chien, M. Xiang, W. Wang, F. Li, Z. Hu, M. Gao, C. Jiang, Z. Tian, H. Xu, K. Zhang, J. Shen, and J. Huang,"Combined symbol-pattern-dependent adaptive equalization and sequence detection for coherent optical fiber communications," Journal of Lightwave Technology, vol. 40, no. 5, pp. 1320–1329, Mar. 2022.
  • 55、L. Zhang, W. Wang, W. Qian, K. Tao, and Y. Cai,"Real Time FPGA Investigation of Probabilistic Shaping 16QAM with HiDM and OFEC," OFC 2021, San Francisco, USA, Jun. 2021 pp. 1–3.
  • 56、Y. Cai, H. Chien, M. Xiang, Z. Hu and M. Gao,"Adaptive Pattern-Dependent Equalization for Coherent Optical Fiber Communication Systems," OFC 2021, San Francisco, USA, Jun. 2021 pp. 1–3.
  • 57、J. Liang, W. Wang, M. Xiang, and Y. Cai,"Receiver IQ Imbalance and Skew Compensation ByFrequency Domain Widely Linear Equalizer," ACP/IPOC 2020, Beijing, China, Oct. 2020.
  • 58、Y. Cai, W. M. Wang, K. Tao, W. F. Qian, M. Lei, and S. H. Zhang,"FEC Implementation and Options for Short-Reach Optical Transmission," 2020 IEEE Photonics Society Summer Topicals Meeting Series, Cabo San Lucas, Mexico, Jul. 2020, pp. 1–2.
  • 59、W. Wang, K. Tao, W. Qian, Y. Cai, M. Lei, X. Zhou, H. Chien, J. Liang, S. Zhang, and Z. Liu,"Real-Time FPGA Verification for 25G-PON and 50G-PON LDPC Codes," CLEO 2020, San Jose, USA, May. 2020, pp. 1–2.
  • 60、L. Zhang, H. Chien, Y. Cai, W. Wang, W. Zhou, and Z. Hu,"Four-dimensional 8-Bit modulation with KP4 non-binary FEC for short-reach coherent optical transmissions," OFC 2020, San Diego, USA, Mar. 2020, pp. 1–3.
  • 61、Y. Cai, W. Wang, W. Qian, K. Tao, M. Lei, J. Yin, X. Zhou, S. Zhang, and H. Chien,"FPGA Assisted Design of Concatenated LDPC Convolutional and BCH Codes for Optical Fiber Communications," ECOC 2019, Dublin, Ireland, Sep. 2019, pp. 1–4.
  • 62、H. Chien, J. Yu, Y. Cai, B. Zhu, X. Xiao, Y. Xia, X. Wei, T. Wang, and Y. Chen,"Approaching Terabits per Carrier Metro-Regional Transmission Using Beyond-100GBd Coherent Optics with Propabilistically Shaped DP-64QAM Modulation," Journal of Lightwave Technology, vol. 37, no. 8, pp. 1751-1755, Apr. 2019.
  • 63、H. Chien, J. Yu, B. Zhu, J. Shi, Y. Cai, X. Xiao, Y. Xia, X. Wei, and Y. Chen,"Probabilistically shaped DP-64QAM coherent optics at 105 GBd achieving 900 Gbps net bit rate per carrier over 800 km transmission," ECOC 2018, Rome, Italy, Sep. 2018, pp. 1-3.
  • 64、Y. Cai, W. Wang, W. Qian, J. Xing, K. Tao, J. Yin, S. Zhang, M. Lei, E. Sun,K. Yang, H. Chien, Q. Liao, and H. Chen,"FPGA Investigation on Error-Floor Performance of a Concatenated Staircase and Hamming Code for 400G-ZR Forward Error Correction," OFC 2018, San Diego, USA, Mar. 2018, pp. 1–3.
  • 65、J. Shi, J. Zhang, N. Chi, Y. Cai, X. Li, Y. Zhang, Q. Zhang, and J. Yu,"Probabilistically Shaped 1024-QAM OFDM Transmission in an IM-DD System," OFC 2018, San Diego, USA, Mar. 2018, paper W2A.44.
