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Journal articles on the topic 'Photovoltaic System Model'

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1

Anis, Wagdy R., and M. Abdul-Sadek Nour. "Switching model photovoltaic pumping system." Journal of Power Sources 47, no. 1-2 (1994): 35–43. http://dx.doi.org/10.1016/0378-7753(94)80048-0.

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2

Fan, Zijian, and Xiao Wei. "Analysis of energy storage optimization configuration based on the new rural energy system." Journal of Physics: Conference Series 2903, no. 1 (2024): 012035. https://doi.org/10.1088/1742-6596/2903/1/012035.

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Abstract Due to the influence of weather factors, distributed photovoltaics exhibit a characteristic of high output in the afternoon and low output in the evening, resulting in an imbalanced supply and demand of rural electricity, a low utilization rate of distributed photovoltaics, and slow progress in poverty alleviation in rural areas. This paper proposes a distributed energy storage optimization configuration model that takes into account various factors such as rural household electricity consumption, aquaculture load power supply characteristics, distributed photovoltaic output character
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3

Nakada, Takeshi, Cao Dong-Hui, Makoto Kimura, and Hsien Chi-Yu. "Study on Optical Servo System (Modelling for Photovoltaic Effect in PLZT Element)." Journal of Robotics and Mechatronics 5, no. 4 (1993): 338–43. http://dx.doi.org/10.20965/jrm.1993.p0338.

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This paper deals with the design of an electrical model for the photovoltaic effect in a PLZT element to estimate, in advance, the performance of an optical actuator consisting of PLZT elements. The results of the basic experiment on the photovoltaic effect are shown, and they indicate that a parallel circuit including a current source, a resistance and a capacitance may be applicable to an electrical model for the photovoltaic effect, under the consideration of the lumped system. Then, the step response of the photovoltage is obtained theoretically according to the electrical model proposed.
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4

Wu, Ligui, Benhong Wang, Peng Zhang, Yiming Ke, Fangqing Zhang, and Jiang Guo. "Wind–Photovoltaic–Hydropower Joint Output Model Study Based on Probability Distribution and Correlation Analysis." Energies 18, no. 10 (2025): 2511. https://doi.org/10.3390/en18102511.

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To maximize the consumption of renewable energy and improve the reliability of power systems, the development of wind–photovoltaic–hydropower complementary power systems is promising, utilizing the dynamic regulation characteristics of hydropower. Firstly, the complementarity of wind–photovoltaic–hydropower is analyzed, where output characteristics of wind, photovoltaics, and hydropower are introduced, and output models related to wind speed, light intensity, and water level are established. Furthermore, the probability distribution of wind and photovoltaic output is calculated with the maximu
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Zhang, Lidong, Shuwen Zhang, and Chunyi Guo. "Stabilization domain study of islanded photovoltaic via MMC-HVDC transmission system." Journal of Physics: Conference Series 2993, no. 1 (2025): 012006. https://doi.org/10.1088/1742-6596/2993/1/012006.

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Abstract The large-scale integration of renewable energy can promote cleaner and lower-carbon energy utilization; however, it adversely affects the safe and stable operation of the power system. To address this issue, this paper first establishes a mathematical model and state-space model for islanded photovoltaics via the MMC-HVDC transmission system. Subsequently, it integrates considerations of steady-state electrical parameters and small-signal stability to propose a method for calculating the system’s stability domain. Based on this, the study investigates the stability domain of islanded
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Cai, Gaoyuan, Bingbing Li, Liqun Liu, Zhen Zhao, Lulu Han, and Youfu Lai. "Simulation of distributed photovoltaic power generation system." E3S Web of Conferences 394 (2023): 01013. http://dx.doi.org/10.1051/e3sconf/202339401013.

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Combined with the operation characteristics of photovoltaic power generation system, the mathematical model and simulation model are established, and the control strategy of bipolar inverter with wide output characteristics and the maximum power point tracking (MPPT) control method of conductance increment method are designed. The maximum power output and stable operation of distributed photovoltaic power generation system are realized. The simulation results show that the photovoltaic power generation system model established in this paper can effectively reflect the characteristics of distri
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7

Dong, Quan, Zhi Xin Wang, and Juan Xu. "Practical Model Educed and Simulation of Photovoltaic Power System." Advanced Materials Research 608-609 (December 2012): 122–27. http://dx.doi.org/10.4028/www.scientific.net/amr.608-609.122.

