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    Application of artificial neural network for the prediction of pressure distribution of a plunging airfoil

    , Article World Academy of Science, Engineering and Technology ; Volume 40 , 2009 , Pages 237-242 ; 2010376X (ISSN) Rasi Maezabadi, F ; Masdari, M ; Soltani, M. R ; Sharif University of Technology
    2009
    Abstract
    Series of experimental tests were conducted on a section of a 660 kW wind turbine blade to measure the pressure distribution of this model oscillating in plunging motion. In order to minimize the amount of data required to predict aerodynamic loads of the airfoil, a General Regression Neural Network, GRNN, was trained using the measured experimental data. The network once proved to be accurate enough, was used to predict the flow behavior of the airfoil for the desired conditions. Results showed that with using a few of the acquired data, the trained neural network was able to predict accurate results with minimal errors when compared with the corresponding measured values. Therefore with... 

    Reliability-based selection of wind turbines for large-scale wind farms

    , Article World Academy of Science, Engineering and Technology ; Volume 37 , 2009 , Pages 734-740 ; 2010376X (ISSN) Fotuhi Firuzabad, M ; Salehi Dobakhshari, A ; Sharif University of Technology
    2009
    Abstract
    This paper presents a reliability-based approach to select appropriate wind turbine types for a wind farm considering site-specific wind speed patterns. An actual wind farm in the northern region of Iran with the wind speed registration of one year is studied in this paper. An analytic approach based on total probability theorem is utilized in this paper to model the probabilistic behavior of both turbines' availability and wind speed. Well-known probabilistic reliability indices such as loss of load expectation (LOLE), expected energy not supplied (EENS) and incremental peak load carrying capability (IPLCC) for wind power integration in the Roy Billinton Test System (RBTS) are examined. The... 

    Innovative approach to design a new national low speed wind tunnel

    , Article International Journal of Environmental Science and Technology ; Volume 6, Issue 1 , 2009 , Pages 23-34 ; 17351472 (ISSN) Abbaspour, M ; Shojaee, M. N ; Sharif University of Technology
    2009
    Abstract
    A new multipurpose wind tunnel with adjustable test section designed in the science and research branch of Islamic Azad University site could be used either as the environmental, subsonic or climatic wind tunnels. For this purpose, a new design approach was adopted in which through the adjustment of the wind tunnel cycle, i.e. the nozzle of test section,it could be utilized as any of the three wind tunnels. A design used for environmental wind tunnels and other contraction which was adjusted by 50 % through changes in the polynomial contraction for other applications. As a result, the best fitted profile for the environmental wind tunnels contraction was selected by contraction best fit... 

    A numerical investigation on the dynamic stall of a wind turbine section using different turbulent models

    , Article World Academy of Science, Engineering and Technology ; Volume 58 , 2009 , Pages 290-296 ; 2010376X (ISSN) Ahmadi, A ; Sharif, S ; Jamshidi, R ; Sharif University of Technology
    2009
    Abstract
    In this article, the flow behavior around a NACA 0012 airfoil which is oscillating with different Reynolds numbers and in various amplitudes has been investigated numerically. Numerical simulations have been performed with ANSYS software. First, the 2-D geometry has been studied in different Reynolds numbers and angles of attack with various numerical methods in its static condition. This analysis was to choose the best turbulent model and comparing the grids to have the optimum one for dynamic simulations. Because the analysis was to study the blades of wind turbines, the Reynolds numbers were not arbitrary. They were in the range of 9.71e5 to 22.65e5. The angle of attack was in the range... 

    A reliability model of large wind farms for power system adequacy studies

    , Article IEEE Transactions on Energy Conversion ; Volume 24, Issue 3 , 2009 , Pages 792-801 ; 08858969 (ISSN) Salehi Dobakhshari, A ; Fotuhi Firuzabad, M ; Sharif University of Technology
    2009
    Abstract
    In this paper, an analytical approach for the reliability modeling of large wind farms is presented. A systematic method based on frequency and duration approach is utilized to model a wind farm like a multistate conventional unit, where the probability, frequency of occurrence, and departure rate of each state can be obtained using the regional wind regime of wind farm and wind turbine characteristics. The proposed method is capable of finding both annual frequency and average time of load curtailment analytically in the presence of wind power. A wind farm in the northern region of Iran with the wind speed registration of one year is studied in this paper. To accommodate time-varying... 