  • 66、J. Yu, J. Zhang, K. Wang, B. Zhu, S. Dzioba, H. Chien, X. Li, Y. Cai, X. Xiao, J. Shi, Y. Chen, Y. Xia, and S. Shi,"8×506-Gb/s 16QAM WDM Signal Coherent Transmission over 6000-km Enabled by PS and HB-CDM," OFC 2018, San Diego, USA, Mar. 2018, paper M2C.3.
  • 67、H. Chien, J. Yu, Y. Cai, J Zhang, X. Li, and X. Xiao,"400G-over-80km Connections Powered by Probabilistically Shaped PM-256QAM Wavelengths at 34 GBaud," ECOC 2017, Gothenburg, Sweden, Sep. 2017, pp. 1–3.
  • 68、H. Chien, J. Zhang, J. Yu, and Y. Cai,"Single-carrier 400G PM-256QAM Generation at 34 GBaud Trading off Bandwidth Constraints and Coding Overheads," OFC 2017, Los Angeles, USA, Mar. 2017, paper. W1J-3.
  • 69、C. Lin, I. Djordjevic, W. Wang, and Y. Cai,"Nonbinary LDPC BICM for Next-Generation High-Speed Optical Transmission Systems," ZTE Communications, vol. 15, no. 1, pp. 61-66, Feb. 2017.
  • 70、Z. Jia, H. Chien, Y. Cai, J. Yu, B. Zhu, C. Ge, T. Wang, S. Shi, H. Wang, Y. Xia, and Y. Chen,"Experimental demonstration of PDM-32QAM single-carrier 400G over 1200-km transmission enabled by training-assisted pre-equalization and look-up table," OFC 2016, Anaheim, USA, Mar. 2016, pp. 1–3.
  • 71、C. Lin, I. Djordjevic, Z. Jia, W. Wang, and Y. Cai,"Tandem-turbo-product nonbinary BICM for next-generation high-speed optical transmission systems," OFC 2016, Anaheim, USA, Mar. 2016, paper, Th1D.5.
  • 72、Y. Cai, Z. Jia, H. Chien, C. Lin, J. Yu, W. Wang, and I. Djordjevic,"Turbo Product Coded Modulation and Error Flare Control for Optical Fiber Transmission Systems," ACP 2015, Hongkong, China, Nov. 2015, paper AS3D.1.
  • 73、J. Yu, J. Zhang, Z. Jia, X. Li, H. Chien, Y. Cai, F. Li, Y. Wang, and X. Xiao,"Transmission of 8×128.8Gbaud single-carrier PDM-QPSK signal over 2800-km EDFA-only SMF-28 link," ECOC 2015, Valencia, Spain, Sep. 2015, pp. 1-3.
  • 74、Z. Jia, H. Chien, J. Zhang, Y. Cai, and J. Yu,"Performance Comparison of Dual-Carrier 400G with 8/16/32-QAM Modulation Formats," IEEE Photonics Technology Letters, vol. 27, no. 13, pp. 1414-1417, Jul. 2015.-
  • 75、J. Zhang, J. Yu, F. Li, H. Chien, Z. Jia, Y. Cai, X. Li, X. Xiao, Y. Fang, and Y. Wang,"Transmission of single-carrier 400G signals (515.2-Gb/s) based on 128.8-GBaud PDM QPSK over 10,130- and 6,078 km terrestrial fiber links," Optics Express, vol. 23, no. 13, pp. 16540–16545, Jun. 2015.
  • 76、Y. Cai, Z. Jia, H. C. Chien, J. Zhang and J. Yu,"Bandwidth constraining and digital signal processing for high spectral efficiency optical fiber transmissions," OECC 2015, Shanghai, China, Jun. 2015, pp. 1–3.
  • 77、Z. Jia, H. Chien, Y. Cai, J. Yu, C. Zhang, J. Li, Y. Ma, D. Shang, Q. Zhang, S. Shi, H. Wang,"Experimental demonstration of iterative post-equalization algorithm for 37.5-Gbaud PM-16QAM quad-carrier Terabit superchannel," Optics Express, vol. 23, no. 3, pp. 2157–2162, Feb. 2015.
  • 78、Z. Jia, Y. Cai, H. Chien, and J. Yu,"Performance comparison of spectrum-narrowing equalizations with maximum likelihood sequence estimation and soft-decision output," Optics Express, vol. 22, no. 5, pp. 6047–6059, Mar. 2014.