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According to the photovoltaic working principle,the math model is established, because some parameters of the model are difficultly obtained in actual work, its application is limited. Considering that in pactice certain paramaters may be not obtained, the photovoltaic math model is properly simplified, thus the applied model is educed. For the exporting power of photovoltaic cell, the control model is established based dq coordinates. Calculating of simulation shows the model can be used in practice, it has practicability.
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Zhong, Qian Wen, Yang Xu, Jie Yang, and Zhuo Meng. "PV Array Mathematical Model Optimization Based on Monitoring Data." Applied Mechanics and Materials 376 (August 2013): 336–40. http://dx.doi.org/10.4028/www.scientific.net/amm.376.336.

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The type of Solar panels in photovoltaic power generating system is generally photovoltaic array. On the basis of the photovoltaic array mathematical model for engineering , using the mathematical software MATLAB Simulink tool to build a photovoltaic array simulation model and utilizing monitoring data acquired by the detection system-Sunny Sensor Box-for Donghua University photovoltaic power generating system, the mathematical model of the PV array for engineering is optimized and the optimization includes linear and natural exponential optimization. Furthermore, higher accuracy of the optimi
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9

He, Qingsu, Muqing Wu, Pei Sun, et al. "Research on Charging Mechanism of Electric Vehicle Biased to Photovoltaic Nearby Absorption Strategy." Electronics 11, no. 20 (2022): 3407. http://dx.doi.org/10.3390/electronics11203407.

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With the promotion of the pilot development of distributed whole county roof photovoltaics in China, problems such as power consumption, energy regional balance, and grid stability have become prominent. In this paper, an application mode of electric vehicle (EV) charging network and distributed photovoltaic power generation local consumption is studied. The management idea of two-layer and four model has been established, including the regional distributed photovoltaic output model, electricity consumption model, EV consumption model, and regional grid load dispatching model, which can realiz
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10

Wang, Xinjie, Fei Lu, and Jiahan Huang. "Closed-loop photovoltage control of lead lanthanum zirconate titanate ceramic for photovoltaic-electrostatic-driven servo system." Journal of Intelligent Material Systems and Structures 28, no. 18 (2017): 2572–78. http://dx.doi.org/10.1177/1045389x17692049.

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A photovoltage closed-loop servo control model of lead lanthanum zirconate titanate ceramic is proposed for a photovoltaic-electrostatic-driven system in this article. The control equations of the proposed servo control model are derived based on the mathematical model of lead lanthanum zirconate titanate with coupled multi-physics fields. The parameters of photovoltage of lead lanthanum zirconate titanate ceramic during the illumination phase and light-off phase are identified through the static experiment. Then, photovoltage response of lead lanthanum zirconate titanate ceramic with simple o
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11

Wang, Zonglin, Shengli Wang, Xin Zhang, Yan Guo, and Ze Wang. "Three-stage Coordinated Dispatching of Wind Power-Photovoltaic-CSP-Thermal Power Combined Generation System." Journal of Physics: Conference Series 2356, no. 1 (2022): 012004. http://dx.doi.org/10.1088/1742-6596/2356/1/012004.

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Aiming at the problem that the grid connection of intermittent renewable energy such as wind power and photovoltaics brings great uncertainty to the power system, a three-stage coordinated scheduling strategy of wind power-photovoltaic-concentrated solar energy is proposed. CSP Combined heat and power system. In the first stage, based on the day-ahead forecast data of wind power, photovoltaics and load, a “peak shaving” model of the combination of wind power-photovoltaic-CSP was established. In the second stage, according to the value of the remaining load after optimization in the first stage
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12

Xu, Zuping, and Xing Chen. "Optimization of the Coupling between Water and Energy Consumption in a Smart Integrated Photovoltaic Pumping Station System." Water 16, no. 11 (2024): 1493. http://dx.doi.org/10.3390/w16111493.

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Agricultural irrigation requires significant consumption of freshwater resources and energy. The integration of photovoltaic power generation into irrigation systems has been extensively investigated in order to save the cost of energy. However, current research often neglects the coupling relationship between photovoltaic power generation and irrigation schemes. This study presented a novel smart integrated photovoltaic pump station system to effectively address the issue associated with water and energy consumption in irrigation. An optimization model was proposed to synchronize the energy c
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13

Deng, Jun, Nan Xia, Jungang Yin, Jiliang Jin, Shutao Peng, and Tong Wang. "Small-Signal Modeling and Parameter Optimization Design for Photovoltaic Virtual Synchronous Generator." Energies 13, no. 2 (2020): 398. http://dx.doi.org/10.3390/en13020398.

