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Journal articles on the topic 'Maximum energy capture'

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1

Kusiak, Andrew, and Zhe Song. "Design of wind farm layout for maximum wind energy capture." Renewable Energy 35, no. 3 (2010): 685–94. http://dx.doi.org/10.1016/j.renene.2009.08.019.

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2

Liu, Ying Ming, En Yong Yi, Xiao Dong Wang, and Hong Fang Xie. "Research on Capture the Maximum Wind Energy Base on Fuzzy PID Controller." Applied Mechanics and Materials 268-270 (December 2012): 1422–25. http://dx.doi.org/10.4028/www.scientific.net/amm.268-270.1422.

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Abstract:This paper studies the control strategy of doubly-fed wind turbine to capture the maximum wind energy.The maximum wind energy capture is a more important part of the wind generation. Due to random fluctuations of the wind speed, to track the maximum power of wind turbine,we need to constantly adjust the speed of the generator, so that the generation run in the optimal tip speed ratio in different wind conditions,in order to achieve maximum power tracking. In this paper, the stator output indirect control the generator speed to achieve maximum wind energy capture,and decoupling control
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3

El-Khazendar, M. A., and M. M. Ahmed. "A generating wind scheme for maximum energy capture and minimum cost." Renewable Energy 5, no. 1-4 (1994): 709–11. http://dx.doi.org/10.1016/0960-1481(94)90456-1.

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4

Song, Hai Hui, and De Tian. "Research on Maximum Wind Energy Capturing of DFIG." Advanced Materials Research 605-607 (December 2012): 1360–63. http://dx.doi.org/10.4028/www.scientific.net/amr.605-607.1360.

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The doubly fed induction generator(DFIG) has been widely used in wind power generation system. It can alters speed of the rotor according to change of the wind speed, then contains the maximum tip speed ratio, in order to capture the maximum power from the wind energy. And the output frequency will not chang with the speed of generator. This paper studys the maximum wind energy capturing of DFIG. The theory analysis and simulation results based on MATLAB/Simulink demonstrate this control strategy is convenient and efficient.
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5

Wu, Shiquan, Lei Huang, Jianlong Yang, et al. "Research on Fourier Coefficient-Based Energy Capture for Direct-Drive Wave Energy Generation System Based on Position Sensorless Disturbance Suppression." Journal of Marine Science and Engineering 12, no. 8 (2024): 1358. http://dx.doi.org/10.3390/jmse12081358.

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In order to improve the energy capture efficiency of direct-drive wave power generation (DDWEG) systems and enhance the robustness of the reference power tracking control, a Fourier coefficient-based energy capture (FCBEC) and a position sensorless disturbance suppression (PSDS) control strategy are proposed. For energy capture, FCBEC is proposed to construct the objective function by maximizing the average power over a period of time and expanding the variables in the Fourier basis when the maximum power is captured, which is used as the basis for obtaining the reference trajectory. To addres
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6

Song, Hai Hui, and De Tian. "Simulation on Maximum Wind Energy Capturing of DFIG." Applied Mechanics and Materials 260-261 (December 2012): 87–90. http://dx.doi.org/10.4028/www.scientific.net/amm.260-261.87.

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The doubly fed induction generator(DFIG) has been widely used in wind power generation system. It can alters speed of the rotor according to change of the wind speed, then contains the maximum tip speed ratio, in order to capture the maximum power from the wind energy. And the output frequency of the generator keeps constant ,so we call it VSCF. This paper studys simulation on maximum wind energy capturing of DFIG. The theory analysis and simulation results based on MATLAB/Simulink demonstrate this control strategy is convenient and efficient.
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7

Li, H., K. L. Shi, and P. G. McLaren. "Neural-Network-Based Sensorless Maximum Wind Energy Capture With Compensated Power Coefficient." IEEE Transactions on Industry Applications 41, no. 6 (2005): 1548–56. http://dx.doi.org/10.1109/tia.2005.858282.

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8

Tian, De, Hai Hui Song, and Wei Long Wang. "Modeling and Real-Time Simulation on Doubly Fed Induction Wind Generator." Applied Mechanics and Materials 423-426 (September 2013): 2123–26. http://dx.doi.org/10.4028/www.scientific.net/amm.423-426.2123.

