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    A diversity based reconfigurable method for fault tolerant control of induction motors

    , Article International Symposium on Power Electronics, Electrical Drives, Automation and Motion, 2006. SPEEDAM 2006, Taormina, 23 May 2006 through 26 May 2006 ; Volume 2006 , 2006 , Pages 66-71 ; 1424401941 (ISBN); 9781424401949 (ISBN) Tahami, F ; Shojaei, A ; Ahmadi Khatir, D ; Sharif University of Technology
    2006
    Abstract
    AC motor drive systems are sensitive to faults occurring at the power inverter, or at the control system. A novel fault tolerant Field Oriented Control system for induction motors is introduced. The system maintains speed control in the event of sensors malfunction and adverse signal conditions, providing enhanced reliability. The system comprises four different flux estimators which are fused by a Fuzzy aggregation system in order to give a reliable estimate of motor flux. The proposed control system is an effective and easy to implement method giving a potential for motor drive reliability enhancement. © 2006 IEEE  

    Customer choice of reliability in spinning reserve procurement and cost allocation

    , Article 2008 IEEE Electrical Power and Energy Conference - Energy Innovation, Vancouver, BC, 6 October 2008 through 7 October 2008 ; January , 2008 ; 9781424428953 (ISBN) Ahmadi Khatir, A ; Fotuhi Firuzabad, M ; Sharif University of Technology
    2008
    Abstract
    Reliability is one of the main factors influencing customer loyalty in a competitive power industry. The system operator must ensure that there is sufficient spinning reserve to maintain system security. Contractually such commodity requires a willing buyer and a willing seller. A novel pool-based market clearing algorithm for spinning reserve procurement and the cost allocation associated with provision of spinning reserve among DisCos is developed in this paper. Rational buyer model is used for energy and reserve market model. In the proposed algorithm, generating units bid simultaneously to energy and spinning reserve markets and these markets are sequentially cleared. In such a market,... 

    Fuzzy economic dispatch and spinning reserve allocation using evolutionary programming

    , Article 40th North American Power Symposium, NAPS2008, Calgary, AB, 28 September 2009 through 30 September 2009 ; 2008 ; 9781424442836 (ISBN) Ahmadi Khatir, A ; Motamedi, A ; Sadati, N ; Fallahi, K ; Fathi, B ; Sharif University of Technology
    2008
    Abstract
    The objective of economic dispatch (ED) problem is minimizing the operating cost and finding the point where the total output of the generations equals the total power that must be delivered. In that point the incremental cost of power generation is also equal for all generators. Considering the presence of uncertainty and inaccuracy in the data, fuzzy set theory is an appropriate method to solve the economic dispatch problems. In this paper, a modified fuzzy economic dispatch is formulated to solve the problem under the competitive electricity market uncertainties. Also, available spinning reserve is optimally allocated to market participants. The formulated optimization problem it then... 

    Customer choice of reliability in spinning reserve procurement and cost allocation using well-being analysis

    , Article Electric Power Systems Research ; Volume 79, Issue 10 , 2009 , Pages 1431-1440 ; 03787796 (ISSN) Ahmadi Khatir, A ; Fotuhi Firuzabad, M ; Goel, L ; Sharif University of Technology
    2009
    Abstract
    A novel pool-based market-clearing algorithm for spinning reserve (SR) procurement and the cost allocation associated with provision of spinning reserve among customers (DisCos) is developed in this paper. Rational buyer market model is used to clear energy and spinning reserve markets in the proposed algorithm. This market model gives DisCos the opportunity to declare their own energy requirement together with their desired reliability levels to the ISO and also they can participate in the SR market as a interruptible load. The DisCos' desired reliability levels are selected from a hybrid deterministic/probabilistic framework designated as the system well-being model. Using the demand of... 

    A new approach for reserve market clearing and cost allocating in a pool model

    , Article Iranian Journal of Science and Technology, Transaction B: Engineering ; Volume 31, Issue 6 , December , 2007 , Pages 593-602 ; 10286284 (ISSN) Afshar, K ; Ehsan, M ; Fotuhi Firuzabad, M ; Ahmadi Khatir, A ; Bigdeli, N ; Sharif University of Technology
    2007
    Abstract
    A new approach for optimal reserve determination and cost allocation in the pool-based and disaggregated market model using a well-being framework is presented in this paper. In the proposed method, customers have the chance to specify the risk level which they are willing to accept. Firstly, the energy market is cleared, and afterwards the reserve market is cleared such that the required risk levels of different customers are satisfied. Then, according to the required risk levels and the provided reserve, the cost of reserve is allocated between the different customers with different reliability requirements. For fairly managing the shortage between different customers in the real time... 

