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    Optimal operation strategy of virtual power plant considering EVs and ESSs

    , Article Scheduling and Operation of Virtual Power Plants: Technical Challenges and Electricity Markets ; 2022 , Pages 257-297 ; 9780323852685 (ISBN); 9780323852678 (ISBN) Kabirifar, M ; Pourghaderi, N ; Moeini Aghtaie, M ; Sharif University of Technology
    Elsevier  2022
    Abstract
    The growing utilization rate of electric vehicles (EVs) because of their advantages, like environmental pollutant reduction, may bring challenges to power systems for the reason of considerable charging load and random nature of their net load consumption. However, aggregation and coordination of EVs (especially EVs with vehicle-to-grid (V2G) capability) offer new opportunities to grid operators by providing the possibility of charging/discharging cycle control of their batteries. On the other hand, energy storage systems (ESSs) are one of the most applicable distributed energy resources (DERs) with growing penetration level in the last decades. The optimal coordination and schedule of ESSs,... 

    Design and Simulation Hybrid Energy Storage Systems for Electric Urban Rail Transport Systems

    , M.Sc. Thesis Sharif University of Technology Heydari, Mohammad (Author) ; Zolghadri, Mohammad Reza (Supervisor)
    Abstract
    In urban rail transport systems such as subway, Trains are constantly accelerate and brake, so the braking system is of great importance in energy consumption and constitute about 30 to 40 percent of total energy consumption trains, thus retrieval braking energy will lead to significant savings in urban rail transport systems. In this paper, in the beginning, different storage equipments for storage braking energy have been studied and compared and finally Supercapacitors due to technical and economic features have been selected for the storge of equipment. These systems can be implemented in both stationary and onboard. For precise evaluation and select the appropriate storage system, by... 

    Investigating the impacts of energy storage systems on transmission expansion planning

    , Article 2017 25th Iranian Conference on Electrical Engineering, ICEE 2017, 2 May 2017 through 4 May 2017 ; 2017 , Pages 1199-1203 ; 9781509059638 (ISBN) Mazaheri, H ; Abbaspour, A ; Fotuhi Firuzabad, M ; Farzin, H ; Moeini Aghtaie, M ; Sharif University of Technology
    Abstract
    Increased electricity demand coupled with investment in renewable-based generating units has resulted in problems such as transmission congestion and load shedding in modern power systems. In this situation, transmission expansion planning (TEP) studies plays a key role in dealing with the aforementioned problems. On the other hand, deployment of energy storage systems (ESSs) has been regarded as a viable solution for effective exploitation of renewable resources. In this context, this paper develops a novel framework to investigate the impacts of storage facilitates on the transmission expansion planning problem. The presented framework is decomposed to investment and operation subproblems... 

    Economically based distributed battery energy storage systems planning in microgrids

    , Article 26th Iranian Conference on Electrical Engineering, ICEE 2018, 8 May 2018 through 10 May 2018 ; 2018 , Pages 1257-1263 ; 9781538649169 (ISBN) Habibifar, R ; Karimi, M. R ; Ranjbar, H ; Ehsan, M ; Sharif University of Technology
    Institute of Electrical and Electronics Engineers Inc  2018
    Abstract
    Nowadays, the energy storage systems (ESSs) are widely used in different level of power systems for dealing with the challenges caused by the integration of renewable energy sources (RESs). Among the ESSs, batteries are more suitable for being used in microgrids (MGs) at distribution level due to their special features. Therefore, this paper presents a novel approach for planning of distributed battery energy storage systems (BESSs) to enhance MGs operation, economically. The model is formulated as a mixed integer nonlinear programming problem (MINLP) and considers various types of BESSs. In order to verify the effectiveness of the proposed approach, it is applied to the IEEE 33-bus network... 

    Predictive utilization of energy storage for wind power fluctuation mitigation

    , Article 26th Iranian Conference on Electrical Engineering, ICEE 2018, 8 May 2018 through 10 May 2018 ; 2018 , Pages 1332-1336 ; 9781538649169 (ISBN) Kazari, H ; Oraee, H ; Sharif University of Technology
    Institute of Electrical and Electronics Engineers Inc  2018
    Abstract
    Deployment of battery energy storage system (BESS) is a viable option to alleviate the inherent power fluctuation of wind farms. In this paper, a novel model predictive control (MPC) scheme is presented in order to control the BESS dispatch in an integrated wind farm. The constraints of BESS are formulated and are taken into account in optimization problem. The predictive control is based on receding horizon which shows robustness and improved performance compared to the conventional BESS control strategies. The objective function is defined in order to minimize the deviation of wind power production relative to the scheduled production. The results showed the effectiveness of the proposed... 

