By Li Duan, Yisong Zhao, Yongyi Xue (auth.), Song Lin, Xiong Huang (eds.)
This 5-volume set (CCIS 214-CCIS 218) constitutes the refereed complaints of the foreign convention on desktop technology, setting, Ecoinformatics, and schooling, CSEE 2011, held in Wuhan, China, in July 2011. The 525 revised complete papers provided within the 5 volumes have been conscientiously reviewed and chosen from quite a few submissions. The papers are prepared in topical sections on info safeguard, clever info, neural networks, electronic library, algorithms, automation, man made intelligence, bioinformatics, machine networks, computational approach, computing device imaginative and prescient, desktop modelling and simulation, keep watch over, databases, info mining, e-learning, e-commerce, e-business, snapshot processing, details platforms, wisdom administration and data getting to know, mulitimedia and its apllication, administration and knowledge process, moblie computing, typical computing and computational intelligence, open and leading edge schooling, trend acceptance, parallel and computing, robotics, instant community, internet program, different issues connecting with computing device, surroundings and ecoinformatics, modeling and simulation, surroundings recovery, setting and effort, info and its effect on setting, computing device and ecoinformatics, biotechnology and biofuel, in addition to biosensors and bioreactor.
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Additional info for Advances in Computer Science, Environment, Ecoinformatics, and Education: International Conference, CSEE 2011, Wuhan, China, August 21-22, 2011. Proceedings, Part IV
16, the solution to Eq. 15 will be unstable. On the other hand, as it can be seen from Eq. 14 that ε is determined by Y , and Y is dependent upon D according to Eq. 10 and Eq. 6. Consequently, it is significant to investigate the relation between the stability criterion and the critical excitation. To do this, Eq. 13 and Eq. 14 are rearranged as following, Y= mgLε EAδ . (17) Substituting Eq. 10, Eq. 6 and Eq. 7 into Eq. 17, eventually the following formula is obtained. (18) Eq. 18 provides more straightforward information about how large D should be to cause parametric resonance, especially while the vertical excitation frequency f approaches twice of the first order natural frequency fs of the string transverse vibration.
Br. J. Appl. Phys. 8, 145–148 (1957) 2. : Free, periodic, nonlinear oscillation of an axially moving strip. ASME J. Appl. Mech. 36, 83–91 (1969) 3. : Stability analysis of an axially accelerating string. Journal of Sound Vibration 203(5), 815–832 (1997) 4. : Bifurcation and chaos of an axially moving viscoelastic strings. Chaos Solitons & Fractals 29, 81–90 (2002) 5. : Exponential stabilization of an axially moving string by linear boundary feedback. Automatica 35, 177–181 (1999) 6. : Adaptive boundary control of an axially moving system.
Software Engineering and Software Documentation Writing. Tsinghua University Press, Beijing (2005) (in Chinese) 4. : Software Engineering—Principles and Practice, 2nd edn. John Wiley & Sons, New York (2000) 5. : Management Systems Engineering. net Abstract. Supposing the upper end of a mass-loaded string is subjected to an axial harmonic displacement excitation, the parametrically-excited transverse vibration of the string due to dynamic coupling between axial and transverse directions is investigated in this paper.