Abstract:
Agent node and method therein, for configuring a radio resource parameter of a radio cell of a communication system. The agent node is configured to obtain a control policy; determine a feature representing a state of at least a part of the communication system, at a first time period; determine a control action to be performed for control in the radio cell at the first time period, out of a set of available control actions associated with the radio cell, based on the obtained control policy and the determined at least one feature; and configure an of the radio cell based on the determined control action.
Abstract:
An apparatus for receiving non-orthogonal transmissions in a wireless communication system includes a processor configured to determine a first superposed symbol from a plurality of superposed symbols, based on superposition information and a first set of decoding information, wherein the first superposed symbol is corresponding to a first user equipment. The processor generates a residual signal based on the first superposed symbol and the superposition information, and determines a second superposed symbol based on the residual signal and a second set of decoding information, wherein the second superposed symbol is corresponding to a second user equipment. The superposition information comprises a quantity of the plurality of superposed symbols and an ordering of the plurality of superposed symbols.
Abstract:
The present disclosure relates to a first network node and a second network node. The first network node comprises: a processor and a transceiver, wherein the transceiver is configured to receive a first signal comprising a network information message indicating network information associated with a region (R) or with at least one sub-region (SR) of the region (R); wherein the processor is configured to determine a density of network nodes for operation λb in the region (R) or in the sub-region (SR) based on the network information. Furthermore, the present disclosure also relates to corresponding methods, a computer program, and a computer program product.
Abstract:
Embodiments relate to a method in a first network node for transmitting communication signals in a wireless communication system, the first network node being arranged to operate in an active mode in which the first network node has full transmission and/or reception capabilities or in an idle mode in which the first network node has limited transmission and/or reception capabilities in relation to the active mode; the method being characterized by the steps of: encoding an indication of time left in idle mode for the first network node into a communication signal; and transmitting said communication signal in the wireless communication system while operating in the idle mode. Furthermore, embodiments also relate to a corresponding method in a second network node, a first network node device, a second network node device, a computer program, and a computer program product thereof.
Abstract:
A network node and a user device are provided. The network node comprises a processor to determine for each of the plurality of user devices a corresponding check element position of a corresponding check element in a control information message addressed to the user device; a transmitter to transmit a first control signal (CS1) to each of the plurality of user devices, the CS1 indicating the determined corresponding check element position. The user device comprising: a receiver to receive a CS1 indicating a corresponding check element position of a check element associated with the user device in a control information message (M), the control information message (M) comprising control information (d) and at least two check elements, a processor to derive the corresponding check element position of the check element associated with the user device from the CS1.
Abstract:
A network node for a wireless communication system is provided. The first network node comprises a processor configured to obtain channel quality information for a user device, obtain a load information for first radio access resources, determine a first association of the first radio access resources to the user device based on the channel quality information and the load information, the first association being valid during a first validity time period, compute first user data rates for the first radio access resources based on the channel quality information, determine a utilization of the first radio access resources based on the first association and the first user data rates. A corresponding method, a wireless communication system, a computer program, and a computer program product are also provided.
Abstract:
A network node and a user device and methods thereof are described. A network node includes a transceiver, and a processor. The transceiver transmits a frequency utilization signal SFUS having a frequency utilization information (FUI) associated with at least one available frequency spectrum segment, and receives a communication preference signal SCPS. The processor assigns at least one frequency spectrum segment for communication. A user device includes a transceiver and a processor. The transceiver of the user device receives a frequency utilization signal SFUS comprising frequency utilization information (FUI) associated with at least one available frequency spectrum segment. The processor of the user device determines communication preference information (CPI) for the user device; and the transceiver of the user device transmits a communication preference signal SCPS.
Abstract:
A first network node and a second network node are disclosed. The first network node comprises a processor and a transceiver. The transceiver is configured to receive a first signal S1 comprising a network information message indicating network information associated with a first network operator in a region. The processor is configured to determine an allocation of frequency resources for operation W1, for the first network operator or a second network operator in the region, based on the network information, and the processor is further configured to determine a density of network nodes for operation λb or a frequency spectrum access price, for the first network operator or the second network operator, based on the network information. Corresponding methods, a computer program, and a computer program product are also disclosed.
Abstract:
Embodiments relate to a method in a first network node for transmitting communication signals in a wireless communication system, the first network node being arranged to operate in an active mode in which the first network node has full transmission and/or reception capabilities or in an idle mode in which the first network node has limited transmission and/or reception capabilities in relation to the active mode; the method being characterized by the steps of: encoding an indication of time left in idle mode for the first network node into a communication signal; and transmitting said communication signal in the wireless communication system while operating in the idle mode. Furthermore, embodiments also relate to a corresponding method in a second network node, a first network node device, a second network node device, a computer program, and a computer program product thereof.
Abstract:
A network node and a user device and methods thereof are described. A network node includes a transceiver, and a processor. The transceiver transmits a frequency utilization signal SFUS having a frequency utilization information (FUI) associated with at least one available frequency spectrum segment, and receives a communication preference signal SCPS. The processor assigns at least one frequency spectrum segment for communication. A user device includes a transceiver and a processor. The transceiver of the user device receives a frequency utilization signal SFUS comprising frequency utilization information (FUI) associated with at least one available frequency spectrum segment. The processor of the user device determines communication preference information (CPI) for the user device; and the transceiver of the user device transmits a communication preference signal SCPS.