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Total 131 records

    Multi-angle data acquisition to compensate transducer finite size in photoacoustic tomography

    , Article Photoacoustics ; Volume 27 , 2022 ; 22135979 (ISSN) Hakakzadeh, S ; Mozaffarzadeh, M ; Mostafavi, S. M ; Kavehvash, Z ; Rajendran, P ; Verweij, M ; de Jong, N ; Pramanik, M ; Sharif University of Technology
    Elsevier GmbH  2022
    Abstract
    In photoacoustic tomography (PAT) systems, the tangential resolution decreases due to the finite size of the transducer as the off-center distance increases. To address this problem, we propose a multi-angle detection approach in which the transducer used for data acquisition rotates around its center (with specific angles) as well as around the scanning center. The angles are calculated based on the central frequency and diameter of the transducer and the radius of the region-of-interest (ROI). Simulations with point-like absorbers (for point-spread-function evaluation) and a vasculature phantom (for quality assessment), and experiments with ten 0.5 mm-diameter pencil leads and a leaf... 

    A closed-form transfer function for sample and hold master slave sampling filter

    , Article IEEE Transactions on Circuits and Systems II: Express Briefs ; Volume 69, Issue 7 , 2022 , Pages 3159-3163 ; 15497747 (ISSN) Abdekhoda, J ; Sarvari, R ; Sharif University of Technology
    Institute of Electrical and Electronics Engineers Inc  2022
    Abstract
    A switched capacitor circuit frequently appears in literature in form of sample and hold or master-slave sampling filter. We call this block Sample and Hold Master-Slave Sampling Filter (SH-MSSF). Considering the time varying nature of this circuit it is difficult to predict its behavior, though it looks like a very simple circuit. So there exists no formula describing its function in all of its applications. In this brief, we present a closed-form transfer function, explaining the operation of SH-MSSF, based on state-space analysis. Then by interpolating an infinite number of such transfer functions a continuous-time formula is derived that can exactly model the behavior of this (Linear... 

    Algebraic bound for the phase–frequency response of the commande robuste d'ordre non-entier approximation of fractional differentiators and its applications in control systems analysis

    , Article JVC/Journal of Vibration and Control ; Volume 28, Issue 9-10 , 2022 , Pages 1074-1085 ; 10775463 (ISSN) Neshat, K ; Tavazoei, M. S ; Sharif University of Technology
    SAGE Publications Inc  2022
    Abstract
    This article deals with analyzing the phase–frequency response of commande robuste d'ordre non-entier approximations of fractional-order differentiators. More precisely, an algebraic tight upper bound is derived for the phase of the approximations obtained from the commande robuste d'ordre non-entier method. Then, some applications for this achievement are discussed in the viewpoint of control systems analysis. These applications include usefulness of the obtained upper bound in stability preservation analysis during the commande robuste d'ordre non-entier–based approximation process and applicability of such a bound in finding necessary or sufficient conditions for test of positive... 

    Fourier photoacoustic microscope improved resolution on single-pixel imaging

    , Article Applied Optics ; Volume 61, Issue 5 , 2022 , Pages 1219-1228 ; 1559128X (ISSN) Mostafavi, S. M ; Amjadian, M ; Kavehvash, Z ; Shabany, M ; Sharif University of Technology
    The Optical Society  2022
    Abstract
    A new single-pixel Fourier photoacoustic microscopy (PAM), to the best of our knowledge, is proposed to improve the resolution and region of interest (ROI) of an acquired image. In the previous structure of single-pixel Fourier PAM, called spatially invariant resolution PAM (SIR-PAM), the lateral resolution and ROI are limited by the digital micromirror device (DMD) pixel size and the number of pixels. This limitation is overcome here through illuminating fixed angle interfering plane waves, changing the fringe frequency via varying the frequency of the laser source. Given that the fringe sinusoidal patterns here can be produced by two mirrors, the DMD usage can be omitted. In this way, the... 

    Reciprocal metasurfaces for on-axis reflective optical computing

    , Article IEEE Transactions on Antennas and Propagation ; Volume 69, Issue 11 , 2021 , Pages 7709-7719 ; 0018926X (ISSN) Momeni, A ; Rajabalipanah, H ; Rahmanzadeh, M ; Abdolali, A ; Achouri, K ; Asadchy, V. S ; Fleury, R ; Sharif University of Technology
    Institute of Electrical and Electronics Engineers Inc  2021
    Abstract
    Analog computing has emerged as a promising candidate for real-time and parallel continuous data processing. This article presents a reciprocal way for realizing asymmetric optical transfer functions (OTFs) in the reflection side of the on-axis processing channels. It is rigorously demonstrated that the presence of cross-polarization exciting normal polarizabilities (CPENPs) of a reciprocal metasurface circumvents the famous challenge of Green's function approach in implementation of on-axis reflective optical signal processing while providing dual computing channels under orthogonal polarizations. Following a comprehensive theoretical discussion and as a proof of concept, an all-dielectric... 

