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    Antenna and pulse selection for colocated MIMO radar

    , Article 51st Asilomar Conference on Signals, Systems and Computers, ACSSC 2017, 29 October 2017 through 1 November 2017 ; Volume 2017-October , 2018 , Pages 563-567 ; 9781538618233 (ISBN) Tohidi, E ; Behroozi, H ; Leus, G ; Sharif University of Technology
    Institute of Electrical and Electronics Engineers Inc  2018
    Abstract
    Multiple input multiple output (MIMO) radar is known for its superiority over conventional radar due to its antenna and waveform diversity. However, the increased hardware cost (due to multiple transmitters and receivers), power consumption (due to multiple transmitters and pulses), and computational complexity (due to numerous pulses) form the drawbacks of MIMO radar. On one hand, a higher estimation accuracy is required, but on the other hand, a lower number of active antennas/pulses is desirable. Therefore, in this paper, by proposing a convex optimization approach for the general case of transmitter-receiver-pulse selection, we will minimize the total number of active antennas/pulses in... 

    Dynamic programming applied to large circular arrays thinning

    , Article IEEE Transactions on Antennas and Propagation ; Volume 66, Issue 8 , 2018 , Pages 4025-4033 ; 0018926X (ISSN) Tohidi, E ; Nayebi, M. M ; Behroozi, H ; Sharif University of Technology
    Institute of Electrical and Electronics Engineers Inc  2018
    Abstract
    In conventional arrays, improving angular resolution requires larger aperture which demands more number of elements. On the other hand, array thinning is an efficient method of achieving narrow beamwidth (high angular resolution) with fewer number of elements. Reducing the number of elements results in reducing weight, cost, hardware complexity, and energy consumption. In this paper, a novel dynamic programming algorithm of array thinning with the objective of reducing sidelobe levels (SLLs), desired for large circular arrays, is proposed. The circular array is partitioned into annular rings, and the objective of the optimization problem is to determine the number of active elements in each... 

    Dynamic modeling of a wind turbine with brushless doubly fed induction generator

    , Article 2012 3rd Power Electronics and Drive Systems Technology, PEDSTC 2012, 15 February 2012 through 16 February 2012 ; February , 2012 , Pages 490-494 ; 9781467301114 (ISBN) Tohidi, S ; Zolghadri, M. R ; Oraee, H ; Oraee, A ; Sharif University of Technology
    2012
    Abstract
    Brushless Doubly Fed Induction Generator (BDFIG) has been recently proposed to be used in variable speed wind turbines. This paper intends to investigate the influence of certain model simplifications to obtain a reduced-order model of a wind turbine with BDFIG suitable for transient studies. To achieve this goal, small signal analysis is performed for a recently manufactured 250 kVA BDFIG to obtain system modes and their participation factors. Identifying highly damped modes, influences of neglecting dynamics of their participated states are studied through time-domain simulation in MATLAB/Simulink  

    A control scheme to enhance low voltage ride-through of brushless doubly-fed induction generators

    , Article Wind Energy ; Volume 19, Issue 9 , 2016 , Pages 1699-1712 ; 10954244 (ISSN) Tohidi, S ; Oraee, H ; Zolghadri, M. R ; Rahimi, M ; Sharif University of Technology
    John Wiley and Sons Ltd  2016
    Abstract
    The use of brushless doubly-fed induction generator has been recently proposed for wind turbines because of its variable speed operation with fractional size converter without the need to brush and slip ring. This paper introduces a control scheme to improve low voltage ride-through capability of doubly-fed induction generator considering grid code requirements. The proposed control strategy is based on analysis of flux linkages and back electromotive forces and intends to retain the control-winding current below the safety limit (typically 2 pu) during severe voltage dips. The time-domain simulations validate effectiveness of the proposed scheme to protect the converter against failure as... 

    A control scheme to enhance low voltage ride-through of brushless doubly-fed induction generators

    , Article Wind Energy ; November , 2015 ; 10954244 (ISSN) Tohidi, S ; Oraee, H ; Zolghadri, M. R ; Rahimi, M ; Sharif University of Technology
    John Wiley and Sons Ltd  2015
    Abstract
    The use of brushless doubly-fed induction generator has been recently proposed for wind turbines because of its variable speed operation with fractional size converter without the need to brush and slip ring. This paper introduces a control scheme to improve low voltage ride-through capability of doubly-fed induction generator considering grid code requirements. The proposed control strategy is based on analysis of flux linkages and back electromotive forces and intends to retain the control-winding current below the safety limit (typically 2pu) during severe voltage dips. The time-domain simulations validate effectiveness of the proposed scheme to protect the converter against failure as... 

