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    Behavioral modeling of clock feed-through and channel charge injection non-ideal effects in SIMULINK for switched-capacitor integrator

    , Article Simulation Modelling Practice and Theory ; Volume 18, Issue 5 , May , 2010 , Pages 483-499 ; 1569190X (ISSN) Torkzadeh, P ; Atarodi, M ; Sharif University of Technology
    2010
    Abstract
    Sigma-Delta modulator ADCs used in signal processing applications usually, are implemented by switched-capacitor (SC) circuits and CMOS transmission gates due to its simplicity for implementation. Channel charge injection (CCI) and clock feed-through (CFT) are two major non-ideal effects existing in TG switches and SC integrators reducing modulator total SNR, its linearity and its total gain. This paper presents a precise model for SC integrator including CCI and CFT non-ideal effects in MATLAB SIMULINK environment which allows designers to perform time-domain behavioral simulations of switched-capacitor (SC) Sigma-Delta modulators. Evaluation and validation of extracted models were... 

    In-fiber wavelength-selective modulation of WDM channels with performance analysis

    , Article Journal of Lightwave Technology ; Volume 28, Issue 1 , 2010 , Pages 141-147 ; 07338724 (ISSN) Rajabvand, M ; Behnia, F ; Sharif University of Technology
    Abstract
    An in-fiber wavelength-selective optical intensity modulator has been developed to superimpose low-rate overhead (OH) data on the transit high-speed payload signals. The tunable fiber Bragg grating, as the heart of a wavelength-selective modulator (WSM), is designed and properly biased to implement the desired modulation specification. Potential performance limitations of WSM are investigated and described in terms of eye opening penalty and crosstalk between wavelength-division-multiplexing channels. A simple OH/label erasing technique is also provided and used for modifying the labels through cascaded WSMs. The performance of such cascaded systems is calculated both with and without... 

    An audio band low voltage CT-ΔΣ modulator with VCO-based quantizer

    , Article 18th IEEE International Conference on Electronics, Circuits, and Systems, ICECS 2011, 11 December 2011 through 14 December 2011 ; December , 2011 , Pages 232-235 ; 9781457718458 (ISBN) Yousefzadeh, B ; Sharifkhani, M ; Sharif University of Technology
    Abstract
    This paper presents the design and implementation of a low power, low voltage, continuous time delta sigma modulator for audio band in 90 nm CMOS technology. A VCO-based integrator and quantizer are used. Inherent dynamic element matching (DEM) of the quantizer eliminates the need for explicit DEM logic which results in a short excess-delay and power saving. Simulation results show that the modulator achieves 78 dB SNDR and 87 dB SNR in a 20 kHz input bandwidth and dissipates 106 μW from 1 V supply. The power consumption for different parts is discussed  

    Ion pump based bio-synthetic modulator model for diffusive molecular communications

    , Article 17th IEEE International Workshop on Signal Processing Advances in Wireless Communications, SPAWC 2016, 3 July 2016 through 6 July 2016 ; Volume 2016-August , 2016 ; 9781509017492 (ISBN) Arjmandi, H. R ; Jamali, V ; Ahmadzadeh, A ; Burkovski, A ; Schober, R ; Nasiri Kenari, M ; Sharif University of Technology
    Institute of Electrical and Electronics Engineers Inc 
    Abstract
    In diffusive molecular communication (DMC), the transmitter has to be able to control the release of signaling molecules for modulation of the information bits. In natural cells, pumping ions is an important control mechanism for releasing molecules which is carried out by ion pumps embedded in the membrane. The activity of the ion pumps is controlled by a driving parameter. In particular, light driven pumps are controlled by light intensity and enable a high degree of spatial and temporal control for modulation functionality. In this paper, a modulator based on ion pumps is proposed for DMC which controls the release rate of the molecules from the transmitter by modulating a light intensity... 

    A novel architecture of pseudorandom dithered MASH digital delta-sigma modulator with lower spur

    , Article Journal of Circuits, Systems and Computers ; Volume 25, Issue 7 , 2016 ; 02181266 (ISSN) Noori, S. A. S ; Frashidi, E ; Sadughi, S ; Sharif University of Technology
    World Scientific Publishing Co. Pte Ltd 
    Abstract
    A Digital Delta Sigma Modulator (DDSM) is a Finite State Machine (FSM); it is implemented using finite precision arithmetic units and the number of available states is finite. The DDSM always produces a periodic output signal when the input is constant. This paper proposes a novel method of applying periodic dither to a DDSM in order to obtain minimized spurious tones. The effects of adding the pseudorandom dither signal in different stages within the proposed Multi-Stage noise Shaping (MASH) modulator are expressed in the equations, and the results are compared. We present results regarding the periodicity of the quantization noise produced by a MASH modulator with a constant input and a... 