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With the continuous proliferation of renewable energy generation, distributed photovoltaic inverters operating at a maximum power point reduce the inertia of power systems, degrading system frequency stability and potentially causing severe oscillations in systems after being disturbed. The virtual synchronous generator (VSG) control method, which causes photovoltaic inverters to possess inertia and damping, now plays an important role in the field of distributed generation. However, while introducing the advantages of synchronous machines, problems with oscillations are also introduced and th
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14

Zheng, Gu Ping, and Wei Yang. "Research on Energy Conversion Model of Solar Photovoltaic Power Generation System." Advanced Materials Research 429 (January 2012): 222–28. http://dx.doi.org/10.4028/www.scientific.net/amr.429.222.

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Solar photovoltaic power is a new form of new energy. It is the energy conversion model that change solar energy into light energy. This article is that energy conversion model of solar photovoltaic power generation system was studied. For household photovoltaic power generation systems, the system’s energy conversion is described by mathematical calculation and computer simulation. It makes an intensive study of the process of radiation, battery energy and power conversion during the whole course of the solar photovoltaic power generation.
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15

Toro-Cadavid, Juan Camilo, Carlos Andrés Ramos-Paja, and Andrés Julián Saavedra-Montes. "Equivalent Model of a Three Phase System of Photovoltaic Generation to Analyze Voltage Variations in a Radial Distribution System." Scientia et Technica 25, no. 2 (2020): 205–15. http://dx.doi.org/10.22517/23447214.23391.

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In this paper, the modelling of a three-phase photovoltaic system, for analyzing voltage variation in a radial distribution system, is presented. The radial distribution system is represented by a benchmark which is widely used in the analysis of distribution systems with distributed generation, and electrical microgrids. The parameters estimation of this model is performed by selecting the aerial distribution of conductors and then calculating the sequence components. Moreover, a model of a three-phase photovoltaic generation system for analyzing voltage variations is proposed. The model repr
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16

Fang, Hualiang, Lei Shang, Xuzhu Dong, and Ye Tian. "High Proportion of Distributed PV Reliability Planning Method Based on Big Data." Energies 16, no. 23 (2023): 7692. http://dx.doi.org/10.3390/en16237692.

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The higher proportion of distributed photovoltaic and lower fossil energy integrated into the power network brings huge challenges in power supply reliability and planning. The distributed photovoltaic planning method based on big data is proposed. According to the impact of stochastic photovoltaics and loads on reliability planning, the probability model of distributed photovoltaic and load is analyzed, and the dynamic capacity–load ratios are presented based on big data. The multi-scenario generation and reduction algorithm of stochastic distributed photovoltaic and load planning is studied,
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17

Barua, Dipal C., Tania P. Urmee, S. Kumar, and S. C. Bhattacharya. "A photovoltaic solar home system dissemination model." Progress in Photovoltaics: Research and Applications 9, no. 4 (2001): 313–22. http://dx.doi.org/10.1002/pip.376.

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18

Tian, Fuhao, Jiaxi Chen, Yikai Sun, Sheyu Zhou, Hongji Yang, and Xiran Wang. "Low Carbon Economic Dispatch of Rural Distribution Network under High Photovoltaic Penetration." Journal of Physics: Conference Series 2636, no. 1 (2023): 012005. http://dx.doi.org/10.1088/1742-6596/2636/1/012005.

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Abstract To promote the low-carbon development of the power grid, the penetration rate of distribution photovoltaics in power systems has greatly increased. Some distribution networks may switch roles between energy producers and energy consumers multiple times a day. Especially in rural areas with low loads and abundant land resources, a large number of distributed photovoltaics may increase the energy balancing burden of the transmission system. To address this, the optimal operation of local resources is the key to the local accommodation of photovoltaics. In rural distribution networks, th
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19

Arnaoutakis, Georgios E., Gudrun Kocher-Oberlehner, and Dimitris Al Katsaprakakis. "Criteria-Based Model of Hybrid Photovoltaic–Wind Energy System with Micro-Compressed Air Energy Storage." Mathematics 11, no. 2 (2023): 391. http://dx.doi.org/10.3390/math11020391.

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Utilization of solar and wind energy is increasing worldwide. Photovoltaic and wind energy systems are among the major contributing technologies to the generation capacity from renewable energy sources; however, the generation often does not temporally match the demand. Micro-compressed air energy storage (micro-CAES) is among the low-cost storage options, and its coupling with the power generated by photovoltaics and wind turbines can provide demand shifting, modeled by efficient algorithms. A model based on criteria that are preset according to the demand is presented. The model decides on t
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20

Zhang, Yuanbo, Yiqiang Yang, Xueguang Zhang, Wei Pu, and Hong Song. "Planning Strategies for Distributed PV-Storage Using a Distribution Network Based on Load Time Sequence Characteristics Partitioning." Processes 11, no. 2 (2023): 540. http://dx.doi.org/10.3390/pr11020540.

