Academic literature on the topic 'PV-curvature'

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Journal articles on the topic "PV-curvature"

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Appelbaum, Joseph, and Avi Aronescu. "Distribution of Solar Radiation on Greenhouse Convex Rooftop." Sustainability 12, no. 17 (2020): 7197. http://dx.doi.org/10.3390/su12177197.

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Photovoltaic greenhouses became popular in many countries for growing crops and, at the same time, generating electricity mainly for own usage to control the air temperature inside the greenhouse. Solar radiation is essential for their photosynthesis process for crop growing, however, high levels of solar radiation may adversely affect the crop quality. Therefore, a balance between the need for sufficient solar radiation for plant grows and the need for electricity is important to maintain. Many greenhouses are built with curved rooftops of convex shapes and flat-plate photovoltaic (PV) module
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Badi, Nacer, Azemtsop Manfo Theodore, Saleh A. Alghamdi, et al. "Thermal effect on curved photovoltaic panels: Model validation and application in the Tabuk region." PLOS ONE 17, no. 11 (2022): e0275467. http://dx.doi.org/10.1371/journal.pone.0275467.

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This paper aimed to investigate the temperature effect on photovoltaic (PV) cell parameters. The PV cell parameters such as series and parallel resistances, diode ideality factor, and diode saturation current, are not considered in the reported stepwise modeling. The present work aims to improve available models used in the modeling and simulation of PV modules to support the researcher and power project developer. All the required temperature-dependent parameters are determined to model the simulated PV module with high accuracy using Simulink/MATLAB software. To validate the method, a 36-cel
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Molina-Tamayo, Santiago, Andrés Yesid Moreno, Felipe Mendoza, Gabriel Espitia Mesa, and Gilberto Osorio- Gómez. "Energy analysis of PV surfaces in BIPV applications." E3S Web of Conferences 612 (2025): 04002. https://doi.org/10.1051/e3sconf/202561204002.

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This paper studies the power generation performance of flexible solar panels at different radii of curvature for both concave and convex configurations. Its performance is evaluated horizontally and vertically to provide architects and designers with a reference of how power generation is impacted depending on the geometries selected for the design of facades or roofs. The study consisted of two phases, the first comprised a simulation to estimate the amount of energy a surface receives according to its geometry, orientation, location, and simulated period. The second phase corresponds to an e
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Kullampalayam Murugaiyan, Nandhini, Kumar Chandrasekaran, Magdalin Mary Devapitchai, and Tomonobu Senjyu. "Parameter Estimation of Three-Diode Photovoltaic Model Using Reinforced Learning-Based Parrot Optimizer with an Adaptive Secant Method." Sustainability 16, no. 23 (2024): 10603. https://doi.org/10.3390/su162310603.

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In the developing landscape of photovoltaic (PV) technology, accuracy in simulating PV cell behaviour is dominant for enhancing energy conversion efficiency. This study introduces a new approach for parameter estimation in the three-diode PV model, a basis in the representation of PV cell characteristics. The methodology combines a reinforced learning-based parrot optimizer (RLPO) with an adaptive secant method (ASM) to fine-tune the parameters governing the PV model. The RLPO algorithm is inspired by the mimetic ability of parrots, i.e., foraging, staying, communicating, and fear noticed in t
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Liu, Guohao, Yonghong Deng, and Zhibin Li. "An Ultra-Precision Smoothing Polishing Model for Optical Surface Fabrication with Morphology Gradient Awareness." Micromachines 16, no. 7 (2025): 734. https://doi.org/10.3390/mi16070734.

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To improve the surface morphology quality of ultra-precision optical components, particularly in the suppression of mid-spatial frequency (MSF) errors, this paper proposes a morphology gradient-aware spatiotemporal coupled smoothing model based on convolutional material removal. By introducing the Laplacian curvature into the surface evolution framework, a curvature-sensitive “peak-priority” mechanism is established to dynamically guide the local dwell time. A nonlinear spatiotemporal coupling equation is constructed, in which the dwell time is adaptively modulated by surface gradient magnitud
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Aristya, Vina Eka, and Intan Gilang Cempaka. "KARAKTERISASI ENAM VARIETAS BUNCIS (Phaseolus vulgaris L.) BERDASARKAN PANDUAN PENGUJIAN INDIVIDUAL." Agric 25, no. 1 (2016): 34. http://dx.doi.org/10.24246/agric.2013.v25.i1.p34-41.

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<p>Beans (Phaseolus vulgaris L.) is a plant that has the potential for mainstream consumers, have a large enough market opportunity and a source of vegetable protein. “Perancis” varieties are local Central Java bean varieties are widely grown in the Bandungan area. “Perancis” varieties not currently provide enough characters clear and complete. Test objectives were (1) to characterize the “Perancis” varieties in order to have a complete character information varieties and (2) to determine distinctness, uniformity and stability of the “Perancis” varieties compared with varieties Gypsie, S
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Xu, Shunhai, Chunxiao Zhao, Dian He, Nan Xu, Bin Zhang, and Guofang Gong. "Research on Bearing Mechanism of Spherical Valve Pairs of Axial Piston Pumps." Actuators 13, no. 4 (2024): 147. http://dx.doi.org/10.3390/act13040147.

