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    Design and Efficient Implementation of Equalizer and Synchronizer Block in Recent Telecommunication Links Standards

    , M.Sc. Thesis Sharif University of Technology Zeighami, Amir Mahdi (Author) ; Shabany, Mahdi (Supervisor)
    Abstract
    Today, telecommunication links transmit information wirelessly at high rates; The transmission channel is not ideal and the transmitted signal undergoes changes in the channel and then reaches the receiver; Also, the processing blocks in the transmitter and receiver are not completely similar and ideal; These two factors make it difficult for the receiver to recover the transmitted information and actually receives a signal that bears little resemblance to the transmitted signal. The most important effect that the channel has on the transmitted signal is due to the multi-path of the channel between the transmitter and the receiver, which causes a signal to reach the receiver through the... 

    Study the Effect of Specific Salt Ions on Interfacial Tension of Water (Lowsalinity/Smart) and Reservoir Fluid in Surface Tension Reducing Materials Flooding by Molecular Dynamic Simulation

    , M.Sc. Thesis Sharif University of Technology Zeighami, Amir Reza (Author) ; Ayatollahi, Shahabodin (Supervisor)
    Abstract
    Water injection is known as one of the most efficient and affordable techniques to displace the oil in the reservoirs. To increase oil recovery efficiency through water injection operation, recently low salinity water injection or water containing a certain amount of effective ions (engineered/low salinity water) is proposed. Besides, improving this technique is also adopted in the oil industry using certain chemicals like surfactants to change the interfacial tension or rock wettability for more oil recovery. In order to study and model the mechanisms involved during surfactant flooding, molecular dynamics simulation is utilized here as a novel technique. The advantage of this method over... 

    Application of the Coset Construction Method in Theories of Spontaneous Symmetry Breaking: Gravitation as an Example

    , M.Sc. Thesis Sharif University of Technology Mousavi, Amir Hossein (Author) ; Torabian, Mahdi (Supervisor)
    Abstract
    In this manuscript we used the method of coset construction to describe theories of spontaneous symmetry breaking. The mathematical details are included in chapter 2. The utility of the method is that without any knowledge of the UV part of a theory we can construct IR part by just knowing the symmetry breaking pattern. We used the method for some symmetry breaking patterns to construct general relativity, massive gravity and also some symmetry breaking patterns corresponding to conformal gravity  

    The Assessment of Irregular Mid-Rise Steel Structures with Outriggers

    , M.Sc. Thesis Sharif University of Technology Mahdi, Amir Hossein (Author) ; Mofid, Masood (Supervisor)
    Abstract
    The system considered on this structure is for the design on mid-high Buildings from 15 and 20 floors above the base level and n floors below the base level and the limitation of the number of floors is due to the computer facility and restrictions. There is going to be an irregularity in some chosen floor at lower-floor, mid-floor, or upper-floor which is assuming one floor from the structure to have a different height with respect to the others. The height of the considered floor is going to increase up to 25% with respect to the other floors and the design of outriggers with these three assumptions is going to be assessed separately. In this system, a central core of steel is constructed... 

    Design and Baseband Hardware Implementation of LiFi WLAN Multi-User Modem

    , M.Sc. Thesis Sharif University of Technology Tavassol, Amir Hossein (Author) ; Shabany, Mahdi (Supervisor)
    Abstract
    In recent years, after the emergence of the benefits of optical wire communication, which successfully replaced electromagnetic technologies in some applications. Attention to wireless optical communication technologies has also increased. These technologies will also find their place in telecommunication systems after maturing according to the specific characteristics of light in the coming years. This thesis is a report on the implementation of a LiFi system, which aims to create a wireless local area network based on optical communication. Previously, reports have been written about the implementation of this system, but in this thesis, for the first time, the implementation of hardware... 

    Non-invasive and Continuous Blood Pressure Measurement Using Pulse Transit Time without Cuff Requirement

    , M.Sc. Thesis Sharif University of Technology Esmaili Dastjerdi, Amir Hossein (Author) ; Shabany, Mahdi (Supervisor)
    Abstract
    This thesis addresses cuff-less blood pressure (BP) estimation, for systolic blood pressure (SBP) and diastolic blood pressure (DBP) estimation with the aid of the processing of vital signals. Both with and without calibration per person approaches for BP estimation are considered. A data acquisition hardware is designed for high-resolution sampling of phonocardiogram (PCG), Photoplethysmogram (PPG) and electrocardiogram (ECG). Using these signals, pulse transit time (PTT) and pulse arrival time (PAT) indexes, which would be used for BP estimation with calibration, are extracted. For the BP estimator model using the calibration, A nonlinear model based on PTT or PAT, via modeling the vessels... 

