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    Iterative interference cancellation for a coded multicarrier frequency-hopping CDMA (MC-FH-CDMA) system

    , Article Scientia Iranica ; Volume 11, Issue 3 , 2004 , Pages 248-254 ; 10263098 (ISSN) M. Ebrahimi, T. M ; Nasiri Kenari, M ; Sharif University of Technology
    Sharif University of Technology  2004
    Abstract
    In this paper a low complexity iterative multi-user receiver for the coded MC-FH-CDMA system, is considered, which has been introduced in [1]. The structure of the proposed receiver consists of a Multi-User Likelihood Calculator (MULC) and a bank of SISO channel decoders, one for each active user. Based on the received signal and a priori information about code bits, provided by SISO decoders in the previous iteration, MULC computes the extrinsic information of the coded symbols of active users in the form of a Log-Likelihood Ratio (LLR). This information is used by channel decoders as a priori information to compute an update of LLRs. The processing proceeds in an iterative manner, similar... 

    Effect of ECAP temperature on microstructure and mechanical properties of Al-Zn-Mg-Cu alloy

    , Article Progress in Natural Science: Materials International ; Volume 26, Issue 2 , 2016 , Pages 182-191 ; 10020071 (ISSN) Shaeri, M. H ; Shaeri, M ; Ebrahimi, M ; Salehi, M. T ; Seyyedein, S. H ; Sharif University of Technology
    Elsevier B.V  2016
    Abstract
    The effect of equal channel angular pressing (ECAP) at different temperatures (room temperature, 120, 150 and 180 °C) on microstructure and mechanical properties of Al-7075 solid solution alloy was investigated. Microstructure of the specimens was examined using orientation imaging microscopy, transmission electron microscopy as well as X-ray diffractometer, and mechanical properties were measured by Vickers microhardness and tensile tests. Microstructural investigations showed that after 3 or 4 passes of ECAP, fine grains with average grain sizes in range of 300-1000 nm could be obtained at different ECAP temperatures. Increasing ECAP temperature from 120 to 180 °C caused a decrease in... 

    Characterizing terahertz channels for monitoring human lungs with wireless nanosensor networks

    , Article Nano Communication Networks ; Volume 9 , 2016 , Pages 43-57 ; 18787789 (ISSN) Zarepour, E ; Hassan, M ; Chou, C. T ; Ebrahimi Warkiani, M ; Sharif University of Technology
    Elsevier B.V  2016
    Abstract
    We characterize terahertz wireless channels for extracting data from nanoscale sensors deployed within human lungs. We discover that the inhalation and exhalation of oxygen and carbon dioxide causes periodic variation of the absorption coefficient of the terahertz channel. Channel absorption drops to its minimum near the end of inhalation, providing a window of opportunity to extract data with minimum transmission power. We propose an algorithm for nanosensors to estimate the periodic channel by observing signal-to-noise ratio of the beacons transmitted from the data sink. Using real respiration data from multiple subjects, we demonstrate that the proposed algorithm can estimate the minimum... 

    Iterative interference cancellation for a coded multicarrier frequency-hopping CDMA (MC-FH-CDMA) system

    , Article 2003 IEEE Wireless Communications and Networking Conference: The Dawn of Pervasive Communication, WCNC 2003, 16 March 2003 through 20 March 2003 ; Volume 1 , 2003 , Pages 573-578 ; 15253511 (ISSN); 0780377001 (ISBN) Masoud Ebrahimi, T. M ; Nasiri Kenari, M ; Sharif University of Technology
    Institute of Electrical and Electronics Engineers Inc  2003
    Abstract
    In this paper, we consider a low complexity iterative multiuser receiver for the coded MC-FH-CDMA system, introduced in M. Ebrahimi T.M. and M. Nasiri-Kenari (May 2002). The structure of the proposed receiver consists of a multiuser likelihood calculator (MULC) and a bank of SISO channel decoders one for each active user. Based on the received signal and a priori information about code bits provided by SISO decoders in the previous iteration, MULC computes extrinsic information of coded symbols of active users in the form of log-likelihood ratio (LLR). This information is used by channel decoders as a priori information to compute an update of LLRs. The processing proceeds in an iterative... 

    Magneto-mechanical stability of axially functionally graded supported nanotubes

    , Article Materials Research Express ; Volume 6, Issue 12 , 2019 ; 20531591 (ISSN) Ebrahimi Mamaghani, A ; Mirtalebi, H ; Ahmadian, M. T ; Sharif University of Technology
    Institute of Physics Publishing  2019
    Abstract
    In this paper, size-dependent vibration analysis of axially functionally graded (AFG) supported nanotubes conveying nanoflow under longitudinal magnetic fields are performed, aiming at performance improvement of fluid-interaction nanosystems. Either the density or the elastic modulus of the AFG nanotube varies linearly or exponentially along the axial direction. Based on the nonlocal continuum theory, the higher-order dynamical equation of motion of the system is derived considering no-slip boundary condition. Galerkin discretization technique and eigenvalue analysis are implemented to solve the modeled equation. The validity of the simplified model is justified by comparing the results with... 