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The doubly fed induction generator (DFIG) can alter speed of the rotor according to change of the wind speed, then contains the maximum tip speed ratio, in order to capture the maximum power from the wind energy. This paper studys the maximum wind energy capturing of DFIG. The fuzzy controller here is used to control the doubly fed induction wind generator in order to improve the robust of the system. We established a fuzzy control rule according to the maximum power capturing. The fuzzy controller captures the maximum power with generator power output error and generator rotor speed error to
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9

Lan, Ying, and Jiayu Huang. "Maximum power tracking of wave energy generation system based on improved sparrow search algorithm." Journal of Physics: Conference Series 2993, no. 1 (2025): 012011. https://doi.org/10.1088/1742-6596/2993/1/012011.

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Abstract The sparrow search algorithm (SSA) has emerged as a promising swarm intelligence optimization technique, particularly in the context of maximum power point tracking (MPPT) for wave energy generation systems. It has demonstrated significant potential in optimizing power capture efficiency. Building on this foundation, this paper introduces an enhanced variant of the SSA, termed the Firefly Search Perturbation-based Sparrow Search Algorithm (FSSA). By integrating firefly search perturbation, the proposed FSSA aims to further improve the optimization capabilities of the original SSA. Sim
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10

Ge, Wei, Shui Ji, Yeqing Jin, Shijie He, Hailong Chen, and Hengxu Liu. "Optimization of Buoy Shape for Wave Energy Converter Based on Particle Swarm Algorithm." Applied Sciences 14, no. 5 (2024): 1889. http://dx.doi.org/10.3390/app14051889.

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In order to improve the wave energy capture rate of the buoy of a wave energy generation device, this paper proposes a multi-degree of freedom method to optimize the shape of the buoy with maximum wave energy capture. Firstly, a multi-degree of freedom wave energy converter was designed, and the buoy shape was defined using a B-spline curve to generate the shape vector; then, a numerical model of the multi-degree of freedom wave energy converter was established and numerical calculations were carried out using AQWA/WEC-Sim software; on this basis, the particle swarm optimization algorithm was
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11

Zhang, Zhigang, Hongru Wang, Yang Zhang, and Wan Feng. "Enhanced wind turbine maximum wind-energy capture based on the inverse-system method." Energy Reports 8 (July 2022): 475–87. http://dx.doi.org/10.1016/j.egyr.2022.01.211.

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12

Li, Biao, Xianku Zhang, Taimin Liu, and Hamse Saed Adan. "Bionic Raft Design and Performance Investigation of a Two-Raft Wave Energy Converter." Journal of Marine Science and Engineering 12, no. 12 (2024): 2114. http://dx.doi.org/10.3390/jmse12122114.

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This paper proposes a two-raft wave energy conversion technology with bionic rafts, aiming to enhance the wave energy capture performance of existing devices with regularly shaped rafts. The cross-sectional shape of the bionic raft is designed as a nested pattern of the long and short axes of two semi-ellipses, which is inspired by the cross-sectional shape of the flat shark. Based on the computational fluid dynamics (CFD) model of the wave energy converter (WEC) with the bionic raft in waves, it is verified that the designed bionic raft positively enhances the wave excitation force acting on
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13

Kim, D., N. N. Hewa-Kasakarage, S. Yoon, and N. A. Hall. "On the minimum coupling required for maximum theoretical power capture from vibration energy harvesters." Applied Physics Letters 101, no. 10 (2012): 103904. http://dx.doi.org/10.1063/1.4749824.

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14

Hardy, P., B. S. Cazzolato, B. Ding, and Z. Prime. "A maximum capture width tracking controller for ocean wave energy converters in irregular waves." Ocean Engineering 121 (July 2016): 516–29. http://dx.doi.org/10.1016/j.oceaneng.2016.05.045.

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15

Pande, P. C., and K. P. Thanvi. "Design and development of a solar cooker for maximum energy capture in stationary mode." Energy Conversion and Management 27, no. 1 (1987): 117–20. http://dx.doi.org/10.1016/0196-8904(87)90062-8.

