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| 1 | Evaluation of external quality factor of the superconducting cavity using extrapolation method显示文摘The estimation of the external quality factor is important for designing coupling devices for the cavities.A new representation of the external quality factor calculations for single-cell cavity coupled to a coaxial transmission line is derived based on analytic analysis and numeric analysis with the help of 3D electromagnetic code,and verified with experimental measurements at room temperature.In logarithmic scale the results for the external quality factor were quasi-linear over the limited range,and the simulated and measured data could be used and extrapolated to the superconducting case.For the unpolished 1.5 GHz 3rd harmonic superconducting cavity,the discrepancy between the evaluation value and measurement result is less than 25% within an acceptable deviation. | MA Zhenyu MA Guangming HOU Hongtao YU Haibo ZHANG Rui LIU Jianfei | 2009 | Nuclear Science and Techniques2009,20,2: | 2 |
| 2 | Digital medical education empowered by intelligent fabric space显示文摘Medical education plays an important role in promoting the development of global medical science.Nevertheless,the intrinsic gap existing between institutional medical teaching and practical clinical tasks causes low education efficiency and students’weak initiative.Recent developments of sensing fabric and embedded computing,along with the advances in artificial intelligence(AI)and digital twin technology are paving the way for the transformation of medical research towards digitization.In this work,we present an intelligent fabric space based on novel functional fabric materials and digital twin networking enabled by 5G and internet of things(IoT)technologies.In this space,medical students can learn knowledge with collaborative mapping of the digital and real world,cyber-physical interaction and real-time tactile feedback.And the proposed service system will evaluate and feedback students’operational behaviors to improve their experimental skills.We provide four typical applications of intelligent fabric space for medical education,including medical education training,health and behavior tracking,operation playback and reproduction,as well as medical knowledge popularization.The proposed intelligent fabric space has the potential to promote innovative technologies for training cutting-edge medical students by effective and efficient ways. | Min Chen Rui Wang Rui Wang Yingting Zhou Zicheng He Xiaojuan Liu Muyao He Jiaxi Wang Chaolin Huang Huamin Zhou Ping Hong Chong Hou Ning Zhou Dingyu Zhang Guangming Tao | 2022 | National Science Open2022,1,1: | 2 |
| 3 | Rhamnolipid based glycerol-in-diesel microemulsion fuel: Formation and characterization显示文摘 | Lijian Leng Xingzhong Yuan Guangming Zeng Xiaohong Chen Hou Wang Hui Li Lihuan Fu Zhihua Xiao Longbo Jiang Cui Lai | 2015 | Fuel2015,,: | 1 |
| 4 | The comparison of oxidative thermokinetics between emulsion and microemulsion diesel fuel显示文摘 | Lijian Leng Xingzhong Yuan Guangming Zeng Hou Wang Huajun Huang Xiaohong Chen | 2015 | Energy Conversion and Management2015,,: | 1 |
| 5 | The reputation model of multi-stage dynamic games显示文摘 | Jin Jun Gan Renchu | 1999 | Journal of Beijing Institute of Technology1999,8,1: | 1 |
| 6 | A Perspective on Rhythmic Gymnastics Performance Analysis Powered by Intelligent Fabric显示文摘Performance analysis is an important tool for gymnasts and coaches to assess the techniques,strengths,and weaknesses of rhythmic gymnasts during training.To have an accurate insight about the motion and postures can help the optimization of their performance and offer personalized suggestions.However,there are three primary limitations of traditional perfor-mance analysis systems applied in rhythmic gymnastics:(1)Inability to quantify anthropometric data in an imperceptible way,(2)labor-intensive nature of data labeling and analysis,and(3)lack of monitoring of all-round and multi-dimensional perspectives of the target.Thus,an advanced performance analysis system for rhythmic gymnastics is proposed in this paper,powered by intelligent fabric.The system uses intelligent fabric to detect the physiological and anthropometric data of the gymnasts.After a variety of data are collected,the analysis component is implemented by artificial intelligence techniques resulting in behavior recognition,decision-making,and other functions assisting performance improvement.A feasible solution to implementing the analysis component is the use of the hyperdimensional computing technique.In addition,four typical applications are presented to improve training performance.Powered by intelligent fabric,the proposed advanced performance analysis system exhibits the potential to promote innovative technologies for improving training and competi-tive performance,prolonging athletic careers,as well as reducing sports injuries. | Dan Zhu Zhenyu Zhang Min Chen Pan Li Yuanzhuo Xiang Jingyu Ouyang Zhiheng Huang Xiaojuan Liu Fuhong Wang Maiping Yang Hongtao Zeng Ping Hong Lei Wei Chong Hou Guangming Tao | 2023 | Advanced Fiber Materials2023,5,1: | 1 |
