清华大学电子工程系博士生导师简介:宋健

2015-01-07 17:19:35来源:网络

  考博考生生准备要参加博士研究生考试时,必须要先确定准备攻读博士的相关专业,然后选择该专业有招生需求的学校,接下来应该联系博士生导师,只有当博士生导师同意考生报考,考博生才可以报考。所以提前了解博士生导师的学术文章及联系方式很重要,新东方在线特整理了各招收博士院校博导的简介及联系方式供考博生参考。

  

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  宋健 教授

  中国北京市海淀区清华大学电子工程系 100084

  电话: 86-10-62792653

  办公室位置:FIT3-415

  电子邮箱:jsong@tsinghua.edu.cn

  教育背景

  1990年7月清华大学电子工程系信息与通信工程专业本科毕业,曾于1990年获得第一届清华大学特等奖学金。

  1995年3月获得清华大学电子工程系信息与通信工程专业博士学位,是第一个系内跨学科的博士,导师冯重熙教授、范重澄教授和姚彦教授,论文研究方向为光纤通信系统建模和特性仿真。

  工作履历

  1995年3月留校任教,先后在香港中文大学讯息工程学系从事光纤通信系统系统特性的博士后研究、在加拿大滑铁卢大学电机和计算机工程系从事从事光纤通信系统仿真软件设计的博士后研究。

  1997年6月被聘为副教授。

  1998年进入美国休斯网络系统公司,在ADG (Advanced Development Group)从事研究工作。研究领域涉及无线IEEE 802.11n物理层建议、卫星W-CDMA系统、HAP系统、卫星通信系统特性仿真、电子扫描天线等。

  2005年1月回到清华大学,现任电子工程系副系主任和数字电视技术研究中心主任。

  开设课程

  《信号与系统》,二年级春节学期,英文授课

  《通信网络设计实例研究》,高年级研讨课,三年级春节学期,英文授课

  学术兼职

  Fellow IET

  Senior member of IEEE

  Associate Editor of IEEE Transaction on Broadcast

  Vice chair of Working Party 6A of ITU-R

  Member of IEEE BTS Administration Committee

  Chairman of IEEE BTS Beijing Chapter

  ITU-R中国专家组成员

  工信部电子信息司音视频专家委员会成员

  研究领域

  01/2005--

  1. 数字电视地面传输技术

  2. 通信与广播结合的网络融合

  3. 电力线通信(包括宽带和窄带)

  4. 无线应急视频传输技术

  5. 可见光通信

  10/1998-01/2005

  1. 应用点波束的卫星通信系统

  2. 电子扫描天线技术

  3. 基于W-CDMA的卫星通信

  4. IEEE 802.11n物理层技术的

  07/1997-10/1998

  1. 光纤通信器件和系统仿真软件包

  04/1996-06/1997

  1. 光纤通信器件和系统建模,系统特性仿真研究

  研究概况

  清华大学-安捷伦信息与通信测量联合研究中心主任(2007年--).

  清华大学-香港应用科技研究院多媒体广播与通信联合实验室主任(2007- 2010).

  欧盟FP6项目“Multistandard integrated network convergence for global mobile and broadcast technologies”中方负责人

  波音项目PLC transmission system prototype.

  国家中长期重大专项核高基“数字电视高端SoC芯片”.

  东芝DTMB合作项目

  NTT DoCoMo在DTV领域的研究项目

  NUFRONT在DTV领域的研究项目

  北京意科通信技术有限公司PLC领域的合作项目

  奖励与荣誉

  2009 中国通信学会一等奖

  2000 休斯公司Achievement Award

  1995 清华大学“优秀博士生”,同年获得清华大学优秀教师奖

  学术成果

  发表期刊和会议文章80余篇,代表性论文如下:

  1. A Receiver Diversity Scheme for Single-Carrier System With Unique Word, Huang, S, Wang, J, and Song, J, IEEE Transactions on Broadcasting, Vol.58, No. 2: 305-309, 2012

  2. Novel Transmit Diversity Scheme for TDS-OFDM System With Frequency-Shift m-Sequence Padding, Zhou, X, Yang, F, and Song, J, IEEE Transactions on Broadcasting, Vol.58, No. 2: 317-324, 2012

  3. A measurement method of the DTMB modulator, Han, B, Song, J, Yang H, and Yang F, IEE IEEE Transactions on Broadcasting, Vol.57, No. 3: 745-751, 2011

  4. Coded Modulation with Signal Space Diversity, Xie, Q, Song, J, Peng, K, Yang, F, and Wang, Z, IEEE Transactions on Wireless Communications, Vol. 10, No. 2, 660-669, 2011

  5. Technology and standards of digital television terrestrial multimedia broadcasting, Yen, O; Song J; Pan, and C; Li, Y, Communications Magazine, IEEE Vol 48, No. 5, 119-127, 2010

  6. Quantization error reduction for the phased array with 2-bit phase shifter, Song J; Wang J; Peng K; Pan C; and Yang Z, Wireless Personal Communications, Vol. 52, No.1, 29-41,2010.

