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    Stability and performance analysis of a single-stage grid-connected photovoltaic system using describing function theory

    , Article International Transactions on Electrical Energy Systems ; Volume 26, Issue 9 , 2016 , Pages 1898-1916 ; 20507038 (ISSN) Hejri, M ; Mokhtari, H ; Karimi, S ; Azizian, M. R ; Sharif University of Technology
    John Wiley and Sons Ltd 
    Abstract
    Challenging problems in the design and analysis of photovoltaic (PV) systems stem from the nonlinear current–voltage (I–V) characteristics of solar cells. This paper presents an analytical analysis based on a describing function method to investigate the transient and steady-state characteristics of a three-phase single-stage grid-connected PV system. In this study, the nonlinear I–V characteristic of the PV array is linearized around the operating point. The nonlinear dynamic of the maximum power point tracking controller is divided into two parts of continuous and discrete. For the continuous part, the common small-signal linearization is applied, while for the discontinuous part, a... 

    Plug-in hybrid electric vehicle battery charger with soft-switched dual-bridge resonant converter for smart grid applications

    , Article 7th IEEE International Symposium on Power Electronics for Distributed Generation Systems, PEDG 2016, 27 June 2016 through 30 June 2016 ; 2016 ; 9781467386166 (ISBN) Akbari, R ; Ebrahimi, S ; Tahami, F ; Oraee, H ; Sharif University of Technology
    Institute of Electrical and Electronics Engineers Inc  2016
    Abstract
    Battery chargers are fundamental components for successful deployment of plug-in hybrid electric vehicles (PHEVs) into future smart grid. Recently, an integrated isolated bidirectional battery charger has been proposed for PHEV applications. The proposed charger eliminates the conventional bulky dc-link capacitor by feeding a dual-bridge resonant tank directly from the three-phase grid. The disadvantages associated with the presented charger are the high number of semiconductor switches which contribute to high cost and switching losses of converter as well as complicated control circuitry. In this paper, the previous structure is modified to address the aforementioned drawbacks and is... 

    Fuzzy based generation scheduling of power system with large scale wind farms

    , Article 2009 IEEE Bucharest PowerTech: Innovative Ideas Toward the Electrical Grid of the Future ; 2009 ; 9781424422357 (ISBN) Siahkali, H ; Vakilian, M ; Sharif University of Technology
    Abstract
    Wind power introduces a new challenge to system operators. Unlike conventional power generation sources, wind power generators supply intermittent power because of uncertainty in its resource. In a power system involved largescale wind power generation scenario, wind intermittency could oblige the system operator to allocate a greater reserve power, in order to compensate the possible mismatch between predicted and the actual wind power output. This would increase the total operation cost. This paper presents a new approach in fuzzy based generation scheduling (GS) problem using mixed integer nonlinear programming (MINLP). While the reserve requirements, load generation balance and wind... 

    Semiactive viscous tensile bracing system

    , Article Journal of Structural Engineering ; Volume 135, Issue 4 , 2009 , Pages 425-436 ; 07339445 (ISSN) Rahani, E.K ; Bakhshi, A ; Golafshani, A.A ; Sharif University of Technology
    2009
    Abstract
    Structural control using energy dissipater devices is emerging as a heavily researched strategy in earthquake engineering. Among several control systems, semiactive control is usually possible and efficient. In this research, a semiactive energy dissipating bracing system based on a viscous damper is proposed. In the conventional bracing systems, it is assumed that the braces can buckle under compression. Therefore, a semiactive on-off brace strategy is implemented to improve the conventional brace performance. Further, an energy absorbing mechanism is implemented. In the proposed system, the buckling of the member is prevented by implementing a one-way valve device. The permanent story... 

    Experimental and analytical studies on the prediction of forming limit diagrams

    , Article Computational Materials Science ; Volume 44, Issue 4 , 2009 , Pages 1252-1257 ; 09270256 (ISSN) Ahmadi, S ; Eivani, A. R ; Akbarzadeh, A ; Sharif University of Technology
    2009
    Abstract
    Metal forming processes are widely used in industrial productions, automobile bodies, food industries, oil refineries, and liquid and gas transmission systems. Analyzing these processes is very important to reduce wastes and optimize the processes. Study of some main factors such as physical and mechanical properties of material and its formability, die geometry, die material, lubrication and pressing speed has been the topic of many research projects. In this paper, forming limit diagrams (FLDs) for LC and ULC steels and the effect of different parameters like the work-hardening exponent, n, and the plastic strain ratio, r, on these diagrams have been evaluated and simulated using... 

