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    A new look on the automation of medium voltage substations in power distribution systems

    , Article 2012 Proceedings of 17th Conference on Electrical Power Distribution, EPDC 2012 ; 2012 ; 9781467314183 (ISBN) Shojaie, M ; Moghaddam, V.R ; Kazemi, A.A.R ; Dehghanian, P ; Karami, G ; Sharif University of Technology
    IEEE  2012
    Abstract
    With the expansion of electricity networks, increasing operational complexities, improved knowledge of the system operators, all with the subsidies elimination in some countries such as Iran and experiencing the real price of electricity by then, it necessitates a more reliable power to be delivered to the system customers. Power system automation is regarded as an efficient solution and the effective key to this problem. However, the great number of substations in power distribution systems has led to the fact that it is neither feasible nor economic to automate all of them. This calls for a comprehensive scheme on the placement of the distribution substations to be automated. In this... 

    A new algorithm for optimal measurement placement, observability analysis and harmonic state estimation in power systems

    , Article PEDSTC 2013 - 4th Annual International Power Electronics, Drive Systems and Technologies Conference ; 2013 , Pages 518-523 ; 9781467344845 (ISBN) Rad, M. S ; Mokhtari, H ; Karimi, H ; Sharif University of Technology
    2013
    Abstract
    Harmonic State Estimation (HSE) is a technique for identifying harmonic distributions in power systems with limited measurements. The main problem in HSE is the optimal placement of measurement meters such that the estimation error is minimized, while making the system fully observable. The second issue is the HSE method. This method must be accurate and fast enough in order to have an accurate HSE. This paper presents a new algorithm that uses minimum variance criterion (MVC) and a sequential method for optimal meters placement, SVD method for observability analysis and finally WLS method for harmonic estimation. The proposed method minimizes the number of measurement devices and the error... 

    Optimal placement of switching and protection devices in radial distribution networks to enhance system reliability using the AHP-PSO method

    , Article Turkish Journal of Electrical Engineering and Computer Sciences ; Volume 27, Issue 1 , 2019 , Pages 181-196 ; 13000632 (ISSN) Amohadi, M ; Fotuhi Firuzabad, M ; Sharif University of Technology
    Turkiye Klinikleri Journal of Medical Sciences  2019
    Abstract
    This paper presents a new method to determine the optimal number and locations of autorecloser and sectionalizer switches (AR/S) in distribution networks. The costs of AR/S investment, switch maintenance, and undistributed energy as well as reliability coefficients are considered in the objective function. Reliability parameters such as SAIFI, SADI, MAIFI, and ENS are evaluated in the case study system. As a new method, the weights of the reliability parameters are obtained by decision-makers using the analytical hierarchy process (AHP). The optimal size, type, and location of automatic switches are determined by minimizing the objective function using the particle swarm optimization (PSO)... 

    Optimal Deployment of Electric Vehicle Charging Stations

    , M.Sc. Thesis Sharif University of Technology Bahrami, Sina (Author) ; Zakaei Ashtiani, Hedayat (Supervisor)
    Abstract
    Limited oil resources, increasing rate of oil consumption, and environmental concerns related to burning fossil fuels promote the use of alternative fuel vehicles. Electric vehicles are common among alternative fuel vehicles which decrease greenhouse gases emission and fossil fuel dependence. To increase electric vehicle market share, some challenges need to be overcome including range anxiety. Limited driving range is one of the main challenges for battery-powered electric vehicles. The distance limit inevitably changes electric vehicle drivers’ travel behavior. Given the scarcity of charging stations, consumers perceive this driving range limit to be a potential worry. Therefore,... 

    Effects of Optimal DG Operation Point on Loss Reduction due to Network Reconfiguration

    , M.Sc. Thesis Sharif University of Technology Seyyed Mahdavi, Saeed (Author) ; Abbaspur Tehrani Fard, Ali (Supervisor)
    Abstract
    During the last few years, utilization of distributed generation (DG) in power systems has been widely increased. This trend has magnified studying the effects and impacts of DG on such systems. One of the benefits of DGs in a power system is loss reduction. If determining DG size and place is done properly, the loss of the network can be minimized. Another way of reducing loss in distribution network is by reconfiguring the network. During the reconfiguration, constraints like being radial, avoiding load isolation as well as voltage/current limitations must be taken into consideration. Taking these constraints into account makes reconfiguration an optimization problem. In this project, the... 