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At present, due to the fact that large-scale distributed photovoltaics can access distribution networks and that there is a mismatch between load demand and photovoltaic output time, it is difficult for traditional distributed photovoltaic planning to meet the partition-based control of high permeability photovoltaic grid-connected operations. As a solution to this problem, this paper proposes a planning method for photovoltaic storage partitions. First of all, a partitioning method for electrical distance modularity based on voltage/active power and voltage/reactive power is presented, along
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21

Nagendra, K., J. Karthik, Rao C. Keerthi, and Raja Pemmadi Kumar. "MODELING SIMULATION AND PERFORMANCE STUDY OF GRIDCONNECTED PHOTOVOLTAIC ENERGY SYSTEM." INTERNATIONAL JOURNAL OF RESEARCH- GRANTHAALAYAH 5, no. 4 RACEEE (2017): 36–41. https://doi.org/10.5281/zenodo.580622.

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This paper presents Modeling Simulation of grid connected Photovoltaic Energy System and performance study using MATLAB/Simulink. The Photovoltaic energy system is considered in three main parts PV Model, Power conditioning System and Grid interface. The Photovoltaic Model is inter-connected with grid through full scale power electronic devices. The simulation is conducted on the PV energy system at normal temperature and at constant load by using MATLAB.
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22

RUBAN, Nikolay, Vladimir RUDNIK, Igor RAZZHIVIN, and Anton KIEVEC. "A Hybrid Model of Photovoltaic Power Stations for Model Ling Tasks of Large Power Systems." Electrotehnica, Electronica, Automatica 69, no. 4 (2021): 43–49. http://dx.doi.org/10.46904/eea.21.69.4.1108005.

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Renewable energy sources are being actively penetrated in the global energy sector, with the main growth being achieved by new photovoltaic power stations. At the same time, the influence of photovoltaic power stations on the operation of power systems is known. This is primarily due to the inconstancy of the weather, which leads to a decrease in the output of each specific photovoltaic panel and power station as a whole. To study the effect of partial shading of photovoltaic panels on the parameters of its operation, various models of the current-voltage characteristics of photovoltaic cells
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23

Li, Dedi, Yue Zong, Xinjie Lai, Huimin Huang, Haiqi Zhao, and Shufeng Dong. "Chance-Constrained Dispatching of Integrated Energy Systems Considering Source–Load Uncertainty and Photovoltaic Absorption." Sustainability 15, no. 16 (2023): 12459. http://dx.doi.org/10.3390/su151612459.

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Because of their renewable and non-polluting characteristics in power production, distributed photovoltaics have been developed, but they have also been criticized for the volatility of their output power. In this paper, an integrated energy system optimal dispatching model is proposed to improve the local absorption capacity of distributed photovoltaics. First, an integrated energy system consisting of electricity, heat, cooling, gas, and hydrogen is modeled, and a mathematical model of the system is constructed. After that, the uncertainty of distributed photovoltaic power and load demand is
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Hou, Langbo, Heng Chen, Jinjun Wang, et al. "Optimal Dispatch Strategy for a Distribution Network Containing High-Density Photovoltaic Power Generation and Energy Storage under Multiple Scenarios." Inventions 8, no. 5 (2023): 130. http://dx.doi.org/10.3390/inventions8050130.

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To better consume high-density photovoltaics, in this article, the application of energy storage devices in the distribution network not only realizes the peak shaving and valley filling of the electricity load but also relieves the pressure on the grid voltage generated by the distributed photovoltaic access. At the same time, photovoltaic power generation and energy storage cooperate and have an impact on the tidal distribution of the distribution network. Since photovoltaic output has uncertainty, the maximum photovoltaic output in each scenario is determined by the clustering algorithm, wh
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Lv, Song, and Yin Lai. "Study of Photovoltaic Double-Skin Façade Windows in Passenger Ships." Sustainability 16, no. 9 (2024): 3724. http://dx.doi.org/10.3390/su16093724.

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The ship-mounted photovoltaic (PV) system was an approach to solve the problem of pollution caused by excessive energy consumption during navigation. However, PV systems used on ships faced problems such as small installation areas, which prevented PV power generation from being utilized on a large scale. This article proposes a space-saving photovoltaic double-skin façade (PV-DSF) window system, which could be used in conjunction with ships to address the insufficient ship-mounted photovoltaics. In this paper, we propose a space-saving photovoltaic double-skinned façade (PV-DSF) window system
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26

Bao, Yang, and Wei Guo. "Photovoltaic Power Prediction Based on EMD-BLS Model." Journal of Physics: Conference Series 2427, no. 1 (2023): 012016. http://dx.doi.org/10.1088/1742-6596/2427/1/012016.

