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基本信息

贺玉成

教授

学历:博士研究生

学位:工学博士学位

所在单位:华侨大学信息科学与工程学院

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学科:信息与通信工程

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个人简介

贺玉成,教授,本科与研究生毕业于西安电子科技大学,获信息与通信工程的工学学士、硕士和博士学位,日本静冈大学交流博士研究生,加拿大蒙特利尔大学博士后。自研究生毕业留校后,先后任职西安电子科技大学副教授、蒙特利尔大学及麦吉尔大学高级研究员。长期从事信道编码技术等无线通信领域的研究工作,主持和参加科研项目40余项,其中国家级10余项,发表国内外学术论文140余篇,其中SCI收录50余篇,EI收录80余篇。

 

2015年至今担任厦门市移动多媒体通信重点实验室主任,2017年至2021年担任电子与通信工程(专业学位)研究生培养指导委员会主任,2019年至今担任省级研究生导师团队电子与通信工程(专业学位)负责人,2020年至今担任信息与通信工程(省级重点学科)研究生培养指导委员会主任。为中国电子学会高级会员、中国电子学会信息论专业委员会委员、IEEE会员、信息产业部重点学术期刊《无线电通信技术》编委,并长期担任国内外重要期刊及会议论文评审人。主持承办了中国通信学会2013年“第十八届全国青年通信学术年会”和“电子信息类专业建设及人才培养研讨会”、中国电子学会2016年“第二十三届信息论学术年会”,获中国电子学会2017年信息论学术年会杰出服务奖。


研究方向

信道编码与调制,物理层安全通信,协作通信,无线通信,闪存编码,计算机网络。


主要论文成果

[1]         Q. Chen, Yu-Cheng He, C. Chen,L. Zhou, “Optimization of protograph LDPC codes via surrogate channel for unequal power allocation,” IEEE Transactions on Communications, 2023, 71(3): 1284-1295. (SCI一区)

[2]         D.-H. Chen, Yu-Cheng He, “Cellular network enabled energy-harvesting secure communications for full-duplex D2D links,” IEEE Systems Journal, 2023, 17(1): 383-394. (SCI一区)

[3]         Z. Zhao, X. Jiao, J. Mu, H. Han, Yu-Cheng He, “Momentum-based symbol flipping decoding algorithms for non-binary LDPC codes,” IEEE Transactions on Vehicular Technology, 2023, 72(7): 9579-9584. (SCI二区)

[4]         Q.-F. Lian, Q. Chen, L. Zhou, Yu-Cheng He, X. Xie, “Adaptive decoding algorithm with variable sliding window for double SC-LDPC coding system,” IEEE Communications Letters, 2023, 27(2): 404-408. (SCI二区)

[5]         H. Han, J. Mu, X. Jiao, Yu-Cheng He, Z. Zhao, “Constructions of multi-permutation codes correcting a single burst of deletions,” Designs, Codes and Cryptography, Springer, 2023.

[6]         X. Jiao, H. Liu, J. Mu, H. Han, Yu-Cheng He, “On prefixed Varshamov-Tenengolts codes for segmented edit channels,” IEEE Transactions on Communications, 2022, 70(3): 1535-1545 (SCI一区)

[7]         G. Ma, X. Jiao, J. Mu, H. Han, Yu-Cheng He, “A single-round file synchronization scheme from insertions and deletions with low redundancy,” IEEE Communications Letters, 2022, 26(10): 2252-2256. (SCI二区)

[8]         C. Chen, L. Wang, Yu-Cheng He, “Probabilistic shaping for protograph LDPC-coded modulation by residual source redundancy,” IEEE Transactions on Communications, 2021, 69(7): 4267-4281. (SCI一区)

[9]         X. Jiao, H. Liu, J. Mu, Yu-Cheng He, “l2-Box ADMM decoding for LDPC codes over ISI channels,” IEEE Transactions on Vehicular Technology, 2021, 70(4): 3966-3971. (SCI二区)

[10]      Z. Zhao, X. Jiao, J. Mu, Yu-Cheng He, “Randomly penalized symbol flipping decoding of non-binary LDPC codes,” IEEE Transactions on Vehicular Technology, 2021, 70(1): 639-654, Jan. 2021. (SCI二区)

