焦健
近期热点
资料介绍
个人简历
长期从事空天通信、无线通信、差错控制编码等领域的研究。目前主要面向6G的泛在无线智能愿景,研究天地一体化网络,以及新一代物联网的无线通信技术:(1)面向卫星与地面混合异构网络的大规模接入技术和高效传输机制,包括非正交接入、毫米波通信、基于机器学习的资源分配策略、区块链技术等。(2)面向低时延、高可靠通信的物理层编译码和信号处理技术,包括极化码、无速率模拟喷泉码等近年来比较先进的高性能差错控制编码和相应的调制技术、传输方案设计等。欢迎本科为通信、电子信息、计算机、数学等相关专业的同学加入课题组。每年计划招收5-6名硕士研究生:招生专业为信息与通信工程(学硕) 和电子与通信工程(专硕),欢迎积极向上、有自我管理能力的同学加入课题组。教育经历2007-2011 哈尔滨工业大学,信息与通信工程,工学博士2005-2007 哈尔滨工业大学,信息与通信工程,工学硕士2001-2005 哈尔滨工程大学,电子与信息工程,学士研究与工作经历2020-至今 哈尔滨工业大学(深圳),副教授,硕导2017-2019 哈尔滨工业大学(深圳),助理教授,硕导2016-2017 悉尼大学,访问学者2015-2017 哈尔滨工业大学深圳研究生院,助理研究员,硕导2011-2015 哈尔滨工业大学深圳研究生院,博士后科研项目2021-2024 空间物联网的信息时效与大规模接入技术研究,国家自然科学基金面上项目,主持2021-2022 空间物联网的关键任务通信技术研究,深圳市高等院校稳定支持计划面上项目,主持2019-2022 卫星物联网的低时延高可靠通信关键技术研究,广东省自然科学基金面上项目,主持2019-2021 超低时延无线通信系统关键技术研究,深圳市引进人才科研启动项目,主持2019-2020 基于NI USRP平台的空间通信实验平台改革建设,教育部产学合作协同育人项目,主持2018 高通量天基信息网络容量与多址技术研究(编号61771158)、国家自然科学基金面上项目、主持2018-2020 高通量天基信息网络多址接入与容量逼近方法研究(编号JCYJ20170811154309920)、深圳市科创委基础研究项目、主持2017-2019 深空复杂时变环境下的多跳适配传输机理、哈工大深圳-启动项目、主持2016-2018 GEO卫星协作的空间信息网络传输技术研究(编号JCYJ20160328163327348)、深圳市科创委基础研究学科布局项目、主持2016-2017 面向数据业务需求的深空探测容量逼近传输机理 (编号HIT.NSRIF.2017051)、哈工大创新研究基金重点培育项目、主持2013-2015 面向深空探测多媒体业务需求的可靠传输机理(编号2013T60368)、中国博士后科学基金特别资助项目、主持2013-2015 面向火星临近空间时变信道的文件可靠传输技术机理(编号61201144)、国家自然科学基金青年基金、主持2012-2014 基于移动容迟网络的车联网数据传输机理”(编号S2012040006841)、广东省自然基金博士启动项目 、主持2012-2013 火星临近空间时变信道的文件可靠传输技术(编号2012M510957)中国博士后科学基金面上资助项目、主持科研成果及奖励2017 ICACT’2017 Outstanding paper award2015 WCSP’2015 Best paper award2015 深圳高层次人才(后备级)2017 南山领航人才(C类)2018 深圳市海外高层次人才(C类)发明专利部分授权专利:[1] 焦健, 杨轶, 冯博文, 顾术实, 吴绍华, 张钦宇. 空间通信分布式动态网络拓扑的不等保护纠删编码方法. 国家发明专利,专利号: ZL201710133705.4. 2020.06.12.[2] 焦健, 王莎, 冯博文, 周刘, 吴绍华, 张钦宇. 基于打孔的码率兼容极化码编码方法及系统. 国家发明专利,专利号: ZL2017104588444. 2020.06.03[3] 焦健, 胡有军, 甘明铎, 索晓宇, 吴绍华, 张钦宇. LTP-HARQ协议设计与传输方法及系统. 国家发明专利,专利号: ZL201710475422.8. 2020.05.18[4] 焦健, 高厚莲, 冯博文, 梁潇, 吴绍华, 张钦宇. 基于GEO骨干中继的深空下行链路多跳传输方法及系统. 国家发明专利,专利号: ZL201710478160.0. 2020.05.01.[5] 焦健, 陈晨, 张可, 冯博文, 吴绍华, 张钦宇. 一种面向Ka频段通信的自适应模拟喷泉码的实现方法. 国家发明专利,专利号: ZL2016 1 0890542.X. 2019.08.09.[6] 焦健, 聂胜贤, 杨轶, 顾术实, 吴绍华, 张钦宇. 面向深空通信的分布式系统Raptor码传输方法. 国家发明专利, 专利号: ZL 2016 1 0202771.8. 2019.04.23[7] 焦健, 冯博文, 顾术实, 吴绍华, 张钦宇. 一种极化码的简化译码方法. 国家发明专利,专利号: ZL 2016 1 0045755.2. 2019.07.23.[8] 焦健, 冯博文, 王莎, 吴绍华, 张钦宇. 一种极化码级联空时码系统及其级联极化编码方法. 国家发明专利,专利号: ZL 2016 1 0216554.4. 2019.07.23.[9] 张钦宇, 焦健, 陈英, 顾术实, 于淼, 吴绍华. 面向深空探测多媒体业务的独立窗不等保护喷泉编码方法. 国家发明专利,专利号: ZL 201310252631.8. 2018.03.13.[10] 张钦宇, 焦健, 顾术实, 李云鹏, 于淼, 吴绍华. 一种面向移动容迟网络的分布式中继纠删编码方法. 国家发明专利,专利号: ZL 201310252948.1. 2017.8.15.[11] 张钦宇, 焦健, 顾术实, 李云鹏, 吴绍华. 基于叠加度的系统LT码编译方法. 2016.10.05, 授权号: ZL201310216256.1.[12] 杨志华, 焦健, 张钦宇, 李红兵, 李惠媛, 王斌, 罗辉, 王鑫. 一种深空DTN网络多跳传输方法. 2016.2.24, 授权号: ZL201310007624.1.[13] 杨志华, 焦健, 张钦宇, 李惠媛, 李红兵, 罗辉,王鑫. 面向深空链路残余频偏下的联合调制编码方法. 2015.9.30,授权号: ZL201310007254.1.[14] 张钦宇, 杨志华, 焦健, 高嵩巍, 李红兵. 基于HLA的空间网络可视化仿真系统及仿真方法.2016.6.13, 授权号: ZL201210508136.4.[15] 张钦宇,杨志华, 焦健, 罗辉. 面向深空通信的分布式仿真系统. 2015.9.9, 授权号: ZL201210295885.3.[16] 杨志华, 张钦宇, 焦健, 杨忆, 秦娇. 面向深空通信的码辅助载波相位同步系统及方法. 2016.5.30, 授权号: ZL201310173093.3.[17] 张钦宇, 杨志华, 焦健, 黄渝华. 一种面向深空通信的数据传输速率控制方法. 2015.7.8, 授权号: ZL201210354069.5.[18] 张钦宇, 杨志华, 焦健, 李红兵, 顾术实. 基于中继存储-转发的深空文件传输方法.2015.10.7, 授权号: ZL201210184667.2.[19] 张钦宇, 顾术实, 王洋, 焦健, 欧阳任耕. 一种适用于濒死信道的无速率编码传输方法. 2018.3.9,授权号: CN105141386B.实质审查专利:[20] 焦健, 梁可欣, 冯博文, 吴绍华, 张钦宇. 联合检测译码方法、装置、计算机设备及存储介质. 2019.10.1, 申请号: CN201911052788.X. [21] 焦健, 张可, 王凤仪, 吴绍华, 张钦宇. 基于模拟喷泉码的编码方法和装置. 