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    Partial shading detection and smooth maximum power point tracking of PV arrays under PSC

    , Article IEEE Transactions on Power Electronics ; Volume 31, Issue 9 , 2016 , Pages 6281-6292 ; 08858993 (ISSN) Ghasemi, M. A ; Mohammadian Forushani, H ; Parniani, M ; Sharif University of Technology
    Institute of Electrical and Electronics Engineers Inc  2016
    Abstract
    One of the most important issues in the operation of a photovoltaic (PV) system is extracting maximum power from the PV array, especially in partial shading condition (PSC). Under PSC, P-V characteristic of PV arrays will have multiple peak points, only one of which is global maximum. Conventional maximum power point tracking (MPPT) methods are not able to extract maximum power in this condition. In this paper, a novel two-stage MPPT method is presented to overcome this drawback. In the first stage, a method is proposed to determine the occurrence of PSC, and in the second stage, using a new algorithm that is based on ramp change of the duty cycle and continuous sampling from the P-V... 

    Optimization of a novel photovoltaic thermal module in series with a solar collector using Taguchi based grey relational analysis

    , Article Solar Energy ; Volume 215 , 2021 , Pages 492-507 ; 0038092X (ISSN) Kazemian, A ; Parcheforosh, A ; Salari, A ; Ma, T ; Sharif University of Technology
    Elsevier Ltd  2021
    Abstract
    The solar collectors absorb solar irradiation and then produce thermal energy; however, they cannot generate electrical power. Electricity and thermal energy can be produced by the photovoltaic thermal module, simultaneously, while the outlet temperature of the photovoltaic thermal module is not usually high enough to provide thermal requirements of a building such as hot water or space heating. This work proposes a novel compound system created by the connection of a solar collector in series with a photovoltaic thermal module to resolve the issue of low outlet temperature in the photovoltaic thermal module and lack of electrical power in solar collectors. To examine the feasibility of this... 

    Optimal distribution transformer sizing in a harmonic involved load environment via dynamic programming technique

    , Article Energy ; Volume 120 , 2017 , Pages 92-105 ; 03605442 (ISSN) Hajipour, E ; Mohiti, M ; Farzin, N ; Vakilian, M ; Sharif University of Technology
    Abstract
    Installation of a significant number of distributed generators (DGs), besides the application of non-sinusoidal loads such as; Plug-in Hybrid Electric Vehicles (PHEVs), in the emerging smart distribution networks and the industrial plants have posed a major challenge to the existing methods of optimal transformer sizing (OTS). The harmonic currents generated in these new environments not only substantially increase the transformer load losses, but also cause abnormal winding temperature rise and hence transformer excessive loss of life. Therefore, the harmonic contents of the loads currents should be accounted in choosing the appropriate size of distribution transformers. To address this... 

    Optimal design of solar concentrator in multi-energy hybrid systems based on minimum exergy destruction

    , Article Renewable Energy ; Volume 190 , 2022 , Pages 78-93 ; 09601481 (ISSN) Tavakol Moghaddam, Y ; Saboohi, Y ; Fathi, A ; Sharif University of Technology
    Elsevier Ltd  2022
    Abstract
    The paper presents a systematic approach to designing an imaging dish for a concentrator photovoltaic (CPV) system to minimize exergy destruction. The designed CPV system uniformly distributes light rays on the receiver (TPV/multi-junction PV) to enhance the conversion technology efficiency and lifetime. To this end, a parametric dish is designed using imaging optics and the numerical solution of a differential equation. Afterward, a Monte Carlo simulation is used to estimate the output energy and exergy of the CPV system with the parametric dish. Finally, an optimization algorithm finds the optimal design parameters to minimize the system's exergy destruction. The optimal design leads to a... 

    Optimal deployment of renewable electricity technologies in Iran and implications for emissions reductions

    , Article Energy ; Volume 91 , 2015 , Pages 882-893 ; 03605442 (ISSN) Aryanpur, V ; Shafiei, E ; Sharif University of Technology
    Elsevier Ltd  2015
    Abstract
    In this paper, special focus is paid to the long-term adoption of renewable electricity technologies and their implications for emissions reductions in Iran. MESSAGE, as a bottom-up energy supply optimization model, is used to assess the lowest-cost technology options. The potential impacts of transitioning to a renewable electricity supply are quantified, and the investment requirement to achieve a low-carbon generation mix is estimated. Alternative scenarios are defined to evaluate the impact of fossil fuel prices, the carbon tax and government incentives on the utilization of renewable resources, national renewable targets, and emissions reductions. The prioritization of non-hydro... 