[11]      G. Ma, X. Jiao, J. Mu, Yu-Cheng He, H. Han, “Maximum-likelihood deletion error location for decoding marker guess & check codes,” IEEE Communications Letters, 2021, 25(8): 2497-2501. (SCI二区)

[12]      H. Han, J. Mu, Yu-Cheng He, X. Jiao, W. Ma, “Rate-improved permutation codes for correcting a single burst of deletions,” IEEE Communications Letters, 2021, 25(1): 49-53. (SCI二区)

[13]      H. Han, J. Mu, Yu-Cheng He, X. Jiao, W. Ma, “Multi-permutation codes correcting a single burst unstable deletions in flash memory,” IEEE Communications Letters, 2020, 24(4): 720-724. (SCI二区)

[14]      H. Han, J. Mu, Yu-Cheng He, X. Jiao, “Coset partitioning construction of systematic permutation codes under the Chebyshev metric,” IEEE Transactions on Communications, 2019, 67(6): 3842-3851. (SCI一区)

[15]      X. Jiao, J. Mu, Yu-Cheng He, W. Xu, “Linear-complexity ADMM updates for decoding LDPC codes in partial response channels,” IEEE Communications Letters, 2019, 23(12): 2200-2204. (SCI二区)

[16]      J. Mu, H. Han, Yu-Cheng He, X. Zhang, J. Guo, “Multi-permutation codes correcting a single burst unstable erasure,” IEEE Communications Letters, 2019, 23(4): 572-575. (SCI二区)

[17]      Z. Zhao, X. Jiao, J. Mu, Yu-Cheng He, J. Guo, “Fast-converging flipping rules for symbol flipping decoding of non-binary LDPC codes,” IEICE Transactions on Fundamentals of Electronics, Communications and Computer Sciences, 2019, E102-A(7): 930-933. (SCI四区)

[18]      X. Zhang, X. Jiao, Yu-Cheng He, J. Mu, “Weighted bit-flipping decoding of LDPC codes with LLR adjustment for MLC flash memories,” IEICE Transactions on Fundamentals of Electronics, Communications and Computer Sciences, 2019, E102-A(11). (SCI四区)

[19]      S. Chang, Y. Li, Yucheng He, Y. Wu, “RSS-Based Target Localization in Underwater Acoustic Sensor Networks via Convex Relaxation,” Sensors, 2019, 19(10): 0-2323. (SCI二区)

[20]      D. Chen, Yu-Cheng He, X. Lin, R. Zhao, “Both worst-case and chance-constrained robust secure SWIPT in MISO interference channels,” IEEE Transactions on Information Forensics and Security, 2018, 13(2): 306-317. (SCI一区)

[21]      D. Chen, Yu-Cheng He, “Full-duplex secure communications in cellular networks with downlink wireless power transfer,” IEEE Transactions on Communications, 2018, 66(1): 265-277.  

[22]      R. Zhao, H. Lin, Yu-Cheng He, D. Chen, Y. Huang, L. Yang, “Secrecy performance of transmit antenna selection for MIMO relay systems with outdated CSI,” IEEE Transactions on Communications, 2018, 66(2): 546-559.

[23]      R. Zhao, X. Tan, D. Chen, Yu-Cheng He, Z. Ding, “Secrecy performance of untrusted relay systems with a full-duplex jamming destination,” IEEE Transactions on Vehicular Technology, 2018, 67(12): 11511-11524.  

[24]      X. Jiao, Yu-Cheng He, J. Mu, “Memory-reduced lookup tables for efficient ADMM decoding of LDPC codes,” IEEE Signal Processing Letters, 2018, 25(1): 110-114.

[25]      H. Han, J. Mu, X. Jiao, Yu-Cheng He, “Codes correcting a burst of deletions for permutations and multi-permutations,” IEEE Communications Letters, 2018, 22(10): 1968-1971.

[26]      P. Zhao, J. Mu, Yucheng He, X. Jiao, “Multipermutation codes correcting a burst of deletions,” IEICE Transactions on Fundamentals of Electronics, Communications and Computer Sciences, 2018, E101-A(2): 535-538.  

[27]      J. Zhu, D. Chen, Yu-Cheng He, L. Zhou, J. Mu, “Resource allocation in multi-cell massive MIMO system with time-splitting wireless power transfer,” IEICE Transactions on Communications, 2018, E101-B(11): 2331-2339.  