2019.10.23, 申请号: CN201911009969.4. [22] 焦健, 冯博文, 田园, 吴绍华, 张钦宇. 可调的串行抵消列表极化码译码方法和装置. 2019.10.23, 申请号: CN201911011582.2. [23] 焦健, 李连琴, 张可, 吴绍华, 张钦宇. 数据传输方法、装置、计算机设备及存储介质. 2019.10.28, 申请号: CN201911028360.1.[24] 焦健, 孙云玉, 倪子琳, 吴绍华, 张钦宇. 星载资源分配方法、装置、计算机设备及存储介质. 2019.10.31, 申请号: CN201911049208.1. [25] 焦健, 何一智, 李启文, 吴绍华, 张钦宇. 基于空间信息网络的中继通信系统和通信方法. 2019.11.11, 申请号: CN2019110952051.[26] 焦健, 倪子琳, 孙云玉, 吴绍华, 张钦宇. 空间信息网的高能效网络编码ARQ双向中继传输机制. 2019.11.12, 申请号: CN2019111006292.[27] 焦健, 倪子琳, 孙云玉, 吴绍华,张钦宇. 空间信息网下行组播场景的高能效网络编码HARQ传输机制. 2019.11.12, 申请号: CN2019111006470.[28] 焦健, 周俊良, 张可, 吴绍华, 张钦宇. 基于空间信息网络的叠加导频通信方法和系统. 2019.11.13, 申请号: CN2019111047786[29] 焦健, 徐亮, 张可, 吴绍华, 张钦宇. 多时隙随机导频接入系统和方法. 2019.12.12, 申请号: CN 201911269875.0.[30] 焦健, 冯博文, 田园, 吴绍华, 张钦宇. 极化码的迭代可调软串行抵消列表译码方法和装置. 2019.12.27, 申请号: CN 201911380480.8.[31] 焦健, 张可, 黄子轩, 冯博文, 吴绍华, 张钦宇. 一种有限码长的高进制Raptor码编译码方法. 2017.4.6, 申请号: CN 201710624145.2.[32] 焦健, 随新东, 王雨涵, 李晓欣, 吴绍华, 张钦宇. Ka频段下行链路的数据传输方法及系统. 2017.4.13, 申请号: CN 201710476661.5.任教和任导师经历2012年,2017年至今,硕士专业课,差错控制编码;2017年-2019年,本科专业课,通信电子线路实验课;2019年至今,本科专业课,空间通信。目前指导18级硕士生6人,19级硕士生5人,协助指导博士生2人。2017级硕士生4人,3人获优秀毕业生,其中1人为银牌毕业生;2016级硕士生6人,5人获优秀毕业生,其中1人为金牌毕业生,2人为银牌毕业生;2015级硕士生5人,3人获优秀毕业生,其中1人为银牌毕业生;2014级硕士生4人,协助指导2人,2人获优秀毕业生。研究领域
(1)面向B5G/6G的卫星与地面混合异构网络的大规模接入技术和高效传输机制,包括非正交接入、毫米波通信、基于机器学习的资源分配策略、区块链技术等。(2)面向低时延、高可靠通信的物理层编译码和信号处理技术,包括极化码、无速率模拟喷泉码等近年来比较先进的高性能差错控制编码和相应的调制技术、传输方案设计等。""近期论文
[1]Jian Jiao, Junliang Zhou, Shaohua Wu, and Qinyu Zhang. Superimposed pilot code-domain NOMA scheme for satellite-based Internet of Things. IEEE Systems Journal, early access. (IF= 3.987, Q1)[2]Jian Jiao, Zilin Ni, Shaohua Wu, Ye Wang, and Qinyu Zhang. Energy efficient network coded HARQ transmission scheme for S-IoT. IEEE Transactions on Green Communications and Networking, early access.[3]Jian Jiao, Shiyi Liao, Yunyu Sun, Shaohua Wu, Qinyu Zhang. Fairness-improved and QoS-guaranteed resource allocation for NOMA-integrated S-IoT system. Science China-Information Sciences, early access. (IF= 3.304, Q2)[4]Jian Jiao, Kexin Liang, Bowen Feng, Shaohua Wu, Ye Wang, Qinyu Zhang. Joint channel estimation and decoding for polar coded SCMA system over fading channels. IEEE Transactions on Cognitive Communications and Networking, early access, 2020. (IF= 4.574, Q1)[5]Bowen Feng, Jian Jiao*, Shaohua Wu, Ye Wang and Qinyu Zhang*. Iterative and adjustable soft list decoding for Polar codes. IEEE Transactions on Signal Processing, 2020, 68: 5559-5572. (IF=5.028, Q1)[6]Jian Jiao, Liang Xu, Shaohua Wu, Ye Wang, Rongxing Lu and Qinyu Zhang. Unequal access latency random access protocol for massive machine-type communications, IEEE Transactions on Wireless Communications, 2020, 19(9): 5924-5937. (IF=6.779, Q1)[7]Jian Jiao, Yizhi He, Ye Wang, and Shaohua Wu. Design and analysis of novel Ka band NOMA uplink relay system for Lunar farside exploration. China Communications, 2020, 17(7):1-14. (IF=2.024, Q3)[8]Bowen Feng, Jian Jiao, Shaohua Wu, and Qinyu Zhang. How to apply polar codes in high throughput space communications. Science China Technological Sciences, 2020, doi: https://doi.org/10.1007/s11431-020-1630-2. (IF=2.302, Q3)[9]Xijin Liu, Shaohua Wu, Ye Wang, Ning Zhang, Jian Jiao, Qinyu Zhang. Exploiting error correction-CRC for polar SCL decoding: A deep learning based approach. IEEE Transactions on Cognitive Communications and Networking, 2020, 6(2): 817-828. (IF= 4.574, Q1)[10]Jian Jiao, Yunyu