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In recent years edge finite element method has become quite popular in modeling the three‐dimensional rotating electrical machine due to its ability to represent the physical behavior of field along interface correctly. However, modeling becomes complex when significant mesh distortion occurs along a sliding surface due to movement. A remeshing step is needed, which increases computational cost. In...
This work reports on the triple‐level NAND flash cell realized from self‐amplified (SA) double gate (DG) tunneling‐based silicon‐oxide‐nitride‐oxide‐silicon (T‐SONOS) memory device. Through calibrated simulations, we show that capacitive coupling between the front gate and back gate can be used to store eight states (or 3 bits), that is, from “000” to “111,” in a T‐SONOS memory device with the readable...
This manuscript proposes an Internet of Things (IoT) platform for energy management (EM) in multi‐microgrid (MMG) system to enhance the power quality with hybrid method. The proposed method is the consolidation of opposition based crow search optimizer (OCSO) and radial basis functional neural network (RBFNN), hence it called RBFNOCS technique. The main aim of this manuscript is to optimally managing...
Virtualization is the foundation of cloud computing process and allows more effective utilization of physical computer hardware. Virtualization technologies are used in various tasks for the improvement of operating systems. Virtualization is meant for enabling the entire representation of cloud computing systems on normal speed. Still, the scale of virtualized environments and its complexity is found...
This article presents a Schrödinger–Poisson based technique to predict characteristics of trigate Si fin field effect transistors (FinFETs). The channel characteristics are modeled by a three‐dimensional (3D) Schrödinger wave equation considering quantum‐mechanical ballistic transport. Using a nonequilibrium green function and a 3D Poisson equation, drain current associated with source‐drain Fermi...
Conventional transmission expansion planning (TEP) has evolved with the increasing influence of distributed generations (DGs) and electric vehicles (EVs). This increases uncertainty in power systems. On the other hand, reactive power plays a key role in voltage stability, so modeling reactive power planning in TEP is very important. The amount of reactive power is a determining factor regarding the...
The frequency dependence of soil parameters has been confirmed by many experiments. Most of them are done by the measurement of soil sample in laboratories. Although some studies are based on field measurement, only homogeneous ground or two‐layer model are considered. The study of frequency dependence of soil parameters with considering multilayered model is lacking. The frequency dependence of the...
The traditional time‐frequency analysis (TFA) techniques are instruments for target classification, which can reflect the feature of the target in the time‐frequency domain. However, it will lead to a serious decrease in the recognition accuracy as the decline of the sampling rate. To ease this problem, in this article, the sparse time‐frequency feature analysis (STFFA) is implemented for aircraft...
This article presents a detailed study on AlGaN/GaN based HEMT for DC (such as ID − VDS, ID − VGS and gm), RF (such as cut off frequency, fT and maximum oscillation frequency, fMAX) and noise parameters (such as minimum noise figure (NFmin), noise resistance (Rn) and optimum reflection coefficient (Гopt)). AlGaN/GaN based HEMT having gate length 250 nm and 500 nm have been simulated and verified on...
Traps present at the interface of oxide and barrier layers influence the device's DC and RF parameters. An investigation is carried out on the distribution of interface traps present in the AlGaN/GaN/AlInN Metal Oxide Semiconductor‐High Electron Mobility Transistor (MOS‐HEMT) structures. By incorporating Hafnium Oxide (HfO2) as a dielectric layer, the DC and RF parameters like current drive and Power‐Added...
Antenna arrays can enhance the performance and reduce the overhead of the wireless communication systems. However, the beam pattern synthesis of antenna arrays are difficult problems since the optimization properties are usually trade‐offs that affect each other. In this paper, we formulate a multiobjective beam pattern optimization problem (MBPOP) to simultaneously reduce the maximum sidelobe level...
This paper describes PWLFIT+, an extension to the frequency domain of PWLFIT, a new paradigm in time‐domain macromodeling for linear multiport systems, based on a piecewise‐linear (PWL) behavioral representation of the S‐parameters step response. While the impulse response of each S‐parameter is approximated as sum of delayed rectangles (rect) functions, its spectrum is interpolated as sum of the...
This paper aims to ameliorate the contribution capability of doubly fed induction generator to damp the frequency and output power deviation of stand‐alone hybrid microgrid system. Skyrocketing progress in converter‐interfaced renewable energy sources leads to weakness of islanded microgrids' inertia which imposes some problems in the frequency control and hybrid system stability. This problem can...
In this paper, a loop based coplanar random access memory (RAM) cell with set/reset ability using quantum‐dot cellular automata (QCA) technology is first proposed. The operation of the RAM cell is validated physically as well as by simulations using QCADesigner tool. The energy dissipation analysis of the proposed RAM cell demonstrates that the proposed design dissipates very low energy. Additionally,...
This paper presents an accurate analytical model of surface potential and drain current for a long channel dual material gate (DMG) tunneling field‐effect transistor (TFET) with the addition of nonlinear inversion charge developed at the channel/drain interface region, ambipolar characteristic, and quantum confinement. The model includes the effect of dual metal gate work function as it controls the...
Due to discrete nature of power converters, finite control set model predictive control (FCS‐MPC) is considered as an attractive choice for these systems. Since this control technique provides advantages like improved dynamic performance and inclusion of several control objectives in a single cost function, it is especially appropriate for topologies like modular multilevel converters (MMCs), where...
This study performed modeling of the scattering (S) and noise (N) parameters of the ATF53189 using the General Regression Neural Network (GRNN) and Multi Layer Perceptron Neural Network (MLPNN) methods based on Artificial Neural Network (ANN). For modeling the linear behavior of the transistor, the optimum design parameters of the GRNN and the MLPNN methods were determined using four different optimization...
This article proposed an online identification technique, also known as a real‐time recursive identification technique for continuous time‐delay systems. The proposed approach is based on online output‐error modeling of unknown continuous time‐delay models, indirectly from discrete time‐delay models. The developed indirect formulation is employed to propose three online identification algorithms using...
In this work, an adaptive piecewise linear diode model is presented for class C rectifier design. The model is developed based on conventional piecewise linear diode model and curve fitting to extract the model parameters for different input power and load situations. The accuracy of the model is evaluated by comparing the calculated power conversion efficiency (PCE) using the proposed model with...
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