  • 79、Z. Jia, H. Chien, J. Zhang, Z. Dong, and Y. Cai,"Performance Analysis of Pre-and Post-Compensation for Bandwidth-Constrained Signal in High- Spectral-Efficiency Optical Coherent Systems," OFC/OSA 2014, San Francisco, USA, Mar. 2014.
  • 80、J. Yu, J. Zhang, Z. Dong, Z. Jia, H. Chien, Y. Cai, X. Xiao, and X. Li,"Transmission of 8 × 480-Gb/s super-Nyquist-filtering 9-QAM-like signal at 100 GHz-grid over 5000-km SMF-28 and twenty-five 100 GHz-grid ROADMs," Optics Express, vol. 21, no. 13, pp. 15686–15691, Jun. 2013.
  • 81、L. Liu, L. Li, Y. Huang, K. Cui, Q. Xiong, F. Hauske, C. Xie, and Y. Cai,"Baud-rate back-propagation for intra-channel nonlinear impairments compensation," OFC 2012, Los Angeles, USA, Mar. 2012, paper OM3A.7.
  • 82、D. Chang, F. Yu, Z. Xiao, N. Stojanovic. F. Hauske, Y. Cai, C. Xie, L. Li, X. Xu, and Q. Xiong,"LDPC Convolutional Code using Layered Decoding Algorithm for High Speed Coherent Optical Transmission," OFC 2012, Los Angeles, USA, Mar. 2012.
  • 83、L. Liu, L. Li, Y. Huang, K. Cui, Q. Xiong, F. Hauske, C. Xie, and Y. Cai,"Intrachannel Nonlinearity Compensation by Inverse Volterra Series Transfer Function," Journal of Lightwave Technology, vol. 30, no. 3, pp. 310–316, Jan. 2012.
  • 84、J. Cai, Y. Cai, C. Davidson, A. Lucero, H. Zhang, D. Foursa, O. Sinkin, W. Patterson, A. Pilipetskii, G. Mohs, and N. Bergano,"20 Tbit/s Capacity Transmission Over 6,860 km," OFC 2011, Los Angeles, USA, Mar. 2011, Postdeadline Paper PDPB4.
  • 85、H. Zhang, Y. Cai, D. Foursa, and A. Pilipetskii,"Cycle slip mitigation in POLMUX-QPSK modulation," OFC 2011, Los Angeles, USA, Mar. 2011, paper OMI4.
  • 86、D. Foursa, Y. Cai, J. Cai, C. Davidson, O. Sinkin, W. Anderson, A. Lucero, A. Pilipetskii, G. Mohs, and N. Bergano,"Coherent 40 Gb/s transmission with high spectral efficiency over transpacific distance," OFC 2011, Los Angeles, USA, Mar. 2011, paper OMI4.
  • 87、J. Cai, Y. Cai, C. Davidson, D. Foursa, A. Lucero, O. Sinkin, W. Patterson, A. Pilipetskii, G. Mohs, and N. Bergano,"Transmission of 96 × 100-Gb/s bandwidth-constrained PDM-RZ-QPSK channels with 300% spectral efficiency over 10610 km and 400% spectral efficiency over 4370 km," Journal of Lightwave Technology, vol. 29, no. 4, pp. 491–498, Feb. 2011.
  • 88、Y. Cai, J. Cai, C. Davidson, D. Foursa, A. Lucero, O. Sinkin, Y. Sun, A. Pilipetskii, G. Mohs, and N. Bergano,"Ultra-Long-Haul WDM transmission with high spectral efficiency," IEICE Transactions on Communications, vol. E94-B, no. 2, pp. 392–398, Feb. 2011.
  • 89、Y. Cai, J. X. Cai, C. R. Davidson, D. Foursa, A. Lucero, and O. Sinkin,"Achieving high spectral efficiency in long-haul transmission with pre-filtering and multi-symbol detection," ACP 2010, Shanghai, China, Dec. 2010, pp. 349–350.
  • 90、Y. Cai, J. X. Cai, C. R. Davidson, D. Foursa, A. Lucero, and O. Sinkin,"High spectral efficiency long-haul transmission with pre-filtering and maximum a posteriori probability detection," ECOC 2010, Torino, Italy, Sep. 2010, pp. 1–3.