Sun, Shaohua Wu, Ye Wang, Qinyu Zhang. Network utility maximization resource allocation for NOMA in satellite-based Internet of Things. IEEE Internet of Things Journal, 2020, 7(4): 1391-1404. (IF=9.936, Q1)[11]Ke Zhang, Jian Jiao*, Zixuan Huang, Shaohua Wu, Qinyu Zhang*. Finite length analog fountain codes for ultra-reliable low latency communications. IEEE Transactions on Communications, 2020, 68(3): 1391-1404. (IF=5.646, Q1)[12]Dongqing Li, Shaohua Wu, Ying Wang, Jian Jiao, Qinyu Zhang. Age-optimal HARQ design for freshness-critical satellite-IoT systems. IEEE Internet of Things Journal, 2020, 7(3): 2066-2076. (IF=9.936, Q1)[13]Ruifeng Zhang, Shaohua Wu, Ye Wang, Jian Jiao. High performance distributed compressive video sensing: jointly exploiting the HEVC motion estimation and the l1-l1 reconstruction. IEEE Access, 2020, 8: 31306-31316. (IF= 3.745, Q1)[14]Jian Jiao, Shaohua Wu, Yunyu Sun, Ye Wang, Qinyu Zhang. Power allocation optimization of multibeam high-throughput satellite communication systems. Journal of Communications and Information Networks. 2019, 4(1): 33-41.[15]Zixuan Huang, Jian Jiao*, Ke Zhang, Shaohua Wu, Qinyu Zhang. A novel weight coefficient PEG algorithm for ultra-reliable short length analog fountain codes. IEEE Wireless Communications Letters, 2019, 8(1): 125-128. (IF= 4.66, Q1)[16]Ye Wang, Qiwen Li, Jian Jiao*, Shaohua Wu, Qinyu Zhang. ARM: Adaptive random-selected multi-beamforming estimation scheme for satellite-based Internet of Things. IEEE Access, 2019, 7: 63264-63276. (IF= 3.745, Q1)[17]Yunyu Sun, Ye Wang, Jian Jiao*, Shaohua Wu, Qinyu Zhang. Deep learning-based long-term power allocation scheme for NOMA downlink system in S-IoT. IEEE Access, 2019, 7: 86288-86296. (IF= 3.745, Q1)[18]Dongqing Li, Shaohua Wu, Jian Jiao, Qinyu Zhang. Compressed image sensing by jointly leveraging multi-scale heterogeneous priors for the Internet of multimedia things. IEEE Access, 2019, 7: 18915- 18925. (IF= 3.745, Q1)[19]Xijin Liu, Shaohua Wu, Xiao Xu, Jian Jiao, Qinyu Zhang. Improved polar SCL decoding by exploiting the error correction capability of CRC. IEEE Access, 2019, 7: 7032-7040. (IF= 3.745, Q1)[20]Xiao Liang, Jian Jiao*, Shaohua Wu, Qinyu Zhang. Outage analysis of multirelay multiuser hybrid satellite-terrestrial millimeter-wave networks. IEEE Wireless Communications Letters, 2018, 7(6): 1046-1049. (IF= 3.546, Q1)[21]Ruhai Wang, Alaa Sabbagh, Scott C. Burleigh, Mahjabeen Javed, Shushi Gu, Jian Jiao*, Qinyu Zhang. Modeling disruption tolerance mechanisms for a heterogeneous 5G network. IEEE Access, 2018, 6: 25836-25848. (IF= 4.098, Q1)[22]Shushi Gu, Jian Jiao*, Zixuan Huang, Shaohua Wu, Qinyu Zhang. ARMA-based adaptive coding transmission over millimeter-wave channel for integrated satellite-terrestrial networks. IEEE Access, 2018, 6: 21635-21645. (IF= 4.098, Q1)[23]Jian Jiao, Youjun Hu, Qinyu Zhang, Shaohua Wu. Performance modeling of LTP-HARQ schemes over OSTBC-MIMO channels for hybrid satellite terrestrial networks. IEEE Access, 2018, 6: 5256- 5268. (IF= 4.098, Q1)[24]Xiao Xu, Shaohua Wu, Dan Dong, Jian Jiao, Qinyu Zhang. High performance short polar codes: A concatenation scheme using Spinal codes as the outer code. IEEE Access, 2018, 6: 70644-70654. (IF= 4.098, Q1)[25]Bowen Feng, Shushi Gu, Jian Jiao*, Shaohua Wu, Qinyu Zhang. Novel polar coded space-time transmit diversity scheme over Rician fading MIMO channels. EURASIP Journal on Wireless Communications and Networking. 