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    Analysis of sub-synchronous resonance between DC-side dynamics of large-scale PV plants and nearby synchronous generators shaft

    , Article IET Generation, Transmission and Distribution ; Volume 17, Issue 9 , 2023 , Pages 1999-2014 ; 17518687 (ISSN) Pourheydari, M ; Parniani, M ; Ravanji, M. H ; Sharif University of Technology
    John Wiley and Sons Inc  2023
    Abstract
    This paper investigates the dynamic interactions between large-scale PV plants and nearby synchronous generators. To this end, a comprehensive model of a PV plant, including the PV arrays characteristic and their voltage controller, DC/DC converter, DC-link dynamic, DC/AC inverter controllers, and output filter, is obtained. Then, the eigenvalues of the PV plant model are calculated, and it is revealed that the PV plant has a dynamic mode in the sub-synchronous oscillations (SSOs) range. Furthermore, the modal analysis method is employed, and it is shown that the inductance of the DC/DC converter and the DC-link capacitor significantly contribute to the PV sub-synchronous mode. Also, it is... 

    Small-Signal Analysis and Enhanced Control of Large-Scale PV-Penetrated Power Systems from the Electromechanical Oscillations Point of View

    , Article IEEE Systems Journal ; Volume 17, Issue 4 , 2023 , Pages 5762-5773 ; 19328184 (ISSN) Pourheydari, M ; Parniani, M ; Ravanji, M. H ; Sharif University of Technology
    Institute of Electrical and Electronics Engineers Inc  2023
    Abstract
    High penetration of photovoltaic (PV) plants in power systems may reduce the damping of electromechanical (EM) oscillatory modes. Implementing auxiliary controllers in the PV plant control system is a well-known technique that can improve the damping of these oscillations. Active power modulation (APM) is an effective auxiliary-control-based method that requires an energy source. Previous works have proposed employing an external energy storage system (ESS) as the energy source of the APM or deloading the PV plant by moving away from its maximum power point (MPP) characteristic. However, installing ESSs is expensive, and distancing from the MPP is not economical. By focusing on the dc-side... 

    Numerical simulation of high voltage electric pulse comminution of phosphate ore

    , Article International Journal of Mining Science and Technology ; Volume 25, Issue 3 , 2015 , Pages 473-478 ; ISSN: 20952686 Razavian, S. M ; Rezai, B ; Irannajad, M ; Ravanji, M. H ; Sharif University of Technology
    2015
    Abstract
    Numerical simulation of the electrical field distribution helps in-depth understanding of the mechanisms behind the responses and the benefits of the high voltage pulse comminution. The COMSOL Multiphysics package was used to numerically simulate the effect of ore compositions in this study. Regarding phosphate ore particles shape and composition, the effects of mineral composition, particle size, particle shape and electrodes distance were investigated on the electrical field intensity and distribution. The results show that the induced electrical field is significantly dependent on the electrical properties of minerals, the feed particle size and the location of conductive minerals in... 

    Numerical simulation of high voltage electric pulse comminution of phosphate ore

    , Article International Journal of Mining Science and Technology ; Volume 25, Issue 3 , May , 2015 , Pages 473-478 ; 20952686 (ISSN) Razavian, S. M ; Rezai, B ; Irannajad, M ; Ravanji, M. H ; Sharif University of Technology
    China University of Mining and Technology  2015
    Abstract
    Numerical simulation of the electrical field distribution helps in-depth understanding of the mechanisms behind the responses and the benefits of the high voltage pulse comminution. The COMSOL Multiphysics package was used to numerically simulate the effect of ore compositions in this study. Regarding phosphate ore particles shape and composition, the effects of mineral composition, particle size, particle shape and electrodes distance were investigated on the electrical field intensity and distribution. The results show that the induced electrical field is significantly dependent on the electrical properties of minerals, the feed particle size and the location of conductive minerals in... 

    Modeling and control of zero-sequence circulating current in parallel converters with space vector modulation

    , Article IEEE Journal of Emerging and Selected Topics in Power Electronics ; Volume 5, Issue 1 , 2017 , Pages 363-377 ; 21686777 (ISSN) Ravanji, M. H ; Amouzegar Ashtiani, N ; Parniani, M ; Mokhtari, H ; Sharif University of Technology
    Institute of Electrical and Electronics Engineers Inc  2017
    Abstract
    The use of parallel converters is one of the most practical solutions to solve the problem of transmitting bulk power generated in megawatt wind turbines to the grid. In spite of several advantages of paralleling, some considerations must be taken into account. Zero-sequence circulating current flowing between parallel converters is one of these concerns. Characteristic differences and discrepancy of zero-axis duty cycles of the parallel converters are considered as the main origins of this current. This paper investigates another source of this phenomenon in space vector modulation controlled converters. This unnoticed source is the notable third-harmonic voltage generated in the... 