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The hydraulic system drives the cutter head mechanism to realize the excavation of large tunnel boring equipment, which puts forward the technical requirements of high pressure and large flow to the pump source. The traditional small displacement axial piston pump uses a planar valve plate. However, under high flow and heavy load conditions, the planar valve plate configuration is prone to uneven wear due to the high-pressure and -velocity (PV) value and pressure shock, which ultimately affects the reliability of the system. A simulation analysis of the load-bearing characteristics of the sphe
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Song, Na, Xitong Xu, Yongxiao Zheng, Jikui Miao, and Hongwen Yu. "Heat Transfer Analysis of Ventilated Photovoltaic Wall Panels with Curved Ribs for Different Parametric Cavity Structures." Buildings 15, no. 7 (2025): 1184. https://doi.org/10.3390/buildings15071184.

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Photovoltaic (PV) wall panels are an integral part of Building-Integrated Photovoltaics (BIPV) and have great potential for development. However, inadequate heat dissipation can reduce power generation efficiency. To reduce the temperature of photovoltaic wall panels and improve the photovoltaic conversion efficiency, this paper constructs a computational fluid dynamics (CFD) numerical model of ventilated photovoltaic wall panels and verifies it, then simulates and analyzes the effects of three cavity structure forms on the thermal performance of photovoltaic wall panels and optimizes the dime
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Milošević, Vuk, Janusz Marchwiński, and Elena Lucchi. "Strain Analysis of Membrane Structures for Photovoltaic Integration in Built Environment." Sustainability 17, no. 3 (2025): 1041. https://doi.org/10.3390/su17031041.

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The integration of photovoltaic (PV) systems into tensioned membrane structures presents a significant advancement for sustainable applications in the built environment. However, a critical technical challenge remains in the substantial strains induced by external loads, which can compromise both PV efficiency and the structural integrity of the membrane. Current design methodologies prioritize stress, deflection, and ponding analysis of tensioned membranes. Strain behavior of whole structures, a key factor for ensuring long-term performance and compatibility of PV-integrated membranes, has be
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OPREA, Adrian, and Teodor MARUȘCA. "CONTRIBUTION TO THE ASSESSMENT OF MOUNTAIN GRASSLANDS PRODUCTIVITY FROM RÂMNICU SĂRAT RIVER BASIN." Annals of the Academy of Romanian Scientists Series on Agriculture, Silviculture and Veterinary Medicine 11, no. 1 (2022): 50–61. http://dx.doi.org/10.56082/annalsarsciagr.2022.1.50.

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The aim of this study is to assess the grasslands of the Râmnicu Sărat river basin, lying in Buzău and Vrancea counties, to the Curvature Carpathians, in terms of forage species, as well as to determine their productivity, pastoral value (PV), green fodder mass (GM) production and the optimal load of herbivores per hectare (Large Cattle Units). The permanent grasslands of Râmnicu Sărat river basin are spread up to 1340 m altitude above sea level, on flat lands and aspects, up to 30 degrees slopes, where, on average 85 species of plant species are found within a single plant community. The vege
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Conference papers on the topic "PV-curvature"

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Fujita, Shinji, Nobuaki Mitamura, and Yasuo Murakami. "Research of New Factors Affecting Rolling Contact Fatigue Life." In World Tribology Congress III. ASMEDC, 2005. http://dx.doi.org/10.1115/wtc2005-63400.

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Conventional life theory defines the rolling contact fatigue (RCF) life as being determined by the maximum contact pressure (P) and the total number of stress cycles (N). However, when the life test results of bearings were analyzed, it was found that there were cases where there was little correlation between the RCF life, maximum contact pressure and the number of stress cycles. An extensive investigation has revealed that the slip velocity is an additional factor that influences the RCF life of bearings. Under special test conditions it was discovered that when the PV value, which is a prod
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Tenjimbayashi, Koji. "New type of Twymann-Green interferometer using a HOE." In OSA Annual Meeting. Optica Publishing Group, 1991. http://dx.doi.org/10.1364/oam.1991.wa8.

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A new type of Twymann-Green interferometer developed here mainly consists of a collimated He-Ne laser beam, a holographic optical element (HOE), a reference flat mirror, an imaging lens, and a screen. The HOE is made using a collimated reference beam and a diverging spherical object beam. In the interferometer the HOE, illuminated from its back by a collimated beam, diffracts a spherical wavefront and transmits the collimated beam. The former beam is reflected by a spherical mirror under test, passes through the HOE, and reaches to a screen. The latter beam is reflected by a flat reference mir
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