    Turbulence Equation-of-State Interaction Modeling in Large Eddy Simulation

    , M.Sc. Thesis Sharif University of Technology Ghayour, Amir Mohammad (Author) ; Salehi, Mohammad Mahdi (Supervisor)
    Abstract
    In most real combustion systems, flow is turbulent (e.g., diesel engines). Therefore, a reliable turbulence modeling approach is necessary to design and analyze a system with turbulent flow. Direct numerical simulation (DNS), Large eddy simulation (LES), and Reynolds-averaged Navier-Stokes (RANS) are the three most mature Computational fluid dynamics (CFD) methods for turbulent flow simulations. Because of LES’s good accuracy and acceptable computational cost. In this project, LES is chosen to simulate the turbulent flow field.Modeled turbulence subgrid scales' interaction with nonlinear flow parameters, needs modeling. In supercritical and transcritical conditions, Equation-of-state is a... 

    Simulation of Turbulent Premixed Flame using Laminar Flamelet Decomposition Method

    , M.Sc. Thesis Sharif University of Technology Amir Hossein Fashamiha (Author) ; Salehi, Mohammad Mahdi (Supervisor)
    Abstract
    The purpose of this study is to simulate a turbulent premixed flame with the help of the Laminar Flamelet Decomposition method. Numerical simulation is considered the main approach for studying this flame. A Bunsen-type premixed burner, which has a novel approach to making different levels of turbulence, has been used for modeling the premixed flame. To reduce the cost of numerical calculations, the Reynolds-averaged Navier-Stokes approach has been chosen for the CFD simulation. In this study, the Laminar Flamelet Decomposition model is the main combustion model for analyzing the turbulent premixed flame and with this method, the rate of reactions for all the reaction species will be... 

    A Priori Investigation of Laminar Flamelet Decomposition and Conditional Source-term Estimation Methods in Turbulent Premixed Flames

    , M.Sc. Thesis Sharif University of Technology Mahdipour, Amir Hossein (Author) ; Salehi, Mohammad Mahdi (Supervisor)
    Abstract
    An a priori analysis is performed to assess the performances of Laminar Flamelet Decomposition (LFD) and Conditional Source-term Estimation (CSE) methods in predicting conditional and unconditional filtered production rates and mass fractions for turbulent premixed flames over a wide range of Karlovitz numbers, which is an indicator for the level of turbulence-chemistry interaction in premixed combustion.In LFD, it is assumed that a turbulent flame is composed of strained laminar flamelets. By presuming the functional form of the probability density function (PDF) of the progress variable and inverting the integral equation for the unconditional filtered mass fractions of one of the species,... 

    Doping reaction of some nanotubes with aluminium atom: A thermodynamic PM6 and ONIOM investigation

    , Article Oriental Journal of Chemistry ; Volume 33, Issue 1 , 2017 , Pages 329-334 ; 0970020X (ISSN) Zeighami, N ; Gholami, M. R ; Boshra, A ; Sharif University of Technology
    Oriental Scientific Publishing Company  2017
    Abstract
    The doping reaction of boron nitride and carbon nanotubes with aluminium atom was theoretically investigated. ONIOM method and PM6 method have been used to evaluate the thermochemistry of doping reactions of single walled boron nitride nanotubes and carbon nanotubes. The enthalpy changes, Gibbs free energy changes, of studied doping reactions were evaluated at different temperatures. All nanotubes were single-walled and finite length with hydrogen saturation in the terminal atoms. The thermodynamic calculations based on the ONIOM and PM6 levels results showed (8,0)CNT is the best candidate for Al-doping reaction.result suggest the aluminum doped boron nitride nanotubes and carbon nanotubes... 

