WO2012119486A1 - 平面媒介体识别标志与电子装置档案的数据关联技术系统 - Google Patents

平面媒介体识别标志与电子装置档案的数据关联技术系统 Download PDF

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Publication number
WO2012119486A1
WO2012119486A1 PCT/CN2012/000301 CN2012000301W WO2012119486A1 WO 2012119486 A1 WO2012119486 A1 WO 2012119486A1 CN 2012000301 W CN2012000301 W CN 2012000301W WO 2012119486 A1 WO2012119486 A1 WO 2012119486A1
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WO
WIPO (PCT)
Prior art keywords
electronic
circuit
reading
coordinate
data
Prior art date
Application number
PCT/CN2012/000301
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English (en)
French (fr)
Inventor
丘炎卫
Original Assignee
深圳市王菱科技开发有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Priority claimed from CN2011100599739A external-priority patent/CN102194095A/zh
Application filed by 深圳市王菱科技开发有限公司 filed Critical 深圳市王菱科技开发有限公司
Priority to CN2012800125167A priority Critical patent/CN103430188A/zh
Publication of WO2012119486A1 publication Critical patent/WO2012119486A1/zh

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    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06KGRAPHICAL DATA READING; PRESENTATION OF DATA; RECORD CARRIERS; HANDLING RECORD CARRIERS
    • G06K7/00Methods or arrangements for sensing record carriers, e.g. for reading patterns
    • G06K7/10Methods or arrangements for sensing record carriers, e.g. for reading patterns by electromagnetic radiation, e.g. optical sensing; by corpuscular radiation
    • G06K7/10544Methods or arrangements for sensing record carriers, e.g. for reading patterns by electromagnetic radiation, e.g. optical sensing; by corpuscular radiation by scanning of the records by radiation in the optical part of the electromagnetic spectrum

Definitions

  • the present invention relates to a related art system of two different media products of traditional flat media and electronic reading, in particular to a data association technology system for a flat media identification mark and an electronic device file
  • the data association technology system is composed of a reading device, a combination of a planar medium and an electronic device, wherein the photoelectric reading device can acquire different information data from the planar medium and the electronic coordinate circuit, and transmit the electronic data of the associated electronic device file to the central processor circuit of the reading device including the storage device.
  • the processing is combined electronic data, and the combined electronic data can be used to retrieve the electronic file of the associated electronic device, and the content can be viewed through an electronic reader or an external electronic reading product.
  • the two-dimensional code is composed of a plurality of tiny image unit arrangements.
  • the tiny symbol unit is small to visually easy to ignore, and is drawn by a fluorescent ink.
  • the fluorescent ink has an optical response to the infrared light of the infrared emitter. When applied, it is needed.
  • the text or illustration range of the reading is printed with a two-dimensional code, and then the selected photoelectric device selects the text or illustration to identify (actually the two-dimensional code printed in the recognition text or illustration range), and the small image unit can be captured by the camera.
  • the photoelectric conversion circuit delivers the resolved data signal to the central processing unit for processing as electronic data, achieving the goal of "e-paper bonding".
  • the two-dimensional code technology has no restrictions on the thickness and number of pages of books compared with electronic coordinate technology.
  • the two-dimensional code is a point matrix composed of multiple points, which is called the basic unit of the two-dimensional code.
  • the basic unit of the two-dimensional code is determined according to the DPI of the photoelectric device and the size of the camera.
  • the conditional influence of the device that is, the number of code sources of the two-dimensional code is severely limited, resulting in different publications sharing the same two-dimensional code code, resulting in a chaotic situation in the reading content.
  • QR code is a "dead" code to the user, which is a passive use that the user can only accept, and cannot change.
  • RFID technology is a non-contact automatic identification technology, which automatically identifies target objects and acquires relevant data through radio frequency signals.
  • the working conditions of RFID technology must establish a label on the target object (with Independent electronic coding)
  • the information of the tag is read by the associated card reader (the tag can also be marked to be written).
  • the card reader After the tag enters the magnetic field, receiving the radio frequency signal emitted by the card reader, and transmitting the product information stored in the chip or actively transmitting the signal of a certain frequency by the energy obtained by the induced current; the card reader reads the information and decodes the signal , sent to the central information system for data processing. Therefore, the content that needs to be created must have a label, and the data needs to correspond to the corresponding label form, and all the data corresponding to the label is stored in the data storage tool.
  • OCR technology that is, what is seen, the text that is seen is turned into an electronic document of a computer, and is arbitrarily strong.
  • OCR Optical Character Recognition technology refers to electronic devices such as scanners or A digital camera checks the characters printed on the paper, determines its shape by detecting dark and bright patterns, and then uses the character recognition method to translate the shape into computer text.
  • the technology is used in blind readings in the world. This technology is used to correct the texts from image to result output through image input, image pre-processing, text feature extraction, comparison recognition, and manual correction. This is an insurmountable difficulty for the blind.) It is the final result output, the above technique. Insufficient factors make the related products still unable to provide substantial help for blind reading (touching).
  • the present invention aims to provide an information content, a three-dimensional bump, and the like using a planar medium.