  • 91、Y. Cai, J. Cai, A. Pilipetskii, G. Mohs, and N. Bergano,"Spectral efficiency limits of pre-filtered modulation formats," Optics Express, vol. 18, no. 19, pp. 20273–20281, Sep. 2010.
  • 92、J. Cai, Y. Cai, C. Davidson, D. Foursa, A. Lucero, O. Sinkin, W. Patterson, A. Pilipetskii, G. Mohs, and N. Bergano,"100-Gb/s undersea transmission with high spectral efficiency using pre-filtered QPSK modulation format," Chinese Optics Letters, vol. 8, no. 9, pp. 831–836, Sep. 2010.
  • 93、Y. Cai,"MAP detection for linear and nonlinear ISI mitigation in long-haul coherent detection systems," 2010 IEEE Photonics Society Summer Topicals, pp. 42–43, Playa del Carmen, Mexico, Jul. 2010.
  • 94、J. Cai, Y. Cai, C. Davidson, D. Foursa, A. Lucero, O. Sinkin, W. Patterson, A. Pilipetskii, G. Mohs, and N. Bergano,"Transmission of 96×100G pre-filtered PDM-RZ-QPSK channels with 300% spectral efficiency over 10,608km and 400% spectral efficiency over 4,368km," OFC 2010, San Diego, USA, Mar. 2010, Postdeadline Paper, PDPB10.
  • 95、Y. Cai, D. Foursa, C. Davidson, J. Cai, O. Sinkin, M. Nissov, and A. Pilipetskii,"Experimental Demonstration of Coherent MAP Detection for Nonlinearity Mitigation in Long-Haul Transmissions," OFC 2010, San Diego, USA, Mar. 2010, paper OTuE1.
  • 96、Y. Cai, D. Foursa, J. Cai, C. Davidson, O. Sinkin, A. Pilipetskii, M. Nissov, and N. Bergano,"Experimental Study on Broadband Nonlinear Phase Wandering in Coherent Detection Long-Haul Transmissions," OFC 2010, San Diego, USA, Mar. 2010, paper OTuL2.
  • 97、J. X. Cai, H. Zhang, C. R. Davidson, Y. Sun, Y. Cai, A. N. Pilipetskii, and M. Nissov,"40 GBb/s Transmission Using a Hybrid PDM Technique," OFC 2010, San Diego, USA, Mar. 2010.
  • 98、D. G. Foursa, Y. Cai, C. R. Davidson, A. Lucero, M. Mazurczyk, W. Patterson et al.,"Long-haul coherent QPSK transmission of 40G channels with 120% spectral efficiency using increased linearity dispersion map with 100km spans and EDFAs," OFC 2010, San Diego, USA, Mar. 2010.
  • 99、Y. Cai,"Coherent Detection in Long-Haul Transmission Systems," OFC 2008, San Diego, USA, Feb. 2008, pp. 1–3.
  • 100、Y. Cai and A. Pilipetskii,"Comparison of Two Carrier Phase Estimation Schemes in Optical Coherent Detection Systems," OFC 2007, Anaheim, USA, Mar. 2007, paper OMP5.
  • 101、Y. Cai,"Coherent Detection in Submarine Systems," 2007 Digest of the IEEE/LEOS Summer Topical Meetings, Jul. 2007.
  • 102、M. Nissov, Y. Cai, and J. Cai,"High Data Rate Submarine Transmission Systems: Getting to and beyond 40 Gb/s," 2007 Digest of the IEEE/LEOS Summer Topical Meetings, Jul. 2007.
  • 103、Y. Cai,"Performance Limits of FEC and Modulation Formats in Optical Fiber," LEOS 2006 19th Annual Meeting of the IEEE Lasers and Electro-Optics Society, Montreal, Canada, Oct. 2006, Invited Paper. WH1.
  • 104、J. Cai, M. Nissov, C. Davidson, W. Anderson, Y. Cai, A. Pilipetskii, D. Foursa, W. Patterson, P. Corbett, A. Lucero, and N. Bergano,"Improved Margin in Long-Haul 40 Gb/s Systems Using Bit-Synchronously Modulated RZ-DQPSK," OFC 2006, Anaheim, USA, Mar. 2006, Postdeadline Paper, PDP33.
