序号 | 专利名 | 申请号 | 申请日 | 公开(公告)号 | 公开(公告)日 | 发明人 |
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21 | 一种混凝土骨料数值模型重建方法 | CN201810059964.1 | 2018-01-22 | CN108280290B | 2020-12-01 | 范宏; 赵铁军; 张鹏; 万小梅; 刘树明 |
本发明属于混凝土数值模拟研究技术领域,涉及一种混凝土骨料数值模型重建方法,对包含单体骨料试件或包含群体骨料试件进行打磨拍照,获得骨料的连续剖面图像,基于连续剖面图像建立骨料模型,根据骨料模型建立骨料模型数据库,包含群体骨料试件能够同时建立多个骨料模型,能够解决因CT扫描设备昂贵不便于实施的问题,且基于真实混凝土骨料颗粒进行三维重建,最大程度上模拟了真实骨料外形特征,建立的骨料模型以网格形式保存,对于真实骨料模型数据库的建立创造条件,并且可以同CAD软件或FEA有限元模拟软件进行格式互换,便于混凝土力学性能的数值模拟研究;其图像获取的方式简单、快捷,获取的图像序列层间距小、对准度高、信息量完整。 | ||||||
22 | 一种混凝土骨料数值模型重建方法 | CN201810059964.1 | 2018-01-22 | CN108280290A | 2018-07-13 | 范宏; 赵铁军; 张鹏; 万小梅; 刘树明 |
本发明属于混凝土数值模拟研究技术领域,涉及一种混凝土骨料数值模型重建方法,对包含单体骨料试件或包含群体骨料试件进行打磨拍照,获得骨料的连续剖面图像,基于连续剖面图像建立骨料模型,根据骨料模型建立骨料模型数据库,包含群体骨料试件能够同时建立多个骨料模型,能够解决因CT扫描设备昂贵不便于实施的问题,且基于真实混凝土骨料颗粒进行三维重建,最大程度上模拟了真实骨料外形特征,建立的骨料模型以网格形式保存,对于真实骨料模型数据库的建立创造条件,并且可以同CAD软件或FEA有限元模拟软件进行格式互换,便于混凝土力学性能的数值模拟研究;其图像获取的方式简单、快捷,获取的图像序列层间距小、对准度高、信息量完整。 | ||||||
23 | 移动终端平台中网页图片呈现方法和装置 | CN201210591517.3 | 2012-12-31 | CN103914450B | 2017-05-17 | 杜立召 |
本发明公开了一种移动终端平台中网页图片呈现方法和装置。本发明实施例提供的一种移动终端平台中网页图片呈现方法包括:建立由第一图片控件、第二图片控件和图像互换格式Gif图片控件构成的控件模板;当移动终端需要从网络中下载网页图片并显示时,启动控件模板;利用第一图片控件加载关联的占位图片,并在需要显示网页图片的位置显示占位图片;建立网页图片和第二图片控件的关联,在网页图片下载完毕后,利用第二图片控件加载关联的网页图片,当加载成功时,利用加载的网页图片替换占位图片,当加载失败时,判断网页图片的类型;当为Gif图片时,利用Gif图片控件解析该网页图片,由解析后的网页图片替换占位图片并展示该网页图片。 | ||||||
24 | 视频处理方法及装置 | CN201810421184.7 | 2018-05-04 | CN108632641A | 2018-10-09 | 张树森; 吴广发; 施鹏 |
本发明提出一种视频处理方法及装置,其中,视频处理方法包括:将视频转化为包括多张图片的图集;在多张图片中,确定出设定数量的视频的关键帧;在视频中截取每个视频的关键帧前后的动图,得到设定数量的动图片段;将设定数量的动图片段进行合并,得到视频的GIF梗概。该视频处理方法及装置,通过自动将视频转化为包括多张图片的图集,并在多张图片中确定出设定数量的视频的关键帧,在视频中截取每个视频的关键帧前后的动图,将得到的设定数量的动图片段进行合并,得到视频的图像互换格式GIF梗概,用于后续生动的展现出该视频。综上,通过自动提取视频梗概转为GIF的方式,提高了视频转GIF文件的效率,降低了人力筛选成本。 | ||||||
25 | 移动终端平台中网页图片呈现方法和装置 | CN201210591517.3 | 2012-12-31 | CN103914450A | 2014-07-09 | 杜立召 |
本发明公开了一种移动终端平台中网页图片呈现方法和装置。本发明实施例提供的一种移动终端平台中网页图片呈现方法包括:建立由第一图片控件、第二图片控件和图像互换格式Gif图片控件构成的控件模板;当移动终端需要从网络中下载网页图片并显示时,启动控件模板;利用第一图片控件加载关联的占位图片,并在需要显示网页图片的位置显示占位图片;建立网页图片和第二图片控件的关联,在网页图片下载完毕后,利用第二图片控件加载关联的网页图片,当加载成功时,利用加载的网页图片替换占位图片,当加载失败时,判断网页图片的类型;当为Gif图片时,利用Gif图片控件解析该网页图片,由解析后的网页图片替换占位图片并展示该网页图片。 | ||||||
26 | 화상 처리 장치 및 방법 | KR1020060004423 | 2006-01-16 | KR1020060013578A | 2006-02-10 | 박현상; 신선영 |
라스터 포맷과 블록 포맷 사이의 화상 데이터를 상호 변환하는 화상 처리 장치는 휘도 성분 및 적어도 하나의 색상 성분을 포함하는 화상 데이터를 라스터 포맷으로 제공하는 화상 데이터 처리기와, 대응하는 화상 데이터 성분을 저장하기 위한 적어도 2 개의 FIFO 메모리들과, 상기 적어도 2 개의 FIFO 메모리들로부터 화상 데이터를 다중화하기 위한 다중화 수단과, 상기 다중화 수단의 출력을 선형적으로 저장하기 위한 라인 버퍼 메모리와, 상기 라인 버퍼 메모리로부터 블록 포맷의 화상 데이터 성분들을 연속적으로 전달받고 이를 압축하는 화상 압축기를 포함한다. 상기 화상 압축기는 또한 상기 라인 버퍼 메모리에 대한 공통 독출/기입 어드레스를 방생하는 어드레스 생성기와, v*h 블록 단위의 화상 데이터를 상기 라인 메모리로부터 받고 이를 압축하는 화상 압축기를 더 포함 할 수 있으며, 이때, v 라인의 화상 데이터는 상기 공통 독출/기입 어드레스를 참조하여 상기 라인 메모리로부터 블록 스캔 순서로 독출되고 다음 v 라인의 화상 데이터가 동일한 공통 독출/기입 어드레스를 참조하여 상기 라인 메모리에 기입된다. 라인 버퍼, JPEG, 라스터, 휘도, 색차 | ||||||
27 | UNIVERSAL INTERFACE FOR MEDICAL IMAGING RECEPTORS | PCT/US2008053174 | 2008-02-06 | WO2008109223A3 | 2008-12-11 | HOPKINS RICHARD; KHUTORYANSKY OSCAR |
The present invention provides a plurality of interchangeable modules each of which is adapted to interface with at least one image receptor having predetermined physical interface parameters, including means for receiving image data from the at least one image receptor, processing means for converting the received image data into a converted, common format, and bus means for adapting to and communicating with a mother board. The interchangeable modules can be embodied in a plurality of daughter boards that are adapted for electrical connection to a mother board. Each daughter board can include the physical interface corresponding with the image receptor for which it has been programmed to receive data, with the physical interface being adapted for extending outwardly from a cabinet enclosing the daughter board and mother board. | ||||||