  • the electronic file of the associated electronic device is called up by the data association technology system, and the content is viewed in an electronic reader or an external electronic reading product. .
  • the present invention provides a data association technology system for a planar medium identification mark and an electronic device file, and the data association technology system is composed of a reading device, a planar medium, and an electronic device, characterized in that;
  • the reading device comprises an electronic coordinate device, an optoelectronic device and a central processor circuit including a memory, [27] the electronic coordinate device is composed of an electronic coordinate circuit and an electromagnetic wave circuit capable of emitting a fixed frequency signal,
  • the optoelectronic device comprises an infrared emitter, a camera and a photoelectric conversion circuit, the camera can capture the response image of the invisible code, and the photoelectric conversion circuit transmits the resolved information data to the central processor circuit including the storage,
  • the photoelectric reading device is combined with the photoelectric device and the electromagnetic wave circuit, and different information data can be respectively obtained from the electronic coordinate circuit and the planar medium by the photoelectric reading device.
  • the electronic device includes an information storage device and a central processing unit circuit,
  • the optoelectronic reading device can obtain different information data from the planar medium and the electronic coordinate circuit, and transmit the electronic data of the associated electronic device file to the central processor circuit of the reading device including the storage device.
  • the central processor circuit of the reading device including the storage device.
  • the combined electronic data can be viewed from an electronic file associated with the electronic device, viewed through an electronic reader, or viewed from an external electronic reading product.
  • the electronic coordinate circuit is placed in a three-dimensional object of the reading machine box,
  • the electronic coordinate circuit is an electronic antenna array circuit board provided with a plurality of interleaved overlapping electronic antenna circuits, wherein the electronic antenna array circuit board is composed of one metal wire in the X-axis direction and the other metal wire is in the Y-axis direction.
  • the electronic antenna array circuit board senses a fixed frequency signal from an electromagnetic wave circuit, and the combined interface of the electronic antenna array circuit board is electrically connected to the A/D portion of the central processing circuit board including the memory.
  • the electronic coordinate device is divided into a coordinate sensing area and a coordinate non-sensing area, and the coordinate sensing area corresponds to an effective sensing range of the built-in electronic coordinate circuit.
  • the three-dimensional object is a flexible body that can be curled.
  • the planar medium is divided into a reading sensing area and a reading non-sensing area, the reading sensing area corresponds to a coordinate sensing area of the electronic coordinate device, and the reading non-sensing area corresponds to a coordinate non-sensing area of the electronic coordinate device.
  • the invisible code is composed of a plurality of tiny symbol units arranged in a fluorescent ink, and the fluorescent ink has an optical reaction to the infrared of the infrared emitter.
  • the invisible code can be a single geometric image, or a number, or a character, or a symbol
  • the surface of the planar medium body is set as an identification mark by drawing the printed information of the ink that does not absorb infrared light, and the identification mark may be a coordinate point of the electronic coordinate circuit or the information content of the electronic coordinate circuit is formed. Within the scope of the area.
  • the surface of the planar medium body is identified by a three-dimensional concave and convex point, and the identification mark may be a certain coordinate point of the electronic coordinate circuit or within a range of regions in which the electronic coordinate circuit formulates a plurality of concave and convex points.
  • the planar medium may be of different size specifications, and the planar medium sharing electronic devices of different sizes and specifications share the same file name data and are sent to the central processor circuit including the storage.
  • the optoelectronic device is a plurality of combinations, and the B group photoelectric device includes an infrared emitter, a camera, and a photoelectric conversion circuit.
  • the Group B optoelectronic device can read the information data of the invisible code from the planar medium, and the photoelectric conversion circuit delivers the resolved information data to the central processor circuit including the storage.
  • the electronic device is an independent electronic reading product, and the information storage device of the electronic device and the central processing unit circuit are built in the circuit of the electronic reading product.
  • the electronic device is an independent central information processing system.
  • the electronic device and the reading device are wired or electrically connected.
  • the present invention effectively enhances the associated use technology of traditional print media and electronic reading
  • the reader uses a multi-array optoelectronic device design, and the data obtained by the B group photoelectric device is combined with the electronic data of the 'paper window system' technology. 3 ⁇ 4 new electronic data, the output capacity of the present invention is improved by geometric multiples, and the code source of the related technology of the 'paper window system' is more effectively improved.
  • the present invention provides an association technology for sharing the same electronic file of an electronic device with different size specifications, and caters to the needs of the integration and integration of various electronic media resources in the market, and provides a wider range of cultural industry development. Technical Support.
  • the invention is integrated with the mobile information network technology, and the technical support of the scalability and efficiency advantages enables the traditional flat media to be synchronized with the development of mobile informationization.
  • FIG. 1A is a schematic diagram of the principle of combined electronic data (A + XY + E)
  • FIG. 1B is a schematic diagram of a built-in electronic coordinate circuit of the electronic coordinate device
  • FIG. 1C is a schematic diagram of the use of the planar medium and the electronic coordinate device
  • FIG. D is a schematic structural diagram of a wired connection of an optical reading device
  • FIG. 1E is a schematic structural view of a wireless connection of an optical reading device.
