Modeling of renewable energy systems on convolution codesusing interference patterns ; Modelado de Sistemas de energía renovables sobre códigos de convolución mediante patrones de interferencia

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Titel: Modeling of renewable energy systems on convolution codesusing interference patterns ; Modelado de Sistemas de energía renovables sobre códigos de convolución mediante patrones de interferencia
Autoren: Sandoval-Ruiz, C.
Quelle: Universidad Ciencia y Tecnología; Vol. 29 Núm. 126 (2025): Universidad Ciencia y Tecnologia Vol 29 num 126; 111-122 ; Universidad Ciencia y Tecnología; Vol 29 No 126 (2025): Universidad Ciencia y Tecnologia Vol 29 Num. 126; 111-122 ; 2542-3401 ; 1316-4821
Verlagsinformationen: Autanabooks
Publikationsjahr: 2025
Schlagwörter: research into energy systems, modern physics, interference patterns, investigación de sistemas energéticos, física moderna y ondas, patrones de interferencia
Beschreibung: This study proposes a novel systems modeling approach based on interference patterns to characterize element interactions with energy variables through resulting projective patterns. The methodology encompasses three key phases: identification of distinct system stages, implementation of convolutional code modeling, and establishment of correlation indices between wave patterns to derive generalized parametric equations. Results demonstrate the development of a convolution element containing dual terms that quantify residual stored energy and energy polarized by the system's component elements. The model presents an innovative framework for physical systems analysis and renewable energy park optimization by comprehensively integrating all energy components into a unified mathematical representation. This approach enables more accurate prediction of system behavior under varying conditions and provides a foundation for improved efficiency in renewable energy applications. ; Este estudio propone un novedoso enfoque de modelado de sistemas basado en patrones de interferencia para caracterizar las interacciones de los elementos con las variables energéticas a través de los patrones proyectivos resultantes. La metodología abarca tres fases clave: identificación de las distintas etapas del sistema, aplicación del modelado de código convolucional y establecimiento de índices de correlación entre los patrones de onda para derivar ecuaciones paramétricas generalizadas. Los resultados demuestran el desarrollo de un elemento convolucional que contiene términos duales que cuantifican la energía residual almacenada y la energía polarizada por los elementos componentes del sistema. El modelo presenta un marco innovador para el análisis de sistemas físicos y la optimización de parques de energías renovables al integrar exhaustivamente todos los componentes energéticos en una representación matemática unificada. Este enfoque permite predecir con mayor exactitud el comportamiento del sistema en condiciones variables y sienta las ...
Publikationsart: article in journal/newspaper
Dateibeschreibung: application/pdf; text/html
Sprache: English
Relation: https://uctunexpo.autanabooks.com/index.php/uct/article/view/927/1682; https://uctunexpo.autanabooks.com/index.php/uct/article/view/927/1683; https://uctunexpo.autanabooks.com/index.php/uct/article/view/927
DOI: 10.47460/uct.v29i126.927
Verfügbarkeit: https://uctunexpo.autanabooks.com/index.php/uct/article/view/927
https://doi.org/10.47460/uct.v29i126.927
Rights: Copyright (c) 2025 C. Sandoval-Ruiz ; https://creativecommons.org/licenses/by/4.0/deed.es
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  Data: Modeling of renewable energy systems on convolution codesusing interference patterns ; Modelado de Sistemas de energía renovables sobre códigos de convolución mediante patrones de interferencia
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  Data: Universidad Ciencia y Tecnología; Vol. 29 Núm. 126 (2025): Universidad Ciencia y Tecnologia Vol 29 num 126; 111-122 ; Universidad Ciencia y Tecnología; Vol 29 No 126 (2025): Universidad Ciencia y Tecnologia Vol 29 Num. 126; 111-122 ; 2542-3401 ; 1316-4821
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  Data: 2025
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  Data: <searchLink fieldCode="DE" term="%22research+into+energy+systems%22">research into energy systems</searchLink><br /><searchLink fieldCode="DE" term="%22modern+physics%22">modern physics</searchLink><br /><searchLink fieldCode="DE" term="%22interference+patterns%22">interference patterns</searchLink><br /><searchLink fieldCode="DE" term="%22investigación+de+sistemas+energéticos%22">investigación de sistemas energéticos</searchLink><br /><searchLink fieldCode="DE" term="%22física+moderna+y+ondas%22">física moderna y ondas</searchLink><br /><searchLink fieldCode="DE" term="%22patrones+de+interferencia%22">patrones de interferencia</searchLink>
– Name: Abstract
  Label: Description
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  Data: This study proposes a novel systems modeling approach based on interference patterns to characterize element interactions with energy variables through resulting projective patterns. The methodology encompasses three key phases: identification of distinct system stages, implementation of convolutional code modeling, and establishment of correlation indices between wave patterns to derive generalized parametric equations. Results demonstrate the development of a convolution element containing dual terms that quantify residual stored energy and energy polarized by the system's component elements. The model presents an innovative framework for physical systems analysis and renewable energy park optimization by comprehensively integrating all energy components into a unified mathematical representation. This approach enables more accurate prediction of system behavior under varying conditions and provides a foundation for improved efficiency in renewable energy applications. ; Este estudio propone un novedoso enfoque de modelado de sistemas basado en patrones de interferencia para caracterizar las interacciones de los elementos con las variables energéticas a través de los patrones proyectivos resultantes. La metodología abarca tres fases clave: identificación de las distintas etapas del sistema, aplicación del modelado de código convolucional y establecimiento de índices de correlación entre los patrones de onda para derivar ecuaciones paramétricas generalizadas. Los resultados demuestran el desarrollo de un elemento convolucional que contiene términos duales que cuantifican la energía residual almacenada y la energía polarizada por los elementos componentes del sistema. El modelo presenta un marco innovador para el análisis de sistemas físicos y la optimización de parques de energías renovables al integrar exhaustivamente todos los componentes energéticos en una representación matemática unificada. Este enfoque permite predecir con mayor exactitud el comportamiento del sistema en condiciones variables y sienta las ...
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  Data: https://uctunexpo.autanabooks.com/index.php/uct/article/view/927/1682; https://uctunexpo.autanabooks.com/index.php/uct/article/view/927/1683; https://uctunexpo.autanabooks.com/index.php/uct/article/view/927
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  Data: 10.47460/uct.v29i126.927
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  Data: https://uctunexpo.autanabooks.com/index.php/uct/article/view/927<br />https://doi.org/10.47460/uct.v29i126.927
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  Data: Copyright (c) 2025 C. Sandoval-Ruiz ; https://creativecommons.org/licenses/by/4.0/deed.es
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      – TitleFull: Modeling of renewable energy systems on convolution codesusing interference patterns ; Modelado de Sistemas de energía renovables sobre códigos de convolución mediante patrones de interferencia
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