  7. A New Paradigm for Mobile Multimedia Broadcasting Based on Integrated Communication and Broadcast Networks, Niu, Z; Long, L; Song, J; and Pan, C, Communications Magazine, IEEE Vol. 46, No. 7, 126 – 132, 2008

  8. Review of Chinese Digital Terrestrial Television Broadcasting Standard, Key Technologies, and Performance, Song, J; Pan, C; Wang, J; and Yang, Z, SMPTE J. Motion Imaging, Vol. 116, No. 10, 459-466, 2007.

  9. Technical Review on Chinese Digital Terrestrial Television Broadcasting Standard and Measurements on Some Working Modes,Song, J; Yang, Z; Yang, L; Gong, K; Pan, C; Wang, J; and Wu, Y, IEEE Transactions on Broadcasting, Vol.53, No. 1: 1-7, 2007

  10. A general SFN structure with transmit diversity for TDS-OFDM system, Wang, J; Song, J; Wang, J; Pan, C; Yang, Z; and Yang, L, IEEE Transaction on Broadcasting, Vol. 52, No.2, 245- 251, 2006.

  11. Frames theoretic analysis of zero-padding OFDM over deep fading wireless channels, Wang, J; Song, J; Yang, Z; Yang, L; and Wang, J, IEEE Transaction on Broadcasting, Vol. 52, No.2, 252- 260, 2006.

  12. Intercarrier Interference Cancellation with Frequency Diversity for OFDM Systems, Tang, S; Gong, K; Song, J; Pan, C; and Yang, Z; IEEE Transactions on Broadcasting, Vol.53, No. 1, 132-137, 2007.

  13. Field Trial of Digital Video Transmission over Medium-Voltage Powerline with Time Domain Synchronous Orthogonal Frequency Division Multiplexing Technology, Song, J; Pan, C; Wu, Q; Yang, Z; Liu, H; Zhao, B; and Li, X, IEEE International Symposium on PowerLine Communications and its Applications 2007, pp.559-564, Pisa, Italy.

  14. Channel Study for Medium-voltage Power Network, Liu, H; Song, J; Zhao, H; and Li, X, IEEE International Symposium on PowerLine Communications and its Applications 2006, P.245-250, Florida, USA.

  15. Iterative Padding Subtraction of the PN Sequence for the TDS-OFDM over Broadcast Channels, Wang, J; Yang, Z; Pan, C; Song, J; and Yang L, IEEE Transaction on Consumer Electronics, Vol.51, No.4, 1148-1152, 2005.

  16. Design of space-time-frequency transmitter diversity scheme for TDS-OFDM system, Wang, J; Yang, Z; Pan, C; Song, J; and Yang, L, IEEE Transaction on Consumer Electronics, Vol.51, No.3, 759-764, 2005.

  17. A Practical Passive Surveillance Scheme for Optically Amplified Passive Optical Networks, CHAN, K; TONG, F; CHEN, L; SONG J; and LAM, D, IEEE Photonics Technology Letters, Vol. 9, 526-528, 1997.

  18. Using Negative Dispersion-shifted Fiber and Electro-absorption Modulator to Alleviate both Dispersion- and Nonlinerity-induced Penalties, SONG, J; FAN, C; and YANG, Z, SPIE 2893, 279-283, 1996.

  19. Sensitivity Improvement for NRZ Optical Systems Using NALM and Narrow-band Filter, SONG, J; CHAN, C; TONG, T; CHEN, L; and CHEUNG, K, Porc. LEOS’96, Boston, USA, 1996, paper WO2.

  20. Extinction Ratio Induced Crosstalk System Penalty in WDM Networks, SONG, J; CHAN, C; TONG, T; and CHEN, L, IEE Electronics Letters, Vol. 32, 2212-2114, 1996.

  21. Fiber Dispersion Limit for IM/DD Systems and its Applications, SONG, J; FAN, C; and YANG, Z, IEE Electronics Letters, Vol. 32, 674-676. 1996.

  22. A Simplified Dispersion Limit Formula for IM/DD Systems and its Comparison with Experimental Results, SONG, J and FAN, C, IEEE J. Lightwave Technology, Vol. 13, No.3, 546-550, 1995.

  23. Signal Self-Restoration Characteristic and Bit-Error-Rate Performance of Terrestrial Cascaded Erbium-Doped Fiber Amplifier Systems, SONG, J; FAN, C; YAO, Y; and FENG, C, IEE Pro.-Optoelectron., Vol. 142, no. 5, 94-96, 1995.

  24. New Dispersion Compensation Method for High-Speed WDM Systems with Negligible Four-Wave Mixing Effect and Total Dispersion, FAN, C and SONG, J, SPIE 2321, 346-351, 1994.

  合作出版数字电视领域中文书籍两本:

  1. 《数字电视传输技术》,电子工业出版社,2011年出版

  2. 《地面数字电视传输技术和系统》,人民邮电出版社2009年出版

  合作翻译英文电力线专著:

  《Broadband Powerline Communications Networks - Network Design》, 人民邮电出版社2008年出版。

  获得授权两项美国专利:

  1. US Patent No. 7,492,749, “Method and system for providing multi-input-multi-output (MIMO) downlink transmission”, by Song, J and Karimullah, K, issued in 2009. (I filed it before I left USA).

  2. US Patent No. 6,351,240, “Circularly Polarized Reflectarray Using 2-bit Phase Shifter Having Initial Phase Perturbation” by Karimullah; K, Song, J; Lee, L; and Kay, S, issued in 2002

  获得授权十多项中国专利

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