    Wireless interfacing to cortical neural recording implants using 4-FSK modulation scheme

    , Article IEEE International Conference on Electronics, Circuits, and Systems, 6 December 2015 through 9 December 2015 ; Volume 2016 March , 2016 , Pages 221-224 ; 9781509002467 (ISBN) Eslampanah Sendi, M. S ; Judy, M ; Molaei, H ; Sodagar, A. M ; Sharifkhani, M ; Sharif University of Technology
    Institute of Electrical and Electronics Engineers Inc 
    Abstract
    This paper used a 4-level frequency shift keying (4-FSK) modulation scheme to enhance the density of wireless data transfer from implantable biomedical microsystems to the outside world. Modeling and simulation of the wireless channel for 4-FSK modulation in the case of a neural recording implant has been done. To realize the 4-FSK scheme, the modulator and demodulator circuits are proposed, designed and simulated in a 0.18-μm CMOS process, and in the 174-216 MHz frequency band at a data rate of 13.5 Mbps. Operated using a 1.8 V supply voltage, the modulator circuit consumes a power of 7.8 μW  

    Microgravity modulation effects on free convection problems LBM simulation

    , Article Physics of Fluids ; Volume 30, Issue 1 , 2018 ; 10706631 (ISSN) Javadi, K ; Kazemi, K ; Sharif University of Technology
    Abstract
    In this paper, microgravity modulation effects on free convection in a cavity are investigated using the lattice Boltzmann method. In order to create microgravity modulation, a sinusoidal time-dependent function is considered. Parameters of the flow are chosen such that the maximum Rayleigh number approaches 106. The natural frequency of the system is obtained at first. Afterwards, effects of different frequencies on the flow and heat transfer fields are investigated in detail. Results are presented in four different frequency ratios categorized as (1) ω∗=1200, 1100, 120, and 110; (2) ω∗=18, 15, 13, and 12; (3) ω∗ = 0.75, 0.85, and 0.95; and (4) the last one is considered for natural... 

    A novel algorithm for fast and efficient multifocus wavefront shaping

    , Article Photons Plus Ultrasound: Imaging and Sensing 2018, 28 January 2018 through 1 February 2018 ; Volume 10494 , 2018 ; 16057422 (ISSN); 9781510614734 (ISBN) Fayyaz, Z ; Nasiriavanaki, M ; Sharif University of Technology
    SPIE  2018
    Abstract
    Wavefront shaping using spatial light modulator (SLM) is a popular method for focusing light through a turbid media, such as biological tissues. Usually, in iterative optimization methods, due to the very large number of pixels in SLM, larger pixels are formed, bins, and the phase value of the bins are changed to obtain an optimum phase map, hence a focus. In this study an efficient optimization algorithm is proposed to obtain an arbitrary map of focus utilizing all the SLM pixels or small bin sizes. The application of such methodology in dermatology, hair removal in particular, is explored and discussed. © COPYRIGHT SPIE. Downloading of the abstract is permitted for personal use only  

    Jamming resistance capabilities of spectrally phase encoded OCDMA communication systems with optimum and suboptimum (nonlinear two-photon-absorption) receiver structures

    , Article Journal of Lightwave Technology ; Volume 27, Issue 22 , 2009 , Pages 5010-5021 ; 07338724 (ISSN) Emadi, M. J ; Salehi, J. A ; Sharif University of Technology
    2009
    Abstract
    In this paper, we study three types of jammers, namely, pulse-jammer, partial-band jammer, and follower-jammer, in a typical fiber-optic-based spectrally phase-encoded optical code division multiple-access (SPE-OCDMA) system. We analyze, mathematically, the effects of the aforementioned jammers on the performance of an SPE-OCDMA system for two scenarios, namely, ideal noiseless channel with an ideal optimum receiver and an ultrahigh-speed nonlinear receiver based on two-photon-absorption (TPA) in a noisy channel. Also, for each of the above cases, two types of modulation, namely, ON-OFF keying (OOK) and two-code keying (2CK) are investigated and their system performances are compared. It is... 