[28]      G. Zhou, Y. Li, Yu-Cheng He, X. Wang, M. Yu, “Artificial fish swarm based power allocation algorithm for MIMO-OFDM relay underwater acoustic communication,” IET Communications, 2018, 12(9): 1079-1085.  

[29]      D. Chen, Yu-Cheng He, L. Zhou, R. Zhao, “Worst-case robust energy harvesting maximization in cellular networks,” Science China Information Sciences, 2018, 61(8): 240-242.  

[30]      L. Jia, Yu-Cheng He, D. Chen, L. Zhou, “Lagrangian dual decomposition for joint resource allocation optimization problem in OFDMA downlink networks,” Mathematical Problems in Engineering, 2018, 2018(10), 6875090.

[31]      X. Lv, Y. Li, Yu-Cheng He, “Efficient impulsive noise mitigation for OFDM systems using the alternating direction method of multipliers,” Mathematical Problems in Engineering, 2018, 2018(6), 4968682.

[32]      S. Chang, Y. Li, Yucheng He, H. Wang, “Target localization in underwater acoustic sensor networks using RSS measurements.” Applied Sciences, 2018, 8(2): 225.

[33]      R. Zhao, Y. Yuan, L. Fan, Yu-Cheng He, “Secrecy performance analysis of cognitive decode-and-forward relay networks in Nakagami-m fading channels,” IEEE Transactions on Communications, 2017, 65(2): 549-563.  

[34]      X. Jiao, J. Mu, Yu-Cheng He, C. Chen, “Efficient ADMM decoding of LDPC codes using look-up tables,” IEEE Transactions on Communications, 2017, 65(4): 1425-1437.  

[35]      R. Zhao, H. Lin, Yu-cheng He, D. Chen, Y. Huang, “Impacts of outdated CSI for secure cooperative systems with opportunistic relay selection,” Science China Information Sciences, 2017, 60(6): 272-274.

[36]      C. Fu, Y. Li, Yucheng He, M. Jin, G. Wang, P. Lei, “An inter-frame dynamic double-threshold energy detection for spectrum sensing in cognitive radios,” EURASIP Journal on Wireless Communications and Networking, 2017, 2017(12): 118.

[37]      L. Zhou, W. Huang, R. Zhao, Yu-Cheng He, “A non-greedy puncturing method for rate-compatible LDPC codes,” Journal of Communications and Networks, 2017, 19(1): 32-40.  

[38]      Lin Zhou, Weicheng Huang, Shengliang Peng, Yan Chen, Yucheng He, “An improved design of Gallager mapping for LDPC-coded BICM-ID system,” Electronics, 2016, 20(1): 16-21, 2016.

[39]      Yu-Cheng He, J. Zhang, R. Zhao, L. Zhou, “Iterative noncoherent block detection of coded MPSK for cooperative relay systems,” China Communications, 2016, 13(7): 1-6.

[40]      Yu-Cheng He, Y. Qiao, L. Zhou, “Generalized maximum likelihood noncoherent block detection for decode-and-forward relay systems,” China Communications, 2014, 11(4): 163-171.

[41]      S. Hong, Y. Li, Yu-Cheng He, G. Wang, M. Jin, “A cyclic correlation-based blind SINR estimation for OFDM systems,” IEEE Communications Letters, 2012, 16(11): 1832-1835.

[42]      Yu-Cheng He, D. Haccoun, C. Cardinal, “Error performances of multi shift-register convolutional self- doubly-orthogonal codes,” IEEE Communications Letters, 2009, 13(9): 685-687.  

[43]      Y. Liu, X. Wang, R. Chen, Yucheng He, “Generalized combining method for design of quasi-cyclic LDPC codes,” IEEE Communications Letters, 2008, 12(5): 392-394.  

[44]      Yu-Cheng He, D. Haccoun, C. Cardinal, “Tradeoff of complexity and latency of iterative decoding for orthogonal convolutional codes,” IET Communications, 2008, 2(3): 440-448.  

[45]      Y. Liu, X. Wang, R. Chen, Yucheng He, “Modified on-demand belief propagation algorithm for decoding of low-density parity-check convolutional codes,” Electronics Letters, 2008, 44(12): 753-755.

[46]      Yu-Cheng He, D. Haccoun, C. Cardinal, “Parallel processing for fast iterative decoding of orthogonal convolutional codes,” IEEE Communications Letters, 2006, 10(9): 664-666.  

