{"id":15648,"date":"2024-01-11T11:59:00","date_gmt":"2024-01-11T10:59:00","guid":{"rendered":"https:\/\/www.quobis.com\/?p=15648"},"modified":"2025-04-02T12:14:32","modified_gmt":"2025-04-02T10:14:32","slug":"6g-on-time-testbed-5g","status":"publish","type":"post","link":"https:\/\/www.quobis.com\/es\/2024\/01\/11\/6g-on-time-testbed-5g\/","title":{"rendered":"6G ON TIME | Testbed 5G"},"content":{"rendered":"\n<h2 class=\"wp-block-heading\" id=\"h-testbed-5g-la-plataforma-avanzada-para-la-optimizacion-de-comunicaciones-en-tiempo-real\"><strong>Testbed 5G: La plataforma avanzada para la optimizaci\u00f3n de comunicaciones en tiempo real<\/strong><\/h2>\n\n\n\n<p>El proyecto <a href=\"https:\/\/www.quobis.com\/es\/proyectos-de-innovacion\/6g-on-time\/\"><strong>6G ON TIME<\/strong> <\/a>utiliza un <strong>testbed 5G avanzado<\/strong> que permite evaluar y optimizar el rendimiento de las aplicaciones en tiempo real en redes 5G. Esto se hace teniendo en cuenta la complejidad del medio radioel\u00e9ctrico y las fluctuaciones que pueden afectar la calidad de la se\u00f1al. Su uso es clave para analizar y mitigar los efectos de interferencias, desvanecimientos de canal y movilidad de los dispositivos.<\/p>\n\n\n\n<p>El rendimiento \u00f3ptimo de las aplicaciones en tiempo real en redes 5G no solo depende de la aplicaci\u00f3n en s\u00ed. Depende tambi\u00e9n de la capacidad de adaptaci\u00f3n de la red a su entorno y a los cambios que puedan producirse en ella. Las contingencias en el <strong>core de la red<\/strong>, como la congesti\u00f3n o fallos, pueden provocar retardos elevados y p\u00e9rdida de paquetes. Esto afecta la calidad del servicio. En este contexto, <strong>la monitorizaci\u00f3n de la red tanto en la interfaz radio como en el core es esencial para reaccionar a los distintos escenarios y garantizar la calidad de la experiencia del usuario (QoE)<\/strong>.<\/p>\n\n\n\n<h2 class=\"wp-block-heading\" id=\"h-tecnologias-clave-para-la-optimizacion-de-redes-5g\"><strong>Tecnolog\u00edas clave para la optimizaci\u00f3n de redes 5G<\/strong><\/h2>\n\n\n\n<p>Para abordar estos desaf\u00edos, 6G ON TIME investiga diversas tecnolog\u00edas que permiten mejorar la calidad de la red en aplicaciones cr\u00edticas. Entre ellas destacan <strong>network slicing, mecanismos de acceso al medio radio (MAC) y la integraci\u00f3n de redes no terrestres (NTN)<\/strong>.<\/p>\n\n\n\n<h3 class=\"wp-block-heading\" id=\"h-network-slicing\"><strong>Network Slicing:<\/strong> <\/h3>\n\n\n\n<p>Esta t\u00e9cnica permite la creaci\u00f3n de redes l\u00f3gicas independientes (<strong>slices<\/strong>) dentro de una misma infraestructura f\u00edsica. Gracias a esta segmentaci\u00f3n, diferentes servicios pueden coexistir en la red. Comparten recursos pero garantizan que cada slice tenga los niveles de calidad necesarios seg\u00fan los acuerdos de servicio (<strong>SLA, Service Level Agreement<\/strong>). Esto es clave para aplicaciones en tiempo real. Garantiza un ancho de banda y latencias controladas para servicios como el streaming de video en ultra baja latencia o las comunicaciones de emergencia.<\/p>\n\n\n\n<h3 class=\"wp-block-heading\" id=\"h-acceso-multi-rat-y-protocolos-mac\"><strong>Acceso multi-RAT y protocolos MAC<\/strong><\/h3>\n\n\n\n<p>Los mecanismos de acceso al medio regulan la entrada de los usuarios a la red. Esto evita interferencias y colisiones en la transmisi\u00f3n de datos. En escenarios donde coexisten m\u00faltiples tecnolog\u00edas, como <strong>5G NR y Wi-Fi 6<\/strong>, es fundamental desarrollar mecanismos inteligentes. Seleccionan la mejor tecnolog\u00eda disponible en cada momento para asegurar la calidad del servicio. 