Abstract:
A technique for cable interface-based load balancing between first and second cells is described. Each cell comprises cable and air interfaces defining a parameter set comprising load statuses of the cable and air interfaces. A method aspect being performed in a control entity comprises the steps of determining, in the first cell, the parameter set of the first cell, obtaining the parameter set of the second cell, determining whether the load statues of the cable and air interfaces of the first cell are low, whether the air interface load status of the second cell is low, and whether the cable interface load status of the second cell is high, and reconfiguring, if a result of the determination is affirmative, at least one air interface configuration parameter of the first cell so as to off-load at least a part of mobile-originated traffic from the second cell to the first cell.
Abstract:
Técnicas para mejorar el desempeño en escenarios de Internet industrial de las cosas (IIoT), que incluyen técnicas para la gestión de redes sensibles al tiempo (TSN) e integración con redes inalámbricas 5G. Un método ejemplar llevado a cabo por un dispositivo inalámbrico asociado con una red de comunicaciones inalámbricas comprende recibir una primera señal de temporización desde la red de comunicaciones inalámbricas y recibir una segunda señal de temporización desde una red de datos de red sensible al tiempo, TSN, externa a la que está conectado el dispositivo inalámbrico. El método comprende además establecer al menos una secuencia TSN con la red de datos TSN externa, a través de una estación base radioeléctrica, RBS, en la red de comunicaciones inalámbricas.
Abstract:
Técnicas para mejorar el rendimiento en escenarios de Internet industrial de las cosas (IIoT), incluidas técnicas para redes sensibles al tiempo (TSN) e integración de redes inalámbricas 5G. Un método de ejemplo realizado por un dispositivo inalámbrico asociado con una red de comunicaciones inalámbricas comprende recibir una primera señal de temporización de la red de comunicaciones inalámbricas y recibir una segunda señal de temporización de una red de datos externa sensible al tiempo, TSN, a la que está conectado el dispositivo inalámbrico. . El método comprende además establecer al menos un flujo TSN con la red de datos TSN externa, a través de una estación base de radio, RBS, en la red de comunicaciones inalámbricas. (Traducción automática con Google Translate, sin valor legal)
Abstract:
Techniques for enhancing performance in Industrial Internet-of-Things (IIoT) scenarios, including techniques for time-sensitive networking (TSN) and 5G wireless network integration. An example method, performed by a wireless device, comprises receiving system information (SI) from a radio base station (RBS) of a radio access network (RAN), the SI being indicative of support for TSN through the RBS, and establishing at least one TSN stream with an external data network, through the RBS. The example method further includes receiving a first timing signal from the wireless communications network, via the RBS, receiving a second timing signal from the external TSN data network to which the wireless device is connected, comparing the first timing signal to the second timing signal to determine an offset, and transmitting the offset to the wireless communications network.
Abstract:
Techniques for enhancing performance in Industrial Internet-of-Things (IIoT) scenarios, including techniques for time-sensitive networking (TSN) and 5G wireless network integration. An example method, performed by a wireless device, comprises receiving system information (SI) from a radio base station (RBS) of a radio access network (RAN), the SI being indicative of support for TSN through the RBS, and establishing at least one TSN stream with an external data network, through the RBS. The example method further includes receiving a first timing signal from the wireless communications network, via the RBS, receiving a second timing signal from the external TSN data network to which the wireless device is connected, comparing the first timing signal to the second timing signal to determine an offset, and transmitting the offset to the wireless communications network.