2030+技术趋势白皮书_第1页
2030+技术趋势白皮书_第2页
2030+技术趋势白皮书_第3页
2030+技术趋势白皮书_第4页
2030+技术趋势白皮书_第5页
已阅读5页,还剩31页未读 继续免费阅读

下载本文档

版权说明:本文档由用户提供并上传,收益归属内容提供方,若内容存在侵权,请进行举报或认领

文档简介

1、fi1 32$fifl4 42.1A仁 42.2kfl 5DOICT 7fi 72.5-fi$fl! 8fifi 9y$fi$ MIMO 103.2$ 113.3fi 123.4 143.5AI 傡fi fl 163.6%fl%$ 173.7D QoS 18 HYPERLINK l _TOC_250001 fi 194.1fi! 194.2fi!fi 204.3fl 234.4yRflfi 244.5 254.6 27 HYPERLINK l _TOC_250000 5 29 291 2030+,6G fl 5G 1GfiK#8z!,flfKfi“,43 fl. K,fihfl4“8zz1”#

2、,4“8z z1,3fl”1o!,6G fl z1.1fi.uKS1)K,“z 18z.oKh“fl.K!. 1000km/h 9$1.3$1.8zz1)ofi)Ke儎,6G Kfie fio6G .flflKfi“fi 1 o 1. 6G .flflKfiRfi“$fiKfi“K)人e,)“fl“Kfio$fifl42DKfifl8%.f,flfi,)fl!eK!fi3,fi;Kfi4,$fiho4M$flfl “Ko析嬰弙2.1儎,;%,6GHz $%Cz,26GHz.39GHz hCz 5G ),n儎, THz e,儎9e儎!o 430790THzCMfi 380750nmP 2,$ 4

3、00THz %,h 0.110THzCMfi 303000mP3,$ 10THz %,R$ fl8,fl4儎,$fifiKfl fiSommWX10GHzfiflfi10710810910101011101210131014101510161017101810191020CHzP 2. z$ehfl,fl“)y,1fl8e8yK9e儎ofi),)“fl.$.flfl8,flfl“,)4); 1hM8,hfl$fl,“,flh),z,Sh ,$“,儎yoKK 6G fi,$. e!,zK“$)$)o6GHz $ K“fifl),fl“, “fifl),THz efl8e8yK 9e儎o,flhf

4、la,$ 6GHz $.h.,4Kfi,!.flo$flfl2.2$fifl儎)fl!,C0.0,儎“$.儎83,Gfifi3.flfi.“.K, 48$o$fiSfih.G.!“g3!,fiBh“!,48u!“fl”oh“!SkfAfih. CfifA“e“fi“u z,$).“fl.儎efl “ fl8ofl%fl$pfi$flfifi;sft; fi$;fl%fi; 3. h“! 6G h“!fAflfi“fiSeK,flR,儎)fl)e!)4oh“!A“flA“ “,fi)fl“K,4 o嚌DOICT6G Kfi.Kfi.8%Kfi.AI Kfi.Kfi fi,o4M.亼8“flo6G

5、“8zz1.3fl”,K.fi.);KyfioDOICT 6G %efi“KoICT fi“,oDICT fiffl8%3,o DOICT fi“,g!fifl8zz1fioDOICT fl8%14z.fi.,fi,S), zfifi).).8)e)ofi惌fiKfi“,flKe;!.K!,$fi 6G )efififioSzfl,fi)flze,4,flK,4 z, !),B$;S,fi.fiflfia3.! %,$ofi, 6G 3$1fl,hfiM)fi)fi)o-弙-fiflfl-fi!fl,!flfi%Kfi,!%8.ezfififi,“!.fie8zz1fi儎%Kfio-fi!zf

6、i“e“RK5o fl“,),fie,fi;8%e8%zfl, fifl,fi flfi,fi4ofl“,e!fifl ,zfloD!KfiCfi8, h)fl),flfi 6G flKfiKoflfi),fifl4“efio$fi,fiflfl“Kfi“1,4 “fio 4. -fi!)K-fi!)K“!.fi e8zz1ofl“!亼8,!)e0 ),flfi亼8,fi XR e),.Be),fl8zz1亼8K%#.B.fi%e),fl!8亼8.!8fl人)ofifi3fi)Kfi,“ Tbps .Gbps )fl!.$K,K4$ 5G Kfifi,fihflnKfi. fi.fi,z%o$