  • Figure 2A is a schematic diagram of a flat monthly calendar
  • Figure 2B is a schematic diagram of a flat news newspaper
  • Figure 2C is a schematic diagram of a flat news newspaper
  • FIG. 2D is a schematic diagram of a plane advertisement.
  • Figure 3A is a schematic diagram of the inner page of the plane blind papers, and Figure 3B is the cover of the plane blind papers.
  • Figure 3C is the schematic diagram of the B group optoelectronic device structure 1
  • Figure 3D is the B group photoelectric device structure schematic diagram 2
  • Figure 3E is the B group photoelectric device structure diagram 3
  • Figure 4A is a schematic diagram of Plane Newsweek 1 and Figure 4B is a schematic diagram of Plane Newsweek 2
  • FIG. 5A is a schematic diagram of the principle of combined electronic data (A+XY+E+B), and FIG. 5B is a schematic perspective view of the use of a planar medium and an electronic coordinate device.
  • FIG. 6A is a schematic diagram of an application of an interactive demonstration system
  • FIG. 6B is a schematic diagram of a fusion cloud storage application.
  • FIG. 7A is a front perspective view of the built-in photoelectric reading device of the electronic reading product
  • FIG. 7B is a rear perspective view of the built-in photoelectric reading device of the electronic reading product
  • FIG. 7C is a perspective view of the electronic reading product with the removable photoelectric reading device
  • FIG. 7D is a schematic view Schematic diagram of the appearance of the soft body which can be curled 1.
  • Fig. 7 E is a schematic view 2 of the soft body which can be curled.
  • the first step is to establish an electronic file, and use the photoelectric reading device to select the information content of the planar medium body, and the electronic antenna array circuit board can sense the fixed frequency signal emitted by the electromagnetic wave circuit.
  • the invention sets different information contents as different identification marks, and the identification marks may be a certain coordinate point of the electronic coordinate circuit, or in the electronic
  • the coordinate circuit is designed to be within a range of regions formed by a plurality of coordinate points.
  • the surface of the planar medium is printed with an invisible code, and the invisible code is drawn by a fluorescent ink.
  • the fluorescent ink has an optical response to the infrared light of the infrared emitter, and the camera of the photoelectric device can take in the response image of the invisible code [71], and the information data A (equal page number) distinguished by the photoelectric conversion circuit,
  • the second step of the photoelectric reading device is to select the position set before (ie, the position of the information content of the planar medium, [74] the combined electronic data (A+XY) can be used to extract the electronic associated with the electronic device. Files, viewed through an e-reader, or an external e-reading product.
  • the present invention provides a data association technology system for a planar medium identification mark and an electronic device file.
  • the data association technology system is composed of a reading device, a planar medium 14, and an electronic device 01. Combined, characterized by
  • the reading device includes an electronic coordinate device, an optoelectronic device 22, and a central processing circuit including a memory.
  • the electronic coordinate device is composed of an electronic coordinate circuit 42 and an electromagnetic wave circuit 21 that can emit a fixed frequency signal.
  • the optoelectronic device 22 includes an infrared emitter 221, a camera 222, and a photoelectric conversion circuit, see FIG.
  • the camera can capture the response image of the invisible code, and the photoelectric conversion circuit delivers the resolved information data to the central processor circuit 43 including the memory.
  • the photoelectric reading device 20 is combined with the photoelectric device and the electromagnetic wave circuit, and different information data can be respectively obtained from the electronic coordinate circuit and the planar medium through the photoelectric reading device.
  • the electronic device 01 includes an information storage unit 011 and a central processing unit circuit 012.
  • the optoelectronic reading device can acquire different information data from the planar medium and the electronic coordinate circuit, and the electronic data associated with the electronic device file is transmitted to the central processing circuit 43 of the reading device including the memory to be processed into a combined electronic device.
  • the combined electronic data can be retrieved from the electronic file associated with the electronic device 01, viewed through an accompanying e-reader
  • the above-mentioned electronic reading products include compatible electronic products with visual screens such as computers, PDAs, handheld electronic readers, electronic learning machines, MP4, mobile phones and televisions.
  • the electronic coordinate circuit 42 is placed in a three-dimensional object of the reading machine case 100,
  • the electronic coordinate circuit 42 is an electronic antenna array circuit board provided with a plurality of interleaved overlapping electronic antenna circuits.
  • the electronic antenna array circuit board is composed of one metal wire in the X-axis direction, and the other metal wire is in the X-axis direction.
  • the Y-axis direction forms an array antenna loop with the X-axis direction.
  • the electronic antenna array circuit board of this embodiment uses a flexible conductive film, and other materials can be used.
  • the electronic antenna array circuit board can be used.
  • the fixed frequency signal emitted by the electromagnetic wave circuit 21 can be sensed, and the combined interface of the electronic antenna array circuit board arrangement is electrically connected to the AD portion of the central processing circuit board including the memory.
  • the electronic coordinate device is divided into a coordinate sensing area 1002 and a coordinate non-sensing area 1003. As shown in FIG. 1B, the coordinate sensing area corresponds to an effective sensing range of the built-in electronic coordinate circuit.
