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    Modeling and control of HIV by computational intelligence techniques

    , Article IFMBE Proceedings, 30 April 2010 through 2 May 2010, College Park, MD ; Volume 32 IFMBE , April , 2010 , Pages 192-195 ; 16800737 (ISSN) ; 9783642149979 (ISBN) Bazyar Shourabi, N ; Sharif University of Technology
    2010
    Abstract
    The paper aims at proposing a controller through two-layer neural networks (NN) in order to control CD4 amount in HIV + Patients. In the same direction, initially a new mathematical model by using of two-layer neural networks (NN) was designed. Medical information of 300 HIV + Patients who were being treated in the Iranian Research Center for HIV/AIDS (IRCHA), Imam Khomeini Hospital, Tehran, was used to design this model. Highly active antiretroviral therapy (HAART) medical method is a significant method that was used in this study. It is worthy to say that CD4 amount declining leads to immune system deficiency and it is considered as one of AIDS main symptoms. Output of this mathematic... 

    Modeling & Control of HIV by Computational Intelligence Techniques

    , M.Sc. Thesis Sharif University of Technology Bazyar Shourabi, Neda (Author) ; Kazemzadeh Hannani, Siamk (Supervisor) ; Seyfipour, Navid (Supervisor)
    Abstract
    An event must be modeled in a way that either reflects a comprehensive perspective for the event or acts in an especial part of that event, roperly. The main aim of this thesis is to control. Therefore the models will be accepted whenever the suggested mathematical models can move towards controller final target, desirably.This thesis proposes a linear mathematical model, five nonlinear models and a simple model based upon Convolution, Fuzzy Regression and Neural Networks techniques for Acquired Immune Deficiency Syndrome (AIDS), respectively. The proposed models were achieved through studying 300 HIV+ Patients who were under Highly Active Antiretroviral Therapy (HAART) approach in Iranian... 

    Machine Learning-Based Rapid Visual Screening of Buildings for Potential Seismic Damage Using BuildingImages

    , M.Sc. Thesis Sharif University of Technology Shourabi, Shayan (Author) ; Bakhshi, Ali (Supervisor)
    Abstract
    Rapid visual screening is a way to assess unsafe structures and reduce urban earthquake vulnerability. Although this method is faster than detailed analytical methods(e.g. Incremental dynamic analysis), it still requires a lot of time and financial resources to execute. Due to the widespread use of computer vision in engineering, this study has used this technology to perform rapid visual screening, improve its overall process and provide a standard method for automatic assessment of structures. In the process of rapid visual screening, the screener identifies features from the exterior view of the building, which are finally recorded in a scoring system. According to the score obtained,... 

    Design and Fabrication of Functionally Graded TPMS Sandwich Panel Core for Enhancing Energy Absorption Capability by Vat Photopolymerization

    , M.Sc. Thesis Sharif University of Technology Bazyar, Mohammad Mehdi (Author) ;
    Abstract
    To create gradient structures for TPMS metamaterials, various patterns such as longitudinal, radial, and spherical gradient structures can be utilized. Limited studies have compared the failure patterns and energy absorption of these structures. This research aims to present a suitable gradient pattern to enhance the energy absorption of sandwich panels with a porous TPMS metamaterial core by examining the effects of previous patterns on the mechanical behavior of the structure under compressive loads. In the initial phase of the study, the behavior of different gradient patterns of the TPMS structure with a Schwartz unit cell was investigated through longitudinal, radial, and spherical... 

    Comparative experimental and numerical study of mixing efficiency in 3D-printed microfluidic droplet generators: T junction, cross junction, and asymmetric junctions with varying angles

    , Article Chemical Engineering and Processing - Process Intensification ; Volume 205 , 2024 ; 02552701 (ISSN) Kheirkhah Barzoki, A ; Mohseni, A ; Bazyar, M. M ; Mohammadi, K ; Sharif University of Technology
    2024
    Abstract
    In droplet-based microfluidics, rapid mixing during droplet formation enhances reaction uniformity, eliminating the need for micromixers. In this research, we conducted a comprehensive study by first employing a series of two-dimensional (2D) numerical simulations, followed by experimental investigations using 3D-printed microfluidic chips. We compared the mixing efficiency, droplet diameter, and droplet eccentricity of three different types of droplet generators: T junction, cross junction, and asymmetric droplet generators with various angles. Regarding mixing efficiency, we observed that the asymmetric droplet generators outperformed the cross junction by 30 % but fell slightly short of... 