    Energy efficiency through joint routing and function placement in different modes of SDN/NFV networks

    , Article Computer Networks ; Volume 200 , 2021 ; 13891286 (ISSN) Moosavi, R ; Parsaeefard, S ; Maddah Ali, M. A ; Shah-Mansouri, V ; Khalaj, B. H ; Bennis, M ; Sharif University of Technology
    Elsevier B.V  2021
    Abstract
    Network function virtualization (NFV) and software-defined networking (SDN) are two promising technologies to enable 5G and 6G services and achieve cost reduction, network scalability, and deployment flexibility. However, migration to full SDN/NFV networks in order to serve these services is a time-consuming process and costly for mobile operators. This paper focuses on energy efficiency during the transition of mobile core networks (MCN) to full SDN/NFV networks and explores how energy efficiency can be addressed during such migration. We propose a general system model containing a combination of legacy nodes and links, in addition to newly introduced NFV and SDN nodes. We refer to this... 

    Algebraic bound for the phase–frequency response of the commande robuste d'ordre non-entier approximation of fractional differentiators and its applications in control systems analysis

    , Article JVC/Journal of Vibration and Control ; 2021 ; 10775463 (ISSN) Neshat, K ; Tavazoei, M. S ; Sharif University of Technology
    SAGE Publications Inc  2021
    Abstract
    This article deals with analyzing the phase–frequency response of commande robuste d'ordre non-entier approximations of fractional-order differentiators. More precisely, an algebraic tight upper bound is derived for the phase of the approximations obtained from the commande robuste d'ordre non-entier method. Then, some applications for this achievement are discussed in the viewpoint of control systems analysis. These applications include usefulness of the obtained upper bound in stability preservation analysis during the commande robuste d'ordre non-entier–based approximation process and applicability of such a bound in finding necessary or sufficient conditions for test of positive... 

    The case for network functions decomposition

    , Article 17th ACM International Conference on emerging Networking EXperiments and Technologies, CoNEXT 2021, 7 December 2021 through 10 December 2021 ; 2021 , Pages 475-476 ; 9781450390989 (ISBN) Shahinfar, F ; Miano, S ; Sanaee, A ; Siracusano, G ; Bifulco, R ; Antichi, G ; ACM SIGCOMM ; Sharif University of Technology
    Association for Computing Machinery, Inc  2021
    Abstract
    This paper makes a case for writing unrestricted eBPF network functions which then get automatically decomposed between kernel and user-space. © 2021 Owner/Author  

    EEG/PPG effective connectivity fusion for analyzing deception in interview

    , Article Signal, Image and Video Processing ; Volume 14, Issue 5 , 2020 , Pages 907-914 Daneshi Kohan, M ; Motie Nasrabadi, A ; Shamsollahi, M. B ; Sharifi, A ; Sharif University of Technology
    Springer  2020
    Abstract
    In this research, the interaction between electroencephalogram (EEG) and, a cardiac parameter, photoplethysmogram (PPG), using connectivity measures to emphasize the importance of autonomic nervous system over the central nervous system during a deception is investigated. In this survey, connectivity analysis was applied, since it can provide information flow of brain regions; moreover, lying and truth appear to be cohered with the flow of information in the brain. Initially, a new wavelet-based approach for EEG/PPG effective connectivity fusion was introduced; then, it was validated for 41 subjects. For each subject, after extracting specific wavelet component of EEG and PPG signals, an... 

    Prediction of BLEVE mechanical energy by implementation of artificial neural network

    , Article Journal of Loss Prevention in the Process Industries ; Volume 63 , January , 2020 Hemmatian, B ; Casal, J ; Planas, E ; Hemmatian, B ; Rashtchian, D ; Sharif University of Technology
    Elsevier Ltd  2020
    Abstract
    In the event of a BLEVE, the overpressure wave can cause important effects over a certain area. Several thermodynamic assumptions have been proposed as the basis for developing methodologies to predict both the mechanical energy associated to such a wave and the peak overpressure. According to a recent comparative analysis, methods based on real gas behavior and adiabatic irreversible expansion assumptions can give a good estimation of this energy. In this communication, the Artificial Neural Network (ANN) approach has been implemented to predict the BLEVE mechanical energy for the case of propane and butane. Temperature and vessel filling degree at failure have been considered as input... 