2018 (2018): 24. (IF=1.592, Q3)[26]Jian Jiao, Ruhai Wang, Scott Burleigh, Qinglin Xie, Akun Zhuang, Alaa Sabbagh, Kanglian Zhao. Reliable deep-space file transfers: how data transfer can be ensured within a single round-trip interval? IEEE Vehicular Technology Magazine. 2017, 12 (4): 86-94. (IF=6.038, Q1)[27]L. Shi, Jian Jiao*, A. Sabbagh, R. Wang, Q. Yu, J. Hu, H. Wang, S. Burleigh, K. Zhao. Integration of Reed-Solomon codes to licklider transmission protocol (LTP) for space DTN. IEEE Aerospace and Electronic Systems Magazine, 2017, 32(4): 48-55. (IF=1.360 Q3)[28]Ke Zhang, Qinyu Zhang, Jian Jiao*. Bounds on the reliability of RaptorQ codes in the finite-length regime. IEEE Access, 2017, 5: 24766-24774. (IF= 3.557, Q1)[29]Bowen Feng, Qinyu Zhang, Jian Jiao*. An efficient rateless scheme based on the extendibility of systematic polar codes. IEEE Access, 2017, 5: 23223-23232. (IF= 3.557, Q1)[30]Jian Jiao, Houlian Gao, Shaohua Wu, Qinyu Zhang. Performance analysis of space information networks with backbone satellite relaying for vehicular networks. Wireless Communications and Mobile Computing, 2017, Article ID 4859835, 13 pages. (IF=0.869, Q4)[31]Jian Jiao, Sha Wang, Bowen Feng, Shushi Gu, Shaohua Wu, Qinyu Zhang. Design of rate-compatible parallel concatenated punctured polar codes for IR-HARQ transmission schemes. Entropy, 2017, 19 (11), 628. (IF=2.305, Q2)[32]Shushi Gu, Jian Jiao* Qinyu Zhang, Xuemai Gu. Rateless coding transmission over multi-state dying erasure channel for SATCOM. EURASIP Journal on Wireless Communications and Networking. 2017 (2017), 176. (IF=2.407, Q2)[33]Jian Jiao, Xindong Sui, Shushi Gu, Shaohua Wu, Qinyu Zhang. Partially observable Markov decision process-based transmission policy over Ka-band channels for space information networks. Entropy, 2017, 19 (10), 510. (IF=2.305, Q2)[34]Dan Dong, Shaohua Wu, Dongqing Li, Jian Jiao*, Chanjuan Ding, Qinyu Zhang. Joint source-channel rate allocation with unequal error protection for space image transmission. International Journal of Distributed Sensor Networks, 2017, 13(7): 1-11. (IF=1.787, Q2)[35]Shaohua Wu, Tiantian Zhang, Jian Jiao*, Jingran Yang, Qinyu Zhang. Statistical prior aided separate compressed image sensing for green Internet of multimedia things. Mobile Information Systems, 2017 (2017), Article ID 2314062, doi: 10.1155/2017/ 2314062. 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IET Communications, 2016, 10(3): 245-252 (SCI)[43]Zhihua Yang, Hongbing Li, Jian Jiao, Qinyu Zhang, Ruhai Wang. CFDP-based Two-hop Relaying Protocol over Weather-Dependent Ka-band Space Channel. IEEE Transactions on Aerospace and Electronic Systems. 2015, 51(2): 1357-1374[44]陈英, 顾术实, 焦健*, 李云鹤, 吴绍华, 张钦宇. 基于无码率码的独立窗不等差错保护方案. 系统工程与电子技术. 2014, 36(5): 991-996.[45]Shushi Gu, Jian Jiao, Zhihua Yang, Qinyu Zhang, Wei Xiang, Bin Cao. Network-coded rateless coding scheme in erasure multiple-access relay enabled communications. IET Communications, 2014, 8(4): 537-545.[46]李云鹤, 顾术实, 焦健*, 于淼, 吴绍华, 张钦宇. 面向火星临近空间的分布式中继纠删编码机制研究. 宇航学报. 2013. 34(7): 963-970.[47]焦健, 杨志华, 顾术实, 周洁, 张钦宇. 基于随机置换展开与停止集的LT码联合编译码算法.通信学报. 2013, 34(2):31-39.[48]周洁, 焦健*, 杨志华, 顾术实, 张钦宇. 深空通信Ka频段自适应纠删编码研究. 宇航学报. 2013, 34(1): 92-98.[49]顾术实, 焦健*, 杨志华, 张钦宇. 面向深空通信的中继协作喷泉码设计. 系统工程与电子技术. 2012, 34(8):1696-1701.[50]顾术实, 张钦宇, 焦健. 