| 7 | Salen Type Sandwich Triple-Decker Tri- and Di-nuclear Lanthanide Complexes显示文摘 | Quan Li Pengfei Yan Peng Chen Guangfeng Hou Guangming Li | 2012 | Journal of Inorganic and Organometallic Polymers and Materials2012,,5: | 1 |
| 8 | A demonstration study of ethanol production from sweet sorghum stems with advanced solid state fermentation technology显示文摘 | Shizhong Li Guangming Li Lei Zhang Zhixing Zhou Bing Han Wenhui Hou Jingbing Wang Tiancheng Li | 2013 | Applied Energy2013,,: | 1 |
| 9 | Liquid Crystal Materials for Liquid Crystal Display with Negative Dielectric Anisotropy 显示文摘 | HOU Guangming XU Shouyi TANG Hong | 2004 | Chinese J Appl Chem2004,21,8: | 1 |
| 10 | Electrochemical copolymerization of indole and 3,4-ethylenedioxythiophene显示文摘 | Jingkun Xu Guangming Nie Shusheng Zhang Xuejun Han Jian Hou Shouzhi Pu | 2005 | Journal of Materials Science2005,,11: | 1 |
| 11 | Adsorption characteristics and behaviors of graphene oxide for Zn(II) removal from aqueous solution显示文摘 | Hou Wang Xingzhong Yuan Yan Wu Huajun Huang Guangming Zeng Yan Liu Xueli Wang Ningbo Lin Yu Qi | 2013 | Applied Surface Science2013,,: | 1 |
| 12 | Venturi tube application in high power test of the SRF module显示文摘In the superconducting RF module, the dissipation power of the niobium cavity is an important parameter. In the Superconducting radio frequency (SRF) module's acceptance test at Shanghai Synchrotron Radiation Facility (SSRF), the Venturi tube is used to measure the quality factor of SRF cavity at 4.2 K. During the test, the venturi tube is be calibrated by increasing heat load with internal heater. In this paper, the horizontal test principle and venturi effect are briefly introduced. The authors find out a correct way to calibrate the venturi tubes, the calibration results are presented here. From the calibration results, one can deduce the static loss of each module, the source of static loss is also analyzed. | MA Guangming LIU Jianfei HOU Hongtao MA Zhenyu FU Zechuan ZHANG Zhigang ZHAO Zhentang | 2009 | Nuclear Science and Techniques2009,20,3: | 1 |
| 13 | Flexible thermochromic fabrics enabling dynamic colored display显示文摘Color-changeable fbers can provide diverse functions for intelligent wearable devices such as novel information displays and human-machine interfaces when woven into fabric.This work develops a low-cost,efective,and scalable strategy to produce thermochromic fbers by wet spinning.Through a combination of diferent thermochromic microcapsules,fexible fbers with abundant and reversible color changes are obtained.These color changes can be clearly observed by the naked eye.It is also found that the fbers exhibit excellent color-changing stability even after 8000 thermal cycles.Moreover,the thermochromic fbers can be fabricated on a large scale and easily woven or implanted into various fabrics with good mechanical performance.Driven by their good mechanical and physical characteristics,applications of thermochromic fbers in dynamic colored display are demonstrated.Dynamic quick response(QR)code display and recognition are successfully realized with thermochromic fabrics.This work well confrms the potential applications of thermochromic fbers in smart textiles,wearable devices,fexible displays,and human-machine interfaces. | Pan Li Zhihui Sun Rui Wang Yuchen Gong Yingting Zhou Yuwei Wang Xiaojuan Liu Xianjun Zhou Ju Ouyang Mingzhi Chen Chong Hou Min Chen Guangming Tao | 2022 | Frontiers of Optoelectronics2022,15,3: | 0 |