    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... 

    Periodicity in contrast with sidelobe suppression in random signal radars

    , Article Proceedings of 2011 IEEE CIE International Conference on Radar, RADAR 2011, 24 October 2011 through 27 October 2011 ; Volume 1 , October , 2011 , Pages 442-445 ; 9781424484416 (ISBN) Tohidi, E ; Majd, M. N ; Bahadori, M ; Jariani, H. H ; Nayebi, M. M ; Sharif University of Technology
    2011
    Abstract
    Masking effect is the most important problem in Noise Radars. Recently, some waveform design methods to resolve this problem have been developed, however this paper will show an important fact: 'sidelobe suppression increases the Periodicity of signal and, consequently, decreases unpredictability'. Eventually, an appropriate level for sidelobe reduction is introduced  

    Influence of different series dynamic resistors on low-voltage ride-through of brushless doubly fed induction generator

    , Article Electric Power Components and Systems ; Volume 43, Issue 8-10 , 2015 , Pages 995-1005 ; 15325008 (ISSN) Tohidi, S ; Oraee, H ; Zolghadri, M. R ; Tavner, P. J ; Sharif University of Technology
    Taylor and Francis Inc  2015
    Abstract
    The brushless doubly fed induction generator has been proposed for use in wind turbines as a more reliable alternative to the more commonly used doubly fed induction generator. To realize the commercial promises of the brushless doubly fed induction generator in this role, it must meet the existing grid connection codes, particularly with respect to low-voltage ride-through. In this article, the application of series dynamic resistors is proposed to enhance brushless doubly fed induction generator low-voltage ride-through capability, and the required analysis is provided. Three locations for series dynamic resistors are suggested in the brushless doubly fed induction generator circuit and... 

    Analysis and enhancement of low-voltage ride-through capability of brushless doubly fed induction generator

    , Article IEEE Transactions on Industrial Electronics ; Volume 60, Issue 3 , March , 2013 , Pages 1146-1155 ; 02780046 (ISSN) Tohidi, S ; Oraee, H ; Zolghadri, M. R ; Shao, S ; Tavner, P ; Sharif University of Technology
    2013
    Abstract
    This paper discusses the dynamic behavior of the brushless doubly fed induction generator during the grid faults which lead to a decrease in the generator's terminal voltage. The variation of the fluxes, back EMFs, and currents are analyzed during and after the voltage dip. Furthermore, two alternative approaches are proposed to improve the generator ride-through capability using crowbar and series dynamic resistor circuits. Appropriate values for their resistances are calculated analytically. Finally, the coupled circuit model and the generator's speed and reactive power controllers are simulated to validate the theoretical results and the effectiveness of the proposed solutions. Moreover,... 

    An analytical study for low voltage ride through of the brushless doubly-fed induction generator during asymmetrical voltage dips

    , Article Renewable Energy ; Volume 115 , 2018 , Pages 64-75 ; 09601481 (ISSN) Gholizadeh, M ; Oraee, A ; Tohidi, S ; Oraee, H ; McMahon, R. A ; Sharif University of Technology
    Elsevier Ltd  2018
    Abstract
    The Brushless Doubly-fed Induction Generator (BDFIG) has high potential for wind energy systems, especially for offshore applications where minimum maintenance is vital. The machine low voltage ride through (LVRT) capability in the light of current grid code requirements was investigated using a precise dynamic model. This is particularly important for future multi- MW BDFIGs. This paper shows the necessity for improvements of the BDFIG LVRT capability with presenting a comprehensive analytical study during asymmetrical voltage dips. Analytical studies are conducted to extract a more precise equivalent circuit model of the BDFIG used for analyzing machine dynamic behavior under various fault... 

    Antenna placement in a compressive sensing-based colocated mimo radar

    , Article IEEE Transactions on Aerospace and Electronic Systems ; Volume 56, Issue 6 , 2020 , Pages 4606-4614 Ajorloo, A ; Amini, A ; Tohidi, E ; Bastani, M. H ; Leus, G ; Sharif University of Technology
    Institute of Electrical and Electronics Engineers Inc  2020
    Abstract
    Compressive sensing (CS) has been widely used in multiple-input-multiple-output (MIMO) radar in recent years. Unlike traditional MIMO radar, detection/estimation of targets in a CS-based MIMO radar is accomplished via sparse recovery. In this article, for a CS-based colocated MIMO radar with linear arrays, we attempt to improve the target detection performance by reducing the coherence of the associated sensing matrix. Our tool in reducing the coherence is the placement of the antennas across the array aperture. In particular, we choose antenna positions within a given grid. Initially, we formalize the position selection problem as finding binary weights for each of the locations. This... 

