Abstract:
Method in a user equipment for selecting a cell associated with a radio access technology. The method comprises the steps of obtaining an instruction to select a cell to be used among cells using a radio access technology being associated with a specific service class. Also comprising receiving a broadcast, which broadcast uses a radio access technology being associated with a respective service class and being associated with a respective priority level within that service class. Also comprising selecting a cell, which cell is using a radio access technology being associated with the specific service class in accordance with the obtained instruction and which cell is associated with the highest priority level. An arrangement in a user equipment, a method in a base station, an arrangement in a base station, a method in a core network node and an arrangement in a core network node is also provided.
Abstract:
The present invention relates to a method and an arrangement for reducing power consumption in the user equipments (18) in power saving mode in a communication network, comprising a communication network node (15) transmitting information on shared control channels (SCCH) to one or more user equipments (18). The information is transmitted over either a narrow or a wide bandwidth depending on which mode said one or more user equipments are, either a power saving mode or an active mode.
Abstract:
The present invention provides a method for optimizing elastic flows in a multi-path network for a traffic demand by jointly determining a bandwidth for each flow in a set of flows that realize the traffic demand and an optimized path for the traffic demand by maximizing a fairness utility. The present invention can be implemented as a computer program embodied on a computer readable medium in which the functions or steps of the method are implemented as code segments. In addition, the present invention can be implemented as an apparatus that includes a processor and an interface communicably coupling the processor to the multi-path network. The processor jointly determines a bandwidth for each flow in a set of flows that realize the traffic demand and an optimized path for the traffic demand by maximizing a fairness utility.
Abstract:
A radio device (30) receives first sidelink control information (204) from a further radio device (20). Based on assistance information stored in the radio device (30) and the received first sidelink control information, the radio device (30) determines a configuration for transmission of second sidelink control information (206). Based on the determined configuration for transmission of the second sidelink control information (206), the radio device receives the second sidelink control information (206) from the further radio device. Based on the received second sidelink control information (206), the radio device receives a sidelink radio transmission from the further radio device (20).
Abstract:
Un dispositivo de radio (100) recibe una transmision de radio en una frecuencia portadora. Mientras recibe la transmisión de radio, el dispositivo de radio (100) transmite una indicación de que la frecuencia portadora está en uso por la transmisión de radio al dispositivo de radio (100). Esta indicación puede ser utilizada por otro dispositivo de radio (10, 11) para controlar una transmisión de radio al dispositivo de radio (100), por ejemplo, decidiendo si, cuándo o cómo usar la frecuencia portadora para esta transmisión de radio. (Traducción automática con Google Translate, sin valor legal)
Abstract:
A radio device (30) receives a first message (202) from a further radio device (20; 900). The first message (202) indicates an intention of the further radio device (20) to perform a device- to-device radio transmission (206) on a set of radio resources. The radio device (30) determines a status of the set of radio resources. In response to the first message (202), the radio device (30) sends a second message (204) comprising an indicator which indicates the determined status of the set of radio resources in terms of at least three levels.
Abstract:
Methods performed by a wireless device, such as a user equipment, operating in a dormant mode comprise performing a measurement on each of a plurality of resources from a predetermined set of resources or demodulating and decoding information from each of a plurality of resources from a predetermined set of resources, such as a set of beams. The methods further include evaluating the measurement or the demodulated and decoded information for each of the plurality of resources against a predetermined criterion, and then discontinuing the performing and evaluating of measurements, or discontinuing the demodulating and decoding and evaluation of information, in response to determining that the predetermined criterion is met, such that one or more resources in the predetermined set of resources are neither measured nor demodulated and decoded. The methods further comprise deactivating receiver circuitry, further in response to determining that the predetermined criterion is met. The method further comprises receiving, in a first downlink subframe, a first Orthogonal Frequency-Division Multiplexing transmission formatted according to a first numerology and receiving, in a second downlink subframe, a second OFDM transmission formatted according to a second numerology, the second numerology differing from the first numerology.