| 14 | Advanced functional nanofibers:strategies to improve performance and expand functions显示文摘Nanofbers have a wide range of applications in many felds such as energy generation and storage,environmental sensing and treatment,biomedical and health,thanks to their large specifc surface area,excellent fexibility,and superior mechanical properties.With the expansion of application felds and the upgrade of application requirements,there is an inevitable trend of improving the performance and functions of nanofbers.Over the past few decades,numerous studies have demonstrated how nanofbers can be adapted to more complex needs through modifcations of their structures,materials,and assembly.Thus,it is necessary to systematically review the feld of nanofbers in which new ideas and technologies are emerging.Here we summarize the recent advanced strategies to improve the performances and expand the functions of nanofbers.We frst introduce the common methods of preparing nanofbers,then summarize the advances in the feld of nanofbers,especially up-to-date strategies for further enhancing their functionalities.We classify these strategies into three categories:design of nanofber structures,tuning of nanofber materials,and improvement of nanofbers assemblies.Finally,the optimization methods,materials,application areas,and fabrication methods are summarized,and existing challenges and future research directions are discussed.We hope this review can provide useful guidance for subsequent related work. | Xinyu Chen Honghao Cao Yue He Qili Zhou Zhangcheng Li Wen Wang Yu He Guangming Tao Chong Hou | 2022 | Frontiers of Optoelectronics2022,15,4: | 0 |
| 15 | Preface to the special issue on“Recent Advances in Functional Fibers”显示文摘Fiber is one of the most fundamental material forms seen in human life.Beftting from their long and bendable shape,fbers with diferent specialties and diferent dimensions are used in a multitude of applications,ranging from fabrics[1]to telecommunications[2],from generating laser[3]to sensing and actuating,etc.[4-6].In recent years,major breakthroughs were made,demonstrating that fbers have novel optical[7-9],electronic[10],acoustic[11,12]and cell interfacing[13,14]properties that enable new functionalities.Functional fbers and related application research are at the crossroads of many disciplines,including optics,materials science,device physics,nanotechnology,and fuid dynamics. | Lei Wei Guangming Tao Chong Hou Wei Yan | 2022 | Frontiers of Optoelectronics2022,15,4: | 0 |
| 16 | Wearable and interactive multicolored photochromic fiber display显示文摘Endowing flexible and adaptable fiber devices with light-emitting capabilities has the potential to revolutionize the current design philosophy of intelligent,wearable interactive devices.However,significant challenges remain in developing fiber devices when it comes to achieving uniform and customizable light effects while utilizing lightweight hardware.Here,we introduce a mass-produced,wearable,and interactive photochromic fiber that provides uniform multicolored light control.We designed independent waveguides inside the fiber to maintain total internal reflection of light as it traverses the fiber.The impact of excessive light leakage on the overall illuminance can be reduced by utilizing the saturable absorption effect of fluorescent materials to ensure light emission uniformity along the transmission direction.In addition,we coupled various fluorescent composite materials inside the fiber to achieve artificially controllable spectral radiation of multiple color systems in a single fiber.We prepared fibers on mass-produced kilometer-long using the thermal drawing method.The fibers can be directly integrated into daily wearable devices or clothing in various patterns and combined with other signal input components to control and display patterns as needed.This work provides a new perspective and inspiration to the existing field of fiber display interaction,paving the way for future human–machine integration. | Pan Li Yuwei Wang Xiaoxian He Yuyang Cui Jingyu Ouyang Ju Ouyang Zicheng He Jiayu Hu Xiaojuan Liu Hang Wei Yu Wang Xiaoling Lu Qian Ji Xinyuan Cai Li Liu Chong Hou Ning Zhou Shaowu Pan Xiangru Wang Huamin Zhou Cheng-Wei Qiu Yan-Qing Lu Guangming Tao | 2024 | Light(Science & Applications)2024,13,3: | 0 |