一种适用于深空通信的有限随机性喷泉码算法. 宇航学报. 2011. 32(12): 2545-2549.[51]焦健, 杨志华, 周洁, 李红兵, 罗辉, 张钦宇. 深空通信中继文件传输协议设计.飞行器测控学报. 2011, 30(12): 32-36[52]Shushi Gu, Qinyu Zhang, Jian Jiao. A novel approach of limited-randomness fountain codes in deep space communication. Journal of Electronics (China). 2011. 28(2): 204-209.[53]Jian Jiao, Qing Guo, Qinyu Zhang. Packets interleaving CCSDS file delivery protocol in deep space communication. IEEE Aerospace and Electronic Systems Magazine, 2011, 26(2): 5-11.[54]焦健,张钦宇,李安国. 深空通信文件传输协议的交织技术研究. 宇航学报,2010,31(11):2584-2590.[55]焦健,张钦宇,李安国. 面向深空通信的喷泉编码设计. 宇航学报,2010,31(4):1156-1161.[56]焦健,张钦宇,李晖. CFDP协议异步NAK型文件传输时延的研究. 系统仿真学报,2009,21(14):4409-4412.[57]焦健,张钦宇,李晖.CFDP协议触发NAK型文件传输时延的研究.宇航学报,2009,30(1):260-265.会议论文及发表演说2020[1] Ying Wang, Shaohua Wu, Jian Jiao, Ye Wang, Rongxing Lu, and Qinyu Zhang. Age-optimal Transmission Policy for Markov Source with Differential Encoding. IEEE Globecom 2020, Taipei, Taiwan, December 2020. [2] Yizhi He, Jian Jiao*, Zeqiong Chen, Shaohua Wu, Weiqiang Wu, and Qinyu Zhang. Energy efficient mmWave NOMA downlink multi-relay system for ITSN. IEEE VTC 2020-Fall, Victoria, BC, Canada, October 2020.[3] Junliang Zhou, Jian Jiao*, Zilin Ni, Shiyi Liao, Shaohua Wu, and Qinyu Zhang. Joint power and time allocation of pilot scheme selection for uplink mMTC in ITSN. IEEE VTC 2020-Fall, Victoria, BC, Canada, October 2020.[4] Junliang Zhou, Jian Jiao*, Weizhi Wang, Tao Yang, Shaohua Wu, and Qinyu Zhang. On the performance of code-domain NOMA for SIN with superimposed pilot scheme. IEEE VTC 2020-Fall, Victoria, BC, Canada, October 2020.[5] Liang Xu, Jian Jiao*, Fei Wang, Huibin Yang, Shaohua Wu, and Qinyu Zhang. Novel pilot allocation random access protocol for integrated terrestrial-satellite networks. IEEE VTC 2020-Fall, Victoria, BC, Canada, October 2020.[6] Fei Wang, Jian Jiao*, Lianqin Li, Ke Zhang, Shaohua Wu and Qinyu Zhang. Finite length non-binary Raptor codes under ordered statistics decoder. IEEE VTC 2020-Fall, Victoria, BC, Canada, October 2020.[7] Zeqiong Chen, Jian Jiao*, Qiwen Li, Bowen Feng, Shaohua Wu and Qinyu Zhang. Millimeter-wave MIMO-NOMA antenna selection algorithms for space information network. IEEE VTC 2020-Fall, Victoria, BC, Canada, October 2020.[8] Ying Wang, Shaohua Wu, Libo Yang, Jian Jiao, Qinyu Zhang. To preempt or not: timely status update in the presence of non-trivial propagation delay. IEEE VTC 2020-Fall, Victoria, BC, Canada, October 2020.[9] Zilin Ni, Jian Jiao*, Shiqi Liu, Shaohua Wu, Qinyu Zhang. Energy efficient bidirectional relaying network coded HARQ transmission scheme for S-IoT. IEEE WCNC 2020, Seoul, South Korea, May 2020.[10] Yajing Deng, Shaohua Wu, Xijin Liu, Dongqing Li, Jian Jiao, Qinyu Zhang. Index modulated polar codes. IEEE WCNC 2020, Seoul, South Korea, May 2020.[11] Dongqing Li, Shaohua Wu, Libo Yang, Jian Jiao, Qinyu Zhang. Age-optimal two-layer coding over fading channels. ICNC 2020 WC, Big Island, Hawaii, USA, February 2020.[12] Bi He, Shaohua Wu, Yajing Deng, Hao Yin, Jian Jiao, Qinyu Zhang. A machine learning based multi-flips successive cancellation decoding scheme of polar codes. IEEE VTC 2020 Spring, Antwerp, Belgium, May 2020. [13] Aimin Li, Shaohua Wu, Ying Wang, Jian Jiao, Qinyu Zhang. Spinal codes over BSC: Error probability analysis and the puncturing design. IEEE VTC 2020 Spring, Antwerp, Belgium, May 2020. [14] Qiwen Li, Jian Jiao*, Yunyu Sun, Shaohua Wu, Ye Wang, Qinyu Zhang. An efficient millimeter wave MIMO channel estimation scheme for space information networks. IEEE VTC 2019-Fall, Honolulu, Hawaii, USA, Sept. 2019.