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In this paper, a new method, called the lumped‐component circuit method (LCM), is developed for one‐dimensioal and two‐dimensional convection–reaction–diffusion with low to moderate Peclet numbers, tested for modelling both steady‐state and transient problems, and compared with standard finite volume method (FVM) schemes. The method has been developed principally for solving equations with piecewise‐constant...
In this contribution, a modular framework for ultra wide band wireless power transmission in proximity of the human body is presented. The goal of this work is to simplify the study of wireless links by considering antenna models, including radiation characteristics when the antenna is deployed on the human body, and the power transferred over them in multipath, shadowed propagation environments,...
Poles and zeros of the transfer function determine the performance and the key features of the circuit network, such as phase, gain, and bandwidth. In this paper, the contribution of the poles and zeros to the transfer function has been shown. The factors ηp and ηz are proposed to account for the poles contribution to the peak and the zeros contribution to the valley of transfer function, respectively...
In this study, one of the most important destructive effects in end‐pumped Nd:YAG laser, that is, thermal lensing is analyzed. Different partial differential equations, supplemented by suitable boundary conditions, are solved and joined to illustrate the fluctuations in laser Transverse Electromagnetic (TEM) mode. Because of no analytic demonstration of this effect, an efficient meshless method known...
In this paper, a physically based analytical threshold voltage model for PNIN strained‐silicon‐on‐insulator tunnel field‐effect transistor (PNIN SSOI TFET) is proposed by solving the two‐dimensional (2D) Poisson equation in narrow N+ layer and intrinsic region. In the proposed model, the effect of strain (in terms of equivalent Ge mole fraction), narrow N+ layer and gate dielectric, and so on, is...
The power system static security classification and assessment is essential in order to identify the post‐contingency problems and take corrective measures and to protect the system from blackout. In this paper, application of two data mining classifiers have been proposed for the security classification and assessment of a multiclass security problem. To design the security problem, contingency analysis...
This paper presents numerical modeling on the noise properties and signal distortion associated with millimeter‐frequency modulation of vertical‐cavity surface‐emitting laser (VCSEL) under with a transverse‐coupled cavity. The study is based on a time‐delay rate equation model that takes into account the multiple round trips in the feedback cavity and the optical loss and phase delay in each round...
Scalable modeling with very simple topology for stacked millimeter‐wave transformers is presented. Because of high‐frequency effect and thick metal effect, the architecture is based on single‐π and double‐π network for transformers with turn ratio 1:1 and 1:2, respectively. The model parameters are extracted from two factors—the layout and process data. Simple and accurate expressions for the self‐inductance,...
Bandpass filters with wide pass‐band are an essential requirement in various equipments of satellite and defence communication sectors. Here a method of split‐path interactions is proposed to approximately predict the resonant frequency and topology of bandpass filters which otherwise fall under the category of heuristic designs. Curved transmission lines are often required to make filter structures...
We investigate subwavelength waveguides composed of silicon nanorods array in straight and nonstraight regimes deposited on a silica (SiO2) substrate. It is shown that using all‐dielectric nanorods with high permittivity to design an all‐dielectric optical waveguide provides several advantages such as low‐dissipation coefficient and long decay length for the distributed fields. Exploiting silicon...
In this paper, nanoscale metal–oxide–semiconductor field‐effect transistor (MOSFET) device circuit co‐design is presented with an aim to reduce the gate leakage curren t in VLSI logic circuits. Firstly, gate leakage current is modeled through high‐k spacer underlap MOSFET (HSU MOSFET). In this HSU MOSFET, inversion layer is induced in underlap region by the gate fringing field through high‐k dielectric...
Numerical methods used to solve 1D Schrödinger's equation in quantum structures, such as Numerov's integration of wavefunction or the shooting method iterative solution of energy levels, require knowledge of two‐point boundary conditions at interfaces. This is especially true when the interfaces are not symmetrical or where exponential decay of wavefunction at asymptotically large distances does not...
Mathematical modeling and simulation of unmanned aerial vehicles, especially, quadrotor modeling are not a simple work because of their complex structure, nonlinear dynamics and under‐actuated features. This paper presents the development of a general parametric model of a quadrotor with complete dynamic. First, a new robust PID control strategy based on QFT as a robust controller design method is...
In this paper, a novel method to efficiently calculate the power transfer efficiency of a wireless power transfer system in the radiative near‐field is proposed. The technique allows repositioning of the antennas without large additional cost. It relies on a single simulation (or measurement) of the radiation pattern of the antennas used. Thanks to its high computational efficiency, it can be used...
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