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19、.!efiK“),Kfiflflf e$“o2012 #,IEEE 802.1AVB K&fiCTSNPKoTSN fi) AVB Kfi,$.K0,Gfie.a%“o2015 #,IETF )(DetNet)ffl,K)hKfifi)8 IP ,K. Se,8%oK1M,CM$ 10 #,nfi,S 1Pfl,fi人;2Pu0o6G ,8%fi 6G ),4$K.儎儎flo“A fi8$flS1P“4人e人,4S亾ofl 6G ,俌h.,8%flYfl$,flYfl$%flR“Mo2P4)80IEEE TSN Kfifi)8,S TSN fiCNC “e,KM1fio3P4.805G ,3f

20、ifl IP S1,fi8 M)ofl 6G ,Kfi Sfi4fi.%,4$s.u,4.Gfi.,K14.88%o丕fi4.66G Gfi),4.fi.)8.8%6,K1;.;亼8.1 K)o)!4fl;1,K$1fiC P4.POFP.FIB C OpenFlowP.RIB C BGP. PCEPP. OS . aC CLI. NETCONF/YANG.OVSDBP.eC GBP. NEMOPo$fiK.%K)o8%o4M;!.K!,fi)flfi“Mz,fiGfi“$,)flh人$fifl#$M4“o flfi$,flfihfi)fl“, .%o1fl!fi fi“z API ,hfi)

21、fl8)fiD,z.QoS oGfi,8儎Gfi)fl!efi3fio2) e8%zfi,efih fl3o)K,fifi“ Mz,eh4C NewIP.SRv6.QUIC P,fiMfl,$.GfiK%,s%)flefiKo14a 5G+ 6G K%o3) fifi$,$haoGfia)fl8%)%,)KS,h4fifl,K%,fl$1)fl“fio“,K8.)8.8% “.fiAf“14.fi, 4o4) %Sfi6g.$儎$.$!.K4).18o%Sfi fle%Sfi1,Gfi;g“%,.uK,)fl!gfio 5G !), 5G flKeA3,$fieo“.).fl亼8flC“,zf

22、i.8%.fKfiflKfihfl,K!e“KVfi 6G fieno$R)fi 6G Kfi“KS$, a3%nofi3en, fiBfi.q,fi 6G “o1. G.Y.Liu, Y.H.Huang, N. Li et al., “Vision, Requirements and Network Architecture of 6G Mobile Network Beyond 2030”, China Communications, vol. 17, no. 9, pp. 92-104, 2020.2. P. Pathak, X. Feng, P. Hu, et al., “Visibl

23、e light communication, networking, and sensing: a survey, potential and challenges,” IEEE Communications Surveys & Tutorials, 2015, 17(4): 2047-2077.3. H. Song and T. Nagatsuma, “Present and Future of Terahertz Communications,” IEEE Transactions on Terahertz Science and Technology, vol. 1, no. 1, pp

24、. 256- 263, Sept. 2011.4. ,“A“ 3GPP fl 6G ,”fAfl, 2020.5. W. Saad, M. Bennis and M. Chen, “A vision of 6G wireless systems: applications, trends, technologies, and open research problems,” in IEEE Network, vol. 34, no. 3, pp. 134-142, May/June 2020.6. J. Zhang, S. Chen, Y. Lin, et al., “Cell-Free Ma

25、ssive MIMO: A New Next-Generation Paradigm,” in IEEE Access, vol. 7, pp. 99878-99888, 2019.7. D. Wang, J. Wang, X. You, et al., Spectral Efficiency of Distributed MIMO Systems, in IEEE Journal on Selected Areas in Communications, vol. 31, no. 10, pp. 2112-2127, October 2013.8. X. Su, Y. Yuan and Q.

26、Wang, Performance Analysis of Rate Splitting in K-UserInterference Channel Under Imperfect CSIT: Average Sum Rate, Outage Probability and SER, in IEEE Access, vol. 8, pp. 136930-136946, 2020.9. N. Li, J. Jin, L. Xia, et al., “Robust Low Complexity Beamforming for Cell-Free Massive MIMO”, to appear i

27、n Proc. IEEE VTC2020-Fall, 2020.10. W. Tang et al., “Wireless Communications with Programmable Metasurface: New Paradigms, Opportunities, and Challenges on Transceiver Design,” in IEEE Wireless Communications, vol. 27, no. 2, pp. 180-187, April 2020.11. Q. Wu, S. Zhang, B. Zheng, et al., “Intelligen

28、t Reflecting Surface AidedWireless Communications: A Tutorial,” arXiv:2007.02759v1, July 2020.12. C. Liaskos, S. Nie, A. Tsioliaridou, et al., “A New Wireless Communication Paradigm through Software-Controlled Metasurfaces,” in IEEE Communications Magazine, vol. 56, no. 9, pp. 162-169, Sept. 2018.13

29、. J. E. Mazo, “Faster-than-Nyquist signaling,” Bell Syst. Tech. J., vol. 54, no. 8, pp. 14511462, 1975.14. S. Zhao, Q. Wang, J. Jin and G. Liu, “Performance Analysis of Overlapped Time Division Multiplexing Systems Under Correlated Noise,” to appear in Proc. IEEE GLOBECOM Workshop, 2020.15. Q. Wang,

30、 Y. Chang and D. Yang, “Deliberately Designed Asynchronous Transmission Scheme for MIMO Systems,” Signal Processing Letters, vol. 14, no. 12, pp. 920-923, Dec. 2007.16. D. K. C. So and Y. Lan, “Virtual Receive Antenna for Overloaded MIMO Layered Space-Time System,” in IEEE Transactions on Communicat

31、ions, vol. 60, no. 6, pp. 1610-1620, June 2012.17. R. Hadani et al., “Orthogonal Time Frequency Space Modulation,” in Proc. IEEE Wireless Communications and Networking Conference (WCNC), San Francisco, CA, pp. 1-6. 2017.18. K. R. Murali and A. Chockalingam, “On OTFS Modulation for High-Doppler Fading Channels,” in Proc. Information Theory and Applications Workshop (ITA), San Diego, CA, pp.

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