Abstract:
Un método en un dispositivo de comunicación inalámbrico capaz de comunicar sobre canales primero y segundo que comprenden cada uno una pluralidad de subportadoras, estando cada canal dividido en una pluralidad de bandas de frecuencias, donde cada banda de frecuencias incluye al menos una subportadora, comprendiendo el método: medir (310) un indicador de calidad de canal para una pluralidad de bandas de frecuencias en un primer canal; identificar (320) un subconjunto de bandas de frecuencias en el primer canal para el cual el indicador de calidad de canal ha sido medido sobre la base de un criterio de subconjunto; enviar información que identifica al subconjunto de bandas de frecuencias en el primer canal para el cual ha sido medido el indicador de calidad de canal; enviar (330) un valor del indicador de calidad de canal de subconjunto asociado con el subconjunto de bandas de frecuencias en el primer canal; medir (310) un indicador de calidad de canal para una pluralidad de bandas de frecuencias en un segundo canal; identificar (320) un subconjunto de bandas de frecuencias en el segundo canal para el cual ha sido medido el indicador de calidad de canal sobre la base de un criterio de subconjunto; enviar información que identifica al subconjunto de bandas de frecuencias en el segundo canal para el cual ha sido medido el indicador de calidad de canal; y enviar (330) un valor del indicador de calidad de canal de subconjunto asociado con el subconjunto de bandas de frecuencias en el segundo canal; donde los valores del indicador de calidad de canal de subconjunto para los subconjuntos primero y segundo de bandas de frecuencias son enviados alternativamente.
Abstract:
A wireless communication terminal (200) that communicates on a plurality of sub-carriers divided into a plurality of frequency bands, wherein each frequency band includes at least one sub-carrier. The terminal successively generates channel quality indicator (CQI) measurement information reports based on CQI measurements, wherein each report includes non-differential channel quality indicator measurement information for at least one of the frequency bands and differential channel quality indicator measurement information for all other frequency bands.
Abstract:
The present disclosure describes a method and apparatus for transmit power calibration in a frequency division multiplexed wireless system (100). The method may include receiving (315) an uplink scheduling grant at a user equipment (120), establishing (320) a desired power level based on at least the uplink scheduling grant, and setting (325) hardware power settings based on the desired power level. The method may also include transmitting (330) data in a first subframe at a first power level based on the hardware power settings, measuring (335) the first power level in the first subframe, and determining (340) a difference between the desired power level and the measured first power level. The method may additionally include modifying (345) the hardware power settings based on the difference and transmitting (350) at a second power level based on the modified hardware power settings in a next transmission corresponding to the transmission in the first subframe.
Abstract:
A communication system optimizes cell edge performance and spectral efficiency by a first step (404) of measuring, by the Node B, at least one system performance metric. A next step (406) includes sending, by the Node B, an indicator for the at least one system performance metric measurement. A next step (408) includes receiving the indicator for the at least one system performance metric measurement. A next step (410) includes determining an adaptive power control parameter based on the at least one system performance metric measured by the Node B and system performance metrics measured by at the least one other neighboring Node B. A next step (412) includes using the adaptive power control parameter to update an uplink transmit power level for at least one user equipment served by the Node B.
Abstract:
A method in a wireless communication device including receiving (410) a composite control channel including at least two control channel elements, each control channel element only contains radio resource assignment information, for example, a codeword, exclusively addressed to a single wireless communication entity. The device combines (420) at least two of the control channel elements, and decodes (430) the combined control channel elements.
Abstract:
A wireless communication entity schedulable in a -wireless communication network, including a controller (603) communicably coupled to a power amplifier (608) wherein the controller varies a maximum transmit power of the wireless communication entity based on the radio resource assignment information receiver by the radio receiver.
Abstract:
A wireless communication device for receiving a frame (200) corresponding to a transmission time interval, the frame having a control channel (210) including at least two control channel elements (212, 214) and an embedded bit sequence, the location of which indicates a portion of the control channel used for radio resource assignment, wherein the portion of the control channel used for radio resource assignment may be less than the entire control channel of the frame having the embedded bit sequence, and wherein the at least two frames may use different portions of the control channel for radio resource assignment.
Abstract:
The present disclosure describes a method and apparatus for transmit power calibration in a frequency division multiplexed wireless system (100). The method may include receiving (315) an uplink scheduling grant at a user equipment (120), establishing (320) a desired power level based on at least the uplink scheduling grant, and setting (325) hardware power settings based on the desired power level. The method may also include transmitting (330) data in a first subframe at a first power level based on the hardware power settings, measuring (335) the first power level in the first subframe, and determining (340) a difference between the desired power level and the measured first power level. The method may additionally include modifying (345) the hardware power settings based on the difference and transmitting (350) at a second power level based on the modified hardware power settings in a next transmission corresponding to the transmission in the first subframe.
Abstract:
The present disclosure describes a method and apparatus for transmit power calibration in a frequency division multiplexed wireless system (100). The method may include receiving (320), at a user equipment (120), a signal from a base station (130) in a frequency division multiplexed wireless system and mapping (330), in response to receiving the signal from the base station, a power control calibration region to an uplink symbol in a subframe to establish a mapped uplink symbol using predetermined criteria. The method can also include calibrating (350) a transmit power based on transmission in the calibration region and transmitting (360) data at the calibrated transmit power on at least one other symbol following the mapped uplink symbol.
Abstract:
Un método en un dispositivo de comunicación inalámbrica para informar de un Indicador de Calidad de CanalCQI a una estación base en un sistema de OFDMA, comprendiendo el método:presentar informe de CQI utilizando una operación de banda ancha de CQI mediante informe de CQI parauna pluralidad de bandas frecuencia expresadas como un único valor;presentar informe de CQI utilizando una operación de banda estrecha de CQI mediante informe de valoresde CQI específicos de banda para una o más bandas de frecuencia;caracterizado porconmutar de manera autónoma entre la operación de CQI de banda ancha y la operación de CQI de bandaestrecha.