28 | Camera system | JP2000334738 | 2000-11-01 | JP2002139788A | 2002-05-17 | WATANABE YOJI |
PROBLEM TO BE SOLVED: To provide a camera system constituted so that a photographer can image a viewing angle in the same way as a 135 format, as for the camera system constituted of plural types of cameras having different picture frame size format and an interchangeable lens which is made usable in common for the cameras. SOLUTION: The camera system is provided with an EEPROM (32) for storing information on the picture frame size format of the camera and a ROM 38 for outputting information on the real focal distance of the interchangeable lens (26), and the focal distance of the interchangeable lens (26) is converted to a focal distance for a 135 format camera based on the information on the picture frame size format stored by the EEPROM (32) and the information on the real focal distance of the interchangeable lens (26), and then, displayed on an LCD display element (34). COPYRIGHT: (C)2002,JPO | ||||||
29 | 影像編碼裝置、影像編碼方法、影像編碼程式、影像再生裝置、影像再生方法及影像再生程式 | TW101105085 | 2012-02-16 | TW201246940A | 2012-11-16 | 佐佐木泰治; 矢羽田洋; 小川智輝; 遠間正真 |
本發明係提供一種可一面保持基於MPEG-2規格之再生裝置的再生互換性,一面以可抑制必要之頻寬增加之方式來編碼影像的影像編碼裝置及影像再生裝置。作為影像編碼裝置之資料作成裝置係包含:2D互換視訊編碼器,係可藉由將多視點影像之左眼影像壓縮編碼來生成MPEG-2格式之串流者;擴張視訊編碼器,係遵循MPEG-4 AVC格式而將與該圖片為同時刻之MPEG-2格式之串流之圖片作為參考圖像來壓縮編碼多視點影像之右眼影像之各圖片並藉此生成串流者;及多工器,係多工已生成之兩串流者。 | ||||||
30 | UNIVERSAL INTERFACE FOR MEDICAL IMAGING RECEPTORS | PCT/US2008/053174 | 2008-02-06 | WO2008109223A2 | 2008-09-12 | HOPKINS, Richard; KHUTORYANSKY, Oscar |
The present invention provides a plurality of interchangeable modules each of which is adapted to interface with at least one image receptor having predetermined physical interface parameters, including means for receiving image data from the at least one image receptor, processing means for converting the received image data into a converted, common format, and bus means for adapting to and communicating with a mother board. The interchangeable modules can be embodied in a plurality of daughter boards that are adapted for electrical connection to a mother board. Each daughter board can include the physical interface corresponding with the image receptor for which it has been programmed to receive data, with the physical interface being adapted for extending outwardly from a cabinet enclosing the daughter board and mother board. |
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31 | STEREO-OPTIC IMAGE DISPLAY SYSTEM WITH ENHANCED RESOLUTION | PCT/US1994008951 | 1994-08-09 | WO1995005052A1 | 1995-02-16 | CALLAN, Edward, W. |
Stereo-optic images are produced on a display screen (10) in a format of image components (24, 24', 24") which at any particular time define a left-eye image field interlaced with a right-eye image field. Variable transparency shutter components (28, 28', 28") are positioned in front of the image display screen for defining a viewing position (30) on the opposite side of the shutter components from the display screen to enable view of each image field by only one eye. Image components (24") defining the left-eye image field are periodically exchanged with image components (24') defining the right-eye image field; and the transparency of the shutter components (28', 28") is interchanged when the image components (24', 24") are interchanged so that each eye views an image having twice the resolution as would otherwise be provided. Viewing from variable viewing positions is accommodated by adjusting components and/or the distance between the display screen and the shutter components. | ||||||