    An agent-based model for optimal voltage control and power quality by electrical vehicles in smart grids

    , Article 15th International Conference on Distributed Computing and Artificial Intelligence, DCAI 2018, 20 June 2018 through 22 June 2018 ; Volume 801 , 2019 , Pages 388-394 ; 21945357 (ISSN); 9783319996073 (ISBN) Hadizade, A ; Sharif University of Technology
    Springer Verlag  2019
    Abstract
    The electric power industry is the main part of Science development, and today, with the advent of technology, the demand for electric power has been expanded. On the other hand, smart grids are developing heavily. One of the notable features of these networks is the presence of a plug-in hybrid electric vehicle (PHEV). The addition of these cars to the network has its own advantages and disadvantages. One of the most important issues in smart grids is network management and control of critical system parameters. In this paper the effect of these cars on the grid is investigated. These vehicles impose an increase in production capacity in the uncontrolled charge mode. They also have the... 

    Techno-economic optimization of biogas-fueled micro gas turbine cogeneration systems in sewage treatment plant

    , Article Energy Conversion and Management ; Volume 218 , 15 August , 2020 Movahed, P ; Avami, A ; Sharif University of Technology
    Elsevier Ltd  2020
    Abstract
    The aim of this paper is to investigate the feasibility of a combined cooling, heating, and power generation system with a micro turbine using biogas as the fuel to supply the heat and electricity demands in a real wastewater treatment plant. The plant is optimized using the system's total cost rate and the amount of the produced biogas as objective functions. The anaerobic digester is modeled using the ADM1 model. The optimization variables include digester hydraulic retention time, compressor pressure ratio, isentropic compressor efficiency, recuperator pinch time temperature, turbine isentropic efficiency, turbine input temperature, and the number of micro turbines. In the first scenario... 

    DC-link loop bandwidth selection strategy for grid-connected inverters considering power quality requirements

    , Article International Journal of Electrical Power and Energy Systems ; Volume 119 , 2020 Zarei, S. F ; Mokhtari, H ; Ghasemi, M. A ; Peyghami, S ; Davari, P ; Blaabjerg, F ; Sharif University of Technology
    Elsevier Ltd  2020
    Abstract
    DC-link voltage and output current control loops are two cascaded loops in the control structure of grid-connected inverters. A high DC-link voltage loop bandwidth (DCL-BW) provides more disturbance rejection capability for the control loop and is preferred from control system perspective. However, for stability issues, this BW is limited and must be sufficiently less than that of the current control loop. Among the different control schemes, instantaneous active reactive control (IARC) method provides the highest possible DCL-BW (i.e., 0.02 × switching frequency). Having this degree of freedom in the controller design, a proper methodology should be defined for selection of DCL-BW. In this... 

    Small-Signal stability analysis of DFIG-based wind turbines equipped with auxiliary control systems under variable wind speed

    , Article 2020 IEEE International Conference on Environment and Electrical Engineering and 2020 IEEE Industrial and Commercial Power Systems Europe, EEEIC / I and CPS Europe 2020, 9 June 2020 through 12 June 2020 ; 2020 Ravanji, M.H ; Parniani, M ; Sharif University of Technology
    Institute of Electrical and Electronics Engineers Inc  2020
    Abstract
    Providing ancillary services such as frequency support and power operating reserve by doubly fed induction gener-ator-based wind turbines has received considerable attention in the recent years, and several auxiliary controllers have been proposed to provide these services. In this paper, small-signal stability of wind turbines equipped with these controllers is assessed in presence of a frequency event and varying wind speed conditions. For this purpose, first, several auxiliary controllers are discussed, and a unified auxiliary controller (UAC) is proposed, which can represent all of these controllers simultaneously. Then, the overall transfer function from the wind speed to the wind... 

    A secure channel coding scheme for efficient transmission of remote sensing data over the LEO satellite channels

    , Article 3rd International Conference on Recent Advances in Space Technologies, RAST 2007, Istanbul, 14 June 2007 through 16 June 2007 ; August , 2007 , Pages 510-514 ; 1424410576 (ISBN); 9781424410576 (ISBN) Payandeh, A ; Ahmadian, M ; Aref, M. R ; Sharif University of Technology
    2007
    Abstract
    Both secure and error control coding are very extensive subjects, each with a variety of sub-disciplines. In this paper, we develop a secure channel coding (joint encryption-channel coding) scheme based on concatenated turbo codes for more efficient and secure transmission of the LEO satellite data. Reliability and security are achieved by adapting the pseudorandom puncturing strategy with the change of distance between satellite and ground station in the communication séance, to issue further burdened by reducing energy consumption or increasing bit rate of data transmission. Simulation results show the relevance and superior performance of the proposed scheme compared with the traditional... 