    Compressive sensing MTI processing in distributed MIMO radars

    , Article IET Signal Processing ; Volume 12, Issue 3 , 2018 , Pages 327-334 ; 17519675 (ISSN) Tohidi, E ; Radmard, M ; Nazari Majd, M ; Behroozi, H ; Nayebi, M. M ; Sharif University of Technology
    Institution of Engineering and Technology  2018
    Abstract
    It is shown that the detection performance can be significantly improved using the recent technology of multiple-input multiple-output (MIMO) radar systems. This is a result of the spatial diversity in such systems due to the viewing of the target from different angles. On the other hand, the moving target indication (MTI) processing has long been known and applied in the traditional pulse radars to detect weak moving targets in the presence of strong clutter signals. The authors propose a procedure based on the compressive sensing idea, in order to apply the MTI processing in a MIMO radar with widely separated antennas. Although a clutter is included in the signal model and a different... 

    An Adaptive Series-Dynamic-Resistor-Based Protection Scheme for Brushless Doubly- Fed Induction Generator Under Asymmetrical Fault Conditions

    , Article IEEE Access ; Volume 12 , 2024 , Pages 11330-11339 ; 21693536 (ISSN) Gholizadeh, M ; Ghasemkhani, A ; Tohidi, S ; Oraee, A ; Oraee, H ; Najafi, E ; Sharif University of Technology
    2024
    Abstract
    Low-voltage ride-through (LVRT) is one of the most important criteria for integrating wind energy into the power grid. Based on grid connection codes, wind generators must remain connected during fault conditions. However, this requires a careful protection scheme design for addressing the successful ride through of the brushless doubly fed induction generator (BDFIG) during severe voltage dips. This paper proposes a comprehensive solution for enhancing the BDFIG ride through during asymmetrical faults. Furthermore, since the proposed solution is dependent on the type and severity of voltage dips, an updated harmonic resilient scheme is developed to detect the dip level and type of faults.... 

    Investigating Wind-Induced Currents in Sloped Aquatic Canopy Areas

    , M.Sc. Thesis Sharif University of Technology Tohidi, Ali (Author) ; Jamali, Mirmosadegh (Supervisor)
    Abstract
    Aquatic canopy zones play an important role in maintenance of ecosystems. These areas are ubiquitous near rivers, lakes, lagoons, estuaries and shore lines. Governing dynamical systems through these areas have direct influence on, how nutrients and other vital materials for living things disperse. Also, they can control the amount of dissolved oxygen within the body of water in these regions. Nowadays, investigating the effects of vegetation grabbed the attention of many scientists and is a very important burgeoning field. In this study, the effects of surface cooling which resulting from mild wind blow have been investigated. In fact, two type of different currents form when wind blows... 

    Performance of the brushless doubly-fed machine under normal and fault conditions

    , Article IET Electric Power Applications ; Volume 6, Issue 9 , Volume 6, Issue 9 , 2012 , Pages 621-627 ; 17518660 (ISSN) Tohidi, S ; Zolghadri, M. R ; Oraee, H ; Tavner, P ; Abdi, E ; Logan, T ; Sharif University of Technology
    2012
    Abstract
    In this study, the steady-state operation of the brushless doubly-fed machine (BDFM) in various modes is physically elaborated and the active power flow and torque analysis are presented for each operating mode alongside confirmatory experimental results on a 4/8 pole D160 size machine. The machine behaviour in asynchronous operating modes is described similar to the conventional induction machines with corresponding pole numbers. Moreover, its performance in synchronous mode is shown to be similar to synchronous machines. On the basis of the above, the BDFM performance is further analysed under two possible fault conditions: first, a controller or converter fault leading to loss of... 