    A body biasing method for charge recovery circuits: Improving the energy efficiency and DPA-immunity

    , Article Proceedings - IEEE Annual Symposium on VLSI, ISVLSI 2010, 5 July 2010 through 7 July 2010 ; July , 2010 , Pages 195-200 ; 9780769540764 (ISBN) Khatir, M ; Ejlali, A ; Sharif University of Technology
    2010
    Abstract
    Charge recovery is a promising concept to design (cryptographic) VLSI circuits with low energy dissipation. However, unsatisfactory designs of proposed logic cells degrade its theoretical efficiency significantly both in its energy consumption and the resistance against differential power analysis attacks (DPA-attacks). Short circuit dissipation and non-adiabatic discharging of capacitance loads are the two major sources of this degradation which are addressed in this paper. In order to reduce these dissipation significantly, we manipulate threshold voltage of circuits transistors by body biasing. To evaluate the efficiency of our method we select a common charge recovery logic called 2N2N2P... 

    Improving the energy efficiency of reversible logic circuits by the combined use of adiabatic styles

    , Article Integration, the VLSI Journal ; Volume 44, Issue 1 , January , 2011 , Pages 12-21 ; 01679260 (ISSN) Khatir, M ; Ejlali, A ; Moradi, A ; Sharif University of Technology
    2011
    Abstract
    One of the most prominent issues in fully adiabatic circuits is the breaking reversibility problem; i.e., non-adiabatic energy dissipation in the last stage adiabatic gates whose outputs are connected to external circuits. In this paper, we show that the breaking reversibility problem can result in significant energy dissipation. Subsequently, we propose an efficient technique to address the breaking reversibility problem, which is applicable to the usual fully adiabatic logic such as 2LAL, SCRL, and RERL. Detailed SPICE simulations are used to evaluate the proposed technique. The experimental results show that the proposed technique can considerably reduce (e.g., about 74% for RERL, 35% for... 

    Fuzzy generating units dispatch considering the load interruption cost

    , Article 42nd International Conference on Large High Voltage Electric Systems 2008, CIGRE 2008, Paris, 24 August 2008 through 29 August 2008 ; 2008 Shafiezadeh, M. A ; Ahmadi Khatir, A ; Jamshidi, A ; Sharif University of Technology
    2008
    Abstract
    In the new environment of power system, generating units dispatch problem plays an important role inasmuch as it is used to clear power market transactions. That is, market operator solves an optimization problem in order to find the energy and capacity reserve quota of each generating units participating in the power market. There are different techniques for solving this problem which differ in many aspects, including the objective function, optimization algorithm, and feasibility, so using an efficient technique is vital. In the real competitive electricity market, the components of generating units dispatch problem are faced with the uncertainties; therefore, due to the presence of... 

    Investigating the Baldwin effect on Cartesian Genetic Programming efficiency

    , Article 2008 IEEE Congress on Evolutionary Computation, CEC 2008, Hong Kong, 1 June 2008 through 6 June 2008 ; 2008 , Pages 2360-2364 ; 9781424418237 (ISBN) Khatir, M ; Jahangir, A. H ; Beigy, H ; Sharif University of Technology
    2008
    Abstract
    Cartesian Genetic Programming (CGP) has an unusual genotype representation which makes it more efficient than Genetic programming (GP) in digital circuit design problem. However, to the best of our knowledge, all methods used in evolutionary design of digital circuits deal with rugged, complex search space, which results in long running time to obtain successful evolution. Therefore, employing a method to guide evolution in these spaces can facilitate achieving more reasonable results. It has been claimed that a two-step evolutionary scenario caused by benefit and cost of learning called Baldwin effect can guide evolution in the biology and artificial life. Therefore, we have been motivated... 

    A secure and low-energy logic style using charge recovery approach

    , Article ISLPED'08: 13th ACM/IEEE International Symposium on Low Power Electronics and Design, Bangalore, 11 August 2008 through 13 August 2008 ; 2008 , Pages 259-264 ; 15334678 (ISSN); 9781605581095 (ISBN) Khatir, M ; Moradi, A ; Ejlali, A ; Manzuri Shalmani, M. T ; Salmasizadeh, M ; Sharif University of Technology
    2008
    Abstract
    The charge recovery logic families have been designed several years ago not in order to eliminate the side-channel leakage but to reduce the power consumption. However, in this article we present a new charge recovery logic style not only to gain high energy efficiency but also to achieve the resistance against side-channel attacks especially against differential power analysis attacks. Our approach is a modified version of a classical charge recovery logic style namely 2N-2N2P. Simulation results show a significant improvement in DPA-resistance level as well as in power consumption reduction in comparison with 2N-2N2P and other DPA-resistant logic styles. Copyright 2008 ACM  

    Prediction of pore facies using GMDH-type neural networks: a case study from the South Pars gas field, Persian Gulf basin