    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... 

    Optimal energy management of a campus microgrid considering financial and economic analysis with demand response strategies

    , Article Energies ; Volume 14, Issue 24 , 2021 ; 19961073 (ISSN) Javed, H ; Muqeet, H. A ; Shehzad, M ; Jamil, M ; Khan, A. A ; Guerrero, J. M ; Sharif University of Technology
    MDPI  2021
    Abstract
    An energy management system (EMS) was proposed for a campus microgrid (μG) with the incorporation of renewable energy resources to reduce the operational expenses and costs. Many uncertainties have created problems for microgrids that limit the generation of photovoltaics, causing an upsurge in the energy market prices, where regulating the voltage or frequency is a challenging task among several microgrid systems, and in the present era, it is an extremely important research area. This type of difficulty may be mitigated in the distribution system by utilizing the optimal demand response (DR) planning strategy and a distributed generator (DG). The goal of this article was to present a... 

    Data-driven joint TEP-BESS co-planning scheme to relieve transmission lines congestion: A min-max regret method

    , Article Sustainable Energy Technologies and Assessments ; Volume 53 , 2022 ; 22131388 (ISSN) Mazaheri, H ; Moeini Aghtaie, M ; Sharif University of Technology
    Elsevier Ltd  2022
    Abstract
    Transmission lines congestion has recently been a vital challenge in power systems operation due to the intermittent outputs of renewable energy sources (RES). Therefore, an efficient transmission congestion management (TCM) method should be defined to deal with the congestion issue. This paper aims to propose a simultaneous linearized two-stage TEP-BESS co-planning optimization model to relieve transmission lines congestion. In doing so, a novel TCM structure is suggested in a pool-based deregulated data-driven optimal power flows (D-OPF) by the computationally effective min-max regret method to consider future scenarios of generating units and demanded loads. To improve the efficiency of... 

    Scheduling and sizing of campus microgrid considering demand response and economic analysis

    , Article Sensors ; Volume 22, Issue 16 , 2022 ; 14248220 (ISSN) Bin, L ; Shahzad, M ; Javed, H ; Muqeet, H. A ; Akhter, M. N ; Liaqat, R ; Hussain, M. M ; Sharif University of Technology
    MDPI  2022
    Abstract
    Current energy systems face multiple problems related to inflation in energy prices, reduction of fossil fuels, and greenhouse gas emissions which are disturbing the comfort zone of energy consumers and the affordability of power for large commercial customers. These kinds of problems can be alleviated with the help of optimal planning of demand response policies and with distributed generators in the distribution system. The objective of this article is to give a strategic proposition of an energy management system for a campus microgrid (µG) to minimize the operating costs and to increase the self-consuming energy of the green distributed generators (DGs). To this end, a real-time based... 

    Sustainable solutions for advanced energy management system of campus microgrids: model opportunities and future challenges

    , Article Sensors ; Volume 22, Issue 6 , 2022 ; 14248220 (ISSN) Muqeet, H. A ; Javed, H ; Akhter, M. N ; Shahzad, M ; Munir, H. M ; Nadeem, M. U ; Bukhari, S. S. H ; Huba, M ; Sharif University of Technology
    MDPI  2022
    Abstract
    Distributed generation connected with AC, DC, or hybrid loads and energy storage systems is known as a microgrid. Campus microgrids are an important load type. A university campus microgrids, usually, contains distributed generation resources, energy storage, and electric vehicles. The main aim of the microgrid is to provide sustainable, economical energy, and a reliable system. The advanced energy management system (AEMS) provides a smooth energy flow to the microgrid. Over the last few years, many studies were carried out to review various aspects such as energy sustainability, demand response strategies, control systems, energy management systems with different types of optimization... 