    Optimal Distributed Generation Allocation and Sizing Considering Operation Indices

    , M.Sc. Thesis Sharif University of Technology Ghanbari, Niloofar (Author) ; Mokhtari, Hossein (Supervisor)
    Abstract
    The need for independent power generation has been increased in recent years with the growing demand in micro grid systems. Losses in power systems are unavoidable. These losses occur in transmission to distributionnetworks from the generation sites to the end-user loads. Reduction of power losses has been one of the reasons for engineers to be attracted by micro grid systems which include small size independent power generation units. However, in a micro grid with several DGs of different types and with all kinds of loads of variable nature, an optimal power balance in the system has to be achieved. This optimal objective, which results in minimal energy losses over a specific period of... 

    Determination of Maximum and Optimal Penetration Level of Distributed Generation in Distributed Systems

    , M.Sc. Thesis Sharif University of Technology Seydali Seyf Abad, Mohammad (Author) ; Parniani, Mostafa (Supervisor)
    Abstract
    Nowadays, development of renewable electricity generation technologies, the advent of small efficient generators and increasing number of grid-connected consumers, have caused increasing interest in energy production next to the consumers locations. Distributed generation (DG) is often defined as small-scale generators that produce several kilowatts to tens of megawatts of electricity. One primary reason for using DG is its potential to reduce power losses in transmission and distribution networks. Several loss reduction methods such as capacitor placement, network reconfiguration and load management are used in distribution systems. Employing DG results in the highest loss reduction and... 

    Performance Improvement in Direct Position Determination of Radio Transmitters

    , Ph.D. Dissertation Sharif University of Technology Hamdollahzadeh, Mohammad (Author) ; Behnia, Fereidoon (Supervisor)
    Abstract
    This work is mostly about the analysis of direct position determination (DPD) approach as an emerging approach in source localization. Different aspects of this localization has been considered and some improvement techniques has been addressed. DPD is known as a replacement for the conventional 2-step localization approach in which the location of the target is estimated via the estimation of some interface parameters such as time of arrival, angle of arrival and etc. The main focus of this thesis is on the sensor placement problem in DPD in order to find an optimal configuration for the sensors to achieve the best accuracy in the estimation process. In this regard, the formulas of the... 

    Optimal Placement of Ribbed Bracing System (RBS) in Structures Using Genetic Algorithm

    , M.Sc. Thesis Sharif University of Technology Hosseini Amirabadi, Hamed (Author) ; Golafshani, Ali Akbar (Supervisor) ; Toufigh, Vahab (Supervisor)
    Abstract
    Placement of control and bracing systems in a structure is one of the most important factors affecting the effectiveness of the system in reducing responses to earthquakes. In other words, a control system with a proven effectiveness in earthquake does not reduce the structure responses unless used with proper placement. The performance of Ribbed Bracing System (RBS) in enhancing seismic response of structures, especially in preventing the buckling of bracing under compression and removing residual displacements, is approved by analytical and experimental studies, but optimal placement of such systems in structures has not been studied yet. Hence, in this research the optimal placement... 

    Valuation of Semi Rigid Steel Frame Connection with Torsional Plate and Its Optimal Placement

    , M.Sc. Thesis Sharif University of Technology Moghadam, Amin (Author) ; Esmaeil Pourestekanch, Homayun (Supervisor)
    Abstract
    Beam to column connections affect on the performance of the steel frames. Connections are assumed pin, semi rigid or rigid based on rigidity. Previously most steel structures designed as pin or rigid connections but lately many studies have been done on structures with semi rigid connections and these studies show that semi rigid connections have excellent properties that makes this connection a superior response such as less base shear, more economic, ability to absorb more energy and etc. In this study semi rigid connection with torsional plate has been studied. In addition to previous characteristics, this connection has special properties such as simple implementation, Dimension... 