    Heat transfer in turbulent nanofluids: separation flow studies and development of novel correlations

    , Article Advanced Powder Technology ; Volume 31, Issue 8 , August , 2020 , Pages 3120-3133 Montazer, E ; Shafii, M. B ; Salami, E ; Muhamad, M. R ; Yarmand, H ; Gharehkhani, S ; Chowdhury, Z. Z ; Kazi, S. N ; Badarudin, A ; Sharif University of Technology
    Elsevier B.V  2020
    Abstract
    Convective heat transfer plays a significant role in numerous industrial cooling and heating applications. This method of heat transfer can be passively improved by reconfiguring flow passage, fluid thermophysical properties, or boundary conditions. The broader scope of nanotechnology introduced several studies of thermal engineering and heat transfer. Nano-fluids are one of such technology which can be thought of engineered colloidal fluids with nano-sized particles. In the present study, turbulent forced convection heat transfer to nanofluids in an axisymmetric abrupt expansion heat exchanger was investigated experimentally. During heat transfer investigation, the functionalized... 

    QCT: A measuring tool dedicated to the estimation of image parameters for quality assurance/quality control programs of ct scanners

    , Article 15th IEEE International Symposium on Medical Measurements and Applications, MeMeA 2020, 1 June 2020 through 3 June 2020 ; July , 2020 Khodajou Chokami, H ; Hosseini, S. A ; Ghorbanzadeh, M ; Mohammadi, M ; IEEE; IEEE Instrumentation and Measurement Society; IEEE Sensors Council Italy Chapter; Politecnica di Bari; Politecnico di Torino; Societa Italiana di Analisi del Movimento in Clinica ; Sharif University of Technology
    Institute of Electrical and Electronics Engineers Inc  2020
    Abstract
    Computed Tomography (CT) is one of the most widely used screening and diagnostic tools in medical imaging centers. Considering IAEA HUMAN HEALTH SERIES No. 19 and the American College of Radiology (ACR) Accreditation Program, quality assurance (QA) and quality control (QC) are mandatory programs to periodically monitor the system condition to promote the effective utilization of ionization radiation for a diagnostic outcome through obtaining and retaining appropriate image quality and reduction of patient dose. Computational phantoms (CPs) are the key tool to monitor system condition. The commercial QC phantoms are expensive products and are not flexible enough for user demands. In this... 

    Scheduling of H∞ controllers in horizontal axis wind turbines

    , Article Control Engineering Practice ; Volume 102 , 2020 Poureh, A ; Nobakhti, A ; Sharif University of Technology
    Elsevier Ltd  2020
    Abstract
    Safe pitch angle-based pole–zero–gain scheduling, and controller blending of H∞ controllers for a variable-speed variable-pitch wind turbine in the full load region are introduced in this paper. The design methodology ensures proper model reduction and modification, canonical controller realization, and cancellation of the hidden coupling terms that emerge from these scheduling procedures to maintain the stability of the closed–loop dynamics during wind turbine operation. In contrast to previous multi-model designs that either involve scheduling of complex transfer functions or depend on less-reliable wind speed estimations, in the presented framework only a portion of the controller is... 

    Detection of structural damages by model updating based on singular value decomposition of transfer function subsets

    , Article Structural Control and Health Monitoring ; Volume 27, Issue 11 , 2020 Rahai, M ; Esfandiari, A ; Bakhshi, A ; Sharif University of Technology
    John Wiley and Sons Ltd  2020
    Abstract
    In this paper, a sensitivity-based finite element (FE) model updating method using singular value decomposition (SVD) of frequency response function (FRF) is introduced. An exact sensitivity equation is proposed by incorporating measured responses of a damaged structure in the mathematical formulations. A set of incompletely measured natural frequencies of a damaged structure and mode shapes of the intact structure are used to deal with incomplete measurement without the implementation of FE model reduction or data expansion algorithms. The insights provided from the variation of SVD of transfer functions are used for the selection of proper updating frequency ranges. The appropriate... 

    Robust control of temperature during local hyperthermia of cancerous tumors

    , Article European Journal of Control ; Volume 52 , 2020 , Pages 67-77 Sayyaf, N ; Tavazoei, M. S ; Sharif University of Technology
    Elsevier Ltd  2020
    Abstract
    Local hyperthermia is one of the most common methods to treat cancerous tumors, near the skin surface or natural body orifices. In order to study the problem of temperature control during local hyperthermia, firstly the heat conduction process during this therapy is analytically modeled by a time-delayed fractional-order transfer function, parametrized with respect to the body temperature. Since the body temperature may vary under the influence of patient physiological reaction and heat source, a robustness criterion is proposed to achieve the phase margin invariance despite of the temperature variations. Afterwards, an analytical method is proposed to tune stabilizing FO-PI/PD controllers... 