    A scenario-based planning framework for energy storage systems with the main goal of mitigating wind curtailment issue

    , Article International Journal of Electrical Power and Energy Systems ; Volume 104 , 2019 , Pages 414-422 ; 01420615 (ISSN) Saber, H ; Moeini Aghtaie, M ; Ehsan, M ; Fotuhi Firuzabad, M ; Sharif University of Technology
    Elsevier Ltd  2019
    Abstract
    This paper provides a new multi-objective (MO) framework for expansion studies of energy storage systems (ESSs) in high wind penetrated power system. The proposed approach well considers the issues originated from the wind power curtailment via introducing expected of wind curtailment cost as an objective function of the studies. All other imposed costs of installing storage units are modeled as expected of total social cost. Also, the effect of uncertainties is modeled through an internal scenario analysis. In this regard, two criteria including maximum regrets of wind curtailment cost and total social cost are considered as the other objectives of the proposed MO optimization procedure.... 

    A scenario-based planning framework for energy storage systems with the main goal of mitigating wind curtailment issue

    , Article International Journal of Electrical Power and Energy Systems ; Volume 104 , 2019 , Pages 414-422 ; 01420615 (ISSN) Saber, H ; Moeini Aghtaie, M ; Ehsan, M ; Fotuhi Firuzabad, M ; Sharif University of Technology
    Elsevier Ltd  2019
    Abstract
    This paper provides a new multi-objective (MO) framework for expansion studies of energy storage systems (ESSs) in high wind penetrated power system. The proposed approach well considers the issues originated from the wind power curtailment via introducing expected of wind curtailment cost as an objective function of the studies. All other imposed costs of installing storage units are modeled as expected of total social cost. Also, the effect of uncertainties is modeled through an internal scenario analysis. In this regard, two criteria including maximum regrets of wind curtailment cost and total social cost are considered as the other objectives of the proposed MO optimization procedure.... 

    Expansion planning studies of independent-locally operated battery energy storage systems (BESSs): A CVaR-Based study

    , Article IEEE Transactions on Sustainable Energy ; Volume 11, Issue 4 , 2020 , Pages 2109-2118 Saber, H ; Heidarabadi, H ; Moeini Aghtaie, M ; Farzin, H ; Karimi, M. R ; Sharif University of Technology
    Institute of Electrical and Electronics Engineers Inc  2020
    Abstract
    Nowadays, the high penetration of renewable energy resources, with variable and unpredictable nature, poses major challenges to operation and planning studies of power systems. Employing energy storage systems (ESSs) has been introduced as an effective solution to alleviate these challenges. Several studies have been presented in the literature to provide a framework for expansion planning studies of ESSs. However, they usually have two main drawbacks: i) ignoring the positive effect of independent-locally operated ESSs on the bulk power system preferences, ii) inability to model the charge/discharge schedule of independent-locally operated ESSs based on their investors' acceptable risk... 

    Battery energy storage systems and demand response applied to power system frequency control

    , Article International Journal of Electrical Power and Energy Systems ; Volume 136 , 2022 ; 01420615 (ISSN) Hosseini, S.A ; Toulabi, M ; Ashouri Zadeh, A ; Ranjbar, A. M ; Sharif University of Technology
    Elsevier Ltd  2022
    Abstract
    In this paper, several new control strategies for employing the battery energy storage systems (BESSs) and demand response (DR) in the load frequency control (LFC) task are proposed. In this way, first, the unit commitment problem considering the BESSs’ constraints in presence of wind farms and responsive loads is solved and the best location and the optimal size of the BESSs as well as the regulation power of the responsive loads are obtained. A rule-based plan is then suggested to improve the frequency regulation considering participation of wind farms. This plan is takes into account different states associated with power system frequency response as well as BESSs’ state of charge (SOC).... 

    Design a Comprehensive Framework for Distribution System Restoration in the Presence of Distributed Generations and Energy Storage Systems

    , Ph.D. Dissertation Sharif University of Technology Riahinia, Shahin (Author) ; Abbaspour Tehrani Fard, Ali (Supervisor) ; Moeini Aghtaie, Moein (Co-Supervisor)
    Abstract
    This thesis presents a stochastic framework to properly involve the uncertainties associated with demand in distribution system restoration (DSR) problem. The restoration process returns the system back to normal operation after any combination of system components have been lost due to an outage. During restoration, the system operator executes a set of actions that progressively mitigate the outage. These actions aim at minimizing the impact of the outage on the final user without compromising the security and operability of the system. In this framework, dynamic programming (DP) is used to solve DSR problem for a distribution system that accommodates various technologies of DG units and... 