32 | INTELLIGENT PORTABLE MEMORY DEVICE WITH DISPLAY | PCT/US2004029021 | 2004-09-07 | WO2005034499A2 | 2005-04-14 | SPEASL JERRY A; SPEASL ZONA F; ROBERTS MARC |
Roughly described, a portable, removable memory device also includes a display for rendering images stored in the memory device in standalone mode. The memory device has a standard attachment interface to enable attachment and communication with different kinds of hosts. It also includes at least sufficient intelligence to be able to transform image file formats to satisfy user preferences or the requirements of different hosts. The device can be used as an interchangeable memory card, and also as a simple and easy way of sharing digital images. | ||||||
33 | Interchangeable lens, lens interchangeable digital camera and camera system | JP2004330241 | 2004-11-15 | JP2006140883A | 2006-06-01 | TANAKA OSAMU |
<P>PROBLEM TO BE SOLVED: To solve the problem that a photographic viewing angle can not be judged from a focal distance of an interchangeable lens as in a 35mm film camera because the relation between the focal distance of the interchangeable lens and a viewing angle of a picture to be picked up is different according to the size of a photographing area of an image pickup element in a lens interchangeable digital camera. <P>SOLUTION: A focal distance of 35mm conversion can be confirmed even in an interchangeable lens single body at any time so that the senses of a viewing angle and a focal distance familiar by a film camera can be utilized by converting a photographic viewing angle into a focal distance in a 35mm film format from information of a focal distance of an interchangeable lens and information about the size of an image pickup area of an image pickup element and writing and displaying the focal distance in a display device of memory property installed on the interchangeable lens. <P>COPYRIGHT: (C)2006,JPO&NCIPI | ||||||
34 | VIDEO DEKSTOP CAMERA | PCT/AT1990000017 | 1990-02-19 | WO1990009717A1 | 1990-08-23 | 4YOU SOFTWARE ENTWICKLUNGS- UND ... |
Process for processing image data in a video camera, in particular in a desktop publishing system, with computer-controlled digitalization of the image data and computer-controlled storage of the digitalized data on a storage medium in the camera. The image size or the image scale is adjusted before or between the optical image formation and the line-by-line scanning of an image sensor. One of several possible data formattings which can be read directly by a standard personal computer is adjusted before or between digitalization and storage, and the image data are formatted accordingly and stored. Also described is a video desktop camera with a known opto-electronic system and at least one operating element (10, 10') for adjusting the image size, choice of a data format, a drive (7) for an ordinary interchangeable storage medium (8) for standard personal computers and a microcomputer (9) containing a processing or control program. | ||||||
35 | A data processing system and method for handling interchangeable image objects for documents having a plurality of sizes | EP92105705.5 | 1992-04-02 | EP0509333A2 | 1992-10-21 | Thomas, Paul G. |