    Magneto-mechanical stability of axially functionally graded supported nanotubes

    , Article Materials Research Express ; Volume 6, Issue 12 , 2019 ; 20531591 (ISSN) Ebrahimi Mamaghani, A ; Mirtalebi, H ; Ahmadian, M. T ; Sharif University of Technology
    Institute of Physics Publishing  2019
    Abstract
    In this paper, size-dependent vibration analysis of axially functionally graded (AFG) supported nanotubes conveying nanoflow under longitudinal magnetic fields are performed, aiming at performance improvement of fluid-interaction nanosystems. Either the density or the elastic modulus of the AFG nanotube varies linearly or exponentially along the axial direction. Based on the nonlocal continuum theory, the higher-order dynamical equation of motion of the system is derived considering no-slip boundary condition. Galerkin discretization technique and eigenvalue analysis are implemented to solve the modeled equation. The validity of the simplified model is justified by comparing the results with... 

    Performance analysis of multicarrier frequency-hopping (MC-FH) code division multiple-access systems: Uncoded and coded schemes

    , Article Vehicular Technology Conference, Birmingham, AL, 6 May 2002 through 9 May 2002 ; Volume 2 , 2002 , Pages 630-634 ; 07400551 (ISSN) Masoud Ebrahimi, T. M ; Nasiri Kenari, M ; IEEE ; Sharif University of Technology
    2002
    Abstract
    In this paper, we consider multiuser capacity of a multicarrier frequency-hopping (MC-FH) CDMA system as first introduced in [1]. We propose to use a practical low-rate convolutional error correcting code in this system which does not require any extra bandwidth further than needed by the frequency-hopping spread-spectrum modulation. We provide multiuser performance analysis of the system for both uncoded and coded schemes in AWGN and fading channels based on Gaussian distribution assumption for multiuser interference term. We also derive the exact Bit Error Rate (BER) of the system in AWGN channel. Our numerical results first indicate that the coded scheme significantly outperforms the... 

    Energy management of smart home considering residences' satisfaction and PHEV

    , Article 2018 International Conference on Smart Energy Systems and Technologies, SEST 2018, 10 September 2018 through 12 September 2018 ; 2018 ; 9781538653265 (ISBN) Ebrahimi, M ; Shokri Gazafroudi, A ; Corchado, J. M ; Ebrahimi, M ; Sharif University of Technology
    Institute of Electrical and Electronics Engineers Inc  2018
    Abstract
    Regarding the increasing number of electrical devices in the smart homes that leads to increase in total electricity consumption and cost, it is essential to use energy management methods to reduce the electricity cost. However, this can cause resident's dissatisfaction. Hence, it is important to define a method in which cost and dissatisfaction be optimized simultaneously. Among different services, an electric vehicle is the one that can be used as an energy storage system, so it can reduce the daily cost despite of increasing the total energy consumption. In this paper, we study the effect of the EV on the cost and dissatisfaction in our proposed method. © 2018 IEEE  

    A practical scheme for transmission loss allocation to generators and loads in restructured power systems

    , Article World Academy of Science, Engineering and Technology ; Volume 79 , 2011 , Pages 448-452 ; 2010376X (ISSN) Ebrahimi, M. R ; Ehsan, M ; Sharif University of Technology
    2011
    Abstract
    This paper presents a practical scheme that can be used for allocating the transmission loss to generators and loads. In this scheme first the share of a generator or load on the current through a branch is determined using Z-bus modified matrix. Then the current components are decomposed and the branch loss allocation is obtained. A motivation of proposed scheme is to improve the results of Z-bus method and to reach more fair allocation. The proposed scheme has been implemented and tested on several networks. To achieve practical and applicable results, the proposed scheme is simulated and compared on the transmission network (400kv) of Khorasan region in Iran and the 14-bus standard IEEE... 

    A continuous vibration theory for rotors with an open edge crack

    , Article Journal of Sound and Vibration ; Volume 333, Issue 15 , 21 July 2014 , Pages 3522–3535 Ebrahimi, A ; Heydari, M ; Behzad, M ; Sharif University of Technology
    21 July 2014
    Abstract
    In this paper a new continuous model for flexural vibration of rotors with an open edge crack has been developed. The cracked rotor is considered in the rotating coordinate system attached to it. Therefore, the rotor bending can be decomposed in two perpendicular directions. Two quasi-linear displacement fields are assumed for these two directions and the strain and stress fields are calculated in each direction. Then the final displacement and stress fields are obtained by composing the displacement and stress fields in the two directions. The governing equation of motion for the rotor has been obtained using the Hamilton principle and solved using a modified Galerkin method. The free... 