    Modified virtual inertial controller for prudential participation of DFIG-based wind turbines in power system frequency regulation

    , Article IET Renewable Power Generation ; Volume 13, Issue 1 , 2019 , Pages 155-164 ; 17521416 (ISSN) Ravanji, M. H ; Parniani, M ; Sharif University of Technology
    Institution of Engineering and Technology  2019
    Abstract
    This study proposes a modified virtual inertial control (MVIC) scheme for doubly-fed induction generator (DFIG)based wind turbines (WTs), which both improves the frequency response of these renewable resources and enhances the power system oscillation damping capabilities. It is shown that the proposed control structure enables the WT to participate prudentially in system frequency regulation, which means the amount of WT kinetic energy released to the grid and its participation in system frequency support is alleviated as its stored energy decreases. The proposed control strategy is introduced conceptually, and its performance is verified analytically. Effects of wind speed variations on... 

    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 low cost front-end converter with maximum power per ampere for rooftop wind turbines

    , Article IEEE Access ; Volume 9 , 2021 , Pages 131236-131244 ; 21693536 (ISSN) Alemi Rostami, M ; Rezazadeh, G ; Tahami, F ; Ravanji, M. H ; Sharif University of Technology
    Institute of Electrical and Electronics Engineers Inc  2021
    Abstract
    Small Permanent Magnet Synchronous Generators (PMSGs) are widely used in small rooftop wind turbines. In order to inject the electric power generated by the PMSG, into the grid, a back-to-back AC/DC/AC converter is required. In this paper, a low cost with high efficiency converter is proposed for the rectifier stage to obtain the maximum power per ampere of PMSG. This structure based on Discontinuous Conduction Mode Single-Ended Primary Inductor Converter (DCM SEPIC) with a single power electronic switch, proposes a converter which is cost-effective and suitable for the small wind turbine used in residential applications. Furthermore, other advantages of the proposed converter include... 

    A low cost front-end converter with maximum power per ampere for rooftop wind turbines

    , Article IEEE Access ; Volume 9 , 2021 , Pages 131236-131244 ; 21693536 (ISSN) Alemi Rostami, M ; Rezazadeh, G ; Tahami, F ; Ravanji, M. H ; Sharif University of Technology
    Institute of Electrical and Electronics Engineers Inc  2021
    Abstract
    Small Permanent Magnet Synchronous Generators (PMSGs) are widely used in small rooftop wind turbines. In order to inject the electric power generated by the PMSG, into the grid, a back-to-back AC/DC/AC converter is required. In this paper, a low cost with high efficiency converter is proposed for the rectifier stage to obtain the maximum power per ampere of PMSG. This structure based on Discontinuous Conduction Mode Single-Ended Primary Inductor Converter (DCM SEPIC) with a single power electronic switch, proposes a converter which is cost-effective and suitable for the small wind turbine used in residential applications. Furthermore, other advantages of the proposed converter include... 

    Transient stability analysis of power-synchronized PLL-Less grid-following inverters

    , Article IEEE Transactions on Energy Conversion ; Volume 39, Issue 3 , 2024 , Pages 1851-1864 ; 08858969 (ISSN) Mansour, M. Z ; Mohammed, N ; Ravanji, M. H ; Karimi, A ; Bahrani, B ; Sharif University of Technology
    2024
    Abstract
    In the realm of modern power systems, grid-connected inverters are essential for integrating renewable energy resources. While grid-following inverters (GFLIs) currently dominate the market, grid-forming inverters (GFMIs) are pivotal for technology future power systems. Furthermore, recent research emphasizes the advantages of power-synchronized GFLIs (PSGFLIs), which combine the reliable operation of conventional GFLIs in strong grids with the stability of GFMIs in weak grids. This paper presents a comprehensive analysis of transient angle stability for a specific variant of PSGFLI, referred to as the linear parameter-varying control PSGFLI (LPV-PSGFLI). First, a nonlinear dynamic model... 