A data processing system and method handles interchangeable image objects for documents having diverse sizes and formats. This enables storing, printing and displaying images of documents having a variety of sizes on different types of equipment in the same system. Compressed A and B size document images are stored in a first type image file which is Mixed Object Document Content Architecture format (MO:DCA-P), having a field for the size of the document image. C to E size document images are each divided into component tile images which are each compressed and stored in a second type image file which has a format interchangeable with the format of the first image file, but includes map data relating the tile images to the document image. A preview image can be included in the image file, which can be immediately displayed or printed while the tile images are being decompressed. The second image file is in a second type Mixed Object Document Content Architecture format (MO:DCA-X), which has the same overall format as the MO:DCA-P format. The preview image is concealed in a NoOP field and is used typically by those I/O devices in the system which are capable of handling C to E size documents. This enables the two types of image files to be commingled in a common system storage, permitting the interchangeability of the image objects for documents of diverse size. |
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36 | Zoom lens and image converting device | JP28782099 | 1999-10-08 | JP2001108899A | 2001-04-20 | YOSHIKAWA KOICHI |
PROBLEM TO BE SOLVED: To make obtainable excellent image forming performance corresponding to different purposes of use and to perform excellent image conversion by application to a telecine device, etc. SOLUTION: On a variable power optical system GM which is so constituted as to vary in power to incident light, two interchangeable lenses which are used for different film formats are selectively mounted on the object side so that desirable optical performance corresponding to the respective purposes of use can be obtained. The variable power optical system GM can mount a 1st interchangeable lens Gα corresponding to a movie film of a format wherein recorded video is different in longitudinal magnification and lateral magnification from the source video. Further, the variable power optical system GM can be mounted with a 2nd interchangeable lens corresponding to a movie film of a format wherein recorded video is equal in longitudinal magnification and lateral magnification to the source video. | ||||||
37 | A data processing system and method for handling interchangeable image objects for documents having a plurality of sizes | EP92105705.5 | 1992-04-02 | EP0509333A3 | 1994-03-30 | Thomas, Paul G. |
A data processing system and method handles interchangeable image objects for documents having diverse sizes and formats. This enables storing, printing and displaying images of documents having a variety of sizes on different types of equipment in the same system. Compressed A and B size document images are stored in a first type image file which is Mixed Object Document Content Architecture format (MO:DCA-P), having a field for the size of the document image. C to E size document images are each divided into component tile images which are each compressed and stored in a second type image file which has a format interchangeable with the format of the first image file, but includes map data relating the tile images to the document image. A