    Surfactant effects on the particle size, zeta potential, and stability of starch nanoparticles and their use in a pH-responsive manner

    , Article Cellulose ; Volume 24, Issue 10 , 2017 , Pages 4217-4234 ; 09690239 (ISSN) Masoudipour, E ; Kashanian, S ; Hemati Azandaryani, A ; Omidfar, K ; Bazyar, E ; Sharif University of Technology
    2017
    Abstract
    Storage conditions seem to be important in the long-term stability of nanoparticles (NPs). This work studies the effects of surfactants and storage container on particle size distribution and zeta potential during long-term storage of acid hydrolyzed potato starch NPs. The NPs were prepared from potato starch using acid hydrolysis and high-intensity ultrasonication. During the ultrasonic treatment, the surfactants were added dropwise to the solutions to reduce the size and stabilize the formed NPs. Particle size distribution, zeta potential, and FE-SEM were used to characterize the ensuing NPs. Additionally, a 5-month stability study was performed to evaluate the maintenance of potato starch... 

    A novel practical method for the production of functionally graded materials by varying exposure time via photo-curing 3D printing

    , Article Journal of Manufacturing Processes ; Volume 103 , 2023 , Pages 136-143 ; 15266125 (ISSN) Bazyar, M. M ; Tabary Bozorgnia, A. A ; Rahmatabdi, D ; Mohammadi, K ; Hashemi, R ; Sharif University of Technology
    Elsevier Ltd  2023
    Abstract
    Functionally Graded Materials (FGMs) are one category of composites suitable for situations requiring conflicting properties in one component. Due to the limitations of conventional manufacturing techniques for FGMs, Additive Manufacturing (AM) as a promising candidate has been widely utilized in recent years. Among AM methods, photo-curing 3D printing is a high-precision method that can produce FGMs. In this article, for the first time, a novel practical technique for printing FGMs is introduced based on changing exposure time without additional cost and equipment. For evaluation, a sample whose layers were printed with different exposure times from 4 s to 46 s with 6 s intervals and a... 

    Design and Fabrication of a Microfluidic Kidney Nephron-on-Chip Platform

    , M.Sc. Thesis Sharif University of Technology Yahyazadeh Shourabi, Arash (Author) ; Saeedi, Mohammad Saeed (Supervisor) ; Hajilouy Benisi, Ali (Supervisor) ; Moghadas, Hajar (Co-Supervisor)
    Abstract
    In this manuscript, we designed and fabricated a novel integrated microfluidic Kidney Nephron-On-Chip. This chip is able to culture cell monolayers under various fluid shear stresses and divert osmotic pressure gradients while imposing four different concentrations of an injected drug on cells. The multi-layer platform consisting of two bubble-trappers to eliminate all unwanted bubbles from the system, a concentration gradient generator to generate four different concentrations of the injected drug, and a membrane-based cell culture chamber caple of providing renal cells with their in-vivo condition. Using colorimetric techniques, the bubble trapper ability was quantified at flow rates up to... 

    Recent activities in science and technology and the progress of women in physics in the last three years in Iran

    , Article AIP Conference Proceedings, Stellenbosch ; Volume 1517 , 2013 , Pages 108-109 ; 0094243X (ISSN); 9780735411388 (ISBN) Izadi, D ; Azad, M. T ; Mahmoudi, N ; Izadipanah, N ; Eshghi, N ; Sharif University of Technology
    2013
    Abstract
    For the 4th IUPAP International Conference of Women in Physics, we report on activities in science and engineering in Iran, and conditions for women in physics, in the three years since the 3rd IUPAP International Conference of Women in Physics was held in 2008. Iran has made prominent advancements and astonishing progress in laser technology, biotechnology, nanotechnology, genetics, computer software and hardware, and robotics. Iranian scientists have been very productive in several experimental fields, such as pharmaceutical, organic, and polymer chemistry. Conditions for women in physics have improved greatly in recent years. A project to improve the environment for learning physics, and... 

    Lead-free MAGeI3 as a suitable alternative for MAPbI3 in nanostructured perovskite solar cells: a simulation study

    , Article Environmental Science and Pollution Research ; Volume 30, Issue 19 , 2023 , Pages 57032-57040 ; 09441344 (ISSN) Mehrabian, M ; Akhavan, O ; Rabiee, N ; Afshar, E. N ; Zare, E. N ; Sharif University of Technology
    Springer Science and Business Media Deutschland GmbH  2023
    Abstract
    The lead is a heavy metal with hazardous impacts on environment and human life. Lead-free perovskite solar cells have attracted much attention in recent years, due to eco-friendly characteristics. Meanwhile, Pb-containing cells showed the highest efficiencies among the various types of cells. Hence, designing novel Pb-free solar cells with comparable or better performance than the Pb-containing ones is highly required. In this work, a lead-free methyl-ammonium-germanium-iodide (MAGeI3)-based perovskite solar cell with ITO/TiO2/MAGeI3/Spiro-OMeTAD/Ag multilayer nanostructure has been proposed and its main characteristics including open-circuit voltage (VOC) and power conversion efficiency (η)... 

