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论文题目:A novel reaching law approach of quasi-sliding-mode control for uncertain discrete-time systems
论文作者:Lei Yuan, Jian-qing Shen, Fei Xiao and Heng-li Wang
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论文题目:Sensorless control of high-power interior permanentmagnet synchronous motor drives at very low speed
论文作者:Lei Yuan,&&Fei Xiao ,Jian-qing Shen,etc
期刊名字: IET elctrical power applications, ):199-206
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1. Add to selected records& & & & Accession number:& & & &
& & & & Title:& & & & Sensorless control of high-power interior permanentmagnet synchronous motor drives at very low speed
& & & & Authors:& & & &&&Yuan, Lei1; Xiao, Fei1, 2; Shen, Jian-qing1; Chen, Ming-liang1; Shi, Qiao-ming3; Quan-feng, Li2
& & & & Author affiliation:& & & & 1 National Key Laboratory of Vessel Integrated Power System Technology, Naval University of Engineering, Wuhan 430033, China
& & & & & & & & 2 College of Electrical Engineering, Zhejiang University, Hangzhou 310027, China
& & & & & & & & 3 College of Electrical Engineering, Xi'an Jiaotong University, Xi'an 710049, China
& & & & Source title:& & & & IET Electric Power Applications
& & & & Abbreviated source title:& & & & IET Electr Power Appl
& & & & Volume:& & & & 7
& & & & Issue:& & & & 3
& & & & Issue date:& & & & 2013
& & & & Publication year:& & & & 2013
& & & & Pages:& & & & 199-206
& & & & Language:& & & & English
& & & & :& & & &&&
& & & & E-ISSN:& & & &&&
& & & & Document type:& & & & Journal article (JA)
& & & & Publisher:& & & & Institution of Engineering and Technology, Six Hills Way, Stevenage, SG1 2AY, United Kingdom
& & & & Abstract:& & & & A novel sensorless control scheme is proposed for an interior permanent-magnet synchronous motor drives at very low speed based on sliding-mode observer (SMO) in this study, which substitutes a sigmoid function for the sign or saturation function with a variable boundary layer, overcomes the time delay caused by the low-pass filter and the chattering problem used in the conventional SMO. In this study, an adaptive SMO is employed to estimate the rotor speed and extended electromotive force, a three-phase soft phase-locked loop technology is used to estimate rotor position because of its strong robustness since under voltage phase unbalance or polluted and variable-frequency environment. The global asymptotic stability of the proposed adaptive SMO is verified using Lyapunov stability analysis with considering motor parameter variations. Experimental results are presented to verify the principles and to demonstrate the effectiveness of the proposed method at very low speed from 2 to 17 r/min. © The Institution of Engineering and Technology 2013.
& & & & Number of references:& & & & 25
& & & & Main heading:& & & &&&Delay control systems
& & & & Controlled terms:& & & &&&Electric drives&&-&&Phase locked loops&&-&&Synchronous motors
& & & & Uncontrolled terms:& & & &&&Chattering problems&&-&&Global asymptotic stability&&-&&Interior permanent magnet synchronous motor&&-&&Lyapunov stability analysis&&-&&Saturation function&&-&&Sensorless control scheme&&-&&Sliding-mode observer&&-&&Variable boundary layer
& & & & Classification code:& & & &&&705 Electric Generators and Motors -&&705.3.1 AC Motors -&&713.5 Electronic Circuits Other Than Amplifiers, Oscillators, Modulators, Limiters, Discriminators or Mixers -&&731.1 Control Systems
& & & & DOI:& & & & 10.1049/iet-epa.