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16

Muljadi, E., C. P. Butterfield, and P. Migliore. "Variable Speed Operation of Generators With Rotor-Speed Feedback in Wind Power Applications." Journal of Solar Energy Engineering 118, no. 4 (1996): 270–77. http://dx.doi.org/10.1115/1.2871793.

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The use of induction generators in wind power applications has been common since the early development of the wind industry. Most of these generators operate at fixed frequency and are connected directly to the utility grid. Unfortunately, this mode of operation limits the rotor speed to a specific rpm. Variable speed operation is preferred in order to facilitate maximum energy capture over a wide range of wind speeds. This paper explores variable speed operating strategies for wind turbine applications. The objectives are to maximize energy production, provide controlled start-up, and reduce
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17

LAN, Y., S. T. DAI, M. TAO, and X. F. YAN. "MAXIMUM POWER POINT TRACKING ALGORITHM AND COMPUTER AIDED DESIGN AND ANALYSIS OF DIRECT DRIVE DOUBLY FED INDUCTION GENERATOR." Latin American Applied Research - An international journal 48, no. 3 (2019): 211–16. http://dx.doi.org/10.52292/j.laar.2018.230.

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On the basis of the preliminary understanding and analysis of the dynamic performance of the permanent magnet doubly fed wind generator, a mathematical model is established by the method of mechanism modeling. The simulation model of the whole wind turbine is built under the Simulink running environment, and the system is designed by computer aided method. In this paper, the maximum power tracking algorithm is mainly studied. Based on the basic method of maximum wind energy capture, two simulation models of the maximum power tracking algorithm are built, including the tip speed ratio method an
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18

Wang, Hao, Haitao Yu, and Wei Zhong. "A control system design of wave power generation using HHT to realize maximum power control." Journal of Physics: Conference Series 2918, no. 1 (2024): 012001. https://doi.org/10.1088/1742-6596/2918/1/012001.

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Abstract Ocean wave power generation can provide clean energy for offshore electrical equipment. However, the random changes in waves are not conducive to capturing energy efficiently. How to improve the capture of wave power has become a problem that wave energy power generation equipment needs to address. This study uses the Hilbert-Huang Transform (HHT) to predict the frequency of random waves and controls the motor according to the predicted frequency, enabling the wave energy power generation device to resonate with the waves to obtain the maximum power.
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19

LIU, QUAN-HUI, JI-XING LIU, and ZHONG-CAN OU-YANG. "CAPTURE ON HIGH CURVATURE REGION: AGGREGATION OF COLLOIDAL PARTICLE BOUND TO GIANT PHOSPHOLIPID VESICLES." Modern Physics Letters B 13, no. 16 (1999): 555–62. http://dx.doi.org/10.1142/s0217984999000713.

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A very recent observation on the membrane-mediated attraction and ordered aggregation of colloidal particles bound to giant phospholipid vesicles (I. Koltover, J. O. Rädler and C. R. Safinya, Phys. Rev. Lett.82, 1991 (1999)) is investigated theoretically within the framework of Helfrich curvature elasticity theory of lipid bilayer fluid membrane. Since the concave or waist regions of the vesicle possess the highest local bending energy density, the aggregation of colloidal beads on these places can reduce the elastic energy in maximum. Our calculation shows that a bead in the concave region lo
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20

Srivastava, Priyank, Pankaj Gupta, and Amarjeet Singh. "Critical Factors Affecting Efficiency of Maximum Power Point Tracking in Solar Cells." SAMRIDDHI : A Journal of Physical Sciences, Engineering and Technology 7, no. 01 (2015): 01–08. http://dx.doi.org/10.18090/samriddhi.v7i1.3265.

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A photovoltaic cell produces electrical energy directly from visible light. However, their efficiency is fairly low. So, the solar cell costs expensive as compared to other energy resources products. Various factors affect solar cell efficiency. This paper presents the most important factors that affecting efficiency of solar cells. These effectsare cell temperature, MPPT (maximum power point tracking) and energy conversion efficiency. The changing of these factors improves solar cell efficiency for more reliable applications. There is a large energy demand due to industrial development and po
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21

Neammanee, Bunlung, Korawit Krajangpan, Somporn Sirisumrannukul, and Somchai Chatratana. "Maximum Peak Power Tracking-Based Control Algorithms with Stall Regulation for Optimal Wind Energy Capture." IEEJ Transactions on Industry Applications 128, no. 4 (2008): 411–17. http://dx.doi.org/10.1541/ieejias.128.411.