  • the three-dimensional object is a flexible body that can be curled. As shown in Figs. 7D and 7E, the plate-shaped body is made of a soft material, so that it can be rolled into a cylindrical shape and is more portable.
  • the planar medium 14 is divided into a reading sensing area 142 and a reading non-sensing area 143, as shown in FIG. 5B.
  • the reading sensing area corresponds to the coordinate sensing area of the electronic coordinate device
  • the reading non-sensing area corresponds to the coordinate non-sensing area of the electronic coordinate device.
  • the surface of the planar medium body 14 is printed with an invisible code 141.
  • the invisible code 141 is composed of a plurality of tiny symbol units arranged in a fluorescent
  • fluorescent ink optically reacts to the infrared light of the infrared emitter
  • the surface of the planar medium body can draw printed related text, patterns and the like without ink that absorbs infrared light, and the content can overlap or not overlap with the printed invisible code, as shown in Figures 2A, 2B, 2C and 2D. Since the tiny symbol units of the invisible code are so small that they are visually negligible, the aesthetic effect on the printed content is almost zero.
  • the invisible code 141 can be a single geometric image, or a number, or a character, or a character such as a symbol, or a combination of different characters.
  • planar medium referred to in this example is a paper material, or other materials can be used. .
  • the surface of the planar medium body is set as an identification mark by drawing the printed information content of the ink that does not absorb infrared light, and the identification mark may be a coordinate point of the electronic coordinate circuit or the information content of the electronic coordinate circuit is formed. Within the scope of the area.
  • access content (1) and (2) access content and a mobile phone advertisement map respectively set 2 different identification marks, and respectively set corresponding electronic files [100]
  • access content and a mobile phone advertisement map respectively set 2 different identification marks, and respectively set corresponding electronic files [100]
  • the connected e-reading products provide readers with a deeper understanding of the content related to the mobile phone products (including text, images, sounds, videos, etc.).
  • the connected e-reading products enable readers to have a deeper understanding of the contents of mobile phone products (including text, images, sounds, videos, etc.).
  • page 51 is preset as a reading guide for March 8, 201, 2011.
  • the surface of the planar medium body is identified by a three-dimensional concave and convex point, and the identification mark may be a certain coordinate point of the electronic coordinate circuit, or within a range of areas where the electronic coordinate circuit formulates a plurality of concave and convex points, Braille It is a combination of different concave and convex points to express different words.
  • the blind person's reading product uses the technology of the present invention, it can effectively solve the blind person's interaction with listening when reading (touching) Braille (convex).
  • the cover of the Braille Newsweek, the invisible code of the non-data-sensing area on the back cover (can also be printed with relevant content information) Read the relevant index data (the issue number of the Braille Newsweek, etc.), transmit
  • Braille is a combination of different embossed logos to express different words.
  • the obstacle can be read (touched) by the Braille content, and according to the directory guide. Click to select the associated electronic file to listen to, the keyboard device and the sound prompt to output relevant electronic data - for deeper reading (sound), will effectively solve the blind when reading (touching) Braille (convex)
  • the hints including text, voice, etc.
  • planar medium body 14 can be different size specifications, different size specifications of the planar medium associated electronic equipment
  • the name data of the same file is consistent and sent to the central processor circuit 43 containing the memory for processing.
  • the planar medium is the monthly calendar of Figure 14A1 in October 2012, as shown in Figure 2A. It is assumed that the day of the Revolution of 1910, divided into three identification marks per day, and associated with the identification mark. The name of the electronic file;
  • the first identification mark is set to (A1+X1Y1) association (commemorative introduction) ' Set to (A1+X1Y1 + anniversary name), the second identification mark is set to (A1+X2Y2) association (related note) ), set to (A1 + X2Y2 ten related notes), the third identification mark is set to (A1 + X3Y3) association (current year), set to (A1 + X3Y3 + current year),
  • the combined electronic data can be adjusted to the electronic file associated with the electronic device.
  • the combined electronic data can be adjusted to the electronic file associated with the electronic device.
  • the combined electronic data can be adjusted to the electronic file associated with the electronic device.
  • Readers who have access to an e-reader or an external e-reading product can gain a deeper understanding of the logo (including text, images, sounds, videos, etc.).
  • the graphic media is a newsweek 14A2 of a certain period, as shown in Figure 2B.
  • the published text relates to the history of the Revolution of 1911 on October 10, and the position of the text content published in the news week is inconsistent with the position of the calendar day.
  • the content is divided into two identification marks, and the identification marks are respectively
  • the fourth identification mark is set to (A2+X4Y4) association (commemorative introduction), set to (A2+X4Y4 tenth anniversary introduction), the fifth identification mark is set to (A2+X5Y5) association (the current day) ), set to (A2 + X5Y5 ten years of today),
  • the combined electronic data can be adjusted to be associated with the electronic device.
  • the combined electronic data can be adjusted to be associated with the electronic device.
  • the flat medium is a handwritten diary paper 14A3.