    Improving the Measurement of the Chemiluminescence of Methylidyne (CH*)Species with the Help of Thermometry by Soot Pyrometry Method

    , M.Sc. Thesis Sharif University of Technology Asadollahi, Mohsen (Author) ; Salehi, Mohammad Mahdi (Supervisor) ; Mardani, Amir (Supervisor)
    Abstract
    This research introduces temperature measurement by a non-intrusive pyrometric method of the ratio of two colors of soot. For pyrometry, the spectral sensitivity of the Nikon D7100 camera was obtained by developing a neural network based on the results of photographing colored papers and their spectrum, and this camera was used for temperature measurement. Based on the dependence of soot radiation on temperature and the spectral sensitivity of the camera, a calibration chart has been extracted on the ratio of the green channel to the red channel of the camera with the soot temperature, which is used to produce the temperature contour using the flame image. The temperature contour of... 

    Implementation of a Millimeter Wave Imaging Algorithm Based on Compressed Sensing

    , M.Sc. Thesis Sharif University of Technology Farsaee, Amir Ashkan (Author) ; Shabany, Mahdi (Supervisor) ; Kavehvash, Zahra (Co-Advisor)
    Abstract
    Recently, millimeter wave imaging (MMWI) technology is given more attention. This is as a result of three facts. First, despite the infrared or optical cameras, these systems can image a target, which is obscured by one or more optically barriers. Second, the electronics circuits in this band have seen great achievements in the current decade, which facilitate the implementation of MMWI structures. Third, there is no known health hazard for the systems operating in this band with moderate power. Therefore, in this project, a MMWI system based on compressed sensing (CS) for the concealed weapon detection application is proposed. This design consists of a linear antenna array, an appropriate... 

    Design and Development of a Turbulent Partially-Premixed Jet Burner

    , M.Sc. Thesis Sharif University of Technology Hassanpour, Yousef (Author) ; Salehi, Mohammad Mahdi (Supervisor) ; Mardani, Amir (Co-Supervisor)
    Abstract
    The burners studied in the combustion principles have different types due to the configuration of different types of flames, each of them studies a specific phenomenon of combustion, so researchers need to design burners with the ability to: create different types of combustion flow regimes, changing in mixing rate and performance at critical points are felt more and more. This document describes the process of designing and manufacturing a turbulent jet burner with variable mixing ratio and the ability to create a diverse range of flow regimes and different flame configurations. Mixing rate is the most important characteristic in the stability of premixed flames, so the distinctive feature... 

    Theoretical study of interaction between tacrine and finite-length Al-doped carbon and boron nitride nanotubes: A semiempirical drug delivery study in thermodynamic view

    , Article Oriental Journal of Chemistry ; Vol. 30, issue. 4 , 2014 , p. 1805-1813 Zeighami, N ; Gholami, M. R ; Aghaie, M ; Boshra, A ; Sharif University of Technology
    2014
    Abstract
    In order to extend our previous theoretical calculations that dealt with the thermochemistry of doping the single walled boron nitride nanotubes, BNNTs, and carbon nanotubes, CNTs, with alminium atoms [1], we have used the AM1, PM3, and PM6 semiempirical methods to investigate the interaction of the tacrine molecule (a drug for the treatment of Alzheimer's disease) with the side-walls of aluminum doped boron nitride and carbon nanotubes in thermodynamic views. At first, the frequency calculations were carried out to confirm the stability of the involved structures. In addition, the theoretical thermodynamic study of tacrine adsorption onto the considered nanotubes was performed and the... 

    A robust multi-objective optimization model for project scheduling considering risk and sustainable development criteria

    , Article Environment, Development and Sustainability ; Volume 23, Issue 8 , 2021 , Pages 11494-11524 ; 1387585X (ISSN) Askarifard, M ; Abbasianjahromi, H. R ; Sepehri, M ; Zeighami, E ; Sharif University of Technology
    Springer Science and Business Media B.V  2021
    Abstract
    There is limited research that considers the sustainability aspect of the projects’ schedule. The present study proposes a model to cover this gap by considering sustainable development criteria. A multi-objective model with four objective functions, including minimizing cost, risk, and socio-environmental impacts, has been presented to decrease the project’s delay. Since some of the parameters are considered under conditions of uncertainty for the proximity of problems to real projects, the robust programming method is used to deal with the uncertainty, and the epsilon-constraint method was applied to solve the multi-objective model. Several scenarios are also defined to analyze the... 