    Isolated high step-up switched-boost DC/DC converter with modified control method

    , Article IET Power Electronics ; Volume 12, Issue 14 , 2019 ; 17554535 (ISSN) Abbasi Aghdam Meinagh, F ; Babaei, E ; Tarzamni, H ; Kolahian, P ; Sharif University of Technology
    Institution of Engineering and Technology  2019
    Abstract
    In this study, a new isolated high-gain switched-boost DC/DC converter employing two symmetrical switched-boost networks along with a modified control algorithm based on the combination of the pulse-width modulation (PWM) and phase-shift modulation is proposed. Utilising symmetrical switched-boost networks increase the voltage gain of the proposed converter, significantly. Moreover, applying the proposed switching algorithm on the proposed isolated switched-boost DC/DC converter leads to the following advantages: (i) high-voltage gain, (ii) zero voltage switching (ZVS) turn-on of two switches, (iii) ZVS turnoff of two switches and (iv) appearing three controllable parameters (the... 

    Cross-layer optimization of adaptive modulation and coding preserving packet average delay time

    , Article 2008 IEEE Global Telecommunications Conference, GLOBECOM 2008, New Orleans, LA, 30 November 2008 through 4 December 2008 ; December , 2008 , Pages 1278-1282 ; 9781424423248 (ISBN) Ghavami Pakdehi, A ; Ashtiani, F ; Sharif University of Technology
    2008
    Abstract
    In this paper we introduce a novel cross layer design between MAC and physical layers. Our novel design is based on controlling the adaptive modulation and coding (AMC) transmission mode at the physical layer according to the queue length of finite buffer at the data link layer and each transmission mode of AMC. The aim is optimizing system performance over a wireless link, preserving the important Quality of Service (QoS) parameter, packet average delay time. Analytical expressions such as packet drop probability, channel packet error rate, packet loss rate and packet average delay time are derived both analytically and through simulations according to the system and channel parameters.... 

    A new cross layer design of adaptive modulation and coding in finite buffer wireless links

    , Article 2007 International Conference on Future Generation Communication and Networking, FGCN 2007, Jeju Island, 6 December 2007 through 8 December 2007 ; Volume 1 , 2007 , Pages 499-504 ; 0769530486 (ISBN); 9780769530482 (ISBN) Ghavami, A ; Ashtiani, F ; Sharif University of Technology
    Institute of Electrical and Electronics Engineers Inc  2007
    Abstract
    In this paper, a cross-layer approach introducing new design parameters is developed for multi-rate wireless links. The novel design jointly exploits the finite-length queuing at the data link layer and the adaptation capability of the adaptive modulation and coding (AMC) scheme at the physical layer to optimize system performance for a wireless link. The analytical framework is based on discrete time Markov Chain. The performance metrics such as packet drop probability, channel packet error rate and packet loss rate are derived. Using these metrics, a constrained optimization problem is solved numerically to maximize the overall system throughput  

    A 7 bit, 3 GHz bandwidth random-time-interleaved-hybrid DAC using a novel self-healing structure for DCE in 65 nm CMOS technology

    , Article AEU - International Journal of Electronics and Communications ; Volume 134 , 2021 ; 14348411 (ISSN) Sariri, H ; Torkzadeh, P ; Sadughi, S ; Sharif University of Technology
    Elsevier GmbH  2021
    Abstract
    The application of time-interleaved structure leads to new amplitude and time errors while reducing many static and dynamic errors. In this case, both amplitude and time error are decreased by circuit structures integrated into a 7-bit DAC. In the present study, a new structure was proposed based on the randomization of two-interleaved paths in order to reduce the amplitude error, which can be extended to the N-channels-interleaved. In order to reduce the cycle-duty-error, a self-correction structure based on calculating the amplitude of the error before and measuring the time of this error along with the passage of the main signal through the output multiplexer is provided. The advantage of... 

    Continuous-time/discrete-time (CT/DT) cascaded sigma-delta modulator for high resolution and wideband applications

    , Article WMED 2010 - 8th IEEE Workshop on Microelectronics and Electron Devices, 16 April 2010 through 16 April 2010 ; April , 2010 , Pages 33-36 ; 9781424465750 (ISBN) Mesgarani, A ; Sadeghi, K. H ; Ay, S. U ; Sharif University of Technology
    2010
    Abstract
    This paper reports transistor-level design of a new continuous-time (CT), discrete-time (DT) cascaded sigma delta modulator (SDM). The combination of a CT first stage and a DT second stage was utilized to realize a high speed, high resolution analog-to-digital converter (ADC). Power consumption of CT first stage is lowered by optimizing the gain coefficients of CT integrators in a feedforward topology. Moreover double sampling (CDS) was used in second stage integrators to further reduce power consumption. Proposed new SDM is simulated in 0.18μm CMOS technology and achieves 84dB dynamic range for a 10MHz signal bandwidth. Total analog power dissipation measured was 44mW  

    Adaptive modulation technique for cooperative diversity in wireless fading channels

