Abstract:
The purpose of the present invention is to provide a method and a device for efficiently supporting multi-link transmission regardless of the type of RAT and the types of protocols. The present invention provides a method for aggregating links in an IP layer, and a method by which a multi-packet gateway transmits a packet comprises: confirming information on a link available for a terminal; scheduling a received data packet on the basis of the information on the available link; and transmitting the data packet, wherein the data packet is distributed so as to be transmitted by using the available link.
Abstract:
A method for managing a buffer by a base station in a wireless communication system is provided. The method includes calculating a transmission delay time that is an average of waiting time of packets transmitted for a predetermined time, identifying whether the calculated transmission delay time is greater than a preset delay time threshold value, and rearranging, if the transmission delay time is greater than the delay time threshold value, a transmission order of the packets in the buffer.
Abstract:
A digital signal processing device of a base station configured to process down-link signals in a wireless communication system employing orthogonal frequency division multiple access (OFDMA) and a method of processing data in the device are provided. The device includes a clock controller configured to monitor whether a signal is allocated to an input and control a frequency of clocks to have a first or second characteristic based on the monitored result, and a data processor configured to process the input, and synchronize with the clock controlled by the clock controller.
Abstract:
An image sensor includes a substrate having opposite first and second surfaces and including first to third unit pixels arranged in a first direction, and first and second pixel separation portions in the substrate and between, and separating from each other, separate adjacent unit pixels of the first to third unit pixels. The first pixel separation portion includes a first conductive pattern, and a first separation insulating pattern covering a sidewall of the first conductive pattern. The second pixel separation portion includes a second conductive pattern, and a second separation insulating pattern covering a sidewall of the second conductive pattern. The first conductive pattern has a first width in the first direction, and the second conductive pattern has a second width in the first direction, which is less than the first width.
Abstract:
A method and device for real time transmission power control in a wireless communication system are provided. The method includes receiving transmission power control related information from at least one base station, generating transmission power control information for load balancing of the at least one base station based on the transmission power control related information, and controlling the transmission power of the at least one base station based on the transmission power control information.
Abstract:
Provided is a method of configuring a secondary cell (SCell) for a base station (eNB) in a mobile communication system. The method may include: identifying the carrier aggregation (CA) operation mode; identifying the amount of traffic for a user equipment (UE); determining whether to add an SCell in the UE on the basis of the CA operation mode and the traffic amount for the UE; and transmitting an SCell addition request message to the UE according to the determination result. There is also provided a base station applying the above method. In addition, there are provided a user equipment communicating with the base station and an SCell configuration method for the user equipment.
Abstract:
A system and method are provided to efficiently provide coverage within a large scale of a building by identifying user equipment (UE) on a floor by floor basis using a distributed antenna system (DAS) and pseudo timing advance values (TA) assigned to each floor. By applying different pseudo delays on a plurality of distributed antenna basis located at each floor, a base station can know a floor at which a user equipment is located through a timing advance value of the user equipment. When a traffic amount increases based on the measured traffic amount of each floor, the base station may increase a carrier and adjust an amplifier output on a floor by floor basis, thereby efficiently using power and maintaining a user's quality of experience (QoE).
Abstract:
A method and device for real time transmission power control in a wireless communication system are provided. The method includes receiving transmission power control related information from at least one base station, generating transmission power control information for load balancing of the at least one base station based on the transmission power control related information, and controlling the transmission power of the at least one base station based on the transmission power control information.
Abstract:
An image sensor includes: a first semiconductor chip having a pixel region, a peripheral region, and a first wiring layer; and a second semiconductor chip combined with the first semiconductor chip, and including a second wiring layer, wherein the pixel region includes an active pixel region and a dummy pixel region, wherein the pixels are separated from one another by deep trench isolations (DTI) passing through a silicon layer, wherein a backside contact applying a negative (−) voltage to a conductive layer of each of the DTIs is arranged in the dummy pixel region and passes through the silicon layer, wherein the backside contact contacts the conductive layer of each of the DTIs, and wherein a through via is formed in the peripheral region, and wiring lines of the first wiring layer are connected to wiring lines of a second wiring layer through the through via.
Abstract:
A clock data recovery circuit includes a phase locked loop (PLL), a code signal generator, and a clock and data generator. The PLL generates a plurality of reference clock signals of which frequencies are modulated. Each of the plurality of reference clock signals has a first profile that is periodically fluctuated. The code signal generator generates a first compensation code signal. The first compensation code signal has a second profile that is periodically fluctuated and is different from the first profile. The clock and data generator generates a recovered data signal by sampling an input data signal based on a clock signal, compensates a frequency modulation on the plurality of reference clock signals based on the first compensation code signal, and includes a phase interpolator that generates the clock signal based on the plurality of reference clock signals and the first compensation code signal.