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1Towards 6G wireless communication networks:vision,enabling technologies,and new paradigm shifts显示文摘The fifth generation(5G)wireless communication networks are being deployed worldwide from 2020 and more capabilities are in the process of being standardized,such as mass connectivity,ultra-reliability,and guaranteed low latency.However,5G will not meet all requirements of the future in 2030 and beyond,and sixth generation(6G)wireless communication networks are expected to provide global coverage,enhanced spectral/energy/cost efficiency,better intelligence level and security,etc.To meet these requirements,6G networks will rely on new enabling technologies,i.e.,air interface and transmission technologies and novel network architecture,such as waveform design,multiple access,channel coding schemes,multi-antenna technologies,network slicing,cell-free architecture,and cloud/fog/edge computing.Our vision on 6G is that it will have four new paradigm shifts.First,to satisfy the requirement of global coverage,6G will not be limited to terrestrial communication networks,which will need to be complemented with non-terrestrial networks such as satellite and unmanned aerial vehicle(UAV)communication networks,thus achieving a space-airground-sea integrated communication network.Second,all spectra will be fully explored to further increase data rates and connection density,including the sub-6GHz,millimeter wave(mmWave),terahertz(THz),and optical frequency bands.Third,facing the big datasets generated by the use of extremely heterogeneous networks,diverse communication scenarios,large numbers of antennas,wide bandwidths,and new service requirements,6G networks will enable a new range of smart applications with the aid of artificial intelligence(AI)and big data technologies.Fourth,network security will have to be strengthened when developing 6G networks.This article provides a comprehensive survey of recent advances and future trends in these four aspects.Clearly,6G with additional technical requirements beyond those of 5G will enable faster and further communications to the extent that the boundary between physical and cyber worlds disappears.Xiaohu YOU Cheng-Xiang WANG Jie HUANG Xiqi GAO Zaichen ZHANG Mao WANG Yongming HUANG Chuan ZHANG Yanxiang JIANG Jiaheng WANG Min ZHU Bin SHENG Dongming WANG Zhiwen PAN Pengcheng ZHU Yang YANG Zening LIU Ping ZHANG Xiaofeng TAO Shaoqian LI Zhi CHEN Xinying MA Chih-Lin I Shuangfeng HAN Ke LI Chengkang PAN Zhimin ZHENG Lajos HANZO Xuemin(Sherman)SHEN Yingjie Jay GUO Zhiguo DING Harald HAAS Wen TONG Peiying ZHU Ganghua YANG Jun WANG Erik GLARSSON Hien Quoc NGO Wei HONG Haiming WANG Debin HOU Jixin CHEN Zhe CHEN Zhangcheng HAO Geoffrey Ye LI Rahim TAFAZOLLI Yue GAO HVincent POOR Gerhard P.FETTWEIS Ying-Chang LIANG 2021Science China(Information Sciences)2021,64,1:122
2Effect of Doppler spread in OFDM-based UWB systems 显示文摘CAPOGLU I R YE Li SWAMI A 2005IEEE Trans on Commun2005,4,5:1
3Organic radionuclide compounds in soils surrounding the Chemobyl Nuclear Power Plant显示文摘Yirchenko Ye P Agapkina G I 1993Eurasian Soil Science1993,25,:1
4Immobilized car- bonic anhydrase on hollow fiber membranes accelerates C02 removal from blood 显示文摘Arazawa D T Oh H I Ye S H 2012J Mem Sci2012,,6:1
5Dosimetric effects of roll rotational setup errors on lung stereotactic ablative radio- therapy using volumetric modulated arc therapy 显示文摘Lee J Kim J I Ye S J 2015Br J Radiol2015,88,20:1
6Transgenic rice with a synthetic crylAb gene from Bacillus thuringiensis is highly resistant to eight lepidopteran insects显示文摘Shu Q Y Ye G Y Cui H R Cheng X Xiang Y Wu D Gao M Xia Y Hu C Sardana R Altosaar I 2000Mol Breed2000,,6:1
7Marker-assisted selection for powdery mildew resistance in grapes显示文摘DALBO M A YE G N WEENDEN N F WILCOX W F REISCH B I 2001Journal of the American Society for Horticultural Science2001,126,1:1
8Structure and water sorption of polyurethane nanocomposites based on organic and inorganic components显示文摘Mamunya Ye P ShtompelV I Lebedev E V 2004European Polym J2004,40,:1
9Development and application of molecular marker linkage maps in woody fruit crops显示文摘N F Weeden M Hemmatt D M Lawson M Lodhi R L Bell A G Manganaris B I Reischs S K Brown G N Ye 1994Euphytica1994,77,12:1
10显示文摘ZHANG Y P YE X W TIAN M K QU L B CHOI S H GOPALAN A I LEE K P 2008J Chromatogr: A2008,1188,1:1
11Detection of human telomerase RNA gene in cervical cancer and precancerous lesions: comparison with cytological and human papillomavirus DNA test findings显示文摘Li Y Ye F L~i WG 2010Int J Gynee01 Cancer2010,20,4:1
12Gene therapy for cancer using single-chain Fv fragments specific for 4-1BB 显示文摘Ye Z Hellstrom I Hayden-Ledbetter M 2002Nat Med2002,8,4:1
13Fucoxanthin induces apoptosis in human cervical cancer cell line HeLa via PI3K/Akt pathway 显示文摘Ye G I Lu Q Zhao W 2014Tumor Biol2014,35,11:1
14Quantitative determination of dithioearbamates in human plasma,serum,erythroeytes and urine ; pharmacokinetics of broccoli sprout isothiocyanates in humans显示文摘YE I X DINKOVA-KOSTOVA A T WADE K L 2002Clinica Chimica Acta2002,316,12:1
15Large areal extent of ultrahigh-pressure metamorphism in the Sulu ultrahigh-pressure terrane of East China: new implications from coesite and omphacite in clusions in zircon of granitic gneiss显示文摘Ye K Yao Y P Katayama I 2000Lithos2000,52,:1
16Microplasma systems for creating coatings on aluminum alloys 显示文摘BUTYAGIN P I KHOKHRYAKOV YE V MAMAEV A I 2003Materials Letters2003,57,11:1
17Inorg Chem显示文摘Fodorov I Chung D Y Ye L H 200948: 47682009,48,:1
18Regulation of cholesterol homeostasis in macrophages and consequences for atherosclerotic lesion development 显示文摘Pennings M Meurs I Ye D 2006FEBS Lett2006,580,23:1
19Transgenic Italian ryegrass(Lolium multiflorum)plants from microprojectile bombardment of embryogenic suspension cells显示文摘Ye X Wang Z Y Wu X Potrykus I Spangenberg G 1997Plant Cell Re ports1997,16,6:1
20Is Kv channel inhibition a common path to hypoxie pulmonary vasoconstriction? 显示文摘So I Earm YE 2002Cardiovasc Res2002,55,2:1
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