  • 105、Y. Cai, L. Liu, A. Pilipetskii, M. Nissov, and N. Bergano,"On Performance of Coherent Phase-Shift-Keying Modulation in 40 Gb/s Long-Haul Optical Fiber Transmission Systems," OFC 2006, Anaheim, USA, Mar. 2006, paper, OThO1.
  • 106、J. Cai, M. Nissov, W. Anderson, M. Vaa, C. R. Davidson, Y. Cai et al.,"Long-haul 40 Gb/s RZ-DPSK transmission with long repeater spacing," OFC 2006, Anaheim, USA, Mar. 2006.
  • 107、W. Anderson, L. Liu, Y. Cai, J. Cai, D. Kovsh, A. Pilipetskii, M. Nissov, and N. Bergano,"Modeling 40 Gb/sec CSRZ-DPSK and RZ-DPSK trans-Atlantic Transmission with Dispersion Slope Compensation," OFC 2006, Anaheim, USA, Mar. 2006, Paper JThB1.
  • 108、J. Cai, C. Davidson, M. Nissov, H. Li, W. Anderson, Y. Cai, L. Liu, A. Pilipetskii, D. Foursa, W. Patterson, P. Corbett, A. Lucero, and N. Bergano,"Transmission of 40-Gb/s WDM signals over transoceanic distance using conventional NZ-DSF with receiver dispersion slope compensation," Journal of Lightwave Technology, vol. 24, no. 1, pp. 191–200, Jan. 2006.
  • 109、Y. Cai,"Limit on Coding and Modulation Gains in Fiber-Optic Communication Systems," WOCC 2005, Newark, USA, Apr. 2005, Invited Paper F9.3.
  • 110、J. Cai, C. Davidson, M. Nissov, H. Li, W. Anderson, Y. Cai, L. Liu, A. Pilipetskii, D. Foursa, W. Patterson, P. Corbett, A. Lucero, and N. Bergano,"Transmission of 40 Gb/s WDM signals over 6,250 km of conventional NZ-DSF with >4 dB FEC margin," OFC 2005, Anaheim, USA, Mar. 2005, Postdeadline Paper, PDP26.
  • 111、Y. Cai, and A. N. Pilipetskii,"Channel Capacity of Fiberoptic Communication Systems with Amplified Spontaneous Emission Noise," OFC/NFOEC 2005, Anaheim, USA, Mar. 2005.
  • 112、Y. Cai et al., "RZ-DPSK field trial over 13100 km of installed non-slope-matched submarine fibers," Journal of Lightwave Technology, vol. 23, no. 1, pp. 95–103, Feb. 2005.
  • 113、Y. Cai et al., "RZ-DPSK field trial over 13,100 km of installed non slope-matched submarine fibers," OFC 2004, Los Angeles, USA, Feb. 2004, Postdeadline Paper, PDP34.
  • 114、J. Li, Y. Cai, K. Narayanan, A. Lucero, A. Pilipetskii, and C. Georghiades,"On the Bit Error Rate of Product Accumulate Codes in Optical Fiber Communications," Journal of Lightwave Technology, vol. 22, no. 2, pp. 640–646, Feb. 2004.
  • 115、Y. Cai, J. M. Morris, T. Adali, and C. R. Menyuk,"On turbo code decoder performance in optical fiber communication systems with dominating ASE noise," Journal of Lightwave Technology, vol. 21, no. 3, pp. 727–734, Mar. 2003.
  • 116、J. Cai, D. Foursa, C. Davidson, Y. Cai, G. Domagala, H. Li, L. Liu, W. Patterson, A. Pilipetskii, M. Nissov, and N. Bergano,"A DWDM Demonstration of 3.73 Tb/s over 11,000 km using 373 RZ-DPSK Channels at 10 Gb/s," OFC 2003, Atlanta, USA, Mar. 2003, Postdeadline Paper, PD22.
  • 117、J. Cai, M. Nissov, C. Davidson, A. Pilipetskii, G. Mohs, H. Li, Y. Cai, E. Golovchenko, A. Lucero, D. Foursa, and N. Bergano,"Long-haul 40 Gb/s DWDM Transmission with Aggregate Capacities Exceeding 1 Tb/s," Journal of Lightwave Technology, vol. 20, no. 12, pp. 2247–2258, Dec. 2002.