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22

Deng, Xiaofei, Jian Yang, Yao Sun, Dongran Song, Yinggang Yang, and Young Hoon Joo. "An Effective Wind Speed Estimation Based Extended Optimal Torque Control for Maximum Wind Energy Capture." IEEE Access 8 (2020): 65959–69. http://dx.doi.org/10.1109/access.2020.2984654.

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23

Johnson, Kathryn E., Lee J. Fingersh, Mark J. Balas, and Lucy Y. Pao. "Methods for Increasing Region 2 Power Capture on a Variable-Speed Wind Turbine." Journal of Solar Energy Engineering 126, no. 4 (2004): 1092–100. http://dx.doi.org/10.1115/1.1792653.

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The standard region 2 control scheme for a variable-speed wind turbine, τc=Kω2, has several shortcomings that can result in significant power loss. The first of these is that there is no accurate way to determine the gain K; modeling programs are not accurate enough to represent all of the complex aerodynamics, and these aerodynamics change over time. Furthermore, it is not certain whether the value of K used in the standard control even provides for the maximum energy capture under real-world turbulent conditions. We introduce new control methods to address these issues. First, we show in sim
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24

Ramón Fernández, José. "Process Simulations and Experimental Studies of CO2 Capture." Energies 15, no. 2 (2022): 544. http://dx.doi.org/10.3390/en15020544.

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Carbon dioxide, whose global emissions into the atmosphere have reached a maximum of about 36 billion tons per year (compared to the 6 billion tons emitted in 1950), is considered by far the main greenhouse gas (GHG) [...]
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25

Mitra, Sanchayan, and Shankha Pratim Bhattacharya. "Micro Wind Turbine Design Considerations to Utilize Maximum Wind Energy." Proceedings of The World Conference on Climate Change and Global Warming 2, no. 1 (2025): 27–38. https://doi.org/10.33422/ccgconf.v2i1.1009.

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The transition to renewable energy is essential to combat climate change, ensure sustainability, guarantee energy security, and drive global socio-economic progress. Depletable energy sources, e.g. coal, oil, along with natural gas, are going to end, making the shift toward renewable alternatives like wind, solar, and geothermal energy crucial. It can be expected that wind energy will play a vital factor in the world's clean energy transition. In India, wind power contributes 10% of the total energy production, with its adoption dating back to 1985. Micro wind turbines, designed for decentrali
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26

Manowska, Anna, Artur Dylong, Bogdan Tkaczyk, and Jarosław Manowski. "Analysis and Monitoring of Maximum Solar Potential for Energy Production Optimization Using Photovoltaic Panels." Energies 17, no. 1 (2023): 72. http://dx.doi.org/10.3390/en17010072.

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This article explores the efficiency of photovoltaic (PV) panels, which is crucial in the search for sustainable energy solutions. The study presents a comprehensive analysis of the maximum solar potential achievable through photovoltaic technologies amidst the increasing global energy demands. The research examines solar radiation measurement techniques, the incidence angle of solar rays, and the intricacies of PV panel efficiency. It highlights the potential for improving the performance of solar-based energy systems. Four main sections are covered, beginning with an introduction to the impo
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27

McCormick, M. E., and S. W. Surko. "An Experimental Study of the Performance of the Counter-Rotating Wave Energy Conversion Turbine." Journal of Energy Resources Technology 111, no. 3 (1989): 167–73. http://dx.doi.org/10.1115/1.3231419.

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Results of an experimental study of a counter-rotating turbine operating on a pneumatic wave energy conversion system are presented. The vertical capture chamber of the water column of the system has a down-facing water intake. An electrical generator (d-c) is coupled to the turbine by a ten-gear-ratio drive train. Tests of the pneumatic wave energy conversion system were conducted with the mouth at two depths in order to vary the natural oscillating frequency of the water column. The maximum electrical power output of the system was approximately 90 W in the monochromatic waves. This value co
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28

Tifroute, M., and H. Bouzahir. "Design optimization of a wind farm layout for maximum wind energy capture: A new constructive approach." Wind Engineering 42, no. 3 (2017): 155–63. http://dx.doi.org/10.1177/0309524x17735704.