    Small-Signal stability analysis of DFIG-based wind turbines equipped with auxiliary control systems under variable wind speed

    , Article 2020 IEEE International Conference on Environment and Electrical Engineering and 2020 IEEE Industrial and Commercial Power Systems Europe, EEEIC / I and CPS Europe 2020, 9 June 2020 through 12 June 2020 ; 2020 Ravanji, M.H ; Parniani, M ; Sharif University of Technology
    Institute of Electrical and Electronics Engineers Inc  2020
    Abstract
    Providing ancillary services such as frequency support and power operating reserve by doubly fed induction gener-ator-based wind turbines has received considerable attention in the recent years, and several auxiliary controllers have been proposed to provide these services. In this paper, small-signal stability of wind turbines equipped with these controllers is assessed in presence of a frequency event and varying wind speed conditions. For this purpose, first, several auxiliary controllers are discussed, and a unified auxiliary controller (UAC) is proposed, which can represent all of these controllers simultaneously. Then, the overall transfer function from the wind speed to the wind... 

    An exact analytical model for fluid flow through finite rock matrix block with special saturation function

    , Article Journal of Hydrology ; Volume 577 , 2019 ; 00221694 (ISSN) Izadmehr, M ; Abbasi, M ; Ghazanfari, M. H ; Sharifi, M ; Kazemi, A ; Sharif University of Technology
    Elsevier B.V  2019
    Abstract
    An exact analytical solution for one-dimensional fluid flow through rock matrix block is presented. The nonlinearity induced from flow functions makes the governing equations describing this mechanism difficult to be analytically solved. In this paper, an analytical solution to the infiltration problems considering non-linear relative permeability functions is presented for finite depth, despite its profound and fundamental importance. Elimination of the nonlinear terms in the equation, as a complex and tedious task, is done by applying several successive mathematical manipulations including: Hopf-Cole transformation to obtain a diffusive type PDE; an exponential type transformation to get a... 

    On time-constant robust tuning of fractional order proportional derivative controllers

    , Article IEEE/CAA Journal of Automatica Sinica ; Volume 6, Issue 5 , 2019 , Pages 1179-1186 ; 23299266 (ISSN) Badri, V ; Tavazoei, M. S ; Sharif University of Technology
    Institute of Electrical and Electronics Engineers Inc  2019
    Abstract
    This paper deals with analyzing a newly introduced method for tuning of fractional order [proportional derivative] (FO[PD]) controllers to be used in motion control. By using this tuning method, not only the phase margin and gain crossover frequency are adjustable, but also robustness to variations in the plant time-constant is guaranteed. Conditions on the values of control specifications (desired phase margin and gain crossover frequency) for solution existence in this tuning method are found. Also, the number of solutions is analytically determined in this study. Moreover, experimental verifications are presented to indicate the applicability of the obtained results. © 2014 Chinese... 

    A novel method for measuring the MTF of CT scanners: A phantom study

    , Article 2019 IEEE International Symposium on Medical Measurements and Applications, MeMeA 2019, 26 June 2019 through 28 June 2019 ; 2019 ; 9781538684276 (ISBN) Khodajou Chokami, H ; Hosseini, S. A ; Reza Ay, M ; Safarzadehamiri, A ; Ghafarian, P ; Zaidi, H ; Sharif University of Technology
    Institute of Electrical and Electronics Engineers Inc  2019
    Abstract
    The modulation transfer function (MTF) is well known as a crucial parameter in quality assurance of computed tomography (CT) scanners, which provides detailed information of both contrast and resolution of CT images. Different methods have been introduced and developed to calculate the MTF of CT scanners. However, a robust methodology which accurately estimates the MTF of CT scanners under the use of every range of object electron density and tube current-time product (mAs) has not been reported so far. To this aim, a new wavelet-based circular edge method for MTF measurement has been presented in this work. Owning to the edge spread function (ESF) susceptibility to noise, the approach was... 

    Temporal analog optical computing using an on-chip fully reconfigurable photonic signal processor

    , Article Optics and Laser Technology ; Volume 111 , 2019 , Pages 66-74 ; 00303992 (ISSN) Babashah, H ; Kavehvash, Z ; Khavasi, A ; Koohi, S ; Sharif University of Technology
    Elsevier Ltd  2019
    Abstract
    This paper introduces the concept of on-chip temporal optical computing, based on dispersive Fourier transform and suitably designed modulation module, to perform mathematical operations of interest, such as differentiation, integration, or convolution in time domain. The desired mathematical operation is performed as signal propagates through a fully reconfigurable on-chip photonic signal processor. Although a few numbers of photonic temporal signal processors have been introduced recently, they are usually bulky or they suffer from limited reconfigurability which is of great importance to implement large-scale general-purpose photonic signal processors. To address these limitations, this...