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Abstract While the energy consumption structure is changing in this world, the consumption rate of renewable energy is gradually increasing. This paper takes photovoltaic power as the research object, analyses the power curve characteristics in different climatic change situation and the correlation between different weather factors and photovoltaic(PV) power output, and then puts forward a photovoltaic power prediction model based on empirical mode decomposition-broad learning system (EMD-BLS). First, the PV power historical sequence needs to be reconstructed after pretreatment, then the EMD
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27

Yang, Shu Ying, Li Hong Wu, and Zhao Xia Liu. "Research on Photovoltaic Grid-Connected Generation System." Advanced Materials Research 383-390 (November 2011): 4084–89. http://dx.doi.org/10.4028/www.scientific.net/amr.383-390.4084.

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This dissertation researches on photovoltaic grid-connected generation system. Photovoltaic grid-connected generation system has two core parts which are maximum power tracking control(MPPT) of photovoltaic cells and the control of the grid-connected inverter. Firstly,this paper introduces the operational principle and performance characteristic of photovoltaic cells,and describes the equivalent circuit and mathematical model. Secondly,this paper introduces several traditional MPPT control algorithms. Based on the maximum power of the fast track process and stability, an improved intermittent
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Affari, Belhadj Chekal, Nabil Kahoul, Rachid Chenni, Ammar Neçaibia, Mouhammed Younes, and Zoubida Kherici. "High Accuracy Testing of MPPT Proteus Model Performance for Photovoltaic System." Scientific Bulletin of Electrical Engineering Faculty 22, no. 1 (2022): 1–7. http://dx.doi.org/10.2478/sbeef-2022-0003.

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Abstract This study examines the performance of the MPPT Proteus model. The high performance of this model was proposed for a photovoltaic system and tested using the most commonly known MPPT techniques. The proposed Proteus model is a simulator of a maximum power point tracking system for a photovoltaic panel connected to the DC-DC converter with digital control. The Proteus software performs simulation and implementation of the photovoltaic panel model based on a one-diode model and a two-diode model with high accuracy. Both photovoltaic panel models were validated by experimental measuremen
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Zhenjie, Li, Hou Guangsong, Cheng Zhaolong, Niu Wenhui, and Hu Guohua. "Frequency regulation strategy of photovoltaic system based on system identification." E3S Web of Conferences 252 (2021): 02082. http://dx.doi.org/10.1051/e3sconf/202125202082.

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The large-scale grid connection of photovoltaic power generation results in the power system frequency fluctuation and frequency regulation capacity decline, which endangers the dynamic security of power grid frequency. In order to reduce the frequency deviation of power grid and tap the potential of photovoltaic power generation participating in frequency regulation, a control method of photovoltaic power participating in frequency regulation of power grid is proposed in this paper. The maximum allowable power of photovoltaic power is predicted through system identification, and the load shed
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Žemla, Filip, Ján Cigánek, Danica Rosinová, Erik Kučera, and Oto Haffner. "Complex Positioning System for the Control and Visualization of Photovoltaic Systems." Energies 16, no. 10 (2023): 4001. http://dx.doi.org/10.3390/en16104001.

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This paper presents a proposal of a complex mechatronic system that enhances the effectivity of obtaining energy from renewable resources. The main focus is on the photovoltaic energy system, which obtains electricity from the conversion of solar radiation through photovoltaic crystalline silicon-based panels. The design of the complex mechatronic system consists of several steps. The structural design of the photovoltaic panel positioning unit in the form of a three-dimensional model is made in the selected modelling programming environment. Subsequently, a propulsion system is proposed for t
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Fang, Zhi, Yuzhang Lin, Shaojian Song, Chunning Song, Xiaofeng Lin, and Gang Cheng. "Active distribution system state estimation incorporating photovoltaic generation system model." Electric Power Systems Research 182 (May 2020): 106247. http://dx.doi.org/10.1016/j.epsr.2020.106247.

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Ordoumpozanis, Konstantinos, Theodoros Theodosiou, Dimitrios Bouris, and Katerina Tsikaloudaki. "Energy and thermal modeling of building façade integrated photovoltaics." Thermal Science 22, Suppl. 3 (2018): 921–32. http://dx.doi.org/10.2298/tsci170905025o.

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Electricity generation on site is a design challenge aiming at supporting the concept of energy-autonomous building. Many projects worldwide have promoted the installation of photovoltaic panels on urban buildings, aiming at utilizing a large area to produce electricity. In most cases, photovoltaics are considered strictly as electricity generators, neglecting their effect to the efficiency and to the thermal behaviour of the building envelope. The integrated performance of photovoltaic ventilated fa?ades, where the photovoltaics are regarded as part of a complicated envelope system, provides
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33

Yang, Shu-Xia, Yang Zhang, and Xiao-Yu Cheng. "Economic modeling of distributed photovoltaic penetration considering subsidies and countywide promotion policy: An empirical study in Beijing." Journal of Renewable and Sustainable Energy 14, no. 5 (2022): 055301. http://dx.doi.org/10.1063/5.0102574.