    Assessing financial and flexibility incentives for integrating wind energy in the grid via agent-based modeling

    , Article Energies ; Volume 12, Issue 22 , 2019 ; 19961073 (ISSN) Samie Maqbool, A ; Baetens, J ; Lotfi, S ; Vandevelde, L ; Van Eetvelde, G ; Sharif University of Technology
    MDPI AG  2019
    Abstract
    This article provides an agent-based model of a hypothetical standalone electricity network to identify how the feed-in tariffs and the installed capacity of wind power, calculated in percentage of total system demand, affect the electricity consumption from renewables. It includes the mechanism of electricity pricing on the Day Ahead Market (DAM) and the Imbalance Market (IM). The extra production volumes of Electricity from Renewable Energy Sources (RES-E) and the flexibility of electrical consumption of industries is provided as reserves on the IM. Five thousand simulations were run by using the agent-based model to gather data that were then fit in linear regression models. This helped... 

    A hybrid storage-wind virtual power plant (VPP) participation in the electricity markets: A self-scheduling optimization considering price, renewable generation, and electric vehicles uncertainties

    , Article Journal of Energy Storage ; Volume 25 , 2019 ; 2352152X (ISSN) Alahyari, A ; Ehsan, M ; Mousavizadeh, M ; Sharif University of Technology
    Elsevier Ltd  2019
    Abstract
    The fast growth of technologies most of which depend on natural sources of energy has resulted in a huge consumption of fossil fuels. In this regard, many solutions have been suggested to alleviate the side effects such as air pollution and global warming. Among these solutions, mobile storages like electric vehicles (EVs) and renewable generations, have grown significantly due to being more applicable. But uncoordinated operation and uncertain nature of these distributed energy resources (DERs) can bring forward new challenges and issues to the operators of power system. Thus, in many cases it is more efficient to co-operate them in a hybrid system. In this study, we address a virtual power... 

    The influence of public R&D and knowledge spillovers on the development of renewable energy sources: The case of the Nordic countries

    , Article Technological Forecasting and Social Change ; Volume 146 , 2019 , Pages 450-463 ; 00401625 (ISSN) Miremadi, I ; Saboohi, Y ; Arasti, M ; Sharif University of Technology
    Elsevier Inc  2019
    Abstract
    Energy innovation is a key requirement to limit global warming and tackle climate change in the years to come. A better understanding of the public R&D mechanism is likely to improve allocation of resources for energy innovation. Thus, the present paper evaluates the impacts of public R&D and knowledge spillovers on the development of renewable energy sources. To achieve this goal, knowledge flow has been modeled as a function of public R&D expenditures, cumulative knowledge stocks and knowledge spillovers. To show the application of the model, the Nordic countries as one of the pioneers in renewable technologies have been chosen. Results show the cumulative knowledge stock will increase to... 

    Failure mode, effects and criticality analysis (FMECA) in power electronic based power systems

    , Article 21st European Conference on Power Electronics and Applications, EPE 2019 ECCE Europe, 3 September 2019 through 5 September 2019 ; 2019 ; 9789075815313 (ISBN) Peyghami, S ; Davari, P ; F. Firuzabad, M ; Blaabjerg, F ; Sharif University of Technology
    Institute of Electrical and Electronics Engineers Inc  2019
    Abstract
    Power electronics is becoming an underpinning technology for modern power systems. Power converters are increasingly used in various applications implying different levels of importance in power systems. Hence, optimal decision-making for manufacturing, control, operation and maintenance of them requires understanding of their importance in the power systems. Furthermore, identifying the converters importance may be beneficial for simplifying the system-level reliability modeling in a large Power Electronic based Power Systems (PEPSs). Thereby, a Failure Mode, Effects and Criticality Analysis (FMECA) approach is proposed in this paper in order to figure out the importance of converters in... 

    Stochastic Security Constrained Unit Commitment with High Penetration of Wind Farms

    , Article 19th IEEE International Conference on Environment and Electrical Engineering and 2019 IEEE Industrial and Commercial Power Systems Europe, EEEIC/I and CPS Europe 2019, 11 June 2019 through 14 June 2019 ; 2019 ; 9781728106526 (ISBN) Kia, M ; Hosseini, S. H ; Heidari, A ; Lotfi, M ; Catalão, J. P. S ; ShafieKhah, M ; Osório, G ; Santos, S. F ; Sharif University of Technology
    Institute of Electrical and Electronics Engineers Inc  2019
    Abstract
    Secure and reliable operation is one of the main challenges in restructured power systems. Wind energy has been gaining increasing global attention as a clean and economic energy source, despite the operational challenges its intermittency brings. In this study, we present a formulation for electricity and reserve market clearance in the presence of wind farms. Uncertainties associated with generation and line outages are modeled as different system scenarios. The formulation incorporates the cost of different scenarios in a two-stage short-term (24-hours) clearing process, also considering different types of reserve. The model is then linearized in order to be compatible with standard... 