    Forced vibration analysis of rotors with an open edge crack based on a continuous vibration theory

    , Article Archive of Applied Mechanics ; Volume 87, Issue 11 , 2017 , Pages 1871-1889 ; 09391533 (ISSN) Ebrahimi, A ; Heydari, M ; Behzad, M ; Sharif University of Technology
    2017
    Abstract
    In this paper, the forced vibration of a cracked rotor with an open edge crack has been studied by a new continuous model for flexural vibration of cracked rotors proposed in Ebrahimi et al. (J Sound Vib 333:3522–3535, 2014). The cracked rotor behavior under the external excitation of gravity and unbalance forces is presented. Since the governing equation is linear, using the superposition principle the responses of the cracked rotor to the gravity and unbalance forces are calculated separately. Then, the total response is calculated by summing these two responses. Each of these two responses is found by using a modified Galerkin method. The effect of the crack in the presence of the gravity... 

    Optimal vibration control of rotors with an open edge crack using an electromagnetic actuator

    , Article JVC/Journal of Vibration and Control ; Volume 24, Issue 1 , 2018 , Pages 37-59 ; 10775463 (ISSN) Ebrahimi, A ; Heydari, M ; Behzad, M ; Sharif University of Technology
    SAGE Publications Inc  2018
    Abstract
    Vibration control, especially in cracked rotors, is an important factor that can prevent the occurrence of disastrous failures. In this paper, vibrational control of a cracked rotor with an electromagnetic actuator has been studied with a continuous model of flexural vibration of cracked rotors. The governing equation of motion for the rotor under the external excitation of the electromagnetic actuator, gravity, and unbalanced forces is presented. A control law for the optimal control method to minimize the vibration of the rotor or stress at the crack section was obtained. To this aim, two cost functions have been introduced, based on the overall vibration of the rotor and the maximum... 

    Wave propagation analysis of a spinning porous graphene nanoplatelet-reinforced nanoshell

    , Article Waves in Random and Complex Media ; Volume 31, Issue 6 , 2021 , Pages 1655-1681 ; 17455030 (ISSN) Ebrahimi, F ; Mohammadi, K ; Barouti, M. M ; Habibi, M ; Sharif University of Technology
    Taylor and Francis Ltd  2021
    Abstract
    In this article, wave propagation behavior of a size-dependent spinning graphene nanoplatelet-reinforced composite (GNPRC) cylindrical nanoshell with porosity is presented. The effects of small scale are analyzed based on nonlocal strain gradient theory (NSGT), this accurate theory employs exact length scale parameter and nonlocal constant. The governing equations of GNPRC cylindrical nanoshell coupled with piezoelectric actuator (PIAC) are evolved by minimum potential energy principle and solved by the analytical method. For the first time in the current study, wave propagation-porosity behavior of a GNPRC cylindrical nanoshell coupled with PIAC is examined based on NSGT. The results show... 

    Dynamic behavior of a tension leg platform offshore wind turbine under environmental loads

    , Article Scientia Iranica ; Vol. 21, issue. 3 , 2014 , pp. 480-491 ; ISSN : 1026-3098 Ebrahimi, A ; Abbaspour, M ; Nasiri, R. M ; Sharif University of Technology
    2014
    Abstract
    In order to evaluate the dynamic behavior of floating offshore wind turbines, the authors consider two approaches. A numerical method is used to investigate Tension Leg Platform (TLP) offshore wind turbine response behavior under a parked condition. This code considers nonlinearities due to changes in the tension of tethers. The off-diagonal components of stiffness, damping and mass matrices are considered to calculate coupling. This code solves the nonlinear equation of motion at each time step. However, in order to validate the data generated by the code, a scaled-down model was fully tested in the marine laboratory. The importance of these series of experiments is due to the fact that... 

    Transmission loss allocation via loss function decomposition and current projection concept

    , Article World Academy of Science, Engineering and Technology ; Volume 62 , 2010 , Pages 675-678 ; 2010376X (ISSN) Ebrahimi, M. R ; Ghofrani, Z ; Ehsan, M ; Sharif University of Technology
    2010
    Abstract
    One of the major problems in liberalized power markets is loss allocation. In this paper, a different method for allocating transmission losses to pool market participants is proposed. The proposed method is fundamentally based on decomposition of loss function and current projection concept. The method has been implemented and tested on several networks and one sample summarized in the paper. The results show that the method is comprehensive and fair to allocating the energy losses of a power market to its participants  