    Design Optimization of a Ladder Secondary Single-Sided Linear Induction Motor for Improved Performance

    , Article IEEE Transactions on Energy Conversion ; Volume 30, Issue 4 , 2015 , Pages 1595-1603 ; 08858969 (ISSN) Ravanji, M. H ; Nasiri Gheidari, Z ; Sharif University of Technology
    2015
    Abstract
    In this paper, design and optimization of a ladder-type single-sided linear induction motor (Ladder SLIM) for machine tool applications is investigated. High-speed linear induction machines suffer from the end-effect phenomenon, which can reduce the thrust and result in declined output characteristics. Although it is common to consider this phenomenon in high-speed applications, it is essential to take it into account in the design and analysis of low-speed low-air-gap linear machines. In addition, Ladder SLIMs have significant flux density ripples, and using skewed bars for secondary of the machine is a common solution for it. Therefore, providing required equations, an algorithm for... 

    Modeling and control of variable speed wind turbine generators for frequency regulation

    , Article IEEE Transactions on Sustainable Energy ; Volume 11, Issue 2 , 2020 , Pages 916-927 Ravanji, M. H ; Canizares, C. A ; Parniani, M ; Sharif University of Technology
    Institute of Electrical and Electronics Engineers Inc  2020
    Abstract
    Wind turbine generators (WTG) can participate in system frequency regulation via virtual inertial controllers (VIC). In the presence of frequency disturbances, VIC temporarily regulates the WTG power output forcing it to release/absorb kinetic energy into/from the grid. With increasing penetration of WTGs in power systems, grid operators require these generators to provide frequency regulation services; however, kinetic energy release/absorption can destabilize WTGs. Hence, to address these issues, a new large-perturbation nonlinear WTG model is proposed in this paper, based on the WTG internal response that is used to tune typical VICs. Novel worst case and optimal VIC tuning approaches are... 

    Long-Term electric vehicle planning in a microgrid

    , Article 2019 IEEE PES Innovative Smart Grid Technologies Asia, ISGT 2019, 21 May 2019 through 24 May 2019 ; 2019 , Pages 3467-3472 ; 9781728135205 (ISBN) Clairand, J. M ; Arriaga, M ; Ravanji, M. H ; Escriva Escriva, G ; IEEE; IEEE Power and Energy Society (PES) ; Sharif University of Technology
    Institute of Electrical and Electronics Engineers Inc  2019
    Abstract
    Isolated microgrids depend mainly on diesel generation and have polluting transportation. This is being addressed by the introduction of renewable energy resources and electric vehicles (EVs). Hence, this paper presents a novel long-term planning model for the introduction of EVs in isolated microgrids. This work studies the replacement of internal combustion vehicles with electric ones by analyzing their respective investment, maintenance and operation costs. Various case studies are discussed, considering different EV and solar photovoltaic (PV) penetration levels, and varying prices of diesel in the planning horizon. Results demonstrate that investing in EVs could significantly reduce net... 

    Analysis and Control of Circulating Current in High-Power Full Converter Wind Turbines with Modular Structure

    , M.Sc. Thesis Sharif University of Technology Ravanji, Mohammad Hassan (Author) ; Parniani, Mostafa (Supervisor)
    Abstract
    This thesis aims at developing control system of a full converter wind turbine with modular and parallel back-to-back converters. Modular structures and paralleling of power electronic converters are the state-of-the-art methods for increasing their transferable power to the grid. Technological advances in high power wind turbines, especially for the offshore installations, which contain permanent magnet synchronous generators with back-to-back full converters, promote the use of modular structures.
    In addition to developing the regular control systems of wind turbines for modular structures, selection of appropriate structures, power sharing between parallel converters and mitigation of... 

    Frequency Control Improvement of Power Systems with High Penetration of Wind Power Generation

    , Ph.D. Dissertation Sharif University of Technology Ravanji, Mohammad Hassan (Author) ; Parniani, Mostafa (Supervisor)
    Abstract
    Global trends of electrical energy production indicate high penetration of renewable wind energy resources in power grids around the world.Although high penetration of these resources benefits the grid operators and end-users in various aspects, several new challenges should be addressed. These challenges can be focused on in various studies with different time intervals and different technical and economic issues. One of the most important issues relates to the system frequency regulation and control aspects in high wind and photovoltaic (PV) penetrated grids. This is due to the fact that wind turbine generators (WTGs) as well as PV systems do not provide inertial response for the system... 