  • 118、J. Cai, M. Nissov, C. Davidson, Y. Cai, A. Pilipetskii, H. Li, M. Mills, R. Mu, U. Feiste, L. Xu, A. Lucero, D. Foursa, and N. Bergano,"Transmission of Thirty-Eight 40 Gb/s Channels (>1.5 Tb/s) Over Transoceanic Distance," OFC 2002, Anaheim, USA, Mar. 2002, Postdeadline Paper, FC4.
  • 119、D. Foursa, C. Davidson, M. Nissov, M. Mills, L. Xu, J. Cai, A. Pilipetskii, Y. Cai, C. Breverman, R. Cordell, T. Carvelli, P. Corbett, H. Kidorf, and N. Bergano,"2.56 Tb/s (256x10 Gb/s) transmission over 11,000 km using hybrid Raman/EDFAs with 80 nm of continuous bandwidth," OFC 2002, Anaheim, USA, Mar. 2002, Postdeadline Paper, FC3.
  • 120、Y. Cai, T. Adali, C. R. Menyuk and J. M. Morris,"Sliding window criterion codes and concatenation scheme for mitigating timing jitter induced errors in WDM fiber transmissions," Journal of Lightwave Technology, vol 20, no. 2, pp. 201–212, Feb. 2002.

科研成果

软件著作 软件著作: 专利 专利:
  • 1、蔡轶,林哲源,谢玮霖,邹冬冬,李宛欣,张臻涛,基于分布式光纤传感的焊接质量控制系统 及控制方法,CN202511274442.X,中国发明专利,申请日期:2025.09.08.
  • 2、刘志远,许友龙,谢玮霖,张臻涛,邹冬冬,林哲源,李宛欣,蔡轶,一种光纤传感系统中基于磁吸的焊接监控方法,CN202511104283.9,中国发明专利,申请日期:2025.08.07.
  • 3、 邹冬冬,姚嘉文,蔡轶,面向高速数据中心内光互连的简化超奈奎斯特传输方法,CN202510963361.4,中国发明专利,申请日期:2025.07.14.
  • 4、刘志远,李宛欣,邹冬冬,谢玮霖,林哲源,张榛涛,蔡轶,王青松,常猛,刘芳宁,柴蕊,一种监测系统及监测方法,CN202510933299.4,中国发明专利,申请日期:2025.07.08.
  • 5、王青,蔡轶,黄欢,田中星,冯泽宇,王晶,孙田成,基于符号分组与FEC的超奈奎斯特信号迭代干扰消除方法,CN202510691397.1,中国发明专利,申请日期:2025.05.27.
  • 6、王奕天,黄欢,孙路瑶,张亚楠,邹冬冬,蔡轶,一种智能超表面辅助的未授权通信干扰方法、系统和设备,CN202510666153.8,中国发明专利,申请日期:2025.05.22.
  • 7、黄欢,孙路瑶,蔡轶,一种未授权隐蔽通信检测方法,CN202510231903.9,国发明专利,申请日期:2025.02.28.
  • 8、汪达,蔡轶,刘家胜,黄欢,邹冬冬,李宛欣,林哲源,张臻涛,田中星,一种多目标动态感知方法、装置、设备和可读存储介质,CN202510165317.9,中国发明专利,申请日期:2025.02.14.
  • 9、李宛欣,刘志远,蔡轶,邹冬冬,林哲源,黄欢,田中星,汪达,张臻涛,基于分布式超声波传感的室内定位系统,CN202411867140.9,中国发明专利,申请日期:2024.12.18.
  • 10、黄欢,张亚楠,周冉,田中星,蔡轶,基于随机配置可重构智能超表面的差分隐私方法及系统,CN202411480894.9,中国发明专利,申请日期:2024.10.23.
  • 11、田中星,许汉圣,蔡轶,黄欢,一种基于多符号查找表的盲载波相位噪声估计和补偿方法,202410919174.1,中国发明专利,申请日期:2024.07.10.
  • 12、田中星,蔡轶,夏鲁鹏,乔乐翀,黄欢,李宛欣,基于多平面显示屏组合的裸眼3D显示系统及显示方法,202410914358.9,中国发明专利,申请日期:2024.07.09.