    On the performance of inclined rooftop solar chimney integrated with photovoltaic module and phase change material: A numerical study

    , Article Solar Energy ; Volume 211 , 2020 , Pages 1159-1169 Salari, A ; Ashouri, M ; Hakkaki Fard, A ; Sharif University of Technology
    Elsevier Ltd  2020
    Abstract
    In an attempt to prolong the performance of the conventional Solar Chimney (SC) and enhance its efficiency, this contribution presents a kind of novel compound SC with the Photovoltaic (PV) module and Phase Change Material (PCM) called the SC-PV-PCM system. Using PCM not only improves the PV module performance but also extends the productive period of the SC. A three-dimensional quasi-steady computational fluid dynamics (CFD) model of the proposed system is developed. The developed model is used to investigate the effect of using PCMs with different melting points on the performance of the proposed system. It is demonstrated that the RT-50 provides superior performance among the studied... 

    Numerical study of hydrogen-air combustion characteristics in a novel micro-thermophotovoltaic power generator

    , Article Applied Energy ; Volume 199 , 2017 , Pages 382-399 ; 03062619 (ISSN) Alipoor, A ; Saidi, M. H ; Sharif University of Technology
    Elsevier Ltd  2017
    Abstract
    In the present work, a micro combustor for thermophotovoltaic (TPV) devices is proposed which is included a U-shaped microtube in a box with a secondary fluid in space between U-shaped microtube and box walls. By utilizing the three-dimensional CFD model, combustion characteristics of the premixed lean hydrogen-air mixture in the present micro combustor are studied numerically with detailed chemistry and transport taking into account heat transfer through the wall. The results show that the establishment of secondary flows and better preheating in the curved tubes is caused the flammability limits to be at least four times in comparison with straight tubes. Combustion characteristics are... 

    Numerical investigation and parametric analysis of a photovoltaic thermal system integrated with phase change material

    , Article Applied Energy ; Volume 238 , 2019 , Pages 734-746 ; 03062619 (ISSN) Kazemian, A ; Salari, A ; Hakkaki Fard, A ; Ma, T ; Sharif University of Technology
    Elsevier Ltd  2019
    Abstract
    In this paper, a comprehensive three-dimensional model of photovoltaic thermal system integrated with phase change material (PVT/PCM) is developed and simulated. The effect of some key parameters using parametric analysis on performance of PVT/PCM system with water as working fluid is investigated. Parameters considered in this study include the properties of PCM (i.e. melting temperature, enthalpy of fusion and thermal conductivity), solar radiation and mass flow rate. The parametric analysis ranges are selected according to the properties of the most of available PCMs on the market, which shows the practical application of the numerical research. Furthermore, a three-dimensional model of... 

    Numerical analysis of photovoltaic solar panel cooling by a flat plate closed-loop pulsating heat pipe

    , Article Solar Energy ; Volume 206 , 2020 , Pages 455-463 Alizadeh, H ; Alhuyi Nazari, M ; Ghasempour, R ; Shafii, M. B ; Akbarzadeh, A. A ; Sharif University of Technology
    Elsevier Ltd  2020
    Abstract
    Photovoltaic (PV) panels provide a suitable way for the direct conversion of solar energy into electricity. The electrical output and efficiency of PV modules are dependent on working temperature. The present study contributes to investigate the efficiency of utilizing a flat plate closed-loop pulsating heat pipe (CLPHP) to cool down a PV panel in both thermal and economic aspects. Accordingly, a numerical investigation is employed to obtain the surface temperature and electrical gain of the PV panel through four scenarios, including natural cooling without additional equipment, CLPHP-based passive cooling, CLPHP-based active cooling, and a conventional flat plate cooling methods. The... 

    Nonlinear adaptive control of grid-connected three-phase inverters for renewable energy applications

    , Article International Journal of Control ; 2015 ; 00207179 (ISSN) Mahdian Dehkordi, N ; Namvar, M ; Karimi, H ; Piya, P ; Karimi Ghartemani, M ; Sharif University of Technology
    Abstract
    Distributed generation (DG) units are often interfaced to the main grid using power electronic converters including voltage-source converters (VSCs). A VSC offers dc/ac power conversion, high controllability, and fast dynamic response. Because of nonlinearities, uncertainties, and system parameters’ changes involved in the nature of a grid-connected renewable DG system, conventional linear control methods cannot completely and efficiently address all control objectives. In this paper, a nonlinear adaptive control scheme based on adaptive backstepping strategy is presented to control the operation of a grid-connected renewable DG unit. As compared to the popular vector control technique, the... 