    Planning of Energy Storage Systems in the Restructured Environment by Considering Uncertainties

    , M.Sc. Thesis Sharif University of Technology Barkom, Ehsan (Author) ; Ehsan, Mahdi (Supervisor)
    Abstract
    Energy storage is a pivotal technology to dealing with increasing demand for reliability and challenges of renewable energy integration. This thesis provides a benders decomposition framework for expansion studies of energy storage systems (ESSs) in high wind penetrated power system and uncertainties of wind farms expansion and wind speed. This work proposes probabilistic and robust approaches to determine the optimal location and size of storage devices to reduse wind curtailment. The proposed methodologies are implemented on the modified IEEE 73-bus test system and their anticipated applicability are compared to each other and well verified  

    Developing a New Framework for Expansion Studies of Energy Storage Systems Considering Reconfiguration Capability of Network

    , M.Sc. Thesis Sharif University of Technology Mehrabi, Mohammad (Author) ; Abbaspour Tehranifard, Ali (Supervisor) ; Moeini, Moein (Supervisor)
    Abstract
    Proliferation of distributed energy resources and the developing of smart grid concepts are of a great importance. This, however, influences the future of power systems and necessitates more studies in order to cope with the changes. In this regard, uncontrollability issues are arised by introducing the renewable energy resources in the power systems. To address this issue, energy storage systems are used to mitigate negative consequences of using renewable energy resources. Accordingly, in this thesis, a new framework for determining the capacity and location of the energy storage systems is proposed. In addition, reconfiguration of distribution network is also concerned in order to... 

    Planning Resources in a Micro-Grid Considering Flexibility Concept

    , M.Sc. Thesis Sharif University of Technology Kamrani, Farshid (Author) ; Abbaspour, Ali (Supervisor) ; Fotuhi-Firuzabad, Mahmud (Co-Supervisor)
    Abstract
    In recent decades, attention to renewable energy sources has been increased, and these resources will be an integral part of power systems in the future. Meeting the equilibrium point between power consumption and power generation at the power grid is of paramount importance. However, the equilibrium point is not solely dependent on the decisions of consumers and generation units and is influenced by other parameters as well. In this regard, penetration of renewable energies into the power system can affect this equilibrium point. These sources have random behavior, which will determine the future structure of the electricity grid. These sources can also change the shape of the network net... 

    Using Machine Learning Methods to Determine Extreme Weather-Related Outage Scenarios for Optimal Siting and Sizing of Distributed Generation and Energy Storage Facilities to Enhance Distribution Network Resiliencey

    , M.Sc. Thesis Sharif University of Technology Mohammad Yari, Mohammad (Author) ; Hosseini, Hamid (Supervisor)
    Abstract
    Natural disasters such as storms, earthquakes, floods, etc. are among the factors that can damage the elements of the power grid and cause them to leave the grid. The result of these outages will be a widespread power outage, which will create many economic and social problems. Therefore, in recent years, the concept of resiliencey has been introduced in power system studies, which examines the extensive outputs in the network as a result of natural disasters.One way to improve the power system resiliency is to strengthen the network by upgrading existing equipment, installing new equipment, and modifying the operation of the network. Among these, the installation of distributed generation... 

    Advanced bidding strategy for participation of energy storage systems in joint energy and flexible ramping product market

    , Article IET Generation, Transmission and Distribution ; Volume 14, Issue 22 , November , 2020 , Pages 5202-5210 Khoshjahan, M ; Moeini Aghtaie, M ; Fotuhi Firuzabad, M ; Dehghanian, P ; Mazaheri, H ; Sharif University of Technology
    Institution of Engineering and Technology  2020
    Abstract
    Recently, power system operators have initiated procurement of a new service in electricity markets named flexibleramping product (FRP). With the main goal of enhancing the grid flexibility, this product can provide a remarkable opportunity foran enhanced short-term profitability. Energy storage systems (ESSs) with high ramping capability can leverage their profitabilitywhen properly participating in this market. This study introduces a stochastic optimisation framework for participation of ESSs inthe FRP market. The proposed model formulates the optimal bidding strategy of ESSs considering the real-time energy, flexibleramp-up and ramp-down marginal price signals and the associated... 