    Methylidyne (CH*)Chemiluminescence Measurement in Sooting Flames

    , M.Sc. Thesis Sharif University of Technology Karbasi Shargh, Kamyab (Author) ; Salehi, Mohammad Mahdi (Supervisor) ; Mardani, Amir (Supervisor)
    Abstract
    In this study, using a non-interference experimental method, the chemical luminosity of CH* in co-flow diffusion flames with soot and using natural gas hydrocarbon in a laminar flow regime has been investigated. In addition to experimental research, in current research, numerical simulation has been used to extract information such as temperature field, mass fraction of species, and flow structure and comparison and validation with experimental results. Numerical simulation has been used to simulate the mechanism of CH* species formation. Two different mechanisms have been used. In addition, the Soot simulation model from the Moss-Brookes model and radiation heat transfer mechanism... 

    Deep Learning Based Enhancement of Intrusion Detection Methods

    , Ph.D. Dissertation Sharif University of Technology Soltani, Mahdi (Author) ; Jahangir, Amir Hossein (Supervisor) ; Jafari Siavoshani, Mahdi (Supervisor)
    Abstract
    We live in the cyber era in which network-based technologies have become omnipresent. Meanwhile, threats and attacks are rapidly growing in cyberspace. Nowadays, some signature-based intrusion detection systems try to detect these malicious traffics. However, as new vulnerabilities and new zero-day attacks appear, there is a growing risk of bypassing the current intrusion detection systems. Many research studies have worked on machine learning algorithms for intrusion detection applications. Their major weakness is to consider the different aspects of network security concurrently. For example, continuous concept drift in normal and abnormal traffic, the permanent appearance of zero-day... 

    An Energy-aware Objective Function for Energy-harvesting IOT Infrastructures

    , M.Sc. Thesis Sharif University of Technology Taghizadeh, Hossein (Author) ; Ejlali, Alireza (Supervisor) ; Hosseini Monazzah, Amir Mahdi (Supervisor)
    Abstract
    Internet of things (IOT) interconnects a system of low power embedded devices that each of them has a unique identifier, without human intervention. The number of devices of IOT increases every day, therefor routing in the network of IOT is an important challenge. So, Internet Engineering Task Force (IETF) propose a protocol for routing low power and lossy networks in 2012, which is named RPL. Considering the power supply limitation of devices in the network, utilizing energy-aware policies within the RPL is so important. Meanwhile, objective functions have a vital role in the consuming energy. Also, energy consumption determines the lifetime of nodes. Since many of devices are placed in... 

    Analysis of Blades Surface Effect on Wind Turbine Performance

    , M.Sc. Thesis Sharif University of Technology Sabzehparvar, Amir Ali (Author) ; Sadr Hosseini, Hani (Supervisor) ; Sabzehparvar, Mahdi (Supervisor)
    Abstract
    The development of wind turbine blades model that accurately predict wind turbine thrust in a full range of applicable wind speed has provided a powerful and reliable source for simulation of horizontal axis wind turbine power and thrust force that serves as a valuable tool for wind turbine design and performance analysis. A single-element blade model that reduces the rotor blade characteristics to a lift and drag coefficient vs. angle-of-attack formulation was found to describe accurately the rotor characteristics over a wide operating range. Measurements of wind speed and altitude of wind turbine installation location, rotor speed, and provided thrust is within less than 2% over a wide... 

    Odor Emission from Evaporation Ponds:Investigation of Pollution Measures

    , M.Sc. Thesis Sharif University of Technology Zeighami, Mohammad Amir (Author) ; Kariminia, Hamid-Reza (Supervisor) ; Borghei, Mehdi (Supervisor)
    Abstract
    Odor caused by the release of volatiles from refinery waste, causing environmental pollution and health hazards may occur. Refinery wastewater project in Saeakhs (Khangiran) has been studied. Contaminated water in evaporation ponds at the plant accumulates due to the large volume of incoming water and slow evaporation in summer the water will smell unpleasant. Odor from the ponds due to wind scattered around the refinery and residents will be put at risk. Several tests to identify the source of the odor was designed and implemented. Among these methods, microalgae growth, the import of oil products such as aromatic compounds or mercaptans, and bacterial growth, for each of the hypotheses...