    Nonlinear adaptive control of grid-connected three-phase inverters for renewable energy applications

    , Article International Journal of Control ; Volume 90, Issue 1 , 2017 , Pages 53-67 ; 00207179 (ISSN) Mahdian Dehkordi, N ; Namvar, M ; Karimi, H ; Piya, P ; Karimi Ghartemani, M ; Sharif University of Technology
    Abstract
    Distributed generation (DG) units are often interfaced to the main grid using power electronic converters including voltage-source converters (VSCs). A VSC offers dc/ac power conversion, high controllability, and fast dynamic response. Because of nonlinearities, uncertainties, and system parameters’ changes involved in the nature of a grid-connected renewable DG system, conventional linear control methods cannot completely and efficiently address all control objectives. In this paper, a nonlinear adaptive control scheme based on adaptive backstepping strategy is presented to control the operation of a grid-connected renewable DG unit. As compared to the popular vector control technique, the... 

    Multi-input high step-up inverter with softswitching capability, applicable in photovoltaic systems

    , Article IET Power Electronics ; Volume 13, Issue 1 , 2020 , Pages 133-143 Babaei, E ; Tarzamni, H ; Tahami, F ; Khoun Jahan, H ; Bannae Sharifian, M. B ; Sharif University of Technology
    Institution of Engineering and Technology  2020
    Abstract
    In this study, a new multi-input high step-up inverter, based on isolated soft-switching DC-DC converter blocks is proposed. Each of these blocks can provide zero-voltage and zero-current switching for its semiconductors, which improve power efficiency. The interesting feature of this DC-DC converter is using bidirectional switches to generate both positive and negative output voltage levels in each DC-DC block with an appropriate control scheme. Each DC-DC converter operates by simple pulse width modulation control through fixed frequency and has two degrees of freedom, which provide the capability of output voltage regulation or maximum power point tracking. The proposed inverter consists... 

    Modeling and techno-economic study of a solar reverse osmosis desalination plant

    , Article International Journal of Environmental Science and Technology ; Volume 19, Issue 9 , 2022 , Pages 8727-8742 ; 17351472 (ISSN) Ebrahimpour, B ; Hajialigol, P ; Boroushaki, M ; Shafii, M. B ; Sharif University of Technology
    Springer Science and Business Media Deutschland GmbH  2022
    Abstract
    In this research, the design of a solar reverse osmosis desalination plant was investigated by integrating various components using TRNSYS and ROSA software. To this goal, a two-stage reverse osmosis system with 50% recovery in the city of Chabahar was modeled. The calculations were performed in three different case studies, i.e., a photovoltaic power plant, a solar collector power plant with Organic Rankine Cycles, and a photovoltaic thermal power plant with Organic Rankine Cycles, with the reverse osmosis desalination plant being a novel investigation. Water production and electrical energy generation of each case study were evaluated both on a daily and yearly bases. The simulation... 

    Introducing a novel method for improving the design of off-grid photovoltaic systems

    , Article 2019 Smart Gird Conference, SGC 2019, 18 December 2019 through 19 December 2019 ; 2019 ; 9781728158945 (ISBN) Davoudi, M ; Moeini Aghtaie, M ; Mosaddegh, H. R ; Sharif University of Technology
    Institute of Electrical and Electronics Engineers Inc  2019
    Abstract
    Using the potential of off-grid photovoltaic systems is a feasible way to supply electrical energy to locations which are far from the national electricity grid. In the design process of these systems, it is important to choose an appropriate capacity of these panels, since it should be able to steadily supply energy in all-weather conditions, especially cloudy days. In the conventional algorithm to design these panels and determine the capacity of these photovoltaic arrays, the number of cloudy days is not considered. Thus, in this papers, a new method is introduced in order to find out the appropriate capacity of off-grid photovoltaic arrays in the planning process of these systems. © 2019... 

    Incorporating large photovoltaic farms in power generation system adequacy assessment

    , Article Scientia Iranica ; Vol. 21, issue. 3 , 2014 , p. 924-934 ; 10263098 Ghaedi, A ; Abbaspour, A ; Fotuhi-Friuzabad, M ; Parvania, M ; Sharif University of Technology
    Abstract
    Recent advancements in photovoltaic (PV) system technologies have decreased their investment cost and enabled the construction of large PV farms for bulk power generations. The output power of PV farms is affected by both failure of composed components and solar radiation variability. These two factors cause the output power of PV farms be random and different from that of conventional units. Therefore, suitable models and methods should be developed to assess different aspects of PV farms integration into power systems, particularly from the system reliability viewpoint. In this context a reliability model has been developed for PV farms with considering both the uncertainties associated... 