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Distributed photovoltaic power generation will not only help to achieve the strategic targets of peaking carbon emissions and carbon neutrality but also cause a series of impacts on the power grid at the same time. Forecasting the long-term development of regionally distributed photovoltaics can provide a reference for power grid planning and stable operation. In this paper, considering the effect of factors such as subsidies and countywide promotion policy of photovoltaics, a forecasting model for the development tendency of regionally distributed photovoltaics based on system dynamics is est
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34

Pan, Lei, Dong Lin Wang, Bei Bei Wang, Wei Gong, and Gang Su. "Voltage Control Method Research of PV Power System Based on Small Signal Model." Advanced Materials Research 608-609 (December 2012): 57–64. http://dx.doi.org/10.4028/www.scientific.net/amr.608-609.57.

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In photovoltaic power systems, both photovoltaic modules and switching-mode converters present nonlinear and time-variant characteristics, which result in a difficult control problem. This paper presents an in-depth analysis and modeling to discover the inherent features of a photovoltaic (PV) power system and proposes a control method for PV power system based on small-signal model. This paper also presents a state equation and transfer function of PV power system and a stable control system for regulating the photovoltaic voltage. Simulation and experiment results demonstrate the effectivene
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Chen, Ming, Lin Chen, Xiao Tang, and Ya Hui Hu. "Design Principle and Applicative Value of Photovoltaic System." Applied Mechanics and Materials 644-650 (September 2014): 3493–96. http://dx.doi.org/10.4028/www.scientific.net/amm.644-650.3493.

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The characterization and design of photovoltaic systems is a difficult issue due to the critical step in shell configuration. It is important in analyzing structure system with finite element method for complex truss structure. This paper proposes a new model to develop an availability framework for photovoltaic generation. The proposed technique can be applied to the analysis of calculation of photovoltaic modules and photovoltaic atmospheric conditions.
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Yan, Yu Ting, Yang Yang, Jia Quan Yang, and Wen Bin Zhang. "Modeling and Simulation of MPPT Algorithm for PV Grid-Connected System." Advanced Materials Research 945-949 (June 2014): 2880–84. http://dx.doi.org/10.4028/www.scientific.net/amr.945-949.2880.

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This paper presents an equivalent circuit model of photovoltaic cells, and then discusses the photovoltaic (PV) grid power generation system in the maximum power point tracking (MPPT) control principle of the boost circuit. The MATLAB/Simulink software was used to model and simulate MPPT verification of the system. The simulation results showed the effectiveness of the control Strategy. As a conlusion, potential solution to MPPT The BOOST circuit adopts the MPPT control in photovoltaic power generation system, not only can improve the efficiency of photovoltaic cells, and thus improve the effi
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37

Zhao, Dawei, Minhui Qian, Jin Ma, and Koji Yamashita. "Photovoltaic generator model for power system dynamic studies." Solar Energy 210 (November 2020): 101–14. http://dx.doi.org/10.1016/j.solener.2020.06.077.

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38

Mohammed, Slimi, Boucheta Abdelkrim, and Bouchiba Bousmaha. "Maximum power control for photovoltaic system using intelligent strategies." International Journal of Power Electronics and Drive System (IJPEDS) 10, no. 1 (2019): 423–32. https://doi.org/10.11591/ijpeds.v10.i1.pp423-432.

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The power supplied by photovoltaic DC–DC converter is affected by two factors, sun irradiance and temperature. Therefore, to improve the performance of the PV system; a mechanism to track the maximum power point (MPP) is required. Conventional maximum power point tracking approaches, such as observation and perturbation technique present some difficulties in identifying the true MPP. Therefore, intelligent systems including fuzzy logic controllers (FLC) are introduced for the maximum power point tracking system (MPPT). In this paper, we present a comparative study of the PV standalone sy
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Tugay, D. V., S. I. Korneliuk, O. O. Shkurpela, and V. S. Akimov. "Simulation of industrial solar photovoltaic station with transformerless converter system." Naukovyi Visnyk Natsionalnoho Hirnychoho Universytetu, no. 5 (2020): 73–79. http://dx.doi.org/10.33271/nvngu/2021-5/073.