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Wind energy is becoming an attractive source of clean energy. However, this type of power source is subject to power reductions due to losses in wind energy conversion system and to frequent changes in wind velocity. For that reason, the important phase of a wind farm design is solving the wind farm layout optimization problem, which consists in optimally positioning the turbines within the wind farm so that the wake effects are minimized and therefore the expected power production is maximized. This problem has been receiving increasing attention from the scientific community. In this article
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29

Putri, Rahmi Riya, and Wildian Wildian. "Rancang Bangun Detektor Sinyal Radio Frequency Smartphone dengan Frekuensi Operator GSM1800." Jurnal Fisika Unand 9, no. 4 (2021): 538–44. http://dx.doi.org/10.25077/jfu.9.4.538-544.2020.

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Telah dilakukan rancang bangun detektor sederhana yang mengubah energi gelombang radio (radio frequency) dari sinyal smartphone menjadi energi listrik. Rancangan detektor sinyal radio frequency terdiri dari rangkaian LC, IC LM386 dan Arduino Uno. Smartphone yang dihidupkan akan memancarkan gelombang radio yang akan melewati antena. Gelombang radio akan menginduksi tegangan ke antena dan akan mengubahnya menjadi energi lisrik. Pengolahan data dilakukan dengan menggunakan mikrokontroler Arduino Uno yang mengontrol LED dan buzzer sebagai indikator peringatan terdeteksinya sinyal radio frequency.
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30

Zhang, Jun, Chenglong Li, Hongzhou He, and Xiaogang Zang. "Optimization of a Multi-pendulum Wave Energy Converter." Open Electrical & Electronic Engineering Journal 9, no. 1 (2015): 67–73. http://dx.doi.org/10.2174/1874129001509010067.

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In order to improve the energy capture efficiency of a multi-pendulum wave energy converter, a mathematical model of the pendulum structure has been built. The final structure parameters of the pendulum have been obtained by using genetic algorithm based on the numerical simulation results of the pendulum structure optimization. The results show that under obtained structure parameters the proposed multi-pendulum device can obtain maximum energy conversion efficiency.
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31

Rahman, YA, N. Amin, Y. S. Pirade, and A. D. Ainun. "Experimental study of harvest solar energy based on thermoelectric generator with configuration variations." IOP Conference Series: Earth and Environmental Science 1075, no. 1 (2022): 012039. http://dx.doi.org/10.1088/1755-1315/1075/1/012039.

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Abstract The background of this research is to optimize the use of heat from solar energy as energy harvesting based on a thermoelectric generator (TEG). One of the factors that affect the TEG output is the TEG configuration and the resulting temperature difference. The external temperature captured by the TEG side and the cooling system causes a significant temperature difference. This study uses a TEG trainer module consisting of eight TEGs and a double heatsink that functions for the cooling side and heat capture from the sun. Experiments show that the combination of eight TEG modules in se
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32

Anrat, Kumar Chadar, and E. Mubeen Samina. "Review on Sustainable Energy Source Based Hybrid Power System." Journal of Recent Trends in Electrical Power System 2, no. 3 (2019): 1–10. https://doi.org/10.5281/zenodo.3539779.

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<em>Currently, multi-days reality is moving toward green and clean energy sustainable energy for example, (wind, solar, biomass, hydro and tidal), these are able to defeat the voltage list and low voltage defect ride according to standard counterfeit code. For a particular PV, irradiation and temperature, wind velocity (for WECS) and water flow rate (for hydro), there is always a point at which maximum power out of these systems can be extracted. This paper first reviews sustainable energy the wind power and photovoltaic (PV) power generation techniques and their maximum-power-point tracking (
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33

Wang, Wan Zhao, and Jie Wang. "Maximum Wind Energy Capturing of Wind Turbine Generator Based on Adaptive Inverse Controller." Applied Mechanics and Materials 494-495 (February 2014): 1825–28. http://dx.doi.org/10.4028/www.scientific.net/amm.494-495.1825.