  • 13、黄欢,周冉,张亚楠,蔡轶,一种随机配置透射反射型智能超表面的全向全无源干扰方法及系统,202410786841.3,中国发明专利,申请日期:2024.06.18.
  • 14、田中星,蔡轶,王霄洲,黄欢,许汉圣,黄姬,姜晨旭,柴旭东,周俊,一种时钟恢复方法、装置及计算机可读存储介质,202410465068.0,中国发明专利,申请日期:2024.04.18.
  • 15、蔡轶,黄姬,黄欢,田中星,许汉圣,基于奇偶符号位不同功率比的时钟恢复的通信方法及系统,CN118174836A,中国发明专利,申请日期:2024.03.11.
  • 16、黄欢,蔡轶,王袁雪,田中星,黄姬,许汉圣,冯泽宇,一种多符调制系统中基于干扰抑制的载波相位估计方法,CN118174995A,中国发明专利,申请日期:2024.03.11.
  • 17、柴旭东,田中星,王霄洲,姜晨旭,蔡轶,周俊,一种PDM-DQPSK信号偏振解复用方法、系统及装置,CN117834037A,中国发明专利,申请日期:2024.03.05.
  • 18、蔡轶,张凯胜,田中星,一种基于查找表的简化BCJR软判决输出序列检测方法,CN117459151A,中国发明专利,申请日期:2023.10.17.
  • 19、王霄洲,田中星,蔡轶,周俊,姜晨旭,马晓超,唐小丽,差分信号的光域差分接收和电域偏振解复用的方法及系统,CN117318830A,申请日期:2023.09.27.
  • 20、姜晨旭,蔡轶,基于差分调制偏振解复用系统的纠错方法,CN116032352A,申请日期:2022.12.16.
  • 21、蔡轶,田中星,申佼杰,姜晨旭,一种相干光通信系统及基于LUT的软判决输出序列检测方法,CN115603828A,申请日期:2022.08.04.
  • 22、蔡轶,田中星,许汉圣,张凯胜,一种优化基于查找表的MLSE算法复杂度的方法和装置,CN115242584A,申请日期:2022.07.21.
  • 23、蔡轶,姜晨旭,田中星,基于差分调制的光纤传输接收端和光纤通信系统,ZL202210695367.4,中国发明专利,申请日期:2022.06.20.
  • 24、J. Yin, Y. Cai, W. Wang, E. Sun, "Staircase code decoding method and staircase code decoding apparatus," US Patent US11070313, Jul. 20, 2021.
  • 25、H.Chien, Y. Cai, "Mixed signal pre-emphasis technique for optical transceivers," US Patent US10862590, Dec. 8 2020.
  • 26、E. Sun, Y. Cai, W. Wang, J. Yin, "Method and device for decoding turbo product code and computer-readable storage medium," US Patent US16756367, Aug. 6, 2020.
  • 27、J. Zhang, J. Yu, Y. Cai, J. Shi, "Unequally spaced pulse amplitude modulation scheme," US Patent US10212010, Feb. 19, 2019.
  • 28、Y. Yao, Y. Cai, Y. Li, G. Gu, W. Ren, "Clock recovery method, device and system and computer storage medium," US Patent US10135543, Nov. 20, 2018.
  • 29、Z. Jia, Y. Cai, H. Chien, J. Yu, "In-band signaling for reconfiguring software defined optics," US Patent US10090962, Oct. 2, 2018.
  • 30、Y. Cai, "Turbo product coded modulation," US Patent US10027348, Jul. 17, 2018.
  • 31、Q. Liao, Y. Cai, W. Zhou, "Clock Recovery Method and Device," US Patent US9948448, Apr. 17, 2018.
  • 32、Y. Yao, Y. Li, Y. Cai, W. Zhou, Z. Jia, "Chromatic dispersion measurement method and device and digital coherent receiver," US Patent US9929801, Mar. 27, 2018.
  • 33、Z. Jia, Y. Cai, "Iterative post-equalization for coherent optical receivers," US Patent US9912414, Mar. 6, 2018.
  • 34、Y. Cai, Z. Jia, J. Yu, "Maximum likelihood sequence estimation of quadrature amplitude modulated signals," US Patent US9819419, Nov. 14, 2017.
  • 35、Y. Cai, Z. Jia, "Statistics adaptive soft decision forward error correction in digital communication," US Patent US9762351, 2017.