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Purpose. Creation of a detailed model of a solar photovoltaic station with a converter system based on a cascaded multi-level inverter with the MPPT (maximum power point tracker) function to investigate its operating modes in distributed power systems. Methodology. To carry out the research, the paper used the methods of system synthesis, mathematical and computer modeling to create photovoltaic station models and components; a physical experiment in obtaining thermal characteristics of the photovoltaic module Solarday SDM72360 W; modern power theories for synthesis of the vector control syste
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Qian-Han Zhang, Qian-Han Zhang, Bing-Yan Wei Qian-Han Zhang, Dong-Liang Fan Bing-Yan Wei, Xiao-Ying Wu Dong-Liang Fan, and Jin-Ping Du Xiao-Ying Wu. "Design of An Intelligent Monitoring and Control System for Photovoltaic Microgrids." 電腦學刊 34, no. 6 (2023): 145–52. http://dx.doi.org/10.53106/199115992023123406011.

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<p>This article focuses on the problems of imperfect models and slow convergence speed of optimization algorithms in the use of photovoltaic microgrids. Firstly, accurate mathematical models are established based on the composition of photovoltaic microgrids, namely photovoltaic power generation systems and energy storage systems. Then, an improved cat swarm algorithm is used to solve the model, ultimately achieving an increase in solving speed during the process while avoiding the algorithm from falling into local optima. Finally, an intelligent monitoring system for photovoltaic microg
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Chaitanya, Kommera, Arjyadhara Pradhan, and Babita Panda. "Solar photovoltaic system fed water pumping system using BLDC motor with single input and multiple output converter." International Journal of Applied Power Engineering (IJAPE) 14, no. 1 (2025): 74. https://doi.org/10.11591/ijape.v14.i1.pp74-80.

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In recent times energy based on renewable energy sources is a good long-term alternative compared with traditional fossil fuel energy sources solar photovoltaic model-based irrigation water pump systems have gained more popularity. The one-input and multi-output converters are focused on BLDC motor drive-based solar photovoltaic with water pump. To model one input and multiple output converter components are connected viz it achieves tracking purpose and BLDC drive soft starting. The one-input and multiple-output converter exhibits the features of all converters and remarkably appears with the
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Chitanya, Kommera, Arjyadhara Pradhan, and Babita Panda. "Solar photovoltaic system fed water pumping system using BLDC motor with single input and multiple output converter." International Journal of Applied Power Engineering (IJAPE) 14, no. 1 (2025): 74–80. https://doi.org/10.11591/ijape.v14.i1.pp74-80.

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In recent times energy based on renewable energy sources is a good long-term alternative compared with traditional fossil fuel energy sources solar photovoltaic model-based irrigation water pump systems have gained more popularity. The one-input and multi-output converters are focused on BLDC motor drive-based solar photovoltaic with water pump. To model one input and multiple output converter components are connected viz it achieves tracking purpose and BLDC drive soft starting. The one-input and multipleoutput converter exhibits the features of all converters and remarkably appears with the
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43

Li, Han, Zhihong Jiang, Han Wu, Hao Yang, Jiaqi Gao, and Yangyang Zhu. "Parameter estimation of photovoltaic power generation system and digital twin model construction." Journal of Physics: Conference Series 2896, no. 1 (2024): 012030. https://doi.org/10.1088/1742-6596/2896/1/012030.

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Abstract Photovoltaic power generation system is an essential part of modern power system, but it has intermittency and limitations and will also significantly reduce the stability of power system operation. For this reason, this paper proposes a new method for estimating the parameters of a photovoltaic power generation system. It constructs a digital twin model of photovoltaic panels for accurate real-time system monitoring. In order to construct a more realistic twin model, an improved iterative method is proposed to analyze and calculate the unknown parameters of the relationship between t
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Ngo, Xuan Cuong, Thi Thuy Linh Huynh, Dinh Hoa Cuong Nguyen, Duy Thuan Nguyen, Vinh Thang Le, and Thi Hong Nguyen. "Simple thermal-electrical model of photovoltaic panels with cooler-integrated sun tracker." Hue University Journal of Science: Natural Science 131, no. 1D (2022): 23–36. http://dx.doi.org/10.26459/hueunijns.v131i1d.6763.

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This paper presents a simple thermal-electrical model of a photovoltaic panel with a cooler-integrated sun tracker. Based on the model and obtained weather data, we analyzed the improved overall efficiency in a year as well as the performance in each typical weather case for photovoltaic panels with fixed-tilt systems with a tilt angle equal to latitude, fixed-tilt systems with cooler, a single-axis sun tracker, and a cooler-integrated single-axis sun tracker. The results show that on a sunny summer day with few clouds, the performance of the photovoltaic panels with the proposed system improv
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Xinhui, Du, Wang Shuai, and Zhang Juan. "Research on Marine Photovoltaic Power Forecasting Based on Wavelet Transform and Echo State Network." Polish Maritime Research 24, s2 (2017): 53–59. http://dx.doi.org/10.1515/pomr-2017-0064.