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The variable speed wind turbine generator exhibits serious nonlinearity, uncertainty and difficulty accurate modeling, conventional PID controller can't achieve ideal control effect. In this paper, an adaptive inverse control scheme based on neural network identification technology is proposed to solve the above problem. The scheme firstly uses online identification of one DRNN to obtain the Jacobian information of plant. On this basis, another DRNN identifies the inverse plant model which constitutes adaptive inverse control system as controller. The simulation results verify that the adaptiv
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34

Hussein, Talib Sabah, Kadhim Nasir Fadhil, and Zaid H. Al-Tameemi. "A comparative analysis of the tracking angles and fixed angle systems during sunny and cloudy days under Iraqi conditions." Indonesian Journal of Electrical Engineering and Computer Science 15, no. 2 (2019): 565. http://dx.doi.org/10.11591/ijeecs.v15.i2.pp565-570.

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&lt;p&gt;This paper describes design tow systems tracking angles and fixed angle solar panel to improve the performance of solar energy, during the sunny and cloudy days. Depending on the development of the solar tracking system and amount of solar energy captured by the solar panel per day actually, the project is designed with AT 89552 MC depending upon the light falls on (LDR), data will be reading by AT 89552 MC. and changing the direction of a motor in this direction the solar panel will be moving to capture the maximum of solar energy. The tracking angle solar panel has been efficient th
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35

Zhu, Hongbin, Xiang Gao, Lei Zhao, and Xiaoshun Zhang. "Decomposition-Based Multi-Classifier-Assisted Evolutionary Algorithm for Bi-Objective Optimal Wind Farm Energy Capture." Energies 16, no. 9 (2023): 3718. http://dx.doi.org/10.3390/en16093718.

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With the wake effect between different wind turbines, a wind farm generally aims to achieve the maximum energy capture by implementing the optimal pitch angle and blade tip speed ratio under different wind speeds. During this process, the balance of fatigue load distribution is easily neglected because it is difficult to be considered, and, thus, a high maintenance cost results. Herein, a novel bi-objective optimal wind farm energy capture (OWFEC) is constructed via simultaneously taking the maximum power output and the balance of fatigue load distribution into account. To rapidly acquire the
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36

Amana, Ayoob* Devika Venugopal Bismiya Sunny Nimmy Johnny Vikram J. "DESIGN IMPROVEMENTS IN INCREASING THE EFFICIENCY OF HYBRID SOLAR ENERGY BUILDING." Global Journal of Engineering Science and Research Management 3, no. 5 (2016): 149–52. https://doi.org/10.5281/zenodo.53751.

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The electrical energy used for the living comfort, by the present society mainly comes from burning fossil fuels. These fuels are decreasing in a dramatic rate and it also contributes to pollution. Hybrid solar design for buildings helps to reduce the consumption of electrical energy and maximize the use of solar energy. A good thermal comfort is maintained during the whole cycle of the sun. This paper deals with maximum utilization of sun&rsquo;s energy according to the various positions of sun during a day. It also includes the positioning of solar cells and better orientation, thus helping
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37

Fan, Liguo, Guoqiang Liu, Xianjin Song, Ce Xiang, Jiacheng Wei, and Hui Xia. "Simulation and Experiments on Optimization of Vortex-Induced Vibration Power Generation System Based on Side-by-Side Double Blunt Bodies." Energies 17, no. 21 (2024): 5291. http://dx.doi.org/10.3390/en17215291.

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In order to improve the utilization efficiency of converting low-flow current energy into electric energy for Reynolds number 10,000 ≤ Re ≤ 40,000, this paper proposes a vortex-induced vibration power generation system based on a side-by-side double blunt body. In this system, the side-by-side double blunt body structure is used in the current energy capture part to enhance the collection of low-flow current energy; the permanent magnet linear motor is used in the electric energy conversion part to improve the efficiency of electric energy conversion; and a laboratory device is constructed for
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38

Lian, Jijian, Xiaowei Wang, Xiaoqun Wang, et al. "Experimental Study on the Vibration Characteristics of a Wave-Induced Oscillation Heaving Plate Energy Capture Device." Journal of Marine Science and Engineering 12, no. 10 (2024): 1797. http://dx.doi.org/10.3390/jmse12101797.

