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    Bound entanglement in quantum phase transitions

    , Article Physical Review A - Atomic, Molecular, and Optical Physics ; Volume 81, Issue 4 , 2010 ; 10502947 (ISSN) Baghbanzadeh, S ; Alipour, S ; Rezakhani, A. T ; Sharif University of Technology
    Abstract
    We investigate quantum phase transitions in which a change in the type of entanglement from bound entanglement to either free entanglement or separability may occur. In particular, we present a theoretical method to construct a class of quantum spin-chain Hamiltonians that exhibit this type of quantum criticality. Given parameter-dependent two-site reduced density matrices (with prescribed entanglement properties), we lay out a reverse construction for a compatible pure state for the whole system, as well as a class of Hamiltonians for which this pure state is a ground state. This construction is illustrated through several examples  

    Hybrid immune-genetic algorithm method for benefit maximisation of distribution network operators and distributed generation owners in a deregulated environment

    , Article IET Generation, Transmission and Distribution ; Volume 5, Issue 9 , 2011 , Pages 961-972 ; 17518687 (ISSN) Soroudi, A ; Ehsan, M ; Caire, R ; Hadjsaid, N ; Sharif University of Technology
    Abstract
    In deregulated power systems, distribution network operators (DNO) are responsible for maintaining the proper operation and efficiency of distribution networks. This is achieved traditionally through specific investments in network components. The event of distributed generation (DG) has introduced new challenges to these distribution networks. The role of DG units must be correctly assessed to optimise the overall operating and investment cost for the whole system. However, the distributed generation owners (DGOs) have different objective functions which might be contrary to the objectives of DNO. This study presents a long-term dynamic multi-objective model for planning of distribution... 

    Modeling of DLL-based frequency multiplier in time and frequency domain with Matlab Simulink

    , Article IEEE Asia-Pacific Conference on Circuits and Systems, Proceedings, APCCAS, 6 December 2010 through 9 December 2010 ; 2010 , Pages 1051-1054 ; 9781424474561 (ISBN) Gholami, M ; Sharifkhani, M ; Saeedi, S ; Sharif University of Technology
    Abstract
    A systematic procedure of simulating charge pump based delay locked loops (DLLs) represents in this paper. The presented procedure is based on the systematic modeling of the DLL components in Matlab Simulink simulator. The system has been designed for 1Hz input clock signal that by changing the whole system scale, it can be used for every other input frequencies. The simulation results in Matlab and design considerations for DLL based frequency multiplier are presented  

    Systematic modeling and simulation of DLL-based frequency multiplier

    , Article 2010 11th International Workshop on Symbolic and Numerical Methods, Modeling and Applications to Circuit Design, SM2ACD 2010, 4 October 2010 through 6 October 2010 ; 2010 ; 9781424468164 (ISBN) Gholami, M ; Sharifkhani, M ; Ebrahimi, A ; Saeedi, S ; Atarodi, M ; Sharif University of Technology
    Abstract
    This paper represents a systematic procedure of simulating charge pump based delay locked loops (DLLs). The presented procedure is based on the systematic modelling of the DLL components in Matlab simulink simulator. The system has been designed for 1Hz input clock signal that by changing the whole system scale, it can be used for every other input frequencies. The simulation results in Matlab and design considerations for DLL based frequency multiplier are presented  

    A passivity-based controller via parallel damping injection for three phase/level/switch unity power factor (Vienna I) rectifier

    , Article 11th IEEE Workshop on Control and Modeling for Power Electronics, COMPEL 2008, Zurich, 17 August 2008 through 20 August 2008 ; 2008 ; 9781424425518 (ISBN) Sahari, A. A ; Mousavian, H ; Zolghadri, M. R ; Karimi Ghartemani, M ; Sharif University of Technology
    2008
    Abstract
    Passivity-based control (PBC) is based on a procedure including energy/power shaping and series/parallel damping injection to control several nonlinear systems such as power converters. In this paper, PBC is used to design a controller for three phase/level/switch PWM (Vienna I) rectifier. Passivity-based controller is supposed to regulate the output voltage and the input three phase sinusoidal currents to achieve unity power factor. Parallel damping injection is used for a controller design. Simulation results are presented to confirm the whole system performance and verify the analytical conclusions. It is also shown that the controller is robust to the load and (symmetrical) input... 

    A trainable neural network ensemble for ECG beat classification

    , Article World Academy of Science, Engineering and Technology ; Volume 70 , 2010 , Pages 788-794 ; 2010376X (ISSN) Sajedin, A ; Zakernejad, S ; Faridi, S ; Javadi, M ; Ebrahimpour, R ; Sharif University of Technology
    2010
    Abstract
    This paper illustrates the use of a combined neural network model for classification of electrocardiogram (ECG) beats. We present a trainable neural network ensemble approach to develop customized electrocardiogram beat classifier in an effort to further improve the performance of ECG processing and to offer individualized health care. We process a three stage technique for detection of premature ventricular contraction (PVC) from normal beats and other heart diseases. This method includes a denoising, a feature extraction and a classification. At first we investigate the application of stationary wavelet transform (SWT) for noise reduction of the electrocardiogram (ECG) signals. Then... 

    Green element solution of one-dimensional counter-current spontaneous imbibition in water wet porous media

    , Article Journal of Petroleum Science and Engineering ; Volume 70, Issue 3-4 , 2010 , Pages 302-307 ; 09204105 (ISSN) Biniaz Delijani, E ; Pishvaie, M. R ; Sharif University of Technology
    Abstract
    A Green Element numerical formulation is used to solve the time-dependent nonlinear one-dimensional counter-current spontaneous imbibition diffusion equation in which water enters a water wet rock spontaneously while oil escapes by flowing in the opposite direction. The Green Element Method (GEM) is an element by element approach of the boundary element method. In this new method, by generating large sparse global matrices and yet taking advantage of properties of Green's function, solution of more complicated physical problem is achievable while at the same time much less computational effort is needed rather than boundary element method (BEM). By discretizing both the boundary and problem...