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Abstract With the rapid development of photovoltaic power generation technology, photovoltaic power generation system has gradually become an important component of the integrated energy system of marine. High precision short-term photovoltaic power generation forecasting is becoming one of the key technologies in ship energy saving and ship energy efficiency improving. Aiming at the characteristics of marine photovoltaic power generation system, we designed a highprecision power forecasting model (WT+ESN) for marine photovoltaic power generation system with anti-marine environmental interfere
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46

Zalizny, D. I. "Model of a Photovoltaic Module for the MatLab/Simulink SimPowerSystems Library." ENERGETIKA. Proceedings of CIS higher education institutions and power engineering associations 63, no. 6 (2020): 515–25. http://dx.doi.org/10.21122/1029-7448-2020-63-6-515-525.

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The relevance of research is caused by the increase of the number of photovoltaic power plants in the Republic of Belarus and, accordingly, the need to solve problems of diagnostics of photovoltaic modules. A new Simulink model of a photovoltaic module focused on using the standard SimPowerSystems library of power supply system elements (a part of the MatLab/Simulink) is proposed. The model allows altering solar irradiation values for each solar cell of the module. The use of the model also makes it possible to obtain calculated values of voltages and currents at the photovoltic module output.
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K, Nagendra, Karthik J, Keerthi Rao, and Kumar Raja Pemmadi. "MODELING SIMULATION AND PERFORMANCE STUDY OF GRID-CONNECTED PHOTOVOLTAIC ENERGY SYSTEM." International Journal of Research -GRANTHAALAYAH 5, no. 4RACEEE (2017): 36–41. http://dx.doi.org/10.29121/granthaalayah.v5.i4raceee.2017.3320.

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This paper presents Modeling Simulation of grid connected Photovoltaic Energy System and performance study using MATLAB/Simulink. The Photovoltaic energy system is considered in three main parts PV Model, Power conditioning System and Grid interface. The Photovoltaic Model is inter-connected with grid through full scale power electronic devices. The simulation is conducted on the PV energy system at normal temperature and at constant load by using MATLAB.
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Abid, Hafedh, Ahmed Toumi, and Mohamed Chaabane. "MPPT Algorithm for Photovoltaic Panel Based on Augmented Takagi-Sugeno Fuzzy Model." ISRN Renewable Energy 2014 (February 17, 2014): 1–10. http://dx.doi.org/10.1155/2014/253146.

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This paper deals with the Maximum Power Point Tracking (MPPT) for photovoltaic energy system. It includes photovoltaic array panel, DC/DC converter, and load. The operating point for photovoltaic energy system depends on climatic parameters and load. For each temperature and irradiation pair, there exists only one optimal operating point which corresponds to the maximum power transmitted to the load. The photovoltaic energy system is described by nonlinear equations. It is transformed into an augmented system which is described with a Takagi-Sugeno (T-S) fuzzy model. The proposed MPPT algorith
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Song, Xu Ri, Lei Wang, Xing Ying, Yang Bai, and Li Li. "Research of Off-Grid Household Photovoltaic Power System." Advanced Materials Research 1008-1009 (August 2014): 44–48. http://dx.doi.org/10.4028/www.scientific.net/amr.1008-1009.44.

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The electricity shortage can be effectively alleviated by developing household photovoltaic power system in vast rural areas, it is necessary to establish simulation models. In this paper, the dynamic modeling of household photovoltaic power system including photovoltaic,Cuk-chopper circuit,battery and a single phase PWM inverter have been made in the ElectroMagnetic Transient Program /Alternative Transient Program(EMTP/ATP) software package.Control strategy based on MPPT for the power control of the inverter have been also developed. Operation characteristic of household photovoltaic power sy
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Liu, Yuhang, Xiangxin Liu, Jianwei Zhang, Yufeng Zhang, and Ziyao Zhu. "A Novel Maximum Power Point Tracking Control Strategy for the Building Integrated Photovoltaic System." Energies 13, no. 11 (2020): 2679. http://dx.doi.org/10.3390/en13112679.

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Thin-film photovoltaic technology has begun to be applied in building-integrated photovoltaics (BIPVs), and it is believed that thin-film photovoltaic technology has potential in building-integrated photovoltaic applications. In this paper, a hybrid approach was investigated which combined the maximum power point tracking (MPPT) algorithm of three-stage variable step size with continuous conduction mode (CCM)/discontinuous current mode (DCM). The research contents of this paper include the principle analysis of the maximum power point tracking algorithm, the design of the sampling period, and
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