The Experts below are selected from a list of 300 Experts worldwide ranked by ideXlab platform
Lin Wantao - One of the best experts on this subject based on the ideXlab platform.
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variational iteration solving method of a sea air Oscillator Model for the enso
Progress in Natural Science, 2007Co-Authors: Mo Jiaqi, Lin WantaoAbstract:Abstract A time delay equation for sea-air Oscillator Model is studied. The aim is to create an asymptotic soling method of nonlinear equation for the ENSO Model. And based on a class of Oscillators of ENSO Model, employing the variational iteration method, the approximate solution of corresponding problem is obtained. It is proven from the results that the method of variational iteration method can be used for analyzing the sea surface temperature anomaly in the equatorial eastern Pacific of the atmosphere-ocean oscillation for ENSO Model. *Supported by National Natural Science Foundation of China (Grant Nos. 40576012, 90111011), the National Program on Key Basic Research Project (Grant No. 2004CB418304) and in part by E-Institute of Shangai Municipal Education Commission (Grant No. E03004)
G. Kubin - One of the best experts on this subject based on the ideXlab platform.
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Synthesis and coding of continuous speech with the nonlinear Oscillator Model
1996 IEEE International Conference on Acoustics Speech and Signal Processing Conference Proceedings, 1996Co-Authors: G. KubinAbstract:The nonlinear Oscillator Model for speech signals has been previously applied to time-scale modification of speech. We report on the application of the Model to speech synthesis and waveform coding. For speech synthesis, a new radial basis function representation of the Oscillator feedback nonlinearity is introduced. The local approximation properties of this representation have been investigated and it is shown how it can be adapted to continuous speech on a frame-by-frame basis. For speech coding, synchronization of the nonlinear Oscillator Model to the original waveform is demonstrated and applied in the design of a new backward-adaptive speech coding system.
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ICASSP - Synthesis and coding of continuous speech with the nonlinear Oscillator Model
1996 IEEE International Conference on Acoustics Speech and Signal Processing Conference Proceedings, 1996Co-Authors: G. KubinAbstract:The nonlinear Oscillator Model for speech signals has been previously applied to time-scale modification of speech. We report on the application of the Model to speech synthesis and waveform coding. For speech synthesis, a new radial basis function representation of the Oscillator feedback nonlinearity is introduced. The local approximation properties of this representation have been investigated and it is shown how it can be adapted to continuous speech on a frame-by-frame basis. For speech coding, synchronization of the nonlinear Oscillator Model to the original waveform is demonstrated and applied in the design of a new backward-adaptive speech coding system.
Hui Wang - One of the best experts on this subject based on the ideXlab platform.
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Study for the sea-air Oscillator Model of decadal variations in subtropical cells and the sea surface temperature(SST) of equatorial pacific
Chinese Journal of Geophysics, 2020Co-Authors: Jia‐qi Mo, Hui WangAbstract:A time delay equation for the sea-air Oscillator Model is studied. The aim is to create an asymptotic solving method of nonlinear equation for the sea-air Oscillator Model. Employing the method of homotopic mapping, the approximation solution of corresponding problem is studied. This homotopic method is an approximate analytic method, which can be used for further analyzing other behavior of the sea surface temperature anomaly of the atmosphere-ocean Oscillator Model.
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PERTURBED METHOD FOR SEA-AIR Oscillator Model OF INTERDECADAL CLIMATE FLUCTUATIONS
Journal of Systems Science & Complexity, 2006Co-Authors: Jiaqi Mo, Hui WangAbstract:A coupled system of sea-air Oscillator Model is studied. Using the perturbed theory, the approximations of the solution for the sea-air Oscillator Model are obtained.
Hossein Zanganeh - One of the best experts on this subject based on the ideXlab platform.
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a modified wake Oscillator Model for vortex induced vibration of circular cylinders for a wide range of mass damping ratio
Journal of Fluids and Structures, 2010Co-Authors: Anoshirvan Farshidianfar, Hossein ZanganehAbstract:Abstract In this paper, the behavior of an elastically mounted cylinder, subjected to vortex-induced vibrations (VIV), is investigated by a low-dimensional Model. The classical wake Oscillator Model, as a standard Model, predicts the behavior of the system at high mass-damping ratios but fails in Modeling the system at low mass-damping ratios. A modified wake Oscillator Model is introduced in order to describe the response of the system over a wide range of mass-damping ratios. The results of this new Model are compared to experimental results from the literature and shown to be in good agreement. The new Model can describe most of the features of vortex-induced vibration phenomenology, such as the Griffin plot and lock-in domains.
Mo Jiaqi - One of the best experts on this subject based on the ideXlab platform.
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variational iteration solving method of a sea air Oscillator Model for the enso
Progress in Natural Science, 2007Co-Authors: Mo Jiaqi, Lin WantaoAbstract:Abstract A time delay equation for sea-air Oscillator Model is studied. The aim is to create an asymptotic soling method of nonlinear equation for the ENSO Model. And based on a class of Oscillators of ENSO Model, employing the variational iteration method, the approximate solution of corresponding problem is obtained. It is proven from the results that the method of variational iteration method can be used for analyzing the sea surface temperature anomaly in the equatorial eastern Pacific of the atmosphere-ocean oscillation for ENSO Model. *Supported by National Natural Science Foundation of China (Grant Nos. 40576012, 90111011), the National Program on Key Basic Research Project (Grant No. 2004CB418304) and in part by E-Institute of Shangai Municipal Education Commission (Grant No. E03004)