    Design of a PCM storage system for a solar absorption chiller based on exergoeconomic analysis and genetic algorithm

    , Article International Journal of Refrigeration ; Volume 36, Issue 1 , 2013 , Pages 88-101 ; 01407007 (ISSN) Godarzi, A. A ; Jalilian, M ; Samimi, J ; Jokar, A ; Vesaghi, M. A ; Sharif University of Technology
    2013
    Abstract
    In this article, a solar absorption chiller used in MehrAbad region of Tehran, Iran is optimized with exergoeconomic principles and genetic algorithm. After optimizing, a storage system with Phase Change Material technique (PCM) is designed for this optimum configuration for supporting system when sunshine is not received adequately, especially at night. Exergoeconomic analysis is based on finding some ways to improving the performance of a thermal system considering economic constrains. In this study, the exergoeconomic optimization is applied for LiBr-water absorption. The results show that total investment cost of main system, the whole of system except storage system, has increased... 

    The plug-in electric vehicles for power system applications: The vehicle to grid (V2G) concept

    , Article 2012 IEEE International Energy Conference and Exhibition, ENERGYCON 2012 ; 2012 , Pages 1101-1106 ; 9781467314541 (ISBN) Hosseini, S. S ; Badri, A ; Parvania, M ; Sharif University of Technology
    2012
    Abstract
    The emergence and implementation of advanced smart grid technologies will enable enhanced utilization of electric vehicles (EVs) as mobile energy storage devices which can provide system-wide services. With significant penetration of EVs in the near future, the concept, introduced in literature as vehicle to grid (V2G), will be practically possible. The V2G concept eases the integration of renewable energy into power system and gives new force to inevitable move toward power generation by clean energy resources. Therefore utilizing energy storage in EVs is undeniable due to economic and environment benefits. The V2G concept has been the field of many researches in different aspects so far.... 

    Stochastic capacity expansion planning of remote microgrids with wind farms and energy storage

    , Article IEEE Transactions on Sustainable Energy ; Volume 6, Issue 2 , February , 2015 , Pages 491-498 ; 19493029 (ISSN) Hajipour, E ; Bozorg, M ; Fotuhi Firuzabad, M ; Sharif University of Technology
    Institute of Electrical and Electronics Engineers Inc  2015
    Abstract
    A majority of remote power systems are going to be supplied by diesel-renewable resources such as wind and photovoltaic energy in the future. However, the unpredictable nature of wind generation increases the concern about the reliable operation of these isolated microgrids. Using energy storage systems (ESSs) is recently accepted as an efficient solution to the volatility and intermittency of renewable energy sources. In this paper, a stochastic programming based on the Monte Carlo approach is introduced for optimal planning of remote systems. So far, most literatures have focused exclusively on the energy storage initial sizing. However, capacity expansion of ESS through the time span can... 

    Reliability improvement of power system utilizing BESS with wind farm

    , Article 2015 IEEE 15th International Conference on Environment and Electrical Engineering, EEEIC 2015 - Conference Proceedings, 10 June 2015 through 13 June 2015 ; 2015 , Pages 1120-1125 ; 9781479979936 (ISBN) Shahooei, Z ; Fotuhi-Firuzabad, M ; Abbaspour, A ; Sharif University of Technology
    Institute of Electrical and Electronics Engineers Inc  2015
    Abstract
    In this paper, the effect of wind power generation on power system reliability is investigated. Furthermore, reliability improvement of power system using integrated battery energy storage system and wind farm will be evaluated. Growing demand for electrical energy, gradual diminishing of fossil fuel resources and environmental pollution due to continuous exploitation of them, have led to inevitable change of energy sources in power generation. Due to the random nature of wind speed, the power output of a wind farm is fluctuating; as a result, it does not have a proper control capability. The growing penetration of wind power generation in power system could cause various problems in... 

    Optimal sizing of distributed energy storage in distribution systems

    , Article 2015 Smart Grid Conference, SGC 2015, 23 December 2015 through 24 December 2015 ; 2017 , Pages 60-65 ; 9781509003693 (ISBN) Karimi Gharigh, M. R ; Seydali Seyf Abad, M ; Nokhbehzaeem, J ; Safdarian, A ; Sharif University of Technology
    Institute of Electrical and Electronics Engineers Inc  2017
    Abstract
    In future smart grids, energy storage systems (EESs) are expected to play an indispensable role in balancing continuous load changes arising from customers' life-style as well as varying output of intermittent energy resources. This, however, needs significant investment that should be justified prior to their implementation. This paper presents a model to find the optimal capacity for ESSs in distribution systems. The model aims at maximizing system owner profit by reducing total electricity procurement costs. The model is formulated as a mixed integer non-linear programming problem. Due to the complexity and large size of the problem, a decouplebased method is proposed wherein optimal...