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个人简介

王遥,2014年获美国明尼苏达大学电子工程博士学位,2014年至2017年在美国卡内基梅隆大学电子与计算机工程系进行博士后研究,2017年加入上海交通大学仪器与科学系,任副教授。作为技术骨干参与美国科研项目五项(美国国家科学基金,Seagate和Avago公司等),中国自然科学面上和青年项目各一项。本人主要结合器件物理性质和信号处理两方面对于新型信息存储器,传感器与换能器进行研究,研究方向一为:下一代超高密度磁存储技术的磁性系统和相关信号检测以及机器学习算法研究;研究方向二为:智能传感器与换能器的新型物理性质和结构研究。在《IEEE Journal on Selected Areas in Communications》, 《Journal of Applied Physics》,《IEEE Transactions on Magnetics》, 《IEEE Magnetics Letters》和 《AIP Advances》等发表SCI收录的学术论文近30篇,其中一作或通信作者20余篇,论文涉及信息存储,信号检测与智能传感等领域。同时是权威国际期刊《Journal of Alloy and Compound》, 《IEEE Magnetics Letter》,《IEEE Transactions on Magnetics》,《IEEE Transactions on Communications》, 《IEEE Communications Letters》等审稿人。

研究领域

下一代超高密度信息存储系统研究及相关信号检测与机器学习算法研究;智能传感器与换能器研究。

近期论文

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[1] Y. Wang* and B.V.K. Vijaya Kumar, “Write Modeling and Read Signal Processing for Heat Assisted Bit-Patterned Media Recording”, IEEE Trans. Magn., Vol.54, No.2, Feb.2018, Article # 3000510. [2] Y. Wang* and B.V.K. Vijaya Kumar, “Improved Multitrack Detection with Hybrid 2D Equalizer and Modified Viterbi Detector”, IEEE Trans. Magn., Vol.53, No.10, Oct.2017, Article # 3000710. [3] Y. Wang* and B.V.K. Vijaya Kumar, “Bidirectional Decision Feedback Modified Viterbi Detection (BD-DFMV) for Shingled Bit-Patterned Magnetic Recording (BPMR) With 2D Sectors and Alternating Track Widths”, IEEE J. Sel. Areas Commun., Vol. 34, No.9, Sep. 2016, PP.2450-2462. [4] Y. Wang* and B.V.K. Vijaya Kumar, “Multi-track joint detection for shingled magnetic recording on bit patterned media with 2-D sectors”, IEEE Trans. Magn., Vol. 52, No.7, Jul. 2016, Article # 3001507. [5] Y. Wang*, R. H. Victora and M. F. Erden, “Two-dimensional magnetic recording with a novel write precompensation scheme for 2-D nonlinear transition shift”, IEEE Trans. Magn., Vol. 51, No.4, April. 2015, Article # 3000507. [6] Y. Wang, M. F. Erden, and R. H. Victora*, “Novel system design for readback at 10 Terabits per square inch user areal density,” IEEE Magn. Lett., Vol.3, 2012, Article#: 4500304. [7] L. Chen, Y. Wang*, “Enhanced magnetic field sensitivity in magnetoelectric composite based on positive magnetostrictive/negative magnetostrictive/piezoelectric laminate heterostructure”, IEEE Trans. Magn., Vol.53, No.10, Nov.2017, Article # 4004405. [8] Y. Dong, Y. Wang* and R. H. Victora, “Micromagnetic specifications for recording self-assembled bit-patterned media”, J. Appl. Phys., Vol.111, Apr.2012, Article#: 07B904.

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