7、KKfi.flfifigKfiuKS,fi $fi“fl“ Kfizflo,fi,% K%Kfi“o$yKK%M“, $fi“fl“KfiSoy$fi岄$壃MIMOfl MIMO a,4G/5G 98), fl,fi)fl!K$Koz$fi MIMO Sfisz$fi,fl;Kz$fiy8Sflfl,4e8%;A C ;A D ;A B;A E “, 5 oz$fifl,S$,K;S$,fi)flfi“ fi!ofl$fi 6G ,儎.K o4M)6o 5. z$fi MIMO CK%1z$fi MIMO fl9So%zfl,flh8.“fl$,z$fi MIMO fi8fl)flz$fiy8

8、,)efl,Sfi MIMO fifi,flfifi)flfi7-9oz$fi MIMO h.y88;,fi y8).fly8eSfi.g .%M);,“fiy8SK“KhM)儎,nSo俼岄$晡CReconfigurable Intelligent Surface,RISP1fifi,fiKfi8.a,4fiKG/ez$ofl.8“8从$“o 6 M) RIS fi$“fiofi RIS,RIS figgfie10, K14fi“$“Gofl“,RISfflflKffi$,$儎%)11oRIS “ RF,fl“fle$1$12o 6. RIS fifiRIS fl“)Q,fln8zfleo,“

9、flKfifi从.e RIS )人S RIS fiflS$no岄庒fiflfi,fi)CISI,Inter-Symbol InterferenceP,)fl,K1)“ob1(i)s1(i)h(t)bb2(i)s2(i)n(t)y(t)bbK(i)sK(i)yfi廞yKN g(t)廞y2 廞y1fi g(t)fi g(t)fi g(t)P/S.flKfi!$fififl$o)“,flfifl ISI,K,)儎K0 ISI, 7 ,K1e%)o 7. flfiK“fl“%fl“8$“,flfi14o 8 fi“)flfiflflfi ,8fi,flfi8fi 4oK,flfiK%z$,fio 8.

10、 flfiflflfi fi“ fl;hhfi,)flKfi,fl“hSfi1K,)BKh,fl)flh8 g)ezoh)flh 4g)1516oK 9 Mfl儎“, flhfi“ MISO ,“ 10dB ,8 40%9o 9. flflflfi9fi“flKfi 35fi Viterbi ,31geo8Mo,gK0fififi)!“s“o,$fi;.hKSKfi,fl OFDM/MIMO Kfi,fl$;gfifioqKfiflk“fifi$ “o4G e 5G fi) OFDM ,$foQ$f; fi%,$o 10. %8%8pflA OFDM 18o Sfi“8,%8fi“!fi8CK

11、-.-;fi8P, 10 ofi8%,%8;zQ,K 1 OFDM ;fiflfizg$)fio 11. %8fl OFDM fi“ 11 M) 500km/h %fi$%8fl OFDM fi“ofiA$) CDL ,$ 60kHz,fi 1/3 ,$K8fi128,%8$3 6 K8 OFDM %oQ%8$fi儎;,8 o“n%8Sfl儎K$“ OFDM S81718,g“%8nK从ofi,fi儎$fl;hno楰fifl揽AIg 5G ,“!fiK从,pfl4 fie儎zfl)oAI KfiflfiD“!SKfiS,ffl3.K%e儎fiK19o,K% AI)f/0S4“K%“KfiSoA

12、I flK%S) CSI %.K0fi fiS20-22o,)fi“儎 CSI ,K1 CSI Gfl20;)fKK, fififl21;flfl$!“0eK0,%,22o31“唇”Sfi) AI fiK%fl1 fifio“S$,fSfl$8R KS8Kofi,Sz“fi AI flflegS),fi$e zfis;Sfi,fi4$flfifi1;ofl$揽fi6G “gfi),!K,!e,.),4fio)Kfi$flKS ,fl ofi8,8, 4fiozfifizfifi8,.gz.oz%flAI )fiG1“o8g1g!)8zz1/AI Kfifi8g!.1%eo8e ga4g1;8,

13、%K8.g!,K,)flo6G-CN-CP.6G-CN-UPRRCRRC.C-MACL3UPC-MACL3UPD-MACD-MACPHY.PHYPHY.PHY 12. )zefiS儎儎 儎 fi),8 zz1e AI Gfi8goQoS fi3.7 僩#6G 儎8%!.!o,XR .flfi 6G M);Kog QoS QoS ,%fl.fi$.“-G,48% QoS ,e儎)“K fiog QoS $flKS QoS 0 AI/8%Kfi,4fifi QoS eB,go QoS e)fi QoS e) QoS 0o“,e“%flIo3. AS QoS 08 QoS QoS %,41$8%fl