  • the position of the day of the handwritten diary sheet is inconsistent with the position of the calendar day, and can be the same as the monthly calendar, handwritten diary on October 10
  • the day is divided into three identification marks, and the identification marks are added to the names of the associated electronic files;
  • the sixth identification mark is set to (A3+X6Y6) association (commemorative introduction), set to (A3+X6Y6+ anniversary introduction), and the seventh identification mark is set to (A3+X7Y7) association (related note) , set to (A3 +X7Y7 + related notes),
  • the combined electronic data can be adjusted to the electronic file associated with the electronic device.
  • the combined electronic data can be adjusted to the electronic file associated with the electronic device.
  • the graphic medium is a propaganda advertisement 14A4 related to the Revolution of 1911. As shown in Figure 2D, the advertisement is accompanied by a brief introduction of the activities, and the related content is divided into two identification marks, and the identification marks are added respectively. The name of the associated electronic file;
  • the 8th identification mark is set to (A4+X8Y8) association (related note), set to (A4+X8Y8)
  • the combined electronic data can be adjusted to the electronic file associated with the electronic device.
  • the combined electronic data can be adjusted to be associated with the electronic device.
  • the optoelectronic device is a plurality of combinations, and the B group optoelectronic device 22B is provided with an infrared emitter 221B, The camera 222B and the photoelectric conversion circuit,
  • the electronic coordinate device is provided with a B group photoelectric device 22B, as shown in FIG. 3D, and placed in a stereoscopic body of the reading machine case. As shown in FIG. 3C, the three-dimensional panel is provided with a small through hole 105. Corresponding to a planar medium
  • the through window 225 of the photovoltaic device 22B is adjacent to the plate-like body with a small through hole 105.
  • the Group B optoelectronic device can read the information data of the invisible code from the planar medium, and the photoelectric conversion circuit delivers the resolved information data to the central processor circuit 43 including the memory.
  • the reading device is provided with an electronic card reader placed within the coordinate non-sensing area of the electronic coordinate circuit
  • the flat medium body is provided with an IC card
  • the flash memory is used based on the central processing circuit board or the IC card containing the memory
  • the data reading can be linearly connected or non-contact type RF sensing
  • the electronic card reader transfers the electronic data of the read IC card to the central processor circuit containing the memory.
  • the electronic device 01 is an independent electronic reading product, and the information storage device 011 of the electronic device and the central processor circuit 012 are built in the circuit of the electronic reading product, as shown in Fig. 6A.
  • the electronic device 01 is an independent central information processing system (such as cloud computing, cloud storage, etc.), as shown in FIG. 6B.
  • the electronic device 01 and the reading device are wired and electrically connected, or wirelessly transmitted, so that the propagation capability of the present invention reaches the development goal of any time, anywhere and freely, and the expansion and efficiency advantages thereof will enable the traditional planar media to realize The goal of simultaneous development with electronic mobile information.
  • the optoelectronic device 22 combined with the electromagnetic wave circuit 21 is built in a compatible electronic reading product, as shown in FIGS. 7A, 7B and 7C, using an electronic reading product with a built-in photoelectric reading device to select a planar medium. Identification mark.
  • the four corners of the flat medium body placed on the top of the electronic reading machine box are respectively provided with clamping devices 106, as shown in FIG. 5B, so that the planar medium body can be stabilized in the coordinate sensing area and the coordinates.
  • the holding device of the present embodiment is made of a transparent material.

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Description

说明书
发明名称:平面媒介体识别标志与电子装置档案的数据关联技术系 统
技术领域
[1] 本发明涉及传统平面媒体与电子阅读两种不同介质产品的关联技术系统, 特别 是涉及一种平面媒介体识别标志与电子装置档案的数据关联技术系统, 数据关 联技术系统由读数装置、 平面媒介体及电子装置组合, 所述光电阅读装置可从 平面媒介体及电子坐标电路中获取不同的信息数据, 与关联电子装置档案的电 子数据, 传送至读数装置含储存器的中央处理器电路处理为组合电子数据, 该 组合电子数据可.调出关联电子装置的电子档案, 通过附带电子阅读器阅览, 或 是外接的电子阅读产品阅览内容。
背景技术
[2] 随着数字、 通信及网络技术的迅速发展和普及, 人们获取知识和信息的渠道更 加多样化, 各种各样的电子图书、 学习机、 具有电脑功能的 PDA等应运而生。
[3] 社会有部份人仕倡议以电子阅读器、 手提电脑等设置 (如电子书包、 电子会刊
) 代替传统纸质课本及会刊方案, 该类方案实际是"无纸化 "的理论, "但经多年 的推动, 其效果并不理想, 成本高及效益低。
[4] 如使用电子阅读设置外, 仍需要带传统纸质课本吗?如参加会议的人仕, 完毕 后日后如何继续参阅相关会刊的内容?