    Multi-objective market clearing model with an autonomous demand response scheme

    , Article Energies ; Volume 12, Issue 7 , 2019 ; 19961073 (ISSN) Hajibandeh, N ; Shafie Khah, M ; Badakhshan, S ; Aghaei, J ; Mariano, S. J. P. S ; Catalão, J. P. S ; Sharif University of Technology
    MDPI AG  2019
    Abstract
    Demand response (DR) is known as a key solution in modern power systems and electricity markets for mitigating wind power uncertainties. However, effective incorporation of DR into power system operation scheduling needs knowledge of the price–elastic demand curve that relies on several factors such as estimation of a customer’s elasticity as well as their participation level in DR programs. To overcome this challenge, this paper proposes a novel autonomous DR scheme without prediction of the price–elastic demand curve so that the DR providers apply their selected load profiles ranked in the high priority to the independent system operator (ISO). The energy and reserve markets clearing... 

    Joint distributed generation and active distribution network expansion planning considering active management of network

    , Article 27th Iranian Conference on Electrical Engineering, ICEE 2019, 30 April 2019 through 2 May 2019 ; 2019 , Pages 702-708 ; 9781728115085 (ISBN) Kabirifar, M ; Fotuhi Firuzabad, M ; Moeini Aghtaie, M ; Pourghaderia, N ; Sharif University of Technology
    Institute of Electrical and Electronics Engineers Inc  2019
    Abstract
    Joint multistage expansion planning of active distribution network (ADN) is well investigated in this paper. This expansion model considers the effects of optimal operating conditions in the planning studies. In the proposed model, for each planning time stage, several operating scenarios are defined based on operational status of the network. The utilization of distributed energy resources (DERs) around the network is determined for each operating scenario through active management of these resources. In the planning level, investment in distribution network assets including feeders, substations, and distributed generations (DGs) incorporating conventional gas turbines and renewable wind... 

    Assessing the effect of wind farm layout on energy storage requirement for power fluctuation mitigation

    , Article IEEE Transactions on Sustainable Energy ; Volume 10, Issue 2 , 2019 , Pages 558-568 ; 19493029 (ISSN) Kazari, H ; Oraee, H ; Pal, B. C ; Sharif University of Technology
    Institute of Electrical and Electronics Engineers Inc  2019
    Abstract
    Optimization of wind farm (WF) layout has been studied in the literature with the objective of maximizing the wind energy capture. Based on the power spectrum density theorem, this paper shows that the WF layout affects not only the total harvested energy but also the level of power fluctuation, which, in turn, influences required capacity of battery energy storage system (BESS) needed to mitigate the inherent power fluctuation of the WFs. Since, both harvested energy level and BESS capacity directly influence the profit of WF owner, the effect of WF layout on these quantities is taken into account simultaneously, and WF layout optimization problem is redefined. Genetic algorithm is then... 

    Optimal bidding strategy of coordinated wind power and gas turbine units in real-time market using conditional value at risk

    , Article International Transactions on Electrical Energy Systems ; Volume 29, Issue 1 , 2019 ; 20507038 (ISSN) Rayati, M ; Goodarzi, H ; Ranjbar, A ; Sharif University of Technology
    John Wiley and Sons Ltd  2019
    Abstract
    Nowadays, the incorporation of wind power in electrical grids and electricity markets is grown. Due to the fluctuation of wind speed, one of the main challenges of wind power would be selling power directly to the wholesale markets. A method for solving this challenge is coordination of wind power with energy storages, cascaded hydro, or gas turbine units in bidding strategy and operation. By coordinating with gas turbine units, wind power can be incorporated in real-time markets with fewer capital costs. In this paper, a stochastic bi-level optimization is proposed for coordinated wind power and gas turbine units in the real-time market. The uncertainties of wind power, demands, rivals'... 

    A comparative study on fuzzy damping controller for DFIG wind farms to improve power system oscillations

    , Article Journal of Intelligent and Fuzzy Systems ; Volume 37, Issue 4 , 2019 , Pages 4965-4978 ; 10641246 (ISSN) Solat, A ; Ranjbar, A. M ; Mozafari, B ; Sharif University of Technology
    IOS Press  2019
    Abstract
    Doubly-fed induction generator (DFIG) is the most commonly used technology for wind power generation due to the variable speed performance, decoupled control of active and reactive powers, and high efficiency. However, the DFIG originally cannot participate in damping of power system oscillations since it is not synchronously connected to the power system. This paper proposes an optimal and robust additional damping controller for the DFIG wind turbine to contribute it to damp power system oscillations. It is a fuzzy logic controller that its parameters are optimally tuned using the genetic algorithm (GA). The proposed controller modifies the DFIG active power output by using feedback from... 