6G ON TIME investiga estos mecanismos en un entorno de infraestructura experimental. Explora nuevas soluciones para mejorar la eficiencia del acceso multi-RAT en redes de pr\u00f3xima generaci\u00f3n.<\/p>\n\n\n\n<h3 class=\"wp-block-heading\" id=\"h-convergencia-de-redes-terrestres-y-no-terrestres-ntn\"><strong>Convergencia de redes terrestres y no terrestres (NTN)<\/strong><\/h3>\n\n\n\n<p>La integraci\u00f3n de redes satelitales en 5G, promovida por el <strong>3GPP a partir de la Release 16<\/strong>, permite extender la cobertura a zonas remotas donde la infraestructura terrestre es limitada. Esta convergencia garantiza una conectividad sin interrupciones (<strong>seamless connectivity<\/strong>) para los usuarios, sin que estos perciban cambios en la tecnolog\u00eda de acceso utilizada. El testbed utilizado en 6G ON TIME permite analizar c\u00f3mo esta integraci\u00f3n impacta en la latencia y en la calidad del servicio de las aplicaciones en tiempo real.<\/p>\n\n\n\n<h2 class=\"wp-block-heading\" id=\"h-infraestructura-experimental-basada-en-sdr-y-cots\"><strong>Infraestructura experimental basada en SDR y COTS<\/strong><\/h2>\n\n\n\n<p>Para llevar a cabo estas investigaciones, el testbed se basa en <strong>hardware de prop\u00f3sito general (COTS, Commercial-Off-The-Shelf) y tecnolog\u00edas definidas por software (SDR, Software Defined Radio)<\/strong>. Su adaptaci\u00f3n en el marco del proyecto se centra en tres objetivos clave:<\/p>\n\n\n\n<ul class=\"wp-block-list\">\n<li>Implementar <strong>mecanismos de slicing y acceso multi-RAT<\/strong> en una red 5G NR. Configurar distintos niveles de calidad de servicio para evaluar el rendimiento de aplicaciones en tiempo real.<\/li>\n\n\n\n<li>Proporcionar la infraestructura experimental necesaria para analizar el impacto de la <strong>convergencia de redes terrestres y no terrestres<\/strong> en <a href=\"https:\/\/www.quobis.com\/es\/2023\/06\/05\/6g-on-time-latencia-y-comunicaciones-criticas\/\">la latencia<\/a> y estabilidad de las comunicaciones.<\/li>\n\n\n\n<li>Desarrollar <strong>nuevas t\u00e9cnicas de monitorizaci\u00f3n de calidad de servicio (QoS)<\/strong> tanto en la <strong>RAN (Red de Acceso Radioel\u00e9ctrico) como en el core de la red<\/strong>. Esto debe estar alineado con los requisitos de calidad de experiencia (QoE) de las aplicaciones en tiempo real.<\/li>\n<\/ul>\n\n\n\n<p>El testbed utilizado en 6G ON TIME permite una evaluaci\u00f3n precisa y detallada del comportamiento de la red en distintos escenarios o <a href=\"https:\/\/www.quobis.com\/es\/2023\/07\/03\/6g-on-time-casos-de-uso\/\">casos de uso<\/a>. Esto asegura que las futuras generaciones de redes m\u00f3viles sean m\u00e1s r\u00e1pidas, confiables y adaptativas a las necesidades de las comunicaciones en tiempo real. Con estos avances, el proyecto marca un hito en la optimizaci\u00f3n de la latencia y la fiabilidad en las redes de pr\u00f3xima generaci\u00f3n.<br><\/p>\n\n\n<style>.kb-row-layout-id15648_8578e6-00 > .kt-row-column-wrap{align-content:start;}:where(.kb-row-layout-id15648_8578e6-00 > .kt-row-column-wrap) > .wp-block-kadence-column{justify-content:start;}.kb-row-layout-id15648_8578e6-00 > .kt-row-column-wrap{column-gap:var(--global-kb-gap-md, 2rem);row-gap:var(--global-kb-gap-md, 2rem);padding-top:var(--global-kb-spacing-sm, 1.5rem);padding-bottom:var(--global-kb-spacing-sm, 1.5rem);}.kb-row-layout-id15648_8578e6-00 > .kt-row-column-wrap > div:not(.added-for-specificity){grid-column:initial;}.kb-row-layout-id15648_8578e6-00 > .kt-row-column-wrap{grid-template-columns:repeat(3, minmax(0, 1fr));}.kb-row-layout-id15648_8578e6-00 > .kt-row-layout-overlay{opacity:0.30;}@media all and (max-width: 1024px){.kb-row-layout-id15648_8578e6-00 > .kt-row-column-wrap > 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