[5] 人们生活中, 离不开文字、 图档、 声音及视像等资料的记录和传播, 事实传统 平面媒体所能表达的能力已经远远不能满足人类的实际需要, 如平面媒体的内 容能够配有相关的图文影音资料, 是人们的愿望和需求, 也
[6] 是社会发展的必然性, 为此, 专家们再提出 "e纸结合 "的新论点; 即纸书阅读 和电子阅读将是多元并存。
[7] 因此, 多年来, 全世界的科研人员不懈地努力寻求相关的技术突破, 巿场经有 多种 "e纸结合"的关联技术; 如 BAR技术、 OCR技术、 OID技术及 X-Y技术等, 但该等技术存在抑制性的条件限制, 虽然相关的科研人员经过多年的努力, 但 该技术仍无法突破其技术的被动局限性, 因此其市场的使用率非常低。
[8] 如美国 1999年三月公布的专利 USA5,686,705及 USA5,877,458中, 公开一种简单 的对纸张出版的书籍, 进行交互式阅读学习的系统; 该专利的电子坐标技术是 一种基于"电荷一变换 (Charge— Tansfer) "的感应技术 (SensingTechnology), 这 种电子坐标技术用于对纸张出版的书籍内容进行定位与识别存在以下的缺点:
[9] 1、 每次点击只确定页面的平面位置, 但不能确定是哪一页;
[10] 2、 当书籍的厚度增加时, 穿过书籍的电笔发射信号就会减弱, 甚至于电笔发 射信号完全不能穿过书籍, 从而产生误识或无法识别;
[11] 客观的讲, 该电子坐标技术只是一种单一识别坐标位置的技术, 并不能确定识 别的是纸籍的哪一页, 至今仍无法突破原来单一识别坐标位置的技术局限性, 在实际应用吋, 相关的产品仍需要在其电路设计另外附加选择页码的功能操作
[12] 随着电子数码技术的快速发展和市场的需求, 有科研人员在原有条码 (一维码 ) 的光电阅读技术基础上, 衍生新的二维码产品技术。
[13] 二维码是复数个微小图像单元排列构成, 微小符号单元微小至在视觉上易忽略 , 是以一荧光油墨绘制, 荧光油墨对红外线发射器的红外线具光学反应, 应用 时, 在需要阅读的文字或插图范围分别印有二维码, 再通过配套的光电装置点 选文字或插图进行识别 (实际是识别文字或插图范围印有的二维码) , 通过摄 像器可摄取微小图像单元的回应影像, 光电转换电路把分辨的数据信号输送至 中央处理器处理为电子数据, 达到 "e纸结合 "的目标。
[14] 理论上, 二维码技术与电子坐标技术相比, 对书籍的厚度与页数没有使用限制
, 但其识别技术完全依靠二维码, 所以二维码的码源是该技术能否有效发展的 关键, 二维码电子阅读产品的发展仍存在以下的缺点:
[15] 1、 二维码是由多个点组成的点矩阵, 称为二维码的基本单元, 摄取二维码的 基本单元是根据光电装置的 DPI和摄像器的大小确定, 是受到光电装置的条件影 响, 即是二维码的码源数量是受到严重限制, 导致不同的出版物共用相同的二 维码编码, 致使阅读内容出现张冠李戴的混乱情况。
[16] 2、 基于二维码的识别技术完全依靠阅读的文字和插图旁边插有.的二维码, 该 技术应用必须经相关的专业人士编辑、 打稿和印刷处理, 二维码对使用者是"死" 码, 即是使用者只能接受, 而不可改变的被动使用。
[17] 因此, 二维码技术产品存在抑制性的技术条件限制 (特别是码源的问题) , 相 关的科研人员仍无法突破其技术的被动局限性, 市场的应用在一些要求较低的 儿童刊物。
[18] 也曾有技术人士提出使用 RFID技术的方案, 希望达到 "e纸结合 "的新效果, 从 理论上或是可行, 伹并不符合人们实际使用的要求。
[19] 在技术领域上; RFID技术是一种非接触式的自动识别技术, 它通过射频信号 自动识别目标对象并获取相关数据, RFID技术的工作条件一必需在识别目标对 象设立一个标签 (具有独立的电子编码) 附着相关的物体上, 通过配套的读卡 器读取 (有吋还可标以写入)标签的信息。 当该标签进入磁场后, 接收读卡器发出 的射频信号, 凭借感应电流所获得的能量发送出存储在芯片中的产品信息或者 主动发送某一频率的信号; 读卡器读取信息并解码后, 送至中央信息系统进行 有关数据处理。 因此, 所需要建立的内容都必须设有标签, 同时数据需分别对 应于相应的标签形式, 所有与标签相对应的数据都存储在数据存储工具中。
[20] 但在实际阅读使用中; 每一个人阅读的方法及心得都不一样, 一本书册的内容 可以产生无数的解释组合, 要为书册的每一内容解释组合而设立一个独立的标 签, 建立的标签都需要专用的设备去完成, 其工程相当、 相当大及不实际, 成 本高及效益低。 实际 RFID技术并不适合在文化阅读的领域上应用, 因此基于 RFI D技术的特点, 巿场上主要是应用在物流和供应管理、 生产制造等行业的追踪技 术系统上。