[47]      Yu-Cheng He, D. Haccoun, “An analysis of the orthogonality structures of convolutional codes for iterative decoding,” IEEE Transactions on Information Theory, 2005, 51(9): 3247-3261.  

[48]      Yu-Cheng He, Shao-Hui Sun, Xin-Mei Wang, “Fast decoding of LDPC codes using quantization,” Electronics Letters, 2002, 38(4): 189-190.  

[49]      Yu-Cheng He, Cheng-Ye Lu, Akira Fukuda, “Hybrid-ARQ scheme using serially concatenated codes,” Chinese Journal of Electronics, 2002, 11(3): 412-416.

[50]      Jian-Jun Mu, Yu-Cheng He, Shao-Hui Sun, “Design method of sequences of degree distribution for low-density erasure codes,” Chinese Journal of Electronics, 2002, 11(3): 372-376.

[51]  张煜, 贺玉成, 张彦, 陈启望. 协同双小区下行协作NOMA-SWIPT中断性能分析. 信号处理, 2023.
[52]  易林森, 贺玉成, 张煜, 陈启望. 部分CSI下C-V2X资源分配算法研究. 计算机应用研究, 2023, 40(1): 234-238+243.
[53]  马梦欢, 贺玉成, 张彦,陈启望. 非理想SIC下全双工NOMA系统的安全性能分析. 信号处理, 2022, 38(10): 2155-2163.
[54]  乔宇航, 张良梅, 贺玉成, 周林. 功率受限SWIPT-CR-NOMA协作V2X中断性能分析. 西安电子科技大学学报, 2022, 49(2): 97-107. (EI)
[55]  吴舒婷, 贺玉成, 张良梅, 周林. D2D辅助的协作中继NOMA系统中TSRS策略及其中断性能分析. 信号处理, 2022, 38(5): 1001-10081.
[56]  张良梅, 贺玉成, 吴舒婷, 周林. 非理想SIC下SWIPT-CR-NOMA网络中断性能分析. 信号处理, 2022, 38(3): 619-6311.
[57]  方毓恺, 贺玉成, 杨键泉, 周林. 混合双工主动窃听系统中的干扰端优化研究. 信号处理, 2021, 37(11): 2200-2206.
[58]  杨键泉, 贺玉成, 马梦欢, 周林. 全双工认知NOMA网络下中继选择策略性能分析. 信号处理, 2021, 37(9): 1719-1726.
[59]  何雅萍, 贺玉成, 周林. 纠正稳定和非稳定突发擦除错误的置换码. 西安电子科技大学学报, 2021, 48(3): 49-55. (EI)
[60]  陈辰, 周林, 陈启望, 陈燕, 贺玉成. 联合编码的中继系统不等错误保护机制. 北京邮电大学学报, 2021, 44(1): 59-65. (EI)
[61]  乔宇航, 贺玉成, 张良梅, 周林. 两阶段中继选择策略下SWIPT-CR-NOMA网络的中断性能分析. 信号处理, 2021, 37(1): 40-48.
[62]  路晓华, 贺玉成, 张良梅, 周林. 智能窃听下协作NOMA网络的性能分析. 信号处理, 2021, 37(1): 148-157.
[63]  张娅妹, 周林, 陈辰, 陈启望, 贺玉成. 瑞利衰落信道中SC-LDPC码滑窗译码算法.西安电子科技大学学报, 2020, 47(6): 78-83. (EI)
[64]  张娅妹, 周林, 陈辰, 郭荣新, 贺玉成. 窗口可变的空间耦合LDPC码滑窗译码算法. 西安电子科技大学学报, 2020, 47(3): 128-134. (EI)
[65]  张亚坤, 张娅妹, 周林, 贺玉成. 高斯白噪声信道下SC-LDPC码的结构设计. 北京邮电大学学报, 2020, 43(1): 35-39. (EI)
[66]  乔宇航, 贺玉成, 杨键泉, 周林. 两级中继选择的协作CR-NOMA网络性能分析. 信号处理, 2020, 36(2): 196-202.
[67]  石旭, 周林, 张树颖, 陈辰, 傅玉青, 贺玉成. 改进交织的单层极化码高阶编码调制系统. 信号处理, 2020, 36(2): 210-216.
[68]  李赛, 周林, 唐益多, 陈辰, 傅玉青, 贺玉成. 面向5G标准的低延时LDPC编码器设计. 信号处理, 2020, 36(2): 224-232.
[69]  方毓恺, 贺玉成, 蔡静, 周林. 主动窃听系统中的多窃听用户选择技术研究. 信号处理, 2020, 36(2): 297-303.
[70]  雷菁, 贺玉成. 物理层安全技术. 无线电通信技术, 2020, 46(2): 148-149.
[71]  白宝明, 贺玉成. 专题:新型调制编码技术. 无线电通信技术, 2020, 46(1): 35-36.
[72]  乔宇航, 贺玉成, 周林. 全双工窃听者主动干扰的协作NOMA网络性能分析. 无线电通信技术, 2020, 46(2): 180-185.
[73]  路晓华, 贺玉成, 周林. 自适应窃听下NOMA用户协作干扰的物理层安全研究. 无线电通信技术, 2020, 46(2): 192-198.
[74]  方毓恺, 贺玉成, 周林. 能量采集技术在主动窃听系统中的应用研究. 无线电通信技术, 2020, 46(2): 205-209.
[75]  石旭, 李晓磊, 周林, 贺玉成. 5G通信中的极化码在高阶调制下的应用. 无线电通信技术, 2020, 46(1): 63-67.