[15] Lianqin Li, Ke Zhang, Jian Jiao*, Yunyu Sun, Shaohua Wu, Ye Wang, Qinyu Zhang. Performance analysis of finite length non-binary Raptor codes under ordered statistics decoder. IEEE VTC 2019-Fall, Honolulu, Hawaii, USA, Sept. 2019.[16] Kexin Liang, Bowen Feng, Jian Jiao*, Yunyu Sun, Shaohua Wu, Ye Wang, Qinyu Zhang. Design on polarization weight-based polar coded SCMA system over fading channels. IEEE VTC 2019-Fall, Honolulu, Hawaii, USA, Sept. 2019. [17] Bowen Feng, Jian Jiao*, Kexin Liang, Shaohua Wu, Ye Wang, Qinyu Zhang. Adjustable soft list decoding for polar codes. IEEE VTC 2019-Fall, Honolulu, Hawaii, USA, Sept. 2019. [18] Ke Zhang, Jian Jiao*, Lianqin Li, Shaohua Wu, Ye Wang, Qinyu Zhang. Weight-adaptive analog fountain codes toward massive machine type communications. IEEE VTC 2019-Fall, Honolulu, Hawaii, USA, Sept. 2019.[19] Kai Zhang, Dongqing Li, Shaohua Wu, Ye Wang, Jian Jiao, Qinyu Zhang. Improved spinal codes: A segmented CRC-aided scheme. IEEE VTC 2019-Fall, Honolulu, Hawaii, USA, Sept. 2019. [20] Ying Wang, Shaohua Wu, Dongqing Li, Jian Jiao, Qinyu Zhang. Age-optimal IR-HARQ design in the presence of non-trivial propagation delay. WCSP 2019, Xi'an, China, October, 2019.[21] Yunyu Sun, Jian Jiao*, Shaohua Wu, Qinyu Zhang. Joint power allocation and rate control for NOMA-based space information networks. IEEE ICC’ 2019, Shanghai, China, May 2019.[22] Jinsong Xu, Shaohua Wu, Jian Jiao, Qinyu Zhang. Optimized puncturing for the spinal codes. IEEE ICC’ 2019, Shanghai, China, May 2019.[23] Zilin Ni, Jian Jiao*, Xiaoxin Li, Shaohua Wu, Ye Wang, Qinyu Zhang. Design and analysis of bidirectional relaying NCed-HARQ transmission scheme for S-IoT. IEEE/CIC ICCC 2019, Changchun, China, August 2019.[24] Liang Xu, Jian Jiao*, Xiaoyu Suo, Shaohua Wu, Ye Wang, Qinyu Zhang. Unequal recovery time random access protocol for massive MIMO IoT system. IEEE/CIC ICCC 2019, Changchun, China, August 2019. [25] Yizhi He, Jian Jiao*, Xiao Liang, Shaohua Wu, Ye Wang, Qinyu Zhang. Outage performance of millimeter-wave band NOMA downlink system in satellite-based IoT. IEEE/CIC ICCC 2019, Changchun, China, August 2019.[26] Liu Zhou, Bowen Feng, Jian Jiao*, Kexin Liang, Shaohua Wu, Qinyu Zhang. Performance analysis of soft decoding algorithms for polar-staircase coding scheme. WCSP 2018, Hangzhou, China, October 2018.[27] Mingduo Gan, Jian Jiao*, Lianqin Li, Shaohua Wu, Qinyu Zhang. Performance analysis of uplink uncoordinated code-domain NOMA for SINs. WCSP 2018, Hangzhou, China, October 2018.[28] Kexin Liang, Bowen Feng, Jian Jiao*, Shaohua Wu, Qinyu Zhang. An efficient channel estimation scheme based on frozen bits of polar codes over fading channel. WCSP 2018, Hangzhou, China, October 2018. [29] Xiao Liang, Jian Jiao*, Bowen Feng, Shaohua Wu, Bin Cao, Qinyu Zhang. Performance analysis of millimeter-wave hybrid satellite-terrestrial relay networks over rain fading channel. IEEE VTC2018-Fall, Chicago, USA, August 2018.[30] Ke Zhang, Jian Jiao*, Zixuan Huang, Bowen Feng, Shaohua Wu, Bin Cao, Qinyu Zhang. Analysis and design of ultra-reliable short blocklength analog fountain codes. IEEE VTC2018-Fall, Chicago, USA, August 2018.