    Improving transparency in dye-sensitized nanostructured solar cells by optimizing nano-porous titanium dioxide photo-electrode

    , Article Journal of Materials Science: Materials in Electronics ; Volume 28, Issue 11 , 2017 , Pages 7811-7818 ; 09574522 (ISSN) Nikfarjam, A ; Mohammadpour, R ; Kasaeian, A ; Zebhi, Z ; Sharif University of Technology
    Springer New York LLC  2017
    Abstract
    Today’s the technology based on dye-sensitized solar cells (DSSCs) has an important role in all photovoltaic system technologies. DSSCs can generate electricity with various degrees of transparency; this makes it suitable for use in various industries, especially in construction industry as smart windows. In fact DSSC can produce electricity and having natural light, simultaneously. It is obvious that DSSCs need to absorb solar radiation as much as possible. Since, the effective use of all incident lights leads to an increase in cell efficiency and this increase in efficiency is related to the amount of dye adsorbed on the surface of nanostructured electrode, so higher amount of dye for... 

    Improving the performance of the finned absorber inclined rooftop solar chimney combined with composite PCM and PV module

    , Article Solar Energy ; Volume 228 , 2021 , Pages 562-574 ; 0038092X (ISSN) Ashouri, M ; Hakkaki Fard, A ; Sharif University of Technology
    Elsevier Ltd  2021
    Abstract
    Solar Chimney (SC) can play a significant role in energy consumption reduction of ventilation applications. The primary purpose of this study is to ameliorate the performance of an inclined rooftop SC integrated with the Phase Change Material (PCM) and Photovoltaic (PV) module, called the SC-PCM-PV system. To this aim, the effects of using finned absorbers and composite PCMs on the performance of the SC-PCM-PV system are investigated for the first time. A 3D-CFD model is developed via the finite volume method to examine the impact of various design parameters, including fin number, fin thickness, PCM type, and PCM mass on natural ventilation duration, ventilation capacity, and power output.... 

    Impact of solar energy on the integrated operation of electricity-gas grids

    , Article Energy ; Volume 183 , 2019 , Pages 844-853 ; 03605442 (ISSN) Badakhshan, S ; Hajibandeh, N ; Shafie khah, M ; Catalão, J. P. S ; Sharif University of Technology
    Elsevier Ltd  2019
    Abstract
    Photovoltaic energy is one of the clean and efficient energies which has been developing quickly in the last years. As the penetration of solar plants is increasing in the electricity network, new problems have arisen in network operation. This paper models a high penetration factor of solar energy in the electricity network and investigates the impact of solar energy growth on both the generation schedule of different power plants and in the natural gas transmission network. Fuel management of gas power plants is modeled through simulation of the natural gas transmission network. To this end, an increase in the penetration of solar energy in the electricity network inevitably leads to a... 

    Hole transport material based on modified N-annulated perylene for efficient and stable perovskite solar cells

    , Article Solar Energy ; Volume 194 , 2019 , Pages 279-285 ; 0038092X (ISSN) Sheibani, E ; Amini, M ; Heydari, M ; Ahangar, H ; Keshavarzi, R ; Zhang, J ; Mirkhani, V ; Sharif University of Technology
    Elsevier Ltd  2019
    Abstract
    N-annulated perylene based materials show outstanding and tunable optical and physical properties, making them suitable to be charge transport materials for optoelectronic applications. However, this type of materials has so far not been well studied in solar cells. Here, we develop a new hole transport material (HTM), namely S5, based on perylene building block terms, for organic-inorganic hybrid perovskite solar cells (PSCs). We have systematically studied the influences of the film thickness of S5 on their photovoltaic performance, and a low concentration of S5 with a thinner HTM film is favorable for obtaining higher solar cell efficiency. S5 shows excellent energy alignment with... 

    Harmonic analysis of common-mode voltage in quasi-z-source inverters

    , Article 2019 IEEE International Conference on Industrial Technology, ICIT 2019, 13 February 2019 through 15 February 2019 ; Volume 2019-February , 2019 , Pages 1778-1783 ; 9781538663769 (ISBN) Noroozi, N ; Yaghoubi, M ; Davoodi, A ; Ouni, S ; Zolghadri, M ; Sharif University of Technology
    Institute of Electrical and Electronics Engineers Inc  2019
    Abstract
    In a transformerless grid-connected photovoltaic system, many issues arise from the leakage current flow into the ground, as EMI problems. The leakage current is originated from the common-mode voltage fluctuations. In this paper, the common-mode voltage harmonics in a three-phase quasi-Z-source inverter are analyzed using Fourier transform and a closed-loop formulation is presented for the harmonics value. The shoot-through mode in a quasi-Z-source inverter causes extra fluctuations in the common-mode voltage comparing to a classic inverter. The proposed harmonic analysis method provides a systematic way to figure out how shoot-through mode and also other parameters affect the common-mode...