Abstract:
An image processing apparatus includes a first extraction section extracting first feature quantities from image data of an image of a subject captured in a first period; a first estimation section estimating a first average value of the first feature quantities on the basis of second feature quantities extracted from image data of an image of a registered subject captured in a second period and third feature quantities extracted from image data of an image of the registered subject captured in a third period; a second estimation section estimating a first distribution width indicating the width of dispersion of the first feature quantities with respect to the first average value on the basis of the second and third feature quantities; and a determination section determining whether or not the first feature quantities are within a predetermined range based on the first average value and the first distribution width.
Abstract:
An image processing device and method, where the device includes a data continuity detector configured to detect data continuity of a first image data made up of a plurality of pixels acquired by light signals of a real world being cast upon a plurality of detecting elements each having spatio-temporal integration effects, a real world estimating unit configured to detect real world features which a first function representing the real world light signals has, and an image generator configured to predict and generate second image data having a higher quality than the first image data, based on the real world features detected by the real world estimating unit.
Abstract:
The present invention relates to a signal processing device and signal processing method, and program and recording medium, whereby images and the like closer approximating real world signals can be obtained. With regard to an input image of dimensions fewer than the dimensions of actual world light signals, wherein actual world light signals have been projected and a part of the continuity of the actual world light signals has been lost, actual world signals are estimated at an actual world signal estimating unit 10003 from the input image within a processing region set at a processing region setting unit 10001, corresponding to continuity set at a continuity setting unit 10002. On the other hand, information relating to at least one of processing region, continuity, and actual world signals, is supplied from a user I/F 10006 to the processing region setting unit 10001, continuity setting unit 10002, or actual world signal estimating unit 10003, according to user operations. The present invention can be applied to, for example, cases of removing movement blurring from an image, for example.
Abstract translation:本发明涉及一种信号处理装置和信号处理方法以及程序和记录介质,由此可以获得近似真实世界信号的图像等。 对于尺寸小于实际世界光信号的尺寸的输入图像,其中实际世界光信号已被投影并且实际世界光信号的一部分连续性已经丢失,实际的世界信号被估计为实际的世界信号 对应于在连续性设定部10002设定的连续性,处理区域设定部10001设定的处理区域内的输入图像的世界信号推定部10003。 另一方面,从用户I / F 10006向处理区域设定部10001,连续性设定部10002或实际世界信号推定部提供与处理区域,连续性,实际世界信号中的至少一个有关的信息 10003,根据用户操作。 例如,本发明可以应用于例如从图像中去除运动模糊的情况。
Abstract:
The present invention relates to an image processing apparatus for generating an image having a high density in the direction of time and having a natural-looking motion blur. The correlation calculators 103 and 104 respectively calculate a correlation between pixel data of a target pixel in a target frame #n from among frames and pixel data of a corresponding pixel in a first frame #n−1 next to the target frame #n and a correlation between the pixel data of the target pixel in the target frame #n and pixel data of a corresponding pixel in a second frame #n+1 next to the target frame #n. The half-side pixel value generator 105 generates first pixel data in a first synthesis frame generated between the target frame #n and one of the first frame #n−1 and the second frame #n+1 containing the corresponding pixel having the pixel data with a larger correlation. The half-side pixel value generator 106 generates second pixel data in a second synthesis frame generated between the target frame #n and the other of the first frame and the second frame, based on the target pixel data and the first pixel data.
Abstract:
An electronic device has housing having plural inner surfaces, plural modules in the housing, and a communication section provided on each of the plural modules. The communication sections perform wireless communication to each other. One inner surface having the largest area among the plural inner surfaces of the housing has an electric wave absorber that absorbs an electric wave for use of the wireless communication.
Abstract:
An information signal processor that is well suitable for use in conversion of an SD signal into an HD signal. The pixel data set corresponding to an objective position in the HD signal is extracted selectively from the SD signal. Class CL to which pixel data set of the objective position belongs is then obtained using the pixel data set. A coefficient production circuit produces coefficient data sets Wi for each class based on coefficient seed data sets and values of picture quality adjusting parameters h and v. A tap selection circuit selectively extracts the data sets xi from the SD signal and then, a calculation circuit produces the pixel data sets of the objective position in the HD signal using the data sets xi and the coefficient data sets Wi. It is thus possible to save on the storage capacity of the memory.
Abstract:
In a television set, image quality is adjusted in accordance with parameters calculated on the basis of adjustment values used in the past, depending on a feature of an image and an environmental status. A weight calculator determines a weight depending on the manner in which a user performs a volume control operation. A cumulative weight memory outputs a cumulative weight corresponding to the feature value. Output volume values used in past are stored in a volume value generator. The volume value generator calculates output volume values corresponding to a feature value on the basis of parameters indicating final adjustment values, the feature value, the weight, and the cumulative weight. The calculated volume values are stored in the volume value generator. Under the control of a system controller, the volume values stored in the volume value generator are output to a coefficient generator.
Abstract:
The invention relates to a data processing apparatus and the like that are available for various processing according to a preference of user. Controller 101 collects parameters, s, z, for adjusting a picture quality inputted by user's operation and stores history information on them in the history information storage section 130. Bank 135 stores coefficient seed data for producing coefficient data Wi. The coefficient seed data is updated on the basis of the history information stored in the history information storage section 130, for example, at a version upgrade of a television receiver 100. Calculation circuit 127 obtains pixel data of objective pixel in HD signal based on the estimation equation using data xi of a prediction tap selectively extracted from SD signal and the coefficient data Wi.
Abstract:
A multi-sensor camera compares status describing data which is described based on a determining rule and sensor data outputted from a microwave sensor with a notification determining table sent from a processing box. If it is determined that an event is notified, the multi-sensor camera sends notifying image data to the processing box, and presents the sent data on a presenting unit. A user inputs, based on a predetermined detecting condition, the determination on the notification need of the event detected based on the sensor data outputted from the sensor. A unit for learning the determining rule adjusts the predetermined condition used for the detection based on the input determination and the feature of the event, and updates the notification determining table so as to notify the event which needs the notification and prevent the notification of unnecessary event.
Abstract:
A motion information output portion acquires horizontal motion information concerning a line where the telop is present. From a signal of the current frame and motion-compensated signal components of frames which are present before and after the current frame. A decision information acquisition portion and a binarizing processing portion obtains a flag indicating whether each pixel of a screen is pixel at edge position of the telop. Based on this flag, an edge pixel extraction portion extracts pixel data of the edge position. A histogram processing portion uses this pixel data as a material to create a histogram for each item of data, thereby determining values of the pixel data corresponding to the telop from a class having a largest frequency. An extraction region selection portion obtains another flag indicating a line where the telop is present. An extraction portion extracts pixel data corresponding to the telop.