    Optimizing the LLC-LC resonant converter topology for wide-output-voltage and wide-output-load applications

    , Article IEEE Transactions on Power Electronics ; Volume 26, Issue 11 , 2011 , Pages 3192-3204 ; 08858993 (ISSN) Beiranvand, R ; Zolghadri, M. R ; Rashidian, B ; Alavi, S. M. H ; Sharif University of Technology
    2011
    Abstract
    LLC-LC resonant converter is a suitable circuit topology to design switched-mode power supplies for wide-output-voltage and wide-output-load applications. In this paper, a design procedure is introduced to optimize this converter. Unlike soft switching techniques for pulse width modulated converters, which usually apply an active auxiliary circuit to reduce switching losses and EMI, in the proposed converter, not only such circuits are not used, but also all of the parasitic elements are merged to the converters main components. Zero-voltage switching (ZVS) operation is realized for all power devices under all operating conditions. Thus, this converter is a suitable choice for... 

    Hybrid predictive control of a DC-DC boost converter in both continuous and discontinuous current modes of operation

    , Article Optimal Control Applications and Methods ; Volume 32, Issue 3 , 2011 , Pages 270-284 ; 01432087 (ISSN) Hejri, M ; Mokhtari, H ; Sharif University of Technology
    Abstract
    Developing efficient and appropriate modeling and control techniques for DC-DC converters is of major importance in power electronics area and has attracted much attention from automatic control theory. Since DC-DC converters have a complex hybrid nature, recently several techniques based on hybrid modeling and control have been introduced. These techniques have shown better results as compared with conventional averaging-based schemes with limited modeling and control abilities. But the current works in this field have not considered all possible dynamics of the converters in both continuous and discontinuous current modes (CCM, DCM) of operations. These dynamics are results of controlled... 

    Optimum nonlinear model predictive controller design for flyback PFC rectifiers

    , Article ISIEA 2010 - 2010 IEEE Symposium on Industrial Electronics and Applications, 3 October 2010 through 5 October 2010 ; October , 2010 , Pages 70-75 ; 9781424476473 (ISBN) Tahami, F ; Abedi, M. R ; Rezaei, K ; IEEE Malaysia Section; IEEE Malaysia Power Electron. (PEL)/; Ind. Electron.(IE)/ Ind. Appl. (IA) Jt. Chapter ; Sharif University of Technology
    2010
    Abstract
    Single-phase ac-dc Power Factor Correction (PFC) rectifiers have attracted considerable attention in recent years due to the adoption of increasingly stringent power quality regulations. In this paper a nonlinear model predictive controller design for a single-phase Flyback PFC rectifier is presented. After approximation of the tracking error in the receding horizon by its Taylor-series expansion to a specified order, an analytic solution to the model predictive control (MPC) is developed and a closed-loop nonlinear predictive controller is introduced. The main advantage of this digital control method is that unity power factor can be achieved over wide input voltage, load current range and... 

    A simplified droop method implementation in parallel UPS inverters with Proportional-Resonant controller

    , Article Iranian Journal of Science and Technology, Transaction B: Engineering ; Volume 33, Issue 2 , 2009 , Pages 163-178 ; 10286284 (ISSN) Hasanzadeh, A ; Mokhtari, H ; Sharif University of Technology
    2009
    Abstract
    In this paper, a simpler implementation of the well-known droop method for the control of parallel Uninterruptible Power Supply (UPS) systems is presented. In this method, in the power-sharing control scheme, the output current is calculated by software without the need for a current sensor, resulting in a simpler and cheaper structure. By doing so, the number of feedback sensors is reduced from three to two. The paralleling strategy uses the droop method in which the control strategy is based on the drop in the inverter output frequency and amplitude. The application of Proportional-Resonant (PR) controllers is also extended to parallel inverter and its superior performance over the... 

    A comparative analysis of the new excitation controlled synchronous generator-based wind turbine

    , Article Scientia Iranica ; Volume 29, Issue 1 D , 2022 , Pages 151-167 ; 10263098 (ISSN) Shamsnia, A ; Parniani, M ; Sharif University of Technology
    Sharif University of Technology  2022
    Abstract
    Excitation Controlled Synchronous Generator-based Wind Turbine (ECSG WT) is a recently proposed Wind Turbine (WT) scheme that has not been fully investigated in detail. This paper intends to analyze the performance of the ECSG WT scheme and compare it with those of two mainstream WT schemes based on electrically excited synchronous generator, i.e., VSC-based full converter WT and diode bridge rectifier-based WT equipped with boost converter on its Direct Current (DC) link. The objective of this comparison is to demonstrate great potentials of ECSG WT to be considered in the wind industry. To do so, two successful Wind Turbine (WT) schemes in the market that are structurally close to ECSG WT...