    Optimum Placement of Gas Detectors Based on Risk Assessment

    , Ph.D. Dissertation Sharif University of Technology Amir Hossein Rad (Author) ; Rashtchian, Davoud (Supervisor)
    Abstract
    Gas detection systems are now recognized as an essential component of safety in process units.but their successful performance depends strongly on the number and location of the detectors.As for the limited resources available (detectors), the placement of gas detectors can be considered as an optimization problem with different objective functions. In this research, an attempt was made to provide models and methods that quantitatively and from a practical point of view to optimum locate the detectors. Initially, a risk-based method was presented that defines the necessary steps for the arrangement of fire gas detectors with the aim of covering the maximum risk of leakage scenarios (risk:... 

    Resilience-based framework for switch placement problem in power distribution systems

    , Article IET Generation, Transmission and Distribution ; Volume 12, Issue 5 , March , 2018 , Pages 1223-1230 ; 17518687 (ISSN) Zare Bahramabadi, M ; Abbaspour, A ; Fotuhi Firuzabad, M ; Moeini Aghtaie, M ; Sharif University of Technology
    Institution of Engineering and Technology  2018
    Abstract
    Optimal placement of switches can play a key role in providing resilience to power distribution systems against major faults caused by natural disasters. This study presents a resilience-based framework for optimal switch placement in distribution systems being consistent with the expansion plans of distributed generation units. At first, the impact of hurricanes on distribution system components is modelled using the geographic information system of distribution grid and the strength of components against extreme weather-related events. Then, a new resiliency index is proposed to assess the resilience of distribution grids. This index is involved in a mathematical model of the switch... 

    Optimization of cellular lifi network deployment for gaussian mixture user distributions

    , Article 9th Iran Workshop on Communication and Information Theory, IWCIT 2021, 19 May 2021 through 20 May 2021 ; 2021 ; 9781665400565 (ISBN) Dastgheib, M. A ; Beyranvand, H ; Zolala, E ; Salehi, J.A ; Sharif University of Technology
    Institute of Electrical and Electronics Engineers Inc  2021
    Abstract
    The long-term performance of LiFi networks significantly depends on the location of access points. The optimized placement can be determined based on the distribution of users in the room. In this paper, we investigate the placement optimization for average throughput maximization in the presence of asymmetric distributions. In particular, we represent users' distribution in the indoor environment by the Gaussian mixture model, which is powerful and computationally convenient. Then we obtain the optimized deployment for different scenarios using gradient ascent algorithm. The results show that optimization of deployment significantly improves the average throughput of the network. As the... 

    , M.Sc. Thesis Sharif University of Technology Mahmoodzadeh, Zahra (Author) ; Ehsan, Mehdi (Supervisor)
    Abstract
    Losses are unavoidable in any parts of power systems, from generation to receiving nodes and occur in transmission and distribution networks. However, the main loss component is produced in distribution networks. Energy losses in distribution networks are about 70% of technological transport energy losses.
    Energy losses in distribution networks are an important indicator for the planning and operation of the system. A fast, reliable and accurate energy loss calculation method is required for optimal operation of the distribution networks.
    Energy loss depends on network's operating conditions. Loads values and loads factors are time variables; therefore, methods based on probability... 

    Probabilistic multistage PMU placement in electric power systems

    , Article IEEE Transactions on Power Delivery ; Vol. 26, issue. 2 , 2011 , p. 841-849 ; ISSN: 08858977 Aminifar, F ; Fotuhi-Firuzabad, M ; Shahidehpour, M ; Khodaei, A ; Sharif University of Technology
    Abstract
    This paper presents an optimization model for the calculation of the minimum number of phasor measurement units (PMUs) in electrical power networks. The problem constraint is a predefined probability of observability associated with each bus. The mixed-integer programming is used for the proposed optimization and an efficient linearization technique is proposed to convert the nonlinear function representing the probability of observability into a set of linear expressions. The PMU placement is staged in a multi-year planning horizon due to financial and physical constraints. The average probability of observability is maximized at the intermediate planning stages, subject to a limited number... 