[76]  张娅妹, 陈燕, 周林, 贺玉成. 空间耦合LDPC码在AWGN信道下的性能分析. 无线电通信技术, 2020, 46(1): 77-81.
[77]  张亚坤, 周林, 陈辰, 贺玉成. 速率无损失的空间耦合LDPC码. 电子学报, 2019, 47(12): 2590-2595. (EI)
[78]  贾丽君, 贺玉成, 周林. 自适应窃听和干扰下机会式中继和协作干扰技术的安全性能分析. 南京理工大学学报, 2019, 43(1): 29-34.
[79]  蔡静, 贺玉成, 乔宇航, 周林. 中继协作下认知NOMA网络性能分析. 信号处理, 2019, 35(12): 2029-2035.
[80]  何雅萍, 贺玉成, 周林. 闪存等级调制移位错误的多重置换纠错码构造. 信号处理, 2019, 35(4): 686-692.
[81]  张勇建, 贺玉成, 蔡静, 周林. 多用户选择与协作干扰的安全性能分析. 信号处理, 2019, 35(3): 334-341.
[82]  李晓磊, 石旭, 周林, 贺玉成. 新型级联Polar码设计. 信号处理, 2019, 35(3): 516-521.
[83]  李晓磊, 石旭, 周林, 贺玉成. Polar码在加性高斯白噪声信道下的性能分析. 中国科技论文, 2019, 14(3): 239-242.
[84]  徐斌, 贺玉成. 高吞吐量QC-LDPC码分层译码设计. 计算机工程, 2019, 45(7): 121-125+133.
[85]  蔡静, 贺玉成, 周林. 基于能量收集和人工加扰的认知无线电网络安全中断性能分析. 通信技术, 2019, 52(3): 608-614.
[86]  何雅萍, 贺玉成, 周林. 纠单个有序删除和擦除错误码的构造方法. 通信技术, 2019, 52(3): 544-548.
[87]  赵睿, 谭星, 李元健, 贺玉成, 李春国. 全双工加扰的非可信中继系统的渐近性能分析. 通信学报, 2018, 39(9): 20-30. (EI)
[88]  苏华玲, 贺玉成, 周林. 基于码率兼容LDPC码的多中继协作自适应传输. 北京邮电大学学报, 2018, 41(6): 58-64. (EI)
[89]  吴淼, 邱丽鹏, 周林, 贺玉成. 高效低复杂度的QC-LDPC码全并行分层结构译码器. 重庆邮电大学学报(自然科学版), 2018, 30(3): 354-361.
[90]  张勇建, 贺玉成, 周林. 基于机会式中继传输策略的安全性能分析. 计算机应用, 2018, 38(10): 2908-2912+2970.
[91]  张勇建, 贺玉成, 周林. 基于三阶段双向中继系统的功率分配问题研究. 通信技术, 2018, 51(5): 1091-1096.
[92]  江梓弘, 陈晓鹏, 周林, 贺玉成. QC-LDPC码构造及其在BICM-ID系统中的应用. 通信技术, 2018, 51(3): 511-515.
[93]  朱嘉诚, 陈东华, 贺玉成. 基于大规模天线技术的携能传输功率分配研究. 计算机应用与软件, 2017, 34(8): 157-161.
[94]  王旨, 陈东华, 贺玉成. 全双工无线携能通信速率最大化波束赋形研究. 计算机工程与科学, 2017, 39(8): 1450-1456.
[95]  徐斌, 贺玉成. 低存储量的多码率QC-LDPC码译码器的研究. 通信技术, 2017, 50(8): 1614-1619.
[96]  许永峰, 贺玉成, 周林. 软件滤波的示波血压测量算法及Android实现. 华侨大学学报(自然科学版), 2017, 38(4): 567-572.
[97]  赵睿, 贺玉成, 周林, 谢维波. 基于人工噪声预编码的多天线中继安全性能分析. 电子与信息学报, 2016, 38(10): 2575-2581. (EI)
[98]  赵睿, 林鸿鑫, 贺玉成, 彭盛亮, 周林. Nakagami信道下MIMO解码转发中继系统的安全性能分析. 电子与信息学报, 2016, 38(8): 1913-1919. (EI)
[99]  林鸿鑫, 赵睿, 贺玉成, 袁毅. 过时信道状态信息下的机会式中继选择系统的安全性能分析. 信号处理, 2016, 32(7): 810-818.
[100]  王旨, 陈东华, 贺玉成. 多用户全双工无线携能系统中的波束赋形研究. 山东大学学报(理学版), 2016, 51(7): 115-120.
[101]  吴亚峰, 赵睿, 贺玉成, 谢维波. 基于有限反馈的非可信中继系统的物理层安全性能分析. 电子学报, 2015, 43(11): 2247-2254. (EI)
[102]  周林, 黄伟成, 贺玉成, 蔡灿辉. 多元速率兼容LDPC码的自适应编码调制系统研究. 信号处理, 2015, 31(7): 815-822.
[103]  乔莹, 贺玉成, 周林. 新型信道自适应编码协作体制. 计算机应用, 2015, 35(5): 1218-1223.
[104]  许永峰, 贺玉成, 周林. 血压脉搏振荡波的三重软件滤波提取算法. 电子测量与仪器学报, 2015, 29(3): 454-459.
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[107]  孙韶辉, 贺玉成, 王新梅. 低密度校验码在瑞利衰落信道中的性能分析. 计算机学报, 2002, 25(10): 1077-1082. (EI)
[108]  慕建君, 贺玉成, 王新梅. 低密度纠删码稳定收敛条件的证明. 电子学报, 2002, 30(4): 530-532. (EI)
[109]  贺玉成等. 置信传播译码算法的性能测度. 电子学报, 2002, 30(4): 577-580.
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[112]  贺玉成等. 纠错码性能仿真中的误码率估计. 通信学报, 2001, 22(9): 99-103.
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IEEE会议论文

