Abstract:
The present disclosure provides a terminal device and a method performed in the terminal device for communicating with a radio base station (RBS) or a Device-to-Device (D2D) terminal device. The method comprises forming a radio subframe by including coded bits in the radio subframe. The coded bits contain a sequence of systematic bits and a sequence of redundancy bits,and only redundancy bits are included in a head and a tail of the first and/or the last Orthogonal Frequency Division Multiplexing (OFDM) symbols of the radio subframe. The method further comprises transmitting the radio subframe to the radio base station RBS or the Device-to-Device (D2D) terminal device. The present disclosure also provides a communication device communicating with the proposed terminal device and a method performed in the communication device.
Abstract:
This disclosure provides a Scheduling Request transmission method (10) for decoupled downlink-uplink in heterogeneous network, where the heterogeneous network comprises at least two cells in charge of downlink and uplink transmission separately and connected with any backhaul, the method comprising: determining (11) a positive Data Scheduling Request, D-SR, is to be transmitted in a current D-SR's subframe together with HARQ-ACK/NACK on PUCCH using PUCCH format 1a/1b/3; transmitting (12) a HARQ-ACK/NACK in the current D-SR's subframe on PUCCH together with a negative D-SR using PUCCH format 1/1a/1b or format 3 while transmitting a Scheduling Request, SR, in a next SR's subframe subsequent to the current D-SR's subframe. In this method, the Scheduling Request (SR) of the UEs can be correctly detected in the Pico base station to trigger UL transmission in decoupled UL/DL scenario in various case and any kinds of backhaul can be supported.
Abstract:
A method in a transmitting node in a wireless communication system for instructing a user terminal to perform uplink sounding is provided, said method comprising: generating an unlink grant in a downlink control information (DCI) for instructing the user terminal to transmit an uplink channel with only a reference signal; and transmitting the DCI with said uplink grant to the user terminal, and wherein said uplink grant is configured as a redundant state within the DCI. A method in a receiving node in a wireless communication system for performing uplink sounding is also provided.
Abstract:
A UE for which an analog beamforming scheme is applied and a measuring method performed by the UE are provided. Also an AN and a method performed by the AN are provided. The measuring method performed by the UE comprising: transmitting, to a serving access node, a measurement request for measuring a neighbouring access node which is working at the same frequency as the user equipment; receiving, from the serving access node, information related to a series of measurement time gaps; and after a delay, performing measurement to the neighbouring access node within the series of measurement time gaps.
Abstract:
Embodiments of the present invention provide a method (400) for use in a terminal device for coordinating resources between two different types of communications. The method comprises receiving (410) resource allocation information indicating the allocation of resource units for the two different types of communications and determining (420), based on the resource allocation information, whether there will be a collision between the two different types of communications on a specific resource unit. The method also comprises in response to determining that there will be a collision between the two different types of communications on the specific resource unit, adjusting (430) one of the two different types of communications on the specific resource unit such that the collision may be avoided. The method further comprises resuming (440) the adjusted one of the two different types of communications on a next non-colliding resource unit allocated for the adjusted type of communications.
Abstract:
The present application relates to a DRX method in a CoMP scenario. In one embodiment, the DRX method comprises steps of detecting a new transmission on a Physical Downlink Control Channel (PDCCH) of one of at least two Base Stations (BSs) each of which is serving the UE; and triggering a DRX thread for continuously monitoring the PDCCH of the one BS on which the new transmission is detected. There is also provided a user equipment using the DRX method.
Abstract:
A method (310) of power control for multi-user multi-input multi-output (MU-MIMO) transmissions between a pair of mobile terminals and a radio base station is provided. The method comprises determining (312) signal-to- interference-noise ratios (SINRs) for the radio channels between the mobile terminals and the radio base station, determining (312) a channel orthogonality between the radio channels, and jointly determining (315), based on the SINRs and the channel orthogonality, power adjustment values for the mobile terminals. The present invention makes use of an understanding that the system gain resulting from MU-MIMO transmissions may be improved by optimizing the transmission power of the co-scheduled mobile terminals. For instance, the power adjustment values may be determined so as to attain certain SINR targets. Alternatively, the power adjustment values may be determined so as to maximize the throughput while maintaining a power budget constraint. Further, a radio base station for MU-MIMO transmissions is provided.
Abstract:
Embodiments of the disclosure provide a method, an apparatus, a network node, and a computer program product for transmitting D2D synchronization signals. According to the method, D2D synchronization signals are received from a first network node. A hop number of the D2D synchronization signals is determined based on radio resources of the D2D synchronization signals. Whether to transmit the D2D synchronization signals to a second network node is determined based on the hop number.
Abstract:
A method, a user equipment, base stations for performing random access procedures in a network including a high power base station, a low power base station and a user equipment are provided, wherein the user equipment is in connection with the high power base station in a downlink direction and is in connection with the low power base station in an uplink direction. The method comprises performing, by the user equipment, the random access procedure with the low power base station if the random access procedure is initiated by the user equipment. The method further comprises performing, by the user equipment, the random access procedure with the high power base station if the random access procedure is initiated by the high power base station. With the present invention, the duration of the random access procedure conducted under the decoupled downlink/uplink scenario can be significantly shortened.
Abstract:
A method and system for setting a power of a secondary device-to-device synchronization signal, SD2DSS, by a first wireless device to enable a second wireless device to synchronize timing of the second wireless device to a timing of the first wireless device are disclosed. According to one aspect, a method includes determining power of a first signal transmitted by the first wireless device, and setting the power of the SD2DSS based on the power of the first signal.