[31] Bowen Feng, Jian Jiao*, Liu Zhou, Shaohua Wu, Bin Cao, Qinyu Zhang. A novel high-rate polar-staircase coding scheme. IEEE VTC2018-Fall, Chicago, USA, August 2018.[32] Xiaoming Jiang, Shaohua Wu, Xijin Liu, Jian Jiao, Qinyu Zhang. Multi-RS concatenated polar codes with enhanced interleaving and list decoding. IEEE VTC2018-Fall, Chicago, USA, August 2018.[33] Zejin Li, Shaohua Wu, Mengke Ma, Jian Jiao, Qinyu Zhang. Improved distributed compressive video sensing based on HEVC motion estimation. IEEE/CIC ICCC 2018, Beijing, China, Aug. 2018.[34] Xiaoyu Suo, Jian Jiao*, Ke Zhang, Yunyu Sun, Shaohua Wu, Qinyu Zhang. Joint random pilot and multi-slot access in massive MIMO for space information networks. IEEE/CIC ICCC 2018, Beijing, China, Aug. 2018.[35] Xiaoxin Li, Jian Jiao*, Yunyu Sun, Shaohua Wu, Qinyu Zhang. Design and analysis of NCed-HARQ transmission scheme for space information networks. IEEE/CIC ICCC 2018, Beijing, China, Aug. 2018.[36] Yuhan Wang, Jian Jiao*, Qiwen Li, Shaohua Wu, Qinyu Zhang. Power allocation optimization of multibeam satellites for integrated satellite-terrestrial networks. IEEE/CIC ICCC 2018, Beijing, China, Aug. 2018. [37] Zixuan Huang, Ke Zhang, Jian Jiao*, Lianqin Li, Shaohua Wu, Qinyu Zhang. An efficient construction method for ultra-reliable finite length analog fountain codes. IEEE/CIC ICCC 2018, Beijing, China, Aug. 2018.[38] Dongqing Li, Shaohua Wu, Jian Jiao, Qinyu Zhang. A cross-layer image transmission method for deep-space exploration. CSPS2018, Dalian, China, 14-16 July 2018.[39] Bowen Feng, Jian Jiao*, Sha Wang, Shaohua Wu, Shushi Gu, Qinyu Zhang. Rate-compatible transmission schemes based on parallel concatenated punctured polar codes. ACM MSWiM’2017, Miami, FL, USA, November, 2017.[40] Sha Wang, Jian Jiao*, Bowen Feng, Shaohua Wu, Shushi Gu, Qinyu Zhang. Efficient HARQ scheme based on rate-compatible punctured polar codes. IEEE/CIC ICCC 2017, Qindao, China, Oct. 2017.[41] Youjun Hu, Jian Jiao*, Rui Zhang, Shaohua Wu, Shushi Gu, Qinyu Zhang. Design and analysis of LTP-HARQ transmission scheme in OSTBC-MIMO systems for SINs. IEEE/CIC ICCC 2017, Qindao, China, Oct. 2017.[42] Ke Zhang, Jian Jiao*, Shaohua Wu, Shushi Gu, Qinyu Zhang. Bounds on the error probability of finite-length RaptorQ codes. IEEE/CIC ICCC 2017, Qindao, China, Oct. 2017.[43] Houlian Gao, Jian Jiao*, Shaohua Wu, Shushi Gu, Qinyu Zhang. Performance analysis of cooperative relaying communications for space information networks. WCSP 2017, Nanjing, China, Oct. 2017.[44] Dan Dong, Shaohua Wu, Xiaoming Jiang, Jian Jiao, Qinyu Zhang. Towards high performance short polar codes: Concatenated with the spinal codes. IEEE PIMRC 2017, Montreal, Canada, Oct. 2017.[45] Junxin Luo, Shaohua Wu, Siyue Xu, Jian Jiao, Qinyu Zhang. A cross-layer image transmission scheme for deep space exploration. IEEE VTC 2017-Fall, Toronto, Canada, 24-27 September 2017.[46] Siyue Xu, Shaohua Wu, Junxin Luo, Jian Jiao, Qinyu Zhang. Low complexity decoding for Spinal codes: Sliding feedback decoding. IEEE VTC 2017-Fall, Toronto, Canada, 24-27 September 2017.[47] Jiahui Li, Shaohua Wu, Huan Huang, Jian Jiao. Compressed sensing image reconstruction based on joint statistical and structural priors. In Proceeding of the 19th International Conference on Advanced Communication Technology (ICACT 2017), Pyeongchang, South Korea, 19-22 Feb. 2017. (Outstanding Paper Award)[48] Wenhe Jin, Shaohua Wu, Erpeng Yang, Jian Jiao. LDPC convolutional codes coded cooperation based on puncturing. ICACT 2017, Pyeongchang, South Korea, 19-22 Feb. 2017.