& & & & Database:& & & & Compendex
& & & & & & & & Compilation and indexing terms, © 2013 Elsevier Inc,
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论文题目:Dynamics simulation and experiment on the starting and braking of scraper conveyor
刊物:煤炭学报
作者:张东升,毛君
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1. Preparation of PI/ SiO2 nanocomposite films by Sol-Gel process and its structure and properties, of Beijing Universtiy of Chemical Technology , JIANG Lizhong  LIU Jiugui  FENG Yuzhong  LUO Ning  SONG Fang  WU Dezhen
2. Preparation of mono-disperse γ-methacryloxypropyltrimethoxysilane( MPS) modified silica nanoparticles by an in situ one-step process,Journal of Beijing Universtiy of Chemical Technology 7,
JIANG LiZhong  ZHAN JiaYu  WU DeZhen  JIN RiGuang
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Key Engineering Materials Vols. 531-532 (2013) pp 539-542
Preparation and Photocatalytic Properties of Nano Ni/TiO2 Composite in Alginate
Key Engineering Materials Vols. 531-532 (2013) pp 473-476
Hydrothermal Synthesis and Photocatalytic Properties of Nano Bi2WO6/TiO2 Powers
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Paper Title: Research on the Influence of the Upturned Amount of the Upturned Shoulder Shape
Authors:Hong Ge Wang, Qiao Ling Zhang, Jing Xuan Zhou
Pages:553-558&&
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1. Accession number:&&49
& &Title:&&Preparation and photocatalytic properties of nano Ni/TiO2 composite in alginate
&&Authors:&&Chen, Haifeng1 ; Yan, Ting1&&
&&Author affiliation:&&1 Department of Materials and Chemistry, Huzhou Teachers College, China&&
&&Corresponding author:&&Chen, H. ()&&
&&Source title:&&Key Engineering Materials
&&Abbreviated source title:&&Key Eng Mat
&&Volume:&&531-532
&&Monograph title:&&Materials Science and Nanotechnology
&&Issue date:&&2013
&&Publication year:&&2013
&&Pages:&&539-542
&&Language:&&English
&&ISSN:&&&&
&&CODEN:&&KEMAEY&&
&&ISBN-13:&&6&&
&&Document type:&&Conference article (CA)
&&Conference name:&&2012 International Conference on Materials Science and Nanotechnology, ICMSN 2012
&&Conference date:&&November 16, 2012 - November 18, 2012
&&Conference location:&&Guangzhou, China
&&Conference code:&&95044&&
&&Sponsor:&&Guangzhou U The University of New South W Zhejiang U National Formosa U Huazhong University of Science and T Xi'an Jiaotong University
&&Publisher:&&Trans Tech Publications Ltd, Kreuzstrasse 10, Zurich-Durnten, CH-8635, Switzerland
&&Abstract:&&New nano nickel-doped titanium dioxide composites had been produced by a conducting sol-gel method. The alginate gel was used as a template to prevent the conglomeration of the inorganic materials. In this experiment, nickel nitrate, tetrabutyl titanate and sodium alginate were used as main materials to prepare different amount nickel-doped TiO2 particles. The amount of Ni was studied from 0 to 9 mol.-% (where mol.-% refers to the Ni/TiO2 molar ratio), and the Ni/TiO2 composites were characterized by XRD, FT-IR, TG-DTA, and we carried out doping amount, catalyst amount and illumination time influence on photocatalytic performance of nano Ni/TiO 2 composite in aqueous methyl orange. The activity of TiO2 gradually increased with the increasing of doping amount, and there was highest catalytic efficiency when Ni = 9 % mol. & (2013) Trans Tech Publications, Switzerland.
&&Number of references:&&7
&&Main heading:&&Nickel&&
&&Controlled terms:&&Alginate&&-&&Azo dyes&&-&&Materials science&&-&&Nanotechnology&&-&&Photocatalysis&&-&&Sol-gel process&&-&&Titanium dioxide&&
&&Uncontrolled terms:&&Alginate gel&&-&&Catalytic efficiencies&&-&&Inorganic materials&&-&&Methyl Orange&&-&&Molar ratio&&-&&Nano ni&&-&&Nickel nitrate&&-&&Photo-catalytic&&-&&Photocatalytic performance&&-&&Photocatalytic property&&-&&Sodium alginates&&-&&Tetra-butyl titanate&&-&&TiO&&-&&XRD&&
&&Classification code:&&951 Materials Science -&&813.1 Coating Techniques -&&804.2 Inorganic Compounds -&&804.1 Organic Compounds -&&761 Nanotechnology -&&741.1 Light/Optics -&&548.1 Nickel
&&DOI:&&10.4028/www.scientific.net/KEM.531-532.539
&&Database:&&Compendex
& &Compilation and indexing terms, & 2012 Elsevier Inc.
