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    Load profile flattening considering EV’s initial and final SoC and arrival and departure times

    , Article Iranian Journal of Electrical and Electronic Engineering ; Volume 18, Issue 4 , 2022 ; 17352827 (ISSN) Bagheri, V ; Ehyaei, A. F ; Haeri, M ; Sharif University of Technology
    Iran University of Science and Technology  2022
    Abstract
    In distribution networks, failure to smooth the load curve leads to voltage drop and power quality loss. In this regard, electric vehicle batteries can be used to smooth the load curve. However, to persuade vehicle owners to share their vehicle batteries, we must also consider the owners' profits. A challenging problem is that existing methods do not take into account the vehicle owner demands including initial and final states of charge and arrival and departure times of vehicles. Another problem is that battery capacity of each vehicle varies depending on the type of vehicle; which leads to uncertainties in the charging and discharging dynamics of batteries. In this paper, we propose a... 

    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... 

    Advanced distribution transformer asset management embracing its relocation: A cost saving approach

    , Article IET Generation, Transmission and Distribution ; Volume 16, Issue 12 , 2022 , Pages 2370-2385 ; 17518687 (ISSN) Azimi Hosseini, K ; Hajiaghapour Moghimi, M ; Hajipour, E ; Vakilian, M ; Sharif University of Technology
    John Wiley and Sons Inc  2022
    Abstract
    Change in customers' consumption patterns due to the introduction of new electricity consuming technologies into human consumption practices has impacted the existing optimal loading profile of the grid facilities. Although some MV/LV distribution transformers (DTs) are operating under a light load profile, this does not guarantee that they are in a healthy condition, since necessary maintenance procedures are required. On the other hand, many unplanned overloading conditions occur on the other DTs and causes accelerated failures which contributes to very high operational costs. This paper presents the outcome of a study on how the planned DTs relocation can save asset managers against their... 

    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... 

    A method to calculate the linear load pay back factors for air conditioners

    , Article Asia-Pacific Power and Energy Engineering Conference, APPEEC ; 2012 ; 21574839 (ISSN) ; 9781457705472 (ISBN) Ziaii, M ; Kazemi, A ; Fotuhi Firuzabad, M ; Parvania, M ; Sharif University of Technology
    Abstract
    Load pay back effect is the excess of load as a result of load curtailment, observed in direct load control programs related to thermostatically controlled appliances. In this paper, according to a stochastic difference equation, the load profile of an aggregation of customers without control will be attained. Then the assumption to consider load pay back as linear will be examined through simulations. Afterwards, based on a data structure gained from performing load curtailments at each interval, least-square method will be used to fit load pay back factors for each interval. It is notable that there are some significant differences between the results attained in this paper and what was... 

    Flexibility provision of residential energy hubs with demand response applications

    , Article IET Generation, Transmission and Distribution ; Volume 16, Issue 8 , 2022 , Pages 1668-1679 ; 17518687 (ISSN) Ostovar, S ; Moeini Aghtaie, M ; Hadi, M. B ; Sharif University of Technology
    John Wiley and Sons Inc  2022
    Abstract
    Smart grids help local distribution companies (LDCs) facilitate the communication between grid operators and residential prosumers. While the prosumers are striving to optimize their daily load profile by home energy management systems (HEMSs) deployment, the LDCs attempt to enhance the operation of the grid in an efficient way and decrease network losses. This paper attempts to develop a new bi-level probabilistic optimization framework wherein an HEMS optimizes its respective daily load profile, and determines its flexibility provision, which is communicated to an LDC. In the proposed framework, a decentralized approach is used to achieve the flexibility product, which is the modulation of... 

    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...