    , Article Geopersia ; Volume 8, Issue 1 , March , 2018 , Pages 43-60 ; 22287817 (ISSN) Sfidari, E ; Kadkhodaie, A ; Ahmadi, B ; Ahmadi, B ; Faraji, M. A ; Sharif University of Technology
    University of Tehran  2018
    Abstract
    Pore facies analysis plays an important role in the classification of reservoir rocks and reservoir simulation studies. The current study proposes a two-step approach for pore facies characterization in the carbonate reservoirs with an example from the Kangan and Dalan formations in the South Pars gas field. In the first step, pore facieswere determined based on Mercury Injection Capillary Pressure (MICP) data in corporation with the Hierarchical Clustering Analysis (HCA) method. Each pore facies represents a specific type of pore geometry indicating the interaction between the primary rock fabric and its diagenetic overprints. In the next step, polynomial meta-models were established based... 

    Improving CPU-GPU System Performance Through Dynamic Management of LLC and NoC

    , M.Sc. Thesis Sharif University of Technology Rostamnejad Khatir, Maede (Author) ; Sarbazi Azad, Hamid (Supervisor)
    Abstract
    CPU-GPU Heterogeneous System Architectures (HSA) play an important role in today's computing systems. Because of fast-growing in technology and the necessity of high-performance computing, HSAs are widely used platforms. Integrating the multi-core Central Processing Unit (CPU) with many-core Graphics Processing Unit (GPU) on the same die combines the feature of both processors and providing better performance. The capacity of HSAs to provide high throughput of computing led to the widespread use of these systems. Besides the high performance of HSAs, we also face challenges. These challenges are caused by the use of two processors with different behaviors and requirements on the same die.... 

    An efficient uniform-segmented neuron model for large-scale neuromorphic circuit design: Simulation and FPGA synthesis results

    , Article IEEE Transactions on Circuits and Systems I: Regular Papers ; Volume 66, Issue 6 , 2019 , Pages 2336-2349 ; 15498328 (ISSN) Jokar, E ; Abolfathi, H ; Ahmadi, A ; Ahmadi, M ; Sharif University of Technology
    Institute of Electrical and Electronics Engineers Inc  2019
    Abstract
    Large-scale simulation of spiking neural networks on hardware with a remarkable resemblance to their mathematical models is a key objective of the neuromorphic discipline. This issue is, however, considerably resource-intensive due to the presence of nonlinear terms in neuron models. This paper proposes a novel uniform piecewise linear segmentation approach for nonlinear function evaluations. Employing the proposed approach, we present a uniform-segmented adaptive exponential neuron model capable of accurately producing various responses exhibited by the original model and suitable for efficient large-scale implementation. In contrast to previous nonuniform-segmented neuron models, the... 

    Influence of a β-OH substituent on SN2 reactions of fluoroethane: Intramolecular hydrogen bonding catalysis or inhibition? A theoretical study

    , Article Computational and Theoretical Chemistry ; Volume 1067 , 2015 , Pages 71-83 ; 2210271X (ISSN) Ahmadi, A. A ; Fattahi, A ; Sharif University of Technology
    2015
    Abstract
    Computational investigations on the gas phase SN2 reactions of X ions (X-=OH-,F-,Cl-,Br-, and I-) with fluoroethane and 2-fluoroethanol (β-hydroxyl ethyl fluoride) were performed by using MPW1K, M06 and CCSD(T) methods with a range of basis sets including 66-311++G**, TZVP, aug-cc-pVDZ and SDD. To better understand the nature of the corresponding intermolecular interactions, we performed natural bond orbital (NBO) analysis and Bader's quantum theory of atoms in molecules (QTAIM). In our calculations, we took into account two possible pathways for these reactions, i.e. SN2 reactions of 2-fluoroethanol. In path(i), β-hydroxyl group participates in hydrogen bonding... 

    A Semi-Explicit Solution of Scattering from Dielectric Bodies Using the Method of Moments

    , Article IEEE Transactions on Antennas and Propagation ; Volume 71, Issue 8 , 2023 , Pages 6806-6813 ; 0018926X (ISSN) Ahmadi, L ; Shishegar, A. A ; Sharif University of Technology
    Institute of Electrical and Electronics Engineers Inc  2023
    Abstract
    This work presents a novel closed-form expression based on the method of moments (MoM) for solving the scattering problem in piecewise homogeneous media. Using point matching with pulse-basis functions in MoM, we derive an expression that represents the scattered field as an explicit function of the permittivity value of each homogeneous part. The coefficient matrix depends on the permittivity values in the MoM solution to the scattering problem. Therefore, it requires matrix inversion whenever these values change slightly. Here, we propose a new expression where the matrix coefficients are independent of the permittivity values of each homogeneous part. Accordingly, when the geometry does... 