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In order to develop green energy, reduce carbon emissions, and alleviate global warming and the green energy crisis, many researchers focus on wave energy, using a device to convert wave energy into electricity. The three main types of wave energy converters are the overtopping type, the oscillating water column type, and the oscillating body type, and for most of them, the power generation efficiency is low. The research team in this paper proposed a wave energy converter for a wave-induced oscillation heave plate. The plate vibrates up and down under the action of waves, and the captured ene
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39

Li, Feng Ting, and En Rang Zheng. "Research on Maximum Power Point Tracking Control System of Variable Speed Wind Turbine." Applied Mechanics and Materials 65 (June 2011): 389–93. http://dx.doi.org/10.4028/www.scientific.net/amm.65.389.

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This paper analyzes the operating characteristics of wind turbine and introduces the principle of maximum power point tracking control system of variable speed wind turbine. A improved maximum power tracking control strategy is proposed for large inertia wind power systems in order to achieve maximum wind power capture and increased utilization of wind energy when wind turbines is below the rated wind speed. A variable speed wind power generation system is modeled and simulated in the Simulink environment of the Matlab .The simulation results proves the correctness and feasibility of the track
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40

Schepkin, Yu G., V. I. Slisenko, and V. M. Shevel. "Method of direct measurement of the capture neutron cross section for radioactive nuclei." Nuclear Physics and Atomic Energy 11, no. 3 (2010): 302–11. https://doi.org/10.15407/jnpae2010.03.302.

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Method of direct measurement of the capture neutron cross section for radioactive nuclei on the base of the multiplicity spectrometry of the capture gamma radiation was realized by means of the 4π-multisection detector. The energy of gamma rays of the radioactive irradiation must not exceed 1 MeV. Capacity methods had been examinated for the thermal neutron cross section measurement. Sensitivity for the minimum quantity of measured sample with capture cross section of 40 barns is equal to 0.37 mg, and maximum specific activity of the 137Cs in the measured sample is around 0.44 · 1010 Bk g-1.
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41

Beena, Kumari, and Mehta Deepa. "Modeling & Performance Scrutiny of Maximum Power Extraction Strategy in PMSG based Wind Energy Transformation System." International Journal of Engineering and Advanced Technology (IJEAT) 10, no. 3 (2021): 1–5. https://doi.org/10.35940/ijeat.A1677.0210321.

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Energy from wind is turning out to be a very promising alternative source technology in present and future power sector as it is environment-friendly and long-lasting with technological enhancements. Moreover, it occupies less space and has relative cost competitiveness. In the utility grid, the penetration of wind energy systems is expanding as the research progresses to capture greatest available wind power and operate the wind turbine (WT) with maximum possible aerodynamic efficiency. For this to accomplish a tracking controller is required to extract greatest wind power at all instants in
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Tanyi, Robinson J., and Muyiwa S. Adaramola. "Bioenergy potential of agricultural crop residues and municipal solid waste in Cameroon." AIMS Energy 11, no. 1 (2023): 31–46. http://dx.doi.org/10.3934/energy.2023002.

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&lt;abstract&gt; &lt;p&gt;Biomass has emerged as an important and promising energy source, particularly in developing countries, owing to continuous research for sustainable energy sources that do not interfere with food, water or land needs. This study introduces the surplus availability factor (SAF), minimum, average and maximum biogas production technique in the assessment of crop production data in 2020 to provide a more precise and current estimate of Cameroon's crop residue and municipal solid waste (MSW) bioenergy potential. Crop residues contributed roughly 96% while MSW contributed th
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Hoang, Thi Thom, and Thi Huong Le. "Development of deep reinforcement learning for maximum power point tracking of photovoltaic systems." Indonesian Journal of Electrical Engineering and Computer Science 33, no. 2 (2024): 707–14. https://doi.org/10.11591/ijeecs.v33.i2.pp707-714.

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The use of renewable energy systems, specifically photovoltaic (PV) systems (PVs) that convert solar energy into electricity, has become a popular solution to address global environmental concerns by reducing the utilization of non-renewable energy sources, which contribute to pollution. Efforts to increase the power transfer effectiveness of PV systems include the advancement of controllers for maximizing power point tracking (MPPT). These controllers guarantee optimal system operation at the maximum power point (MPP) in diverse environmental conditions. The paper proposes an improved deep re
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Rajendran, Saravanakumar, and Debashisha Jena. "Variable speed wind turbine for maximum power capture using adaptive fuzzy integral sliding mode control." Journal of Modern Power Systems and Clean Energy 2, no. 2 (2014): 114–25. http://dx.doi.org/10.1007/s40565-014-0061-3.

