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徐位凯

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副教授
- 入职时间:2003-08-14
- 所在单位:信息学院
- 学历:博士研究生毕业
- 性别:男
- 学位:工学博士学位
- 在职信息:在职
访问量:
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[111]徐位凯.Performances of CS-DCSK UWB communication system in the presence of narrow band interferers.Proc. of the 11th IEEE Int. Conference on Trust, Security and Privacy in Computing and Communications, TrustCom-2012 - 11th IEEE Int. Conference on Ubiquitous Computing and Communications, IUCC-2012,1475-1480.
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[112]王琳,徐位凯.An adaptive retransmission scheme of SIMO FM-DCSK UWB system.13th International Symposium on Communications and Information Technologies: Communication and Information Technology for New Life Style Beyond the Cloud, ISCIT 2013,128-132.
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[113]徐位凯,A new user cooperative protocol based on code-shifted differential chaos shift keying modulation.13th International Symposium on Communications and Information Technologies: Communication and Information Technology for New Life Style Beyond the Cloud, ISCIT 2013,52-56.
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[114]徐位凯,Performance of CM-TR UWB communication system in the presence of a single narrow band interferer.2013 IEEE International Conference on Ultra-Wideband, ICUWB 2013,154-158.
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[115]徐位凯,A NEW DATA RATE ADAPTION COMMUNICATIONS SCHEME FOR CODE-SHIFTED DIFFERENTIAL CHAOS SHIFT KEYING MODULATION.INTERNATIONAL JOURNAL OF BIFURCATION AND CHAOS,2011,22(8):
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[116]徐位凯,Performance of DCSK Cooperative Communication Systems Over Multipath Fading Channels.IEEE TRANSACTIONS ON CIRCUITS AND SYSTEMS I-REGULAR PAPERS,2010,58(1):196-204.
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[117]徐位凯,A NOVEL DIFFERENTIAL CHAOS SHIFT KEYING MODULATION SCHEME.INTERNATIONAL JOURNAL OF BIFURCATION AND CHAOS,2010,21(3):799-814.
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[118]徐位凯,Design of Joint Position and Constellation Mapping Assisted DCSK Scheme Subject to Laplacian Impulsive Noise.IEEE COMMUNICATIONS LETTERS,2021,26(2):463-467.
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[119]徐位凯,A multiple sequences spread-spectrum system with cyclic index modulation for underwater acoustic communication.2021 IEEE/CIC International Conference on Communications in China, ICCC Workshops 2021,2021,194-199.
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[120]徐位凯.Discrete W Transform Based Index-Keying M-Ary DCSK for Non-Coherent Chaotic Communications.IEEE Communications Letters,25(9):3104-3108.