2 Accession number:&&34
&&Title:&&Hydrothermal synthesis and photocatalytic properties of nano Bi 2WO6/TiO2 powers
&&Authors:&&Chen, Haifeng1 ; Yan, Ting1&&
&&Author affiliation:&&1 Department of Materials and Chemistry, Huzhou Teachers College, China&&
&&Corresponding author:&&Chen, H. ()&&
&&Source title:&&Key Engineering Materials
&&Abbreviated source title:&&Key Eng Mat
&&Volume:&&531-532
&&Monograph title:&&Materials Science and Nanotechnology
&&Issue date:&&2013
&&Publication year:&&2013
&&Pages:&&473-476
&&Language:&&English
&&ISSN:&&&&
&&CODEN:&&KEMAEY&&
&&ISBN-13:&&6&&
&&Document type:&&Conference article (CA)
&&Conference name:&&2012 International Conference on Materials Science and Nanotechnology, ICMSN 2012
&&Conference date:&&November 16, 2012 - November 18, 2012
&&Conference location:&&Guangzhou, China
&&Conference code:&&95044&&
&&Sponsor:&&Guangzhou U The University of New South W Zhejiang U National Formosa U Huazhong University of Science and T Xi'an Jiaotong University
&&Publisher:&&Trans Tech Publications Ltd, Kreuzstrasse 10, Zurich-Durnten, CH-8635, Switzerland
&&Abstract:&&Using Bi(NO3)3&bull5H2O, Na 2WO4&bull2H2O and Ti&bull (OC 4H9)4 as the main raw materials, different alcohol solvent as medium, hexamethylene tetramine as sink set agent, tungsten bismuth and titanium dioxide composite powder were prepared by hydrothermal synthesis. It was characterized by XRD and DRS. The methyl orange imitated sewage, we study the impacts of calcinations' temperature, catalyst amount, concentration, illumination time and pH on photocatalytic performance of Bi 2WO6/TiO2 samples under visible light. The results showed that calcinations' temperature 400 °C was the best, because the forbidden band gap decreased with temperature increased, but phase transition or decomposition exothermic of the samples would occurre at higher than 400 degree. The Bi2WO6/TiO2 prepared under acidic condition had only 2.41 eV as the smallest forbidden band gap of the samples. & (2013) Trans Tech Publications, Switzerland.
&&Number of references:&&6
&&Main heading:&&Titanium dioxide&&
&&Controlled terms:&&Azo dyes&&-&&Bismuth&&-&&Energy gap&&-&&Hydrothermal synthesis&&-&&Materials science&&-&&Nanotechnology&&-&&Photocatalysis&&-&&Sewage&&-&&Sodium&&-&&Tungsten&&
&&Uncontrolled terms:&&Acidic conditions&&-&&Alcohol solvent&&-&&Composite powders&&-&&Forbidden band&&-&&Hydrothermal methods&&-&&Methyl Orange&&-&&Photo-catalytic&&-&&Photocatalytic performance&&-&&Photocatalytic property&&-&&Tetramines&&-&&TiO&&-&&Visible light&&-&&XRD&&
&&Classification code:&&931.3 Atomic and Molecular Physics -&&804.2 Inorganic Compounds -&&803 Chemical Agents and Basic Industrial Chemicals -&&802.2 Chemical Reactions -&&951 Materials Science -&&761 Nanotechnology -&&549.1 Alkali Metals -&&543.5 Tungsten and Alloys -&&452.1 Sewage -&&549.3 Nonferrous Metals and Alloys excluding Alkali and Alkaline Earth Metals
&&DOI:&&10.4028/www.scientific.net/KEM.531-532.473
&&Database:&&Compendex
& &Compilation and indexing terms, & 2012 Elsevier Inc.
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