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8篇 您的检索式:作者名="Shaoli Kang"
    题名 作者 年代 出处 被引量
1System Integration of Terrestrial Mobile Communication and Satellite Communication——The Trends, Challenges and Key Technologies in B5G and 6G显示文摘Mobile communication standards have been developed into a new era of B5G and 6G.In recent years,low earth orbit(LEO)satellites and space Internet have become hot topics.The integrated satellite and terrestrial systems have been widely discussed by industries and academics,and even are expected to be applied in those huge constellations in construction.This paper points out the trends of two stages towards system integration of the terrestrial mobile communication and the satellite communications:to be compatible with 5G,and to be integrated within 6G.Based on analysis of the challenges of both stages,key technologies are thereafter analyzed in detail,covering both air interface currently discussed in 3GPP for B5G and also novel network architecture and related transmission technologies toward future 6G.Shanzhi Chen Shaohui Sun Shaoli Kang 2020China Communications2020,17,12:57
2Uplink Grant-Free Pattern Division Multiple Access (GF-PDMA) for 5G Radio Access显示文摘Massive machine type communication(m MTC) is one of the key application scenarios for the fifth generation mobile communication(5 G). Grant-free(GF) transmission can reduce the high signaling overhead in m MTC. Non-orthogonal multiple access(NMA) can support more users for m MTC than orthogonal frequency division multiple access(OFDMA). Applying GF transmission in NMA system becomes an active topic recently. The in-depth study on applying GF transmission in pattern division multiple access(PDMA), a competitive candidate scheme of NMA, is investigated in this paper. The definition, latency and allocation of resource and transmission mechanism for GF-PDMA are discussed in detail. The link-level and system-level evaluations are provided to verify the analysis. The analysis and simulation results demonstrate that the proposed GF-PDMA has lower latency than grant based PDMA(GB-PDMA), possesses strong scalability to confront collision and provides almost 2.15 times gain over GF-OFDMA in terms of supporting the number of active users in the system.Wanwei Tang Shaoli Kang Bin Ren Xinwei Yue 2018China Communications2018,15,4:10
3Analysis of Non-Orthogonal Multiple Access for 5G显示文摘The major challenge faced by the fifth generation(5G) mobile network is higher spectral efficiency and massive connectivity,i.e.,the target spectrum efficiency is 3 times over 4G,and the target connection density is one million devices per square kilometer.These requirements are difficult to be satisfied with orthogonal multiple access(OMA) schemes.Non-orthogonal multiple access(NOMA) has thus been proposed as a promising candidate to address some of the challenges for 5G.In this paper,a comprehensive survey of different candidate NOMA schemes for 5G is presented,where the usage scenarios of5 G and the application requirements for NOMA are firstly discussed.A general framework of NOMA scheme is established and the features of typical NOMA schemes are analyzed and compared.We focus on the recent progress and challenge of NOMA in standardization of international telecommunication union(ITU),and 3rd generation partnership project(3GPP).In addition,prototype development and future research directions are also provided respectively.Yingmin Wang Bin Ren Shaohui Sun Shaoli Kang Xinwei Yue 2016China Communications2016,13,S2:4
4Super-assembled core-shell mesoporous silica-metal-phenolic network nanoparticles for combinatorial photothermal therapy and chemotherapy显示文摘Multimodal combinatorial therapy merges different modes of therapies in one platform,which can overcome several clinical challenges such as premature drug loss during blood circulation and significantly improve treatment efficiency.Here we report a combinatorial therapy nanoplatform that enables dual photothermal therapy and pH-stimulus-responsive chemotherapy.By super-assembly of mesoporous silica nanoparticles(MSN)with metal-phenolic networks(MPN),anti-cancer drugs can be loaded in the MSN matrix,while the outer MPN coating allows dual photothermal and pH-responsive properties.Upon near-infrared light irradiation,the MSN@MPN nanoplatform exhibits excellent photothermal effect,and demonstrates outstanding pH-triggered drug release property.In vitro cell experiments suggest the MSN@MPN system exhibits superior biocompatibility and can effectively kill tumor cells after loading anti-cancer drugs.Consequently,the MSN@MPN system shows promising prospects in clinical application for tumor therapy.Bo Yang Shan Zhou Jie Zeng Liping Zhang Runhao Zhang Kang Liang Lei Xie Bing Shao Shaoli Song Gang Huang Dongyuan Zhao Pu Chen Biao Kong 2020Nano Research2020,13,4:3
5Author Correction:Evolutionarily conservative and non-conservative regulatory networks during primate interneuron development revealed by single-cell RNA and ATAC sequencing显示文摘Correction to:Cell Research https://doi.org/10.1038/s41422-022-00635-9,published online 10 March 2022 We found that the information in the original Supplementary Figs.S2–S4 was not fully displayed due to an error in the image upload.The correct images are shown below for better display.These corrections do not affect the description of the results or the conclusion of this work.No change of the original figure legends is needed.We apologize for the mistake.The original article has been corrected.Ziqi Zhao Dan Zhang Fuqiang Yang Mingrui Xu Shaoli Zhao Taotao Pan Chuanyu Liu Yongjie Liu Qingfeng Wu Qiang Tu Ping Zhou Rong Li Jia Kang Lan Zhu Fei Gao Yaqing Wang Zhiheng Xu 2023Cell Research2023,33,7:1
6Design and simulation of adaptive noise cancells with master-slave structure in strong noise environment显示文摘KANG Shaoli QIU Zhengding XIAO Yang 2001IEEE Transom Signal Processing2001,,5:1
7Evolutionarily conservative and non-conservative regulatory networks during primate interneuron development revealed by single-cell RNA and ATAC sequencing显示文摘The differences in size and function between primate and rodent brains,and the association of disturbed excitatory/inhibitory balance with many neurodevelopmental disorders highlight the importance to study primate ganglionic eminences(GEs)development.Here we used single-cell RNA and ATAC sequencing to characterize the emergence of cell diversity in monkey and human GEs where most striatal and cortical interneurons are generated.We identified regional and temporal diversity among progenitor cells which give rise to a variety of interneurons.These cells are specified within the primate GEs by well conserved gene regulatory networks,similar to those identified in mice.However,we detected,in human,several novel regulatory pathways or factors involved in the specification and migration of interneurons.Importantly,comparison of progenitors between our human and published mouse GE datasets led to the discovery and confirmation of outer radial glial cells in GEs in human cortex.Our findings reveal both evolutionarily conservative and nonconservative regulatory networks in primate GEs,which may contribute to their larger brain sizes and more complex neural networks compared with mouse.Ziqi Zhao Dan Zhang Fuqiang Yang Mingrui Xu Shaoli Zhao Taotao Pan Chuanyu Liu Yongjie Liu Qingfeng Wu Qiang Tu Ping Zhou Rong Li Jia Kang Lan Zhu Fei Gao Yaqing Wang Zhiheng Xu 2022Cell Research2022,32,5:1
8The Dual Iconic Features and Key Enabling Technologies of 6G显示文摘1.Introduction Since the 1980s,when the first generation(1G)of mobile networks came into being,mobile communications have been developing with the trend of a generational upgrade occurring every decade.At present,the fifth generation(5G)is in the commercial stage and the sixth generation(6G)is in the research stage.It is expected that the standardization for 6G will debut in the year 2025,and the first version for commercialization will be launched in 2030.For the purpose of better understanding 6G.Shanzhi Chen Shaoli Kang 2023Engineering2023,,9:0
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