    Comprehensive study of non-uniform circular array interferometer in a real time broadband 3-dimensional direction finder (2-12GHZ)

    , Article Progress In Electromagnetics Research C ; Volume 24 , 2011 , Pages 69-81 ; 19378718 (ISSN) Ebrahimi Ganjeh, M. A ; Soltanian, M ; Salarpour, M ; Pezeshk, A. M ; Sharif University of Technology
    2011
    Abstract
    A comprehensive study is performed to investigate the performance of a non-uniform circular array interferometer in a real time 3-dimensional direction finder. The angular range of view is supposed to be 65 degrees vertically and 120 degrees horizontally, which is suitable for airborne applications. Interferometer is designed to work in the S, C and X bands. Regarding optimization process, the interferometer employs an eight element non-uniform circular array along with a phase reference antenna at the center of the array. Several quantities and parameters are studied, e.g., frequency behavior, origins of phase measurement errors, Signal to Noise Ratio (SNR) effect on phase measurement, and... 

    Dunford-Taylor integral and the isotropic tensor valued functions having the commutative property with their tensor argument

    , Article Advanced Materials Research, 16 September 2011 through 18 September 2011 ; Volume 433-440 , September , 2012 , Pages 3308-3314 ; 10226680 (ISSN) ; 9783037853191 (ISBN) Ebrahimi, M ; Asghari, M ; Sharif University of Technology
    2012
    Abstract
    Isotropic tensor valued functions of tensor arguments play an important role in the formulation of the equations governing the behavior of solid materials in the field of continuum mechanics. When the tensor argument is non-symmetric, the complexity and the difficulty in dealing with the tensor functions are high. In this work, the issue of expressing an isotropic tensor valued tensor function of a non-symmetric tensor argument is attention by utilizing the Dunford-Taylor integral. An important subclass of the isotropic tensor functions is considered with the commutative property  

    Formaldehyde biodegradation using an immobilized bed aerobic bioreactor with pumice stone as a support

    , Article Scientia Iranica ; Volume 18, Issue 6 , December , 2011 , Pages 1372-1376 ; 10263098 (ISSN) Ebrahimi, S ; Borghei, M ; Sharif University of Technology
    2011
    Abstract
    The objective of this study is the investigation of formaldehyde degradation in a bioreactor with pumice stone as a support. The reactor was tested at different synthetic wastewater concentrations with total COD of 500, 1000 and 1500 mgL, respectively, at 24 h hydraulic retention time. The effect of feed composition was tested by changing the COD TCOD FA ratio in order to analyze the impact of formaldehyde concentration. The average formaldehyde and COD removal efficiencies obtained in the reactor were 97.1% and 88%, respectively. The maximum COD and formaldehyde removal efficiencies occurred at the COD TCOD F of 41 at COD T=1000mgL. The effect of toxic shock on reactor performance was... 

    Port-Hamiltonian control of a brachiating robot via generalized canonical transformations

    , Article 2016 American Control Conference, ACC 2016, 6 July 2016 through 8 July 2016 ; Volume 2016-July , 2016 , Pages 3026-3031 ; 07431619 (ISSN); 9781467386821 (ISBN) Ebrahimi, K ; Namvar, M ; Sharif University of Technology
    Institute of Electrical and Electronics Engineers Inc  2016
    Abstract
    This paper is devoted to the design of a port Hamiltonian controller for different scenarios of brachiation movement by a two-link bio-inspired robot called brachiating robot. A unified technique for trajectory tracking control problem of nonholonomic (drift-less) port Hamiltonian systems was introduced in the past, which exploits a generalized canonical transformation to form an error system in order to convert the trajectory tracking problem into a stabilization one. Although the method is novel and promising, only fully actuated systems are considered and success of the approach relies on the possibility of solving a set of partial differential equations (PDEs). Considering the fact that... 

    Numerical investigation of the forward and backward travelling waves through an undulating propulsor: performance and wake pattern

    , Article Ships and Offshore Structures ; Volume 11, Issue 5 , 2016 , Pages 517-539 ; 17445302 (ISSN) Ebrahimi, M ; Abbaspour, M ; Sharif University of Technology
    Taylor and Francis Ltd  2016
    Abstract
    Recently, the mechanisms of natural undulatory locomotion of aquatic animal swimming have become one of the most significant issues for the researchers, swimmers and engineers. This study aims to elucidate and compare the propulsive vortical signature and performance of backward (negative undulation) and forward (positive undulation) travelling waves through a typical fishlike propulsor by a systematic numerical study. The numerical approach uses a pressure-based finite volume method solver to solve Navier–Stokes equations in an arbitrary Lagrangian–Eulerian framework domain containing a two-dimensional NACA 0012 foil moving with prescribed kinematics. Some of the important findings are: (1)...