[21] 如 OCR技术, 即看到什么就是什么, 把所看到的文字变为电脑的电子文档, 随 意性强, 所谓 OCR Optical Character Recognition光学宇符识别技术, 是指电子设 备例如扫描仪或数码相机检査纸上打印的字符, 通过检测暗、 亮的模式确定其 形状, 然后用字符识别方法将形状翻译成计算机文字的过程。 目前世界上经有 盲人阅读相关的产品均采用该技术, 该技术从影像到结果输出, 须经过影像输 入、 影像前处理、 文字特征抽取、 比对识别、 再经人工校正将认错的文字更正 (这对于盲人来讲是一个无法克服的困难) , 才是最后的结果输出, 以上的技 术不足因素, 使相关的产品仍不能为盲人阅读 (摸字) 提供实质性的帮助。
[22] 为了让人们 (特别盲人的弱小社群) 能够享受人类数码科技发展的成果, 申请 人为有效解决平面阅读与电子阅读的关联使用, 经有多项专利技术, 如发明专 禾 IJ2004100792168号"带 PDA的多面折叠式资料册"、 发明专利 2005100653136号" 可装设 PDA的多功能封皮装置"、 及为解决盲人书写 (点字) 的发明专禾 Ij2005100 883778号"具有信息处理功能的盲文书写装置 "等。 申请人创新发明"纸上视窗系 统"技术, 经解决传统平面阅读与电子阅读的关联技术, 但要实现传统平面阅读 与电子阅读能够融合使用和普及, 仍需提供更多的支持技术, 包括码源、 成本 及易于使用等技术问题。
发明内容
[23] 本发明旨在提供一种利用平面媒介体的信息内容、 立体的凹凸点等设
[24] 定为识别标志, 通过数据关联技术系统调出关联电子装置的电子档案, 在附带 电子阅读器阅览, 或是外接的电子阅读产品阅览内容。 .
[25] 为实现上述目的, 本发明提供一种平面媒介体识别标志与电子装置档案的数据 关联技术系统, 数据关联技术系统由读数装置、 平面媒介体及电子装置组合, 其特征在于;
[26] 所述读数装置包括电子坐标装置、 光电装置及含储存器的中央处理器电路, [27] 所述电子坐标装置是由电子坐标电路及一可发出固定频率信号的电磁波电路构 成,
[28] 所述光电装置包括有红外线发射器、 摄像器及光电转换电路, 摄像器可摄取隐 形代码的回应影像, 光电转换电路把分辨的信息数据输送至含储存器的中央处 理器电路处理,
[29] 由光电装置与电磁波电路组合光电阅读装置, 通过光电阅读装置可从电子坐标 电路及平面媒介体分别获取不同的信息数据,
[30] 所述平面媒介体表面印有隐形代码,
[31] 所述电子装置包括信息储存器及中央处理器电路,
[32] 所述光电阅读装置可从平面媒介体及电子坐标电路中获取不同的信息数据, 与 关联电子装置档案的电子数据, 传送至读数装置含储存器的中央处理器电路处 理为组合电子数据,
[33] 该组合电子数据可调出电子装置关联的电子档案, 通过附带电子阅读器阅览, 或是外接的电子阅读产品阅览内容。
[34] 所述电子坐标电路放置在阅读机盒的立体物状体内,
[35] 所述电子坐标电路是设有多个交错重叠电子天线回路的电子天线阵列式电路板 , 电子天线阵列式电路板是由一金属线为 X轴方向, 而另一金属线则为 Y轴方向 , 并与 X轴的方向形成交叉方式而构成阵列式的天线回路,
[36] 电子天线阵列式电路板可感应电磁波电路发出的固定频率信号, 电子天线阵列 式电路板排列的组合接口与含储存器的中央处理器电路板的 A/D部分作电子连接
[37] 所述电子坐标装置划分为坐标感应区域及坐标非感应区域, 坐标感应区域对应 于内置电子坐标电路的有效感应范围。
[38] 所述立体物状体内是可曲卷的的柔软体。
[39] 所述平面媒介体划分为阅读感应区域及阅读非感应区域, 阅读感应区域对应于 电子坐标装置的坐标感应区域, 阅读非感应区域对应于电子坐标装置的坐标非 感应区域。
[40] 所述平面媒介体表面印有隐形代码 ,
[41] 所述隐形代码是由复数个微小符号单元排列构成, 是以一荧光油墨绘制, 荧光 油墨对红外线发射器的红外线具光学反应,
[42] 所述隐形代码可是单一的几何图像, 或是数字, 或是文字, 或是符号等字符
, 或是混合不同的字符组合。
[43] 所述不同的平面媒介体表面不能印有相同的隐形代码, 是可印有不同的隐形代 码。
[44] 所述平面媒介体表面以不吸收红外光的油墨绘制印刷的信息内容设定为识别标 志, 识别标志可是电子坐标电路的某一坐标点, 或是在电子坐标电路拟定信 息内容构成的区域范围内。
[45] 所述平面媒介体表面以附有立体的凹凸点为识别标志, 识别标志可是电子坐标 电路的某一坐标点, 或是在电子坐标电路拟定多个凹凸点构成的区域范围内。 [46] 所述平面媒介体可是不同尺寸规格, 不同尺寸规格的平面媒介体共用电子装置 同一档案的名称数据是一致性, 输送至含储存器的中央处理器电路处理。