    , Article 2006 IEEE 17th International Symposium on Personal, Indoor and Mobile Radio Communications, PIMRC, Helsinki, 11 September 2006 through 14 September 2006 ; 2006 ; 1424403294 (ISBN); 9781424403295 (ISBN) Yazdian, E ; Pakravan, M. R ; Sharif University of Technology
    2006
    Abstract
    In recent years, cooperative diversity techniques have gained increased attention as a new way to combat degrading effects of Fading. Cooperation among two or more single antenna users generates a virtual diverse multiple-antenna transmission system in the wireless network. In this paper, we investigate the application of adaptive modulation concept to the performance of cooperative techniques. We consider the adaptation of rate and power allocation with M-QAM modulation, and study the performance of Amplify & Forward scenarios in Rayleigh fading channels. We compare these systems with their comparable adaptive non-cooperative scenario and evaluate the energy saving achieved through... 

    Design of a High Resolution Sigma-Delta Modulator

    , M.Sc. Thesis Sharif University of Technology Mesgarani, Ali (Author) ; Haj Sadeghi, Khosro (Supervisor)
    Abstract
    Sigma-delta modulators have largely been implemented as discrete-time (DT) circuits because of their low sensitivity to circuit nonidealities, and their frequency scaling specification, however a continuous-time (CT) design offers significant advantage in the design of high accuracy, high speed analog to digital converters (ADC). A CT design allows for relaxed amplifier(s) bandwidth and power requirements, which enables the realization of high accuracy modulators with bandwidths of several megahertz at low power consumption. Furthermore CT modulators provide inherent anti-aliasing filtering which becomes especially important at low oversampling ratios. This thesis reports the design of a... 

    Analysis and Simulation of Micrometre-scale Silicon Electro-optic Modulators Based on Ring Resonators

    , M.Sc. Thesis Sharif University of Technology Jafari, Omid (Author) ; Akbari, Mahmood (Supervisor)

    Theoretical study of high repetition rate short pulse generation with fiber optical parametric amplification [electronic resource]

    , Article Journal of Lightwave Technology ; May 2012, Volume 30, Issue 9, PP. 1263-1268 Vedadi, A ; Ariaei, A. M ; Jadidi, M. M ; Salehi, J. A ; Sharif Unversity of Technology
    Abstract
    In this paper, we study theoretically the generation of high repetition rate short pulses using fiber optical parametric amplification. We show that the pulse shape and duration depend on the signal location relatively to the pump frequency. We demonstrate that in order to get the shortest pulse width, the signal must be located at one of the extremities of the gain spectrum associated with the pump peak power. We derive the analytical expression of the pulse shape in this case and compare it to the exponential gain regime case. Using numerical simulations, we also analyze the impact of walk-off and pump phase modulation that is required to suppress Stimulated Brillouin Scattering and derive... 

    Theoretical investigation of the capture effect in intensity-modulation direct-detection microwave photonic links

    , Article Applied Optics ; Volume 52, Issue 28 , 2013 , Pages 7011-7021 ; 1559128X (ISSN) Hosseini, S. E ; Banai, A ; Sharif University of Technology
    Optical Society of American (OSA)  2013
    Abstract
    We introduce the capture effect concept in microwave photonic links (MWPLs) for the first time to our knowledge. The capture effect or the small-signal suppression is the change in the amplitude ratio of the two signals between input and output of the intensity-modulation direct-detection (IMDD) MWPLs. An analytical explanation of the performance of external IMDD MWPLs due to the effects of nonlinearity combined with sum of several input sinusoidal signals is given.We have investigated the suppression of a weaker signal in these links. General analytic expression for the small-signal suppression is derived using a nonlinear analytical approach. We show that the small-signal suppression is... 

    Diffusion-based nanonetworking: A new modulation technique and performance analysis

    , Article IEEE Communications Letters ; Volume 17, Issue 4 , 2013 , Pages 645-648 ; 10897798 (ISSN) Arjmandi, H ; Gohari, A ; Kenari, M. N ; Bateni, F ; Sharif University of Technology
    2013
    Abstract
    In this letter, a new molecular modulation scheme for nanonetworks is proposed. To evaluate the scheme, a system model based on the Poisson distribution is introduced. The error probability of the proposed scheme as well as that of two previously known schemes, the concentration and molecular shift keying modulations, are derived for the Poisson model by taking into account the error propagation effect of previously decoded symbols. The proposed scheme is shown to outperform the previously introduced schemes. This is due to the fact that the decoding of the current symbol in the proposed scheme does not encounter propagation of error, as the decoding of the current symbol does not depend on...