    Statistical analysis of sidelobes in random phase-modulated radars

    , Article Proceedings of 2011 IEEE CIE International Conference on Radar, RADAR 2011, 24 October 2011 through 27 October 2011, Chengdu ; Volume 1 , October , 2011 , Pages 485-489 ; 9781424484416 (ISBN) Jariani, H. H ; Bahadori, M ; Tohidi, E ; Majd, M. N ; Nayebi, M. M ; Sharif University of Technology
    2011
    Abstract
    Target detection in noise radar is always done by computing cross-correlation between transmitted and received signals. In this process, side lobes of a strong target emerge and make some troubles in detection of weak ones (Masking Effect). Therefore, finding methods to suppress this effect becomes important. These methods can be implemented at the transmitter or receiver or at both to achieve more improvement. There are many new methods developed for the receiver side and a few methods applicable at the transmitter side. The main idea of suppressing side lobes at the transmitter is to design a specific noise signal instead of using purely random noise. In this paper we begin with... 

    Sparse antenna and pulse placement for colocated mimo radar

    , Article IEEE Transactions on Signal Processing ; 2018 ; 1053587X (ISSN) Tohidi, E ; Coutino, M ; Chepuri, S. P ; Behroozi, H ; Nayebi, M. M ; Leus, G ; Sharif University of Technology
    Institute of Electrical and Electronics Engineers Inc  2018
    Abstract
    Multiple input multiple output (MIMO) radar is known for its superiority over conventional radar due to its antenna and waveform diversity. Although higher angular resolution, improved parameter identifiability, and better target detection are achieved, the hardware costs (due to multiple transmitters and multiple receivers) and high energy consumption (multiple pulses) limit the usage of MIMO radars in large scale networks. On one hand, higher angle and velocity estimation accuracy is required, but on the other hand, a lower number of antennas/pulses is desirable. To achieve such a compromise, in this work, the Cram'er-Rao lower bound (CRLB) for the angle and velocity estimator is employed... 

    Controller-switch assignment in 5G networks

    , Article 2nd IEEE 5G World Forum, 5GWF 2019, 30 September 2019 through 2 October 2019 ; 2019 , Pages 40-45 ; 9781728136271 (ISBN) Tohidi, E ; Parsaeefard, S ; Maddah Ali, M. A ; Khalaj, B. H ; Leon Garcia, A ; Sharif University of Technology
    Institute of Electrical and Electronics Engineers Inc  2019
    Abstract
    Explosive growth in both quantity and quality of services and the development trends in 5G networks indicates that multiple distributed software defined network (SDN) controllers are of increasing importance from both network performance and reliability perspectives. Although SDN was first considered with a logically centralized controller approach, due to delay, reliability, and scalability challenges, moving towards multiple distributed controllers is inevitable. In the distributed controlling scheme, an assignment that associates a controller to each switch is required. Moreover, the number of required SDN controllers and even their locations have to be determined. In this paper, two... 

    Sparse antenna and pulse placement for colocated mimo radar

    , Article IEEE Transactions on Signal Processing ; Volume 67, Issue 3 , 2019 , Pages 579-593 ; 1053587X (ISSN) Tohidi, E ; Coutino, M ; Chepuri, S. P ; Behroozi, H ; Nayebi, M. M ; Leus, G ; Sharif University of Technology
    Institute of Electrical and Electronics Engineers Inc  2019
    Abstract
    Multiple-input multiple-output (MIMO) radar is known for its superiority over conventional radar due to its antenna and waveform diversity. Although higher angular resolution, improved parameter identifiability, and better target detection are achieved, the hardware costs (due to multiple transmitters and multiple receivers) and high-energy consumption (multiple pulses) limit the usage of MIMO radars in large scale networks. On one hand, higher angle and velocity estimation accuracy is required, but on the other hand, a lower number of antennas/pulses is desirable. To achieve such a compromise, in this paper, the Cramér-Rao lower bound (CRLB) for the angle and velocity estimator is employed... 

    Compressed-domain detection and estimation for colocated MIMO radar

    , Article IEEE Transactions on Aerospace and Electronic Systems ; Volume 56, Issue 6 , 2020 , Pages 4504-4518 Tohidi, E ; Hariri, A ; Behroozi, H ; Nayebi, M. M ; Leus, G ; Petropulu, A. P ; Sharif University of Technology
    Institute of Electrical and Electronics Engineers Inc  2020
    Abstract
    This article proposes a compressed-domain signal processing (CSP) multiple-input multiple-output (MIMO) radar, a MIMO radar approach that achieves substantial sample complexity reduction by exploiting the idea of CSP. CSP MIMO radar involves two levels of data compression followed by target detection at the compressed domain. First, compressive sensing is applied at the receive antennas, followed by a Capon beamformer, which is designed to suppress clutter. Exploiting the sparse nature of the beamformer output, a second compression is applied to the filtered data. Target detection is subsequently conducted by formulating and solving a hypothesis testing problem at each grid point of the...