[1]       H. Lin, R. Zhao, Yucheng He, Y. Huang, "Impacts of outdated CSI for secure cooperative systems with opportunistic relay selection," 2016 the 8th International Conference on Wireless Communications & Signal Processing (WCSP), Yangzhou, China, 13-15 Oct. 2016, pp. 1-5. (EI) (扬州)

[2]       H. Lin, R. Zhao, Yucheng He, Y. Huang, "Secrecy performance of transmit antenna selection with outdated CSI for MIMO relay systems," 2016 IEEE International Conference on Communications Workshops (ICC), Kuala Lumpur, Malaysia, 23-27 May 2016, pp. 272-277. (EI) (马来西亚)

[3]       Yu-Cheng He, D. Haccoun, C. Cardinal, "Comparison of low complexity fast iterative decoding techniques for convolutional self-doubly-orthogonal codes," 2009 IEEE 69th Vehicular Technology Conference (VTC2009-Spring), Barcelona, Spain, Apr. 2009, pp. 1-5. (EI) (西班牙,巴塞罗那)

[4]       Yu-Cheng He, C. Cardinal, D. Haccoun, "Comparison of decoding complexities for LDPC and convolutional self-doubly-orthogonal codes," 2008 IEEE 19th International Symposium on Personal, Indoor and Mobile Radio Communications (PIMRC), Cannes, France, Sept. 2008, pp. 1-5. (EI) (法国,戛纳)