    Ab initio study of electronic effects in the ZnO/TiO2 core/shell interface: Application in dye sensitized solar cells

    , Article RSC Advances ; Vol. 4, issue. 1 , April , 2014 , p. 301-307 Pazoki, M ; Nafari, N ; Taghavinia, N ; Sharif University of Technology
    2014
    Abstract
    Core/shell structure of ZnO nanowires coated with a monolayer of TiO 2 is investigated using Density Functional Theory (DFT). The electronic states of the semiconductor is calculated and compared before and after coating of the TiO2 monolayer on a ZnO [101 0] surface. The effect of TiO2 coating induce surface states changes and shifts the conduction and valence band edges to higher energies. Our results, in qualitative agreement with the experimental work of Matt Law et al. (J. Phys. Chem. B, 110, 22652), show an increase in open circuit voltage and a decrease in short circuit current in ZnO/TiO2 core shell dye sensitized solar cells. Regarding the semiconductor density of states (DOS), TiO2... 

    Analyzing factors effective on the development of relationship commitment

    , Article Proceedings of the 2012 International Conference on Artificial Intelligence, ICAI 2012, 16 July 2012 through 19 July 2012 ; Volume 1 , July , 2012 , Pages 398-404 ; 1601322186 (ISBN) ; 9781601322180 (ISBN) Dehdashti, Y ; Lotfi, N ; Karami, N ; Sharif University of Technology
    2012
    Abstract
    Due to the important role of commitment and trust in the relationship marketing, the factors which can directly result in a committed relationship along with the factors which can influence the commitment through influencing trust, according to the model of commitment and trust by (Morgan & Hunt, 1994) have been introduced and their level of importance has been investigated here. The article uses fuzzy cognitive maps (FCMs) in the proposed model to find the most important paths leading to relationship commitment. The FCM analyzes the responses of a group of 30 people including general practitioners in dentistry, managers of dental departments in some of the public clinics and hospitals who... 

    Morphological dependence of light backscattering from metallic back reflector films: Application in dye-sensitized solar cells

    , Article Physica Status Solidi (A) Applications and Materials Science ; Volume 212, Issue 4 , January , 2015 , Pages 785-790 ; 18626300 (ISSN) Sharifi, N ; Ghazyani, N ; Taghavinia, N ; Sharif University of Technology
    Wiley-VCH Verlag  2015
    Abstract
    Conventionally, a film of TiO2 particles of 300 nm size is employed in Dye-sensitized solar cells (DSCs) as the back reflector film to enhance the light harvesting. Perfect reflectance of silver in visible and near infrared motivates to investigate its potential as the material for the light back reflector film in DSCs. In this study, light back reflector films consisting of 300 nm-sized silver particles, as well as vacuum evaporated silver flat film, were fabricated and compared to 300 nm-sized rutile-type TiO2 particulate reflector film to study their optical aspects. Conventional TiO2 rutile-type particulate film demonstrates slightly lower performance... 

    Monolithic dye sensitized solar cell with metal foil counter electrode

    , Article Organic Electronics ; Volume 57 , June , 2018 , Pages 194-200 ; 15661199 (ISSN) Behrouznejad, F ; Taghavinia, N ; Ghazyani, N ; Sharif University of Technology
    Elsevier B.V  2018
    Abstract
    Monolithic dye-sensitized solar cells are conventionally fabricated using carbon composite layer as the counter electrode. In the current research, the brittle carbon composite layer is replaced with a metal foil, aiming to decrease the device series resistance and using less catalyst material in counter electrode. This metallic structure has also an advantage of mechanical strength and decreases the fabrication complexity. The counter electrode is prepared by electrodepositing Cr film followed by electrodepositing Pt nanoparticles on a metal foil. As the porous spacer layer, different composite layers of SiO2, TiO2, and Al2O3 are investigated and the best results are obtained for TiO2... 

    Additive manufacturing: new paradigm for developing water splitting systems

    , Article International Journal of Hydrogen Energy ; Volume 49 , 2024 , Pages 116-142 ; 03603199 (ISSN) Mojabi, S ; Afsahi, N ; Naseri, N ; Sharif University of Technology
    Elsevier  2024
    Abstract
    Nowadays, the need for green energy resources is being felt more than at any other time due to the critical level of carbon emission and its considerable effects on the environment. Hydrogen as a promising substitute for fossil fuels can be produced via water splitting reactions and be applied in a carbon-free cycle. As one of the main pillars of the 4th industrial revolution, additive manufacturing (AM) technologies are attractive trends toward fabrication of the electrolyzers and electrodes with high surface area and customized architecture in an automated, time-saving, and waste-reducing manner. This review is devoted to electrocatalytic water splitting reports in which additive... 