    Comparative analysis of the power output capabilities of grid-following and grid-forming inverters considering static, dynamic, and thermal limitations

    , Article IEEE Transactions on Power Systems ; Volume 39, Issue 2 , 2024 , Pages 2693-2705 ; 08858950 (ISSN) Ravanji, M.H ; Zhou, W ; Mohammed, N ; Bahrani, B ; Sharif University of Technology
    IEEE  2024
    Abstract
    This article investigates the maximum transferable power (MTP) of inverter-based resources (IBRs) and provides the output capability curves (OCCs) of grid-tied grid-following inverters (GFLIs) and grid-forming inverters (GFMIs). To this end, in the first part of the article, mathematical equations for GFLI static, thermal, and phase-locked loop (PLL)-induced power transfer limits are derived in terms of the grid short-circuit ratio (SCR) and its X/R ratio. Then, considering other operational limitations, such as the IBR AC- and DC-side voltage limits, the OCC of the GFLI is obtained. Additionally, the impact of the reactive current and the reactive control mode on the OCC is further studied,... 

    Protection of Transmission Lines Connected to Wind Farms Including Type 4 Wind Generator Turbines

    , M.Sc. Thesis Sharif University of Technology Keyshams, Arash (Author) ; Hajipour, Ehsan (Supervisor) ; Ravanji, Mohammad Hassan (Co-Supervisor)
    Abstract
    Renewable energy sources, as a sustainable alternative to fossil fuels, have increasingly attracted the attention of governments and international organizations in recent years. A significant share of these sources is inverter-based resources (IBRs), whose behavior differs fundamentally from that of synchronous generators due to the inherent limitations of power electronic converters. The control strategies implemented in inverters and their semiconductor-based nature typically restrict fault current injection to about 1.1 to 1.5 per unit. This behavioral difference introduces new complexities in the field of power system protection and highlights the necessity of revisiting conventional... 

    Performance Analysis and Control Development of Grid-Forming Voltage Source Converters for Asymmetrical Fault Ride-through in Compliance with IEEE 2800-2022 Standard

    , M.Sc. Thesis Sharif University of Technology Haghshenas Fatmehsari, Moein (Author) ; Ravanji, Mohammad Hassan (Supervisor) ; Parniani, Mostafa (Supervisor)
    Abstract
    With the increasing penetration of inverter-based resources (IBRs) into power systems, grid codes and technical standards have placed growing emphasis on their performance under transient and fault conditions. The IEEE 2800-2022 standard requires all IBRs to remain connected during grid faults and to be capable of injecting both positive- and negative-sequence currents. In this research, the performance and controller design of grid-forming inverters (GFMs) are investigated with the aim of improving their capability to ride through asymmetrical faults while ensuring compliance with the standard requirements. To this end, various methods for symmetrical component extraction (SCE) of voltage... 

    Optimal MIMO waveform design with controlled characteristics

    , Article Proceedings International Radar Symposium, 24 June 2015 through 26 June 2015 ; Volume 2015-August , 2015 , Pages 1141-1146 ; 21555753 (ISSN) ; 9783954048533 (ISBN); 9783954048533 (ISBN); 9783954048533 (ISBN) Karbasi, S. M ; Radmard, M ; Nayebi, M. M ; Bastani, M. H ; Rohling, H ; Rohling, H ; Rohling, H ; Sharif University of Technology
    IEEE Computer Society  2015
    Abstract
    In a MIMO (Multiple Input Multiple Output) radar system, proper design of transmit signal and receive filter is an advantageous tool to improve the detection performance. Thus, in this paper, we consider the problem of transmit code and receive filter design, in order to maximize the Signal to Noise Ratio (SNR) at the receiver while enforcing a similarity constraint between the transmit space-time code (STC) and a reference STC which has a desirable ambiguity function. We will show that by solving such constrained optimization problem through successive iterations, our proposed method leads to satisfactory results  

    A fast and novel method of pattern synthesis for non-uniform phased array antennas

    , Article Proceedings International Radar Symposium, 24 June 2015 through 26 June 2015 ; Volume 2015-August , 2015 , Pages 924-929 ; 21555753 (ISSN) ; 9783954048533 (ISBN); 9783954048533 (ISBN); 9783954048533 (ISBN) Tohidi, E ; Sebt, M. A ; Nayebi, M. M ; Behroozi, H ; Rohling, H ; Rohling, H ; Rohling, H ; Sharif University of Technology
    IEEE Computer Society  2015
    Abstract
    Weighting elements to achieve radiation patterns with desired characteristics is a classical work in phased array antennas. These characteristics can be low sidelobe level, narrow beamwidth, high directivity, pattern nulling in special angle and etc. For each of these characteristics, different methods have been introduced. Most of methods have been presented for uniform arrays, however there are lots of methods to obtain a desired pattern for antennas with non-uniform element distances. The problem with these methods is complexity or not very good results. In this paper, fast and easy methods based on Least Square Error that leads to good results are presented. In addition, weighting of...