[5]       C. Cardinal, Yu-Cheng He, D. Haccoun, "A new approach for the construction of powerful LDPC convolutional codes," 2008 IEEE 67th Vehicular Technology Conference (VTC2008-Spring), Marina Bay, Singapore, May 2008, pp. 1176-1180. (EI) (新加坡)

[6]       Yu-Cheng He, C. Cardinal, D. Haccoun, "A class of low-density parity-check convolutional codes based on difference families," 2008 IEEE International Conference on Communications (ICC), Beijing, China, May 2008, pp. 1171-1175. (EI) (北京)

[7]       Y. Liu, X. Wang, Yucheng He, "A Feedback Belief Propagation Algorithm for LDPC Convolutional Codes," 2008 IEEE International Symposium on Information Theory (ISIT), Toronto, ON, Canada, Jul. 2008, pp. 151-155. (EI) (加拿大,多伦多)

[8]       Yu-Cheng He, D. Haccoun, C. Cardinal, "Performance comparison of iterative BP and threshold decoding for convolutional self-doubly-orthogonal codes," 2007 IEEE 65th Vehicular Technology Conference (VTC2007-Spring), Dublin, Ireland, Apr. 2007, pp. 2000-2004. (EI) (爱尔兰,都柏林)

[9]       Yu-Cheng He, D. Haccoun, C. Cardinal, "A graph approach to the structural analysis of simplied orthogonal convolutional codes," 2007 IEEE Pacific Rim Conference on Communications, Computers and Signal Processing (PacRim), Victoria, BC, Canada, Aug. 2007, pp. 534-537. (EI) (加拿大,维克多利亚)

[10]    Yu-Cheng He, D. Haccoun, C. Cardinal, "Procedures for efficient iterative decoding of orthogonal convolutional codes," 2006 IEEE International Conference on Communications (ICC), Istanbul, Turkey, Jun. 2006, pp. 1172-1176.  (EI) (土耳其,伊斯坦布尔)

[11]    Yu-Cheng He, D. Haccoun, C. Cardinal, "A parallel processing approach for fast iterative decoding of orthogonal convolutional codes," 2006 IEEE 63rd Vehicular Technology Conference (VTC2006-Spring), Melbourne, Australia, May 2006, pp. 2499-2502. (EI) (澳大利亚,墨尔本)

[12]    C. Cardinal, D. Haccoun, Yu-Cheng He, "Reduced-complexity convolutional self-doubly orthogonal codes for efficient iterative decoding," 2006 IEEE 63rd Vehicular Technology Conference (VTC2006-Spring), Melbourne, Australia, May 2006, vol. 3, pp. 1372-1376. (EI) (澳大利亚,墨尔本)

[13]    Yu-Cheng He, D. Haccoun, C. Cardinal, "Parallel iterative decoding for orthogonal convolutional codes," 2005 IEEE 61st Vehicular Technology Conference (VTC2005-Spring), Stockholm, Sweden, May/Jun. 2005, vol. 1, pp. 615-619. (EI) (瑞典,斯德哥尔摩)

[14]    Yu-Cheng He, D. Haccoun, C. Cardinal, "A serial design of iterative belief propagation decoders for convolutional codes," 2004 IEEE 60th Vehicular Technology Conference (VTC2004-Fall), Los Angeles,  CA, USA, Sept. 2004, vol. 4, pp. 2307-2311. (EI) (美国,洛杉矶)

[15]    D. Haccoun, Yu-Cheng He, C. Cardinal, "Forward-only iterative decoding of convolutional self-orthogonal codes," 2004 IEEE International Symposium on Information Theory (ISIT), Chicago, IL, USA, Jun./Jul. 2004, pp. 492. (EI) (美国,芝加哥)

[16]    Yu-Cheng He, Hong-Pei Li, Shao-Hui Sun, Lei Li, "Threshold-based design of quantized decoder for LDPC Codes," 2003 IEEE International Symposium on Information Theory (ISIT), Yokohama, Japan, Jun./Jul. 2003, pp. 149. (EI) (日本,横滨)

[17]    Jian-Jun Mu, Yu-Cheng He, Xin-Mei Wang, "Analysis and proof of the stability condition for low-density erasure codes," 2001 IEEE International Conferences on Info-Tech and Info-Net, Beijing, China, Oct./Nov. 2001, vol.2, pp. 824-827. (EI) (北京)