14、儎o$fi,6G fl“, QoS 0.e,e QoS 0a3$从ofifi惎flfl4.1K 2G,3G,4G 5G “kfi,fi eg6,K)figioC$ “K,GK 6G goflMo!S 6G fi3o6G “Sfi,fl$;Kfi,4,8go flfi“fiS,$!“fi,!“z$efi, AI Kfi“ofl“S,6G zfi)e8%oe)flzy0,)%e;8%e, )flosS,8,儎)fl!o 13.!S儎.K.$G,fieo“-8!fiofi,ezy 6G ),Sz“fi)fleofifl媽fi4.2 DOICT Kfi4,$% ),oz1!Kfi1)Kfi,傧 “!f

15、io!fi“$ “),Kfifl!4fl$flKS1.z1!Kfi傧“fl“fi$,%“!fi,K.e4)o2. z1!Kfi傧$fi z1!efi,CG“e)fl;3. z1!Kfi傧)flguSS%0e0,4o 14. !fi “fia“e“R1) “,%.)fl%.UE y%“o2) “.8%fl.)fl.AI zflfl“o“儎e儎fiq.fi)eM)儎,DOICT KfiG neo,“%, 4“%“儎$%”Kfifo1R,D!KfifiS,fi$e, 4$eKfi从o!fiflzq1,)z14 !fl“.fl%oz1qfl8,4儎.fl.;zo 15. z!KfiK 20 #,fiK

16、fik)K00.9“, z1CfizfiKfioz1z)fi%3,Sz“fizK, fiB.%.fl%fi,fi,goKfi.fiAPI Serverless oz1Kfifi$flK)4s;儎g!04g);儎48.qs!g)oz1)zfifi, 4“fl8,fl,flo z18Kfifflo48fi“,;z9.z 1.z1.z1.z18%fi.z1k.Serverless 9.8CFaaSP.aCBaaSPofi.K.9.$儎,z1KfiKfifl8, 儎fl8ofl俼4.3 6G K,儎zfifi;o4$ ).“z”e“fi”fi,8%KM,K)fl!$ofi)4)e)I,fl儎eG,!2

17、3,fl flfl%“,!fie人,Sfie8%人%,4e,S%)&fie,fiflo$fl $ DflfifiC,fl3 16. fifi,fi)!,flSz)fl”$,4e人,fifle仍o3!fi;.;.;Kfi亼8fl,KfiSfi,fl“fl;o,fie!;K8ef fl,Kfifl!fioyfi僩flfi8zz1Kfi8z!K%#!fl8z# BK!,4fiK%#!4.zfl. fiA.fl!o8zz1Kfi“B.B.B.fiA.8fl.g!.8%.8%.8%zfl.f0.人.floK1%Kfi从%8z#fi, .人.!.fiA,4g)o.fi.fifl.fl $fiflfi仈fi

18、 fifl!gfi! 17. 8zz14g8zz1KfiefKfi,6G g!. geg1M)gog!fi$fih人,fi“1!人,8z8fi3“ fiK%efiA,fl$“fiflg“fiK%fogffi“!zfle,$“!e“fi.4.eog1Mfi8 e人,ge8“,1 ;fi9;8gfi9,fi“8g.flg.flgeo8zz1Kfiflfi)亼8%3,fl;8oKfyfi,Mo,8zz1Kfi8%,e$,8%Sfihz%oy庒4.53fl IEEE Mfl!oIEEE 802.1 ffl 2007 #B)pCAVBPK,D)h$ HDMI.eo IEEE 802.1AVB flffl

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.

温馨提示

  • 1. 本站所有资源如无特殊说明,都需要本地电脑安装OFFICE2007和PDF阅读器。图纸软件为CAD,CAXA,PROE,UG,SolidWorks等.压缩文件请下载最新的WinRAR软件解压。
  • 2. 本站的文档不包含任何第三方提供的附件图纸等,如果需要附件,请联系上传者。文件的所有权益归上传用户所有。
  • 3. 本站RAR压缩包中若带图纸,网页内容里面会有图纸预览,若没有图纸预览就没有图纸。
  • 4. 未经权益所有人同意不得将文件中的内容挪作商业或盈利用途。
  • 5. 人人文库网仅提供信息存储空间,仅对用户上传内容的表现方式做保护处理,对用户上传分享的文档内容本身不做任何修改或编辑,并不能对任何下载内容负责。
  • 6. 下载文件中如有侵权或不适当内容,请与我们联系,我们立即纠正。
  • 7. 本站不保证下载资源的准确性、安全性和完整性, 同时也不承担用户因使用这些下载资源对自己和他人造成任何形式的伤害或损失。

最新文档

评论

0/150

提交评论