    Probabilistic multistage PMU placement in electric power systems

    , Article IEEE Transactions on Power Delivery ; Volume 26, Issue 2 , December , 2011 , Pages 841-849 ; 08858977 (ISSN) Aminifar, F ; Fotuhi Firuzabad, M ; Shahidehpour, M ; Khodaei, A ; Sharif University of Technology
    2011
    Abstract
    This paper presents an optimization model for the calculation of the minimum number of phasor measurement units (PMUs) in electrical power networks. The problem constraint is a predefined probability of observability associated with each bus. The mixed-integer programming is used for the proposed optimization and an efficient linearization technique is proposed to convert the nonlinear function representing the probability of observability into a set of linear expressions. The PMU placement is staged in a multi-year planning horizon due to financial and physical constraints. The average probability of observability is maximized at the intermediate planning stages, subject to a limited number... 

    Optimizing operation indices considering different types of distributed generation in microgrid applications

    , Article Energies ; Volume 11, Issue 4 , 2018 ; 19961073 (ISSN) Ghanbari, N ; Mokhtari, H ; Bhattacharya, S ; Sharif University of Technology
    MDPI AG  2018
    Abstract
    The need for independent power generation has increased in recent years, especially with the growing demand in microgrid systems. In a microgrid with several generations of different types and with all kinds of loads of variable nature, an optimal power balance in the system has to be achieved. This optimal objective, which results in minimal energy losses over a specific period of time, requires an optimal location and sizing of the distributed generations (DGs) in a microgrid. This paper proposes a new optimization method in which both optimal location of the DGs and their generation profile according to the load demand profile as well as the type of DG are determined during the life time... 

    Optimal placement of phasor measurement units using immunity genetic algorithm

    , Article IEEE Transactions on Power Delivery ; Volume 24, Issue 3 , 2009 , Pages 1014-1020 ; 08858977 (ISSN) Aminifar, F ; Lucas, C ; Khodaei, A ; Fotuhi Firuzabad, M ; Sharif University of Technology
    2009
    Abstract
    This paper investigates the application of immunity genetic algorithm (IGA) for the problem of optimal placement of phasor measurement units (PMUs) in an electric power network. The problem is to determine the placement sites of the minimal set of PMUs which makes the system observable. Incorporating immune operator in the canonical genetic algorithm (GA), on the condition of preserving GA's advantages, utilizes some characteristics and knowledge of the problems for restraining the degenerative phenomena during evolution, so as to improve the algorithm efficiency. This type of prior knowledge about some parts of optimal solution exists in the PMU placement problem. So, the IGA is adopted in... 

    Optimal placement of phasor measurement units: Particle swarm optimization approach

    , Article 2007 International Conference on Intelligent Systems Applications to Power Systems, ISAP ; 2007 ; 9860130868 (ISBN); 9789860130867 (ISBN) Hajian, M ; Ranjbar, A. M ; Amraee, T ; Shirani, A. R ; Sharif University of Technology
    2007
    Abstract
    This paper is concerned about the optimal placement of phasor measurement units (PMUs) so as to make a system completely observable. Observability assessment is done by the aid of the topological observability rules. Moreover a new rule is added which can decrease the number of required PMUs for complete system observability. A modified binary particle swarm is used as an optimization tool for obtaining the minimal number of PMUs and corresponding configuration. In order to improve the speed of convergence, an initial PMU placement is provided by graph-theoretic procedure. The simulation results of proposed approach are presented for several IEEE test systems  

    Reliability Assessment of DSSC devices and Optimal Placement of them with the aim of Enhancing Power System Loadability and Reliability

    , M.Sc. Thesis Sharif University of Technology Dorostkar Ghamsari, Mohammad Reza (Author) ; Fotuhi-Firuzabad, Mahmoud (Supervisor)
    Abstract
    One of the important problems in fulfilling the consumers' power demand that has been especially intensified after restructuring is transmission line congestion. To solve this problem, either new transmission lines should be constructed or the existing transmission lines should be better utilized. Construction of new transmission lines is both expensive and time consuming. Therefore, it is usually better to enhance the utilization of the existing transmission assets. FACTS devices have been introduced over the past decades to enhance power systems operation. However, wide scale deployment of them has not occurred yet due to their high initial investment cost and some other problems. In order...