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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
2Mortality incidence in outpatient anesthesia for dentistry in Ontario 显示文摘Nkansah P Haas DA Saso MA 1997Oral Surg Oral Med Oral Pathol Oral Radiol Endod1997,83,6:1
3Total knee arthroplasty for patellofemoral arthritis显示文摘Mont MA Haas S Mullick T 2002J Bone Joint Surg(Am)2002,84,11:1
4A modification of the Lowry procedure to simplify protein determination in membrane and lipoprotein samples 显示文摘Markwell MA Haas SM Bieber LL 1978Anal Biochem1978,87,1:1
5UAF1 is a subunit of multiple deubiquitinating enzyme complexes 显示文摘Cohn MA Kee Y Haas W 2009J Biol Chem2009,284,8:1
6Macrophage migration inhibitory factor: a mediator of matrix metalloproteinase-2 production in rheumatoid arthritis 显示文摘Pakozdi A Amin MA Haas CS 2006Arthritis Res Ther2006,8,3:1
7UAFI is a subunit of multiple deubiquitinating enzyme complexes显示文摘Cohn MA Kee Y Haas W 2009J Biol Chem2009,284,8:1
8Minimally invasive total knee arthroplasty:the mini midvastus approach显示文摘Haas SB Manitta MA Burdick P 2006Clin Orthop Relat Res2006,452,:1
9A modification of the Lowry procedure to simplify, protein determination in membrane and lipoprotein samples 显示文摘Markwell MA Haas SM Bieber LL Tolbert NE 1978Anal Biochem1978,87,1:1
10Comparison of articaine and prilocaine anesthesia by infiltration in maxillary and mandibular arches显示文摘Haas DA Harper DG Saso MA 1990Anesth Prog1990,37,5:1
11Use of chemically defined diets in the management of patients with acute inflammatory bowel disease显示文摘Rocchio MA Cha C J Haas KF 1974Am J Surg1974,127,4:1
12A modification of the Lowry procedure to simplify protein determination in membrane and lipoprotein samples 显示文摘Markwell MA Haas SM Bieber LL 1978Anal Biochem1978,87,1:1
13The utility of endotoxinsas a surrogate indicator in potable water microbiology显示文摘Haas CN Neyer MA Paller MS 1983WaterRes1983,17,7:1
14Comparison of articaine and prilocaine anesthetia by infiltration in maxillary and mandibular arches显示文摘Haas DA Harper DG Saso MA 1990Anesth Prog1990,37,5:1
15Vulnerability of drinking - water wells in La Crosse, Wisconsin, to enteric - virus contamination from surface water contributions 显示文摘Borchardt MA Haas NL Hunt RJ 2004Appl Environ Microbiol2004,70,10:1
16Evidence that CXCL16 is a potent mediator of angiogenesis and is involved in endothelial progenitor cell chemotaxis: studies in mice with KlBxN serum-induced arthritis显示文摘Isozaki T Arbab AS Haas CS Amin MA Arendt MD Koch AE 2013Arthritis Rheum2013,65,7:1
17Mortality incidence in outpatient anesthesia for dentistry in Ontario 显示文摘Nkansah P Haas DA Saso MA 1997Oral Surg Oral Med Oral Pathol Oral Radiol Endod1997,83,6:1
18Total knee arthroplasty for patellofemoral arthriti显示文摘Mont MA Haas S Mullick T 0,,11:1
19Longitudinal stent fracture 11 months after implantation in the left pulmonary artery and successful management by a stent-in-stent maneuver显示文摘Knirsch W Haas NA Lewin MA 2003Catheter Cardiovasc Interv2003,58,:1
20Inhibition of angiogenesis by interleukin-4 gene therapy in rat adjuvant-induced arthritis 显示文摘Haas CS Amin MA Allen BB 2006Arthritis Rheum2006,54,8:1
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