| 17 | Empirical Equations of P-Wave Velocity in the Shallow and Semi-Deep Sea Sediments from the South China Sea显示文摘Three-hundred and thirty-one sediment cores,including six sediment types(clayey-and sandy-silt,silty-and sandy-clay,clayey-and silty-sand)were collected from the shallow and semi-deep seas of the South China Sea,and the P-wave velocities and physical properties of core sediments were measured under standard laboratory conditions.To eliminate the influence of environ-mental factors,the empirical sound speed ratio equations were established.Compared with several equations from literature,the po-rosity and wet bulk density empirical equations established in this paper agree well with Richardson and Briggs(2004)’s in-situ equations,which implies that our empirical equations can be used in the similar region of world’s oceans under certain conditions and will be useful in areas lacking first-hand P-wave speed data.However,the mean grain size equations established in this study,similar to the previous studies,have low accuracy,which may be due to the different particle arrangements and degrees of compac-tion in sediments.The results also show that for different sediment types,the equation based on all sediment data is in good agree-ment with the measured data in the study area,as there are both siliciclastic and carbonate sediments on the studied seabed.It is sug-gested that appropriate empirical equations should be selected according to sediment types and sedimentary environment in future works,and the empirical equation of porosity or the two-parameter equation of porosity and grain size should be preferred. | LI Guanbao HOU Zhengyu WANG Jingqiang KAN Guangming LIU Baohua | 2021 | Journal of Ocean University of China2021,20,3: | 0 |
| 18 | Fabric computing: Concepts, opportunities, and challenges显示文摘With the advent of the Internet of Everything,people can easily interact with their environments immersively.The idea of pervasive computing is becoming a reality,but due to the inconvenience of carrying silicon-based entities and a lack of fine-grained sensing capabilities for human-computer interaction,it is difficult to ensure comfort,esthetics,and privacy in smart spaces.Motivated by the rapid developments in intelligent fabric technology in the post-Moore era,we propose a novel computing approach that creates a paradigm shift driven by fabric computing and advocate a new concept of non-chip sensing in living spaces.We discuss the core notion and benefits of fabric computing,including its implementation,challenges,and future research opportunities. | Min Chen Jia Liu Pan Li Hamid Gharavi Yixue Hao Jingyu Ouyang Jiayu Hu Long Hu Chong Hou Iztok Humar Lei Wei Guang-Zhong Yang Guangming Tao | 2022 | The Innovation2022,3,6: | 0 |
| 19 | Human SIDT1 mediates dsRNA uptake via its phospholipase activity显示文摘Dear Editor,Systemic RNA interference(RNAi)refers to post-transcriptional gene silencing that spreads throughout the organism and its progeny,which could be triggered by double-stranded(ds)RNA.^(1,2)Hunter and colleagues identified that a ubiquitously expressed putative transmembrane protein SID-1(systemic RNAi defective-1)in Caenorhabditis elegans is required for systemic RNA(3). | Cai-Rong Sun Da Xu Fengrui Yang Zhuanghao Hou Yuyao Luo Chen-Yu Zhang Ge Shan Guangming Huang Xuebiao Yao Yuxing Chen Qiong Li Cong-Zhao Zhou | 2024 | Cell Research2024,34,1: | 0 |
| 20 | Robust and Flexible Multimaterial Aerogel Fabric Toward Outdoor Passive Heating显示文摘Outdoor passive heating to maintain a constant human body temperature is critical for human activities.However,most traditional energy-exhausted heating systems and inefficient passive heating technologies are incapable of dealing with the cold outdoor environment.Developing fabrics with low thermal radiation and conduction to passively heat the human body is a viable way to overcome the constraints of existing passive heating strategies.Herein,a multimaterial aerogel fabric was developed to realize passive personal heating without any energy input.The multimaterial aerogel fabric was fabricated by coating an Ag layer on an aerogel composite fabric.The lightweight aerogel composite fabric,woven from aerogel composite fibers with multi-scale porous structure,exhibits excellent thermal insulation,self-cleaning,mechanical and thermal stability.Furthermore,by coating with an Ag layer,the multimaterial aerogel fabric exhibits both low thermal conductivity and low infrared emissivity at 7–14μm,demonstrating superior thermal insulating performance.As a result,the proposed multimaterial aerogel fabric with a thickness of only 1.29 mm is capable of improving the human body temperarure of 5.7℃ in a cold environment without energy input.This strategy offers a potential energy-saving alternative for future outdoor passive heating. | Jiawei Wu Manni Zhang Minyu Su Yuqi Zhang Jun Liang Shaoning Zeng Baishun Chen Li Cui Chong Hou Guangming Tao | 2022 | Advanced Fiber Materials2022,4,6: | 0 |