| Patent application number | Description | Published |
| 20100073519 | IMAGE PROCESSING APPARATUS, IMAGE PICKUP APPARATUS, IMAGE PROCESSING METHOD, AND COMPUTER PROGRAM - An image processing apparatus includes: a first image storing unit that stores a first history image including a first picked-up image forming a picked-up moving image; an image transforming unit that transforms, on the basis of transformation information concerning the first picked-up image and a second picked-up image forming the picked-up moving image located after the first picked-up image on a time axis of the picked-up moving image, the second picked-up image; and an image combining unit that causes a second image storing unit different from the first image storing unit to store the transformed second picked-up image, overwrites the first history image stored in the first image storing unit on the second picked-up image stored in the second image storing unit, and combines the first history image and the second picked-up image. | 03-25-2010 |
| 20100245612 | IMAGE PROCESSING DEVICE, IMAGE PROCESSING METHOD, AND PROGRAM - An image processing device includes: a determination unit determining whether each character included as a subject in a captured image is an unnoted non-main character; and a controller controlling an image-related process which is a process related to an image on the basis of a status of the character determined as a non-main character. | 09-30-2010 |
| 20110052081 | APPARATUS, METHOD, AND PROGRAM FOR PROCESSING IMAGE - An image processing apparatus includes a face detector for detecting a face region from an image including a face of a user, a part detector for detecting a positional layout of a part of the face included in the face region detected by the face detector, a determiner for determining an attribute of the face on the basis of the positional layout of the part detected by the part detector and calculating a score indicating attribute determination results, a model selector for selecting, on the basis of the score calculated by the determiner, a model that is to be displayed in place of the face of the user in the image, and an image generator for generating an image of a face of the model selected by the model selector and synthesizing the image of the face of the model with the face of the user within the face region. | 03-03-2011 |
| Patent application number | Description | Published |
| 20090161539 | SIGNAL TRANSMISSION METHOD AND BASE STATION IN MOBILE COMMUNICATION - A signal transmission method checks, when detecting an occurrence of a communication request, whether the communication request is a high speed communication (step S | 06-25-2009 |
| 20090207803 | BASE STATION AND METHOD IN MOBILE COMMUNICATIONS SYSTEM - A disclosed base station in a mobile communications system which uses a single-carrier technique for uplink includes a classifying unit which classifies, for each of multiple user apparatuses according to a path loss between the respective user apparatus and the base station, the multiple user apparatuses into two or more groups; and a scheduler which plans allocating of uplink resources to the user apparatuses. Uplink signals of each user apparatus that have multiple frequency components lined up in equal frequency intervals are multiplexed using a distributed frequency division multiplexing technique such that they are made mutually orthogonal on a frequency axis, the scheduler plans the resource allocating such that the user apparatuses belonging to different groups utilize different group bands or different time slots, and the group bands are specified by dividing a system band into groups. | 08-20-2009 |
| 20100304790 | RADIO BASE STATION APPARATUS - A shared AMP includes: a transmission/reception processor section (TRX-B) for a second mobile communication system configured to perform frequency convers ion processing on an inputted transmission baseband signal for a mobile communication system B, and to output a transmission radio frequency signal for the second mobile communication system; a power level adjuster section (VA) configured to adjust a power level of an inputted transmission radio frequency signal for a first mobile communication system; a combiner section (COM) configured to generate a transmission radio frequency signal, by combining the transmission radio frequency signal for the first mobile communication system outputted from the power level adjuster section (VA) and the transmission radio frequency signal for the second mobile communication system outputted from the transmission/reception processor section (TRX-B) for the second mobile communication system; and a common amplifier section (PA) configured to amplify a power level of the transmission radio frequency signal outputted from the combiner section (COM) at a predetermined amplification rate, and to output the resultant signal. | 12-02-2010 |
| 20110070886 | MOBILE COMMUNICATION SYSTEM, LOCATION REGISTRATION METHOD, HANDOVER METHOD, EXCHANGE, MOBILE STATION, AND RADIO CONTROL STATION - Provided is a mobile communication system configured to permit a cell under a femto radio base station Node B# | 03-24-2011 |
| 20110142102 | CHANNEL ESTIMATION DEVICE AND METHOD, DEMODULATION DEVICE AND METHOD, AND FADING FREQUENCY DECISION DEVICE AND METHOD - In this invention, a channel estimation value of data symbols of a data channel is calculated by weighting and averaging pilot symbols in a parallel time multiplexing method. Also, a channel estimation value of data symbols during each data symbol interval is calculated by dividing data symbols in a slot into a plurality of data symbol intervals, selecting pilot symbols suitable for calculation of a channel estimation value of data symbols during each data symbol interval and weighting and averaging that pilot symbols. Also, a fading frequency is detected based on an inner product value of pilot symbols. Weighting factors are changed based on the detected fading frequency. Also, a channel estimation value is calculated by weighting and averaging pilot signals using a plurality of weighting sequences. The calculated channel estimation value is used to demodulate received data. The output data with the highest quality is selected by judging reliability of these plurality of demodulated data. It is also possible to select some weighting sequences based on the result of the reliability judgment of the demodulated data for predetermined period of time. In this case, after the selection, demodulation is performed by using these selected weighting sequences only. | 06-16-2011 |