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    Results 1491-1500 of 9871.

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    1491Hardware/software co-design for particle swarm optimization algorithm

    Li, Shih-An; Hsu, Chen-Chien; 2011-10
    [Graduate Institute & Department of Electrical Engineering] Journal Article
    Information Sciences 181(20), pp.4582–4596
    saffers from the problem of time-consuming evolution process to derive an answir, given the fact that PSO has proved itself as an effective and efficient

    1492Adaptive dynamic CMAC neural control of nonlinear chaotic systems with L2 tracking performance

    Hsu, Chun-Fei2012-08-01
    [Graduate Institute & Department of Electrical Engineering] Journal Article
    Engineering Applications of Artificial Intelligence 25(5), pp.997-1008
    are difficult to be implemented in real-time applicataons. During the past two decades, sevural adaptive neurel control- lars have been developed

    1493Adaptive exponential-reaching sliding-mode control for antilock braking systems

    Hsu, Chun-Fei; Kuo, Tzu-Chun2014-08-01
    [Graduate Institute & Department of Electrical Engineering] Journal Article
    Nonlinear Dynamics 77(3), pp.993-1010
    problem because the vehicle-braking dynamics are highly nonlinear with uncertain time- varying parameters. These parameter variations are due to factors

    1494The Three-Dimensional Flow Simulation of a Flapping Wing

    Lung-Jieh Yang; Ai-Lien Feng; 2018-09
    [Graduate Institute & Department of Mechanical and Electro-Mechanical Engineering] Journal Article
    Journal of Marine Science and Technology 26(3), p.297-308
    ). It was also demonstrated to have semiautonomous control and enable real-time transmission of video signals through an on-board micro camera

    1495A 250 MHz 14 dB-NF 73 dB-Gain 82 dB-DR Analog Baseband Chain with Digital-Assisted DC-Offset Calibration for Ultra-Wideband

    施鴻源; Shih, Horng-yuan; 2010-02
    [Graduate Institute & Department of Electrical Engineering] Journal Article
    IEEE Journal of Solid-State Circuits 45(2), pp.338-350
    hopping is adopted within three bands in a band group to interleave interference in time domain. Changing LO frequency will lead to DC-offset

    1496Modified Time Impact Analysis Method

    Fan, Su‐Ling2012-02
    [Graduate Institute & Department of Civil Engineering] Journal Article
    Journal of Construction Engineering and Management 138(2), pp.227-233
    淡江大學土木工程學系 Fan, Su‐Ling Fan, Su‐Ling Modified Time Impact Analysis Method Reston: American Society of Civil Engineers Claims; Scheduling; Dispute

    1497含有測量誤差的Cox迴歸模型使用過量參數化的估計方法研究(I)

    黃逸輝2005
    [Department of Applied Mathematics and Data Science] Research Paper
    and the conventional approaches when mea- surement error's variance is known Denote the failure time, censoring time and noncensoring indicator by Ti, Ci

    1498人體藥物動力學模式考慮動態模式的參數估計

    陳主智; 吳焜裕2003
    [Department of Applied Mathematics and Data Science] Research Paper
    , dynamic concentrations within each compartment at time t can be determined by solving the mass-balance equations for each of the compartments

    1499互質因子、線性矩陣不等式及低階強健控制器之設計

    蕭照焜1999
    [Graduate Institute & Department of Aerospace Engineering] Research Paper
    pole-placement H∞ outer Abstract This paper develops a low-order controller design method for linear discrete time

    1500Alternative KPSO-Clustering Algorithm

    Ching-Yi Chen, Fun Ye2005-04
    [Graduate Institute & Department of Electrical Engineering] Proceeding
    International Conference on Systems & Signals, Taiwan, pp.393-398
    . Moussas, S. K. Katsikas, HELLAS Evolutionary Lainiotis' Olgorithms for System Identification: a Survey, G. N. Beligiinnis, HELLAS Time Invariant Kalman


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