preview image can be included in the image file, which can be immediately displayed or printed while the tile images are being decompressed. The second image file is in a second type Mixed Object Document Content Architecture format (MO:DCA-X), which has the same overall format as the MO:DCA-P format. The preview image is concealed in a NoOP field and is used typically by those I/O devices in the system which are capable of handling C to E size documents. This enables the two types of image files to be commingled in a common system storage, permitting the interchangeability of the image objects for documents of diverse size. |
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38 | Editing system | JP2000112833 | 2000-04-14 | JP2000324453A | 2000-11-24 | HINSON NEIL ROY |
PROBLEM TO BE SOLVED: To provide an editing system of a moving image capable of solving the problem of the non-interchangeability between a film and the frame rate of television. SOLUTION: An editing system 1 stores image data expressing a first moving image inputted by a rate corresponding to a first format in a storing device, and generates image data expressing an edited moving image so that the generated image data is outputted by a rate corresponding to a second format by operating the stored image data. The system 1 is changeable and is capable of processing by a data rate for deciding a second data rate. | ||||||
39 | Interchangeable finder | JP2012173979 | 2012-08-06 | JP2014033403A | 2014-02-20 | TOMIZAWA SHINPEI |
PROBLEM TO BE SOLVED: To provide an interchangeable electronic finder that can display a subject image together with photographing information, eliminates the need to newly provide a connector for information communication and an engagement part for the connector, and has a simple structure.SOLUTION: There is provided an interchangeable finder device attachable to/detachable from an imaging device in which display means is a segment-type display, and control means receives a photographing information signal from the imaging device, processes the received photographing information into a segment-type display format, and transmits it to the display means. | ||||||
40 | Driving method and device for flat panel display | JP2005014773 | 2005-01-21 | JP2005122217A | 2005-05-12 | KIM HWAN YU; SONG BYUNG SOO |
<P>PROBLEM TO BE SOLVED: To perform recording with a structure having interchangeability with recording formats of a digital still camera at the time of recording still images and audio data to a recording medium for recording animation images. <P>SOLUTION: At the time of recording the still images and the audio data to the reloadable recording medium, the video and audio data files of the still images which are the recording formats of the digital still camera are respectively segmented and recorded into a lower rank directory of a DCIM directory having a DCF structure and the video and/or audio data files of the still images which are the recording formats of a disk video recorder are respectively segmented and recorded into the lower rank directory of an animation image directory. The management information for controlling the search and reproduction of the video and audio data files of the still images existing in the lower rank directory of the DCIM and the video and audio data files of the still images existing in the lower rank directory of the animation image directory is recorded into the lower rank directory of the animation image directory. <P>COPYRIGHT: (C)2005,JPO&NCIPI |