    Multi-objective optimization of vehicle floor panel with a laminated structure based on V-shape development model and Taguchi-based grey relational analysis

    , Article Structural and Multidisciplinary Optimization ; Volume 65, Issue 3 , 2022 ; 1615147X (ISSN) Salmani, H ; Khalkhali, A ; Ahmadi, A ; Sharif University of Technology
    Springer Science and Business Media Deutschland GmbH  2022
    Abstract
    In this paper, the V-shape development model approach for designing an automotive floor panel made by laminated structure is investigated to attain the best trade-off between the system and subsystem level requirements while improving the local and global performance of the vehicle. For this purpose, the bending and torsional stiffness of the body structure, as well as mass, strength, and vibration attenuation of the floor panel, are considered as design objectives at the system and subsystem levels. A multi-objective discrete optimization of a laminated configuration is performed using the Taguchi-based grey relational analysis. Material grades and thicknesses of the sandwich panel face... 

    Cure kinetic and network structure of NR/SBR composites reinforced by multiwalled carbon nanotube and carbon blacks

    , Article Thermochimica Acta ; Volume 566 , 2013 , Pages 238-248 ; 00406031 (ISSN) Ahmadi, M ; Shojaei, A ; Sharif University of Technology
    2013
    Abstract
    Low structure carbon black (CBN330), conductive high structure carbon black (CBXE2B) and carboxylated multiwalled carbon nanotube (MWCNT) were loaded into the blend of natural rubber (NR) and styrene butadiene rubber (SBR) at different contents up to 10 phr. Kraus plots showed that all the reinforcements interact with NR/SBR blend appropriately. However, the CBXE2B whose interfacial area is the highest showed greatest value of Kraus interaction parameter. Flory-Rhener model and effective torque value revealed that all of the reinforcements enhanced the crosslink density, among them CBXE2B showed the highest impact and MWCNT placed in the second rank. It was also shown that the cure kinetic... 

    Substrateless amplifier module realized by ridge gap waveguide technology for Millimeter-Wave applications

    , Article IEEE Transactions on Microwave Theory and Techniques ; Volume 64, Issue 11 , 2016 , Pages 3623-3630 ; 00189480 (ISSN) Ahmadi, B ; Banai, A ; Sharif University of Technology
    Institute of Electrical and Electronics Engineers Inc  2016
    Abstract
    A novel substrateless power amplifier module realized by ridge gap waveguide (RGW) technology is proposed in Ka-band. Up to our knowledge, this is the first time that an active device is directly integrated with an RGW structure. No substrate is used in the RF section of the implemented power amplifier and the whole structure is made by machining a piece of metal. The amplifier was made of two pieces and was easily assembled without needing a precise contact between the two sections. The cavity resonance of the amplifier is suppressed using a pining structure. The fabricated amplifier module is self-packaged and does not need any packaging. It is shown that the simulated and measured results... 

    Reinforcing mechanisms of carbon nanotubes and high structure carbon black in natural rubber/styrene-butadiene rubber blend prepared by mechanical mixing-effect of bound rubber

    , Article Polymer International ; Volume 64, Issue 11 , July , 2015 , Pages 1627-1638 ; 09598103 (ISSN) Ahmadi, M ; Shojaei, A ; Sharif University of Technology
    John Wiley and Sons Ltd  2015
    Abstract
    The reinforcing effect of high structure carbon black (HSCB) and multi-walled carbon nanotubes (MWCNTs) on natural rubber/styrene-butadiene rubber blend processed using mechanical mixing was comparatively investigated. In-depth analysis by dynamic mechanical analysis, the Eggers-Schummer model and Medalia's relationship showed that HSCB aggregates provided large internal pores leading to significant immobilized macromolecules in filled rubber. Additionally, a tubular immobilized rubber layer with a thickness of 8nm was estimated for the rubber/MWCNT system based on dynamic mechanical analysis data. The mechanical performance of the HSCB filled blend was higher than that of the MWCNT filled... 

    Direct coupled resonator filters realized by gap waveguide technology

    , Article IEEE Transactions on Microwave Theory and Techniques ; Volume 63, Issue 10 , August , 2015 , Pages 3445-3452 ; 00189480 (ISSN) Ahmadi, B ; Banai, A ; Sharif University of Technology
    Institute of Electrical and Electronics Engineers Inc  2015
    Abstract
    Novel types of narrow band filters based on the newly introduced gap waveguide technology are presented in this paper. The proposed filters have a central frequency of 35 GHz with approximately 1% fractional bandwidth. The filter resonators are composed of two separate plates and are manufactured by milling metallic blocks. The gap between the two metallic plates eliminates the need for electrical contact between them. This feature allows the resonators to be stacked in different layers. The filtering function is realized by producing a coupling between the stacked resonators. The measurement results of the manufactured filters are in good agreement with full-wave simulations, even without...