    A compact versatile microbial fuel cell from paper

    , Article ASME 2013 11th Int. Conf. on Fuel Cell Science, Eng. and Technology Collocated with the ASME 2013 Heat Transfer Summer Conf. and the ASME 2013 7th Int. Conf. on Energy Sustainability, FUELCELL 2013 ; 2013 ; 9780791855522 (ISBN) Wagner, L. T ; Hashemi, N ; Hashemi, N ; Sharif University of Technology
    2013
    Abstract
    Microbial fuel cells (MFCs) have been a potential green energy source for a long time but one of the problems is that either the technology must be used on a large scale or special equipment have been necessary to keep the fuel cells running such as syringe pumps. Paper-based microbial fuel cells do not need to have a syringe pump to run and can run entirely by themselves when placed in contact with the fluids that are necessary for it to run. Paper-based microbial fuel cells are also more compact than traditional MFCs since the device doesn't need any external equipment to run. The goal of this paper is to develop a microbial fuel cell that does not require a syringe pump to function. This... 

    Decentralized model predictive voltage control of islanded DC microgrids

    , Article 11th Power Electronics, Drive Systems, and Technologies Conference, PEDSTC 2020, 4 February 2020 through 6 February 2020 ; 2020 Abbasi, M ; Mahdian Dehkordi, N ; Sadati, N ; Sharif University of Technology
    Institute of Electrical and Electronics Engineers Inc  2020
    Abstract
    This paper proposes a novel decentralized control approach for islanded direct-current (DC) microgrids (MGs) based on model predictive control (MPC) to regulate the distributed generation unit (DGU) output voltages, i.e. the voltages of the point of common coupling (PCC). A local controller is designed for each DGU, in the presence of uncertainties, disturbances, and unmodeled dynamics. First, a discrete-time state-space model of an MG is derived. Afterward, an MPC algorithm is designed to perform the PCC voltage control. The proposed MPC scheme ensures that the PCC voltages remain within an acceptable range. Several simulation studies have been conducted to illustrate the effectiveness of... 

    Intelligent optimal feed-back torque control of a 6DOF surgical rotary robot

    , Article 11th Power Electronics, Drive Systems, and Technologies Conference, PEDSTC 2020, 4 February 2020 through 6 February 2020 ; 2020 Tajdari, F ; Ebrahimi Toulkani, N ; Zhilakzadeh, N ; Sharif University of Technology
    Institute of Electrical and Electronics Engineers Inc  2020
    Abstract
    Sophisticated surgeons are widely indicating the use of surgical robots in order to reject human error, increase precision, and speed. Among well-known robotic mechanisms, parallel robots are broadly more investigated regarding their special characters as higher acceleration, speed, and accuracy, and less weight. Specific surgical procedures confine, and restrict their workspace, while controlling and validating the robots are complicated regarding to their complex dynamic. To this end, in this paper, a 6-DOF robot, with rotary manipulators, is designed and controlled. Addressing nonlinearity of parallel robots, an innovative methodology is formulated to robustly penalize the error of... 

    Semi-Real evaluation, and adaptive control of a 6DOF surgical robot

    , Article 11th Power Electronics, Drive Systems, and Technologies Conference, PEDSTC 2020, 4 February 2020 through 6 February 2020 ; 2020 Tajdari, F ; Ebrahimi Toulkani, N ; Zhilakzadeh, N ; Sharif University of Technology
    Institute of Electrical and Electronics Engineers Inc  2020
    Abstract
    Sophisticated surgeons are widely indicating the use of surgical robots in order to reject human error, increase precision, and speed. Among well-known robotic mechanisms, parallel robots are broadly more investigated regarding their special characters as higher acceleration, speed, and accuracy, and less weight. Specific surgical procedures confine and restrict their workspace, while controlling and validating the robots are complicated based on their complex dynamic. To this end, in this paper, a 6-DOF robot, with linear manipulators, is designed and controlled. Addressing the inherent nonlinearity of the robot mechanism, an adaptive PID manipulator is employed and validated with nonlinear... 

    Modeling superconductive fault current limiter using constructive neural networks

    , Article 2007 IEEE International Symposium on Industrial Electronics, ISIE 2007, Caixanova - Vigo, 4 June 2007 through 7 June 2007 ; 2007 , Pages 2859-2863 ; 1424407559 (ISBN); 9781424407552 (ISBN) Makki, B ; Sadati, N ; Hosseini, M. N ; Sharif University of Technology
    2007
    Abstract
    Although so many advances have been proposed in the field of artificial intelligence and superconductivity, there are few reports on their combination. On the other hand, because of the nonlinear and multivariable characteristics of the superconductive elements and capabilities of neural networks in this field, it seems useful to apply the neural networks to model and control the superconductive phenomena or devices. In this paper, a new constructive neural network (CNN) trained by two different optimization algorithms; back-propagation and genetic algorithm, is proposed which models the behavior of the superconductive fault current limiters (SFCLs). Simulation results show that the proposed...