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Jiang, Chuhua, Xuedao Shu, Junhua Chen, Lingjie Bao, and Hao Li. "Research on Performance Evaluation of Tidal Energy Turbine under Variable Velocity." Energies 13, no. 23 (2020): 6313. http://dx.doi.org/10.3390/en13236313.

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Aiming at the performance evaluation problem of tidal energy turbines in the application of periodic time-varying flow velocity, with the goal of maximizing the efficiency of energy harvesting in practical applications, an evaluation system combining the characteristics of flow velocity changes in practical applications is proposed. After long-term monitoring of tidal current flow velocity in the applied sea area, the actual measured tidal current periodic flow velocity is divided into several flow velocity segments by using statistical segmentation, and the evaluation flow velocity of each fl
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H. Farmahini, Amir, Daniel Friedrich, Stefano Brandani, and Lev Sarkisov. "Exploring new sources of efficiency in process-driven materials screening for post-combustion carbon capture." Energy & Environmental Science 13, no. 3 (2020): 1018–37. http://dx.doi.org/10.1039/c9ee03977e.

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K, Rachananjali, and Dr Srinu Naik R. "Design and Implementation of Modular Multilevel Converter for Photovoltaic Energy Generation Using Hill Search Method." International Journal of Engineering & Technology 7, no. 4.24 (2018): 38. http://dx.doi.org/10.14419/ijet.v7i4.24.21767.

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This article proposes an approach to capture solar energy utilizing double energy conversion from DC-DC and DC-AC. The present scenario requires lot of energy in order to meet the demand; the energy generation without hurting the environment is possible by means of non-conventional sources. In this article the source chosen is solar energy. To capture solar energy, solar cell is utilized. On capturing the solar energy the achieved result is in the form of DC. The DC link is established and it is boosted with the help of DC-DC converter and it is being fed as input to modular multilevel convert
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Pereira, Eduardo G., Alberto Fossa, Carlos Eduardo Pellegrino Cerri, et al. "Advancing Sustainability through Carbon Capture, Utilization and Storage (CCUS) Technologies: The Hydrogel Case Study." Journal of Sustainable Development Law and Policy (The) 14, no. 1 (2023): 218–50. http://dx.doi.org/10.4314/jsdlp.v14i1.11s.

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Carbon capture, utilization, and storage (CCUS) consists of several technologies that are capable of playing significant and diverse roles in the achievement of global energy and climate goals under the context of energy transition. It forms a relevant technological approach for capturing carbon and delivering a net zero energy system. Currently, CCUS projects are mainly taking place in developed countries, with some of them having specific promotion policies such as 45Q under IRA in the US. Several of the current CCUS activities take the form of enhanced oil recovery (EOR). CCS have a value c
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Et. al., Shabbier Ahmed Sydu ,. "Performance Analysis Of A Grid-Connected Solar Photovoltaic Wind Hybrid Energy System." Turkish Journal of Computer and Mathematics Education (TURCOMAT) 12, no. 2 (2021): 1585–91. http://dx.doi.org/10.17762/turcomat.v12i2.1438.

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Electrical energy becomes necessary for human being. Generation of electrical energy mostly depends on fossils fuel, they are limited in nature and also responsible for environmental pollution. Renewable energy resources provides a better alternative for future. In comparison to conventional energy resources economical aspect is a major issue of renewable energy sources with the feasibility and efficiency. This paper investigates the performance analysis and control of Photovoltaic (PV)-wind hybrid system connected to electrical grid and feeds large plant with critical variable loads. The tech
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El-Maghlany, Wael M., Mohamed A. Teamah, and Hiroshi Tanaka. "Optimum design and orientation of the greenhouses for maximum capture of solar energy in North Tropical Region." Energy Conversion and Management 105 (November 2015): 1096–104. http://dx.doi.org/10.1016/j.enconman.2015.08.066.

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