    Optimal bidding strategy of coordinated wind power and gas turbine units in real-time market using conditional value at risk

    , Article International Transactions on Electrical Energy Systems ; Volume 29, Issue 1 , 2019 ; 20507038 (ISSN) Rayati, M ; Goodarzi, H ; Ranjbar, A ; Sharif University of Technology
    John Wiley and Sons Ltd  2019
    Abstract
    Nowadays, the incorporation of wind power in electrical grids and electricity markets is grown. Due to the fluctuation of wind speed, one of the main challenges of wind power would be selling power directly to the wholesale markets. A method for solving this challenge is coordination of wind power with energy storages, cascaded hydro, or gas turbine units in bidding strategy and operation. By coordinating with gas turbine units, wind power can be incorporated in real-time markets with fewer capital costs. In this paper, a stochastic bi-level optimization is proposed for coordinated wind power and gas turbine units in the real-time market. The uncertainties of wind power, demands, rivals'... 

    Wind farm power output optimization using cooperative control methods

    , Article Wind Energy ; 2020 Deljouyi, N ; Nobakhti, A ; Abdolahi, A ; Sharif University of Technology
    John Wiley and Sons Ltd  2020
    Abstract
    We study the application of cooperative control and game theoretic approaches to wind farm optimization. The conventional (greedy) wind farm control strategy seeks to individually maximize each turbine power. However, this strategy does not maximize the overall power production of wind farms due to the aerodynamic interactions (wake effect) between the turbines. We formulate the wind farm power optimization problem as an identical interest game which can also be used to solve other cooperative control problems. Two model-free learning algorithms are developed to obtain the optimal axial induction factors of the turbines and maximize power production. The algorithms are simulated for a... 

    Improved generic model of variable speed wind turbines for dynamic studies

    , Article IEEE Transactions on Sustainable Energy ; Volume 11, Issue 4 , October , 2020 , Pages 2162-2173 Mirnezhad, H ; Ravanji, M. H ; Parniani, M ; Sharif University of Technology
    Institute of Electrical and Electronics Engineers Inc  2020
    Abstract
    Fast growth of wind power generation and its contribution in power systems dynamic performance has highlighted the importance of developing generic models for wind turbines. Following the former efforts, an enhanced version of standard generic wind turbine model is proposed in this article. The enhancements are aimed to make the model applicable for unbalanced Root Mean Square (RMS), short-Term frequency stability, and low-voltage ride-Through (LVRT) studies. Moreover, fidelity of the overall responses of the model is increased. To achieve these goals, five new blocks are designed and added to the base model and three existing blocks are modified. The new blocks are negative-sequence... 

    Smooth switching in power control of wind turbines using a combination strategy of hysteresis and modified middle regions

    , Article Sustainable Energy Technologies and Assessments ; Volume 37 , 2020 Nouriani, A ; Moradi, H ; Sharif University of Technology
    Elsevier Ltd  2020
    Abstract
    This paper presents a new method for protecting the variable speed wind turbines in switching between different regions. With the objective of power maximization, the controller is applied in all regions. Since usually different methods and algorithms are used in different regions for controlling the wind turbines, smooth transition between these controllers is necessary for the safety and protection of turbine parts and structure. A two degree of freedom mechanical model is used and the simulations are performed and verified by FAST. The turbine is controlled by a rotor angular speed controller in the second region and an inverse dynamic pitch controller in the third region. The transient... 

    Distributionally robust chance-constrained generation expansion planning

    , Article IEEE Transactions on Power Systems ; Volume 35, Issue 4 , 2020 , Pages 2888-2903 Pourahmadi, F ; Kazempour, J ; Ordoudis, C ; Pinson, P ; Hosseini, S. H ; Sharif University of Technology
    Institute of Electrical and Electronics Engineers Inc  2020
    Abstract
    This article addresses a centralized generation expansion planning problem, accounting for both long- and short-term uncertainties. The long-term uncertainty (demand growth) is modeled via a set of scenarios, while the short-term uncertainty (wind power generation) is described by a family of probability distributions with the same first- and second-order moments obtained from historical data. The resulting model is a distributionally robust chance-constrained optimization problem, which selects the conventional generating units to be built among predefined discrete options. This model includes a detailed representation of unit commitment constraints. To achieve computational tractability,...