  • 36、Z. Jia, Y. Cai, J. Yu, "Adaptive post digital filter and inter-symbol interference equalizer for optical communication," US Patent US9755763, Sep. 5, 2017.
  • 37、Z. Jia, Y. Cai, "Soft maximum likelihood sequence estimation in digital communication," US Patent US9329929 B2, May. 3, 2016.
  • 38、Y. Cai, "Method and apparatus for digital polarization scrambling in COC systems employing both transmit and receive DSP," US Patent US9209900 B2, Dec. 8, 2015.
  • 39、C. Li, Y. Chen, Z. Zhang, Y. Cai, F. Zhu, "Method with improved phase robustness in CDO system," US Patent US9025969 B2, May. 5, 2015.
  • 40、Y. Cai, H. Batshon, "System and method for generating SD reliability information from HD in an optical signal receiver," US Patent US8948612 B2, Feb. 3, 2015.
  • 41、Y. Cai, G. Mohs, "Generating higher-level QAM using a delay line interferometer and systems and methods incorporating same," US Patent US8805204 B2, Aug. 12, 2014.
  • 42、Y. Cai, J. Cai, M. Nissov, "System and method for forward error correction decoding using soft information," US Patent US8732561 B2, May. 20, 2014.
  • 43、Y. Cai, J. DOMAGALA, A. Pilipetskii, "Soft decision threshold control in a signal receiver using SD error correction," US Patent US8621307 B2, Dec. 31, 2013.
  • 44、Y. Cai, "Joint carrier phase estimation and forward error correction," US Patent US8543882 B2, Sep. 24, 2013.
  • 45、H. Zhang, Y. Sun, C. Davidson, Y. Cai, "Correlation-control QPSK transmitter," US Patent US8483574 B2, Jul. 9, 2013.
  • 46、H. Zhang, C. Davidson, J. Cai, Y. Cai, "Vestigial phase shift keying modulation and systems and methods incorporating same," US Patent US8437644 B2, May. 7, 2013.
  • 47、Y. Cai, M. Nissov, A. Pilipetskii, "Detection of data in signals with data pattern dependent signal distortion," US Patent US8401402 B2, Mar. 19, 2013.
  • 48、Y. Cai, "Local oscillator frequency offset compensation in a coherent optical signal receiver," US Patent US8340530 B2, Dec. 25, 2012.
  • 49、Y. Cai, "Data pattern dependent distortion compensation in a coherent optical signal receiver," US Patent US8306418 B2, Nov. 6, 2012.
  • 50、Y. Cai, "Dual stage carrier phase estimation in a coherent optical signal receiver," US Patent US8295713 B2, Oct. 23, 2012.
  • 51、J. Domagala, Y. Cai, F. Kerfoot, "Method and apparatus for decision threshold control in an optical signal receiver," US Patent US7424651 B2, Sep. 9, 2008.
  • 52、Y. Cai, "System and method for adjusting soft decision thresholds in a soft-decision error correction system," US Patent US7363553 B2, Apr. 22, 2008.
  • 53、Y. Cai, "System and method for rapidly achieving optimum dispersion in optical transmission systems," US Patent US7256877 B2, Aug. 14, 2007.
  • 54、Y. Cai, T. Adali, C. Menyuk, "Error Mitigation System Using Line Coding for Optical WDM Communications," US Patent US7016606 B2, Mar. 21, 2006.

荣誉及奖励

荣誉及奖励:
  • 1、2025年江苏省数字经济学会优秀成果奖一等奖
  • 2、国际光学学会会士(OSA Fellow)
  • 3、国家级特聘专家
  • 4、国家自然科学基金外国资深学者
  • 5、江苏省外国特聘专家
  • 6、美国国家专利局技术贡献奖
  • 7、美国泰科海缆通讯公司技术成就与贡献奖
  • 8、美国泰科海缆通讯公司技术创新奖

招生信息

招生信息: 招生信息1:

针对高速光通信系统,光纤传输技术,神经网络辅助光传输设计,数字信号处理,前向纠错码,相干系统算法,光通信集成电路,光纤通信与感知一体化,模拟/数字混合信号处理IC设计等研究方向招收

博士后

博士研究生

硕士研究生