[49] Yang Wang, Jian Jiao*, Shaohua Wu, Yonghui Li, Qinyu Zhang. Rateless coding scheme for time-varying dying channels. WCSP 2016, Yangzhou, October 13-15, 2016.[50] Bowen Feng, Jian Jiao*, Sha Wang, Shaohua Wu, Qinyu Zhang. Construction of polar codes concatenated to space-time block coding in MIMO system. IEEE VTC 2016-Fall, September, 2016, Canada.[51] Chen Chen, Jian Jiao*, Haitao Wu, Yonghui Li, Qinyu Zhang. Adaptive rateless coding scheme for deep-space Ka-band communications. IEEE WiSEE 2016, 26-29, September, 2016, Germany.[52] Haitao Wu, Yunhe Li, Jian Jiao*, Bin Cao, Qinyu Zhang. LTP asynchronous accelerated retransmission strategy for deep space communications. IEEE WiSEE 2016, 26-29, September, 2016, Germany.[53] Shengxian Nie, Shushi Gu, Jian Jiao*, Wei Xiang, Qinyu Zhang. A novel systematic Raptor network coding scheme for Mars-to-Earth relay communication. IEEE WCNC 2016, April, 2016, Qatar.[54] Shushi Gu, Yi Yang, Jian Jiao*, Wei Xiang, Qinyu Zhang. Distributed rateless coded collaboration for satellite relay networks. WCSP 2015, 2015.10 (Best Paper Award)[55] Shushi Gu, Jian Jiao, Zhihua Yang, Qinyu Zhang, Ye Wang. RCLTP: A rateless coding-based Licklider transmission protocol in space delay/disrupt tolerant network. WCSP 2013, HangZhou, 2013.10[56] Qin Jiao, Yang Zhihua, Jiao Jian, Zhang Qinyu, Xiaodong Lin, Bin Cao. On symbol mapping for FQPSK modulation enabled physical-layer network coding. WCNC 2013, ShangHai, 2013: 1516-1521.[57] Hongbing Li, Zhihua Yang, Jian Jiao, Qinyu Zhang, Ruhai Wang, Xiaodong Lin. Analysis on dynamic of node storage in space delay-disruption tolerant networking. ICC 2013, Budapest, 2013: 6133-6137.[58] Liting Wei, Jian Jiao, Zhihua Yang, Shushi Gu, Qinyu Zhang, Youhua Fan. A LT-based distributed codes over erasure channel. SPACECOM 2012, Chamonix, France, April 29, 2012:53-59.[59] Zhou Jie, Jiao Jian, Yang Zhi-hua, Gu Shu-shi, Zhang Qin-yu. A raptor-based adaptive erasure code over Ka-band space channel. SPACECOM 2012, Chamonix, France, April 29, 2012: 48-52.[60] Qiuping Zheng, Zhihua Yang, Jian Jiao, Qinyu Zhang. A weather-forecasting improved CFDP over Ka-band channel. SPACECOM 2012, Chamonix, France, April 29, 2012: 73-77.[61] Li Huiyuan,Yang Zhihua, Jiao Jian, Zhang Qinyu. A CFDP-based multi-state model on Ka-band weather dependent channel. SPACECOM 2012, Chamonix, France, April 29, 2012: 60-66.[62] Haitao Wu, Zhihua Yang, Jian Jiao, Qinyu Zhang. An improved double retransmission scheme to deferred NAK CFDP. SPACECOM 2012, Chamonix, France, April 29, 2012: 67-72.[63] Jian Jiao, QY Zhang, and H Li. Design of concatenated fountain code in deep space communication, International IEEE Conference on Wireless Communications, Networking and Mobile Computing, pp. 1-5, Beijing, 2009.[64] Jian Jiao, QY Zhang, and H Li. An optimal ARQ timer design of file delivery time in CFDP NAK model, International IEEE Conference on Wireless Communications, Networking and Mobile Computing, pp. 1-5, Beijing, 2009.2016- IEEE Member;IEEE期刊审稿人,如TCom,TVT,TII,IoTJ等;IEEE国际会议TPC,如VTC,ICC等;国内学术期刊审稿人,如中国科学,中国通信等。标签: 电子与信息工程学院 哈尔滨工业大学(深圳)
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