[47] 所述光电装置是复数组合, 设有 B组光电装置包括有红外线发射器、 摄像器及 光电转换电路,
[48] 所述 B组光电装置可从平面媒介体读取隐形代码的信息数据, 光电转换电路把 分辨的信息数据输送至含储存器的中央处理器电路处理。
[49] 所述电子装置是独立的电子阅读产品, 电子装置的信息储存器及中央处理器电 路内置在电子阅读产品的电路。
[50] 所述电子装置是独立的中央信息处理系统。
[51] 所述电子装置与读数装置是有线电连接, 或是无线传送。
[52] 本发明有效地提升传统平面媒体与电子阅读的关联使用技术;
[53] 1、 申请人在'纸上视窗系统 '发明技术基础上, 读数装置釆用复数组的光电装置 设计, B组光电装置获取的数据与'纸上视窗系统'技术的电子数据合^ ¾新的电子 数据, 使本发明的输出能力获得几何倍数的提升, 更有效提升'纸上视窗系统 '关 联技术的码源。
[54] 2、 本发明提供不同尺寸规格的平面媒介体共享电子装置同一电子档案的关联 技术, 迎合市场各种不同平面媒体关联电子资源融合一体化使用的需求, 为文 化产业发展提供更广泛的技术支持。
[55] 3、 本发明与移动信息网技术结合为一体, 其扩展性和效率优势的技术支持, 使传统平面媒体可与移动信息化同步发展的目标。
附图说明
[56] 图 1A为组合电子数据 (A + XY + E) 的原理示意图, 图 1B为电子坐标装置内置 电子坐标电路的示意图, 图 1C为平面媒介体与电子坐标装置的使用示意图, 图 1 : D为光电阅读装置有线连接的结构示意图, 图 1E为光电阅读装置无线连接的结构 示意图,
[57] 图 2A为平面月历图的示意图, 图 2B为平面新闻报刊的示意图, 图 2C
[58] 为平面书写日记本的示意图, 图 2D为平面广告的示意图,
[59] 图 3A为平面盲文书刊的内页示意图, 图 3B为平面盲文书刊的封面与 [60] 封底示意图, 图 3C为 B组光电装置结构示意图 1 , 图 3D为 B组光电装置结构示意 图 2, 图 3E为 B组光电装置结构示意图 3 ,
[61] 图 4A为平面新闻周刊的示意图 1 , 图 4B为平面新闻周刊的示意图 2,
[62] 图 5A为组合电子数据 (A+XY+E+B) 的原理示意图, 图 5B为平面媒介体与 电子坐标装置的使用立体示意图,
[63] 图 6A为交互演示系统应用示意图, 图 6B为融合云储存应用示意图,
[64] 图 7A为电子阅读产品内置光电阅读装置的正面立体图, 图 7B为电子阅读产品 内置光电阅读装置的背面立体图, 图 7C为电子阅读产品附带可装卸光电阅读装 置的立体示意图, 图 7D为可曲卷的柔软体外观示意图 1、 图 7 E为可曲卷的柔软 体外观示意图 2。
具体实施方式
[65] 下列实施例是对本发明的进一步解释和说明 , 对本发明不构成任何限制; [66] "纸上视窗系统"的工作原理;
[67] 第一步建立电子档案, 使用光电阅读装置点选平面媒介体的信息内容, 所述电 子天线阵列式电路板可感应电磁波电路发出的固定频率信号
[68] X-Y, 传送至含储存器的中央处理器电路 (电子坐标数据) , 本发明设定不同 信息内容为不同的识别标志, 识别标志可是电子坐标电路的某一坐标点, 或是 在电子坐标电路拟定多个坐标点构成的区域范围内。
[69] 所述平面媒介体表面印有隐形代码, 隐形代码是以一荧光油墨绘制,
[70] 荧光油墨对红外线发射器的红外线具光学反应, 光电装置的摄像器可摄取 [71] 隐形代码的回应影像, 光电转换电路分辨的信息数据 A (相等页码) ,
[72] 经确认储存后, 以上不同的数据分别含储存器的中央处理器电路处理为组合电 子数据 (A+XY) ,
[73] 第二步光电阅读装置再点选前所设定的位置 (即平面媒介体信息内容的位置, [74] 所述该组合电子数据 (A+XY) 可调出电子装置关联的电子档案, 通过附带电 子阅读器阅览, 或是外接的电子阅读产品阅览内容。
[75] 为实现上述目的, 本发明提供一种平面媒介体识别标志与电子装置档案的数据 关联技术系统, 数据关联技术系统由读数装置、 平面媒介体 14及电子装置 01组 合, 其特征在于;
[76] 所述读数装置包括电子坐标装置、 光电装置 22及含储存器的中央处理器电路 43
[77] 所述电子坐标装置是由电子坐标电路 42及一可发出固定频率信号的电磁波电路 21构成,
[78] 所述光电装置 22包括有红外线发射器 221、 摄像器 222及光电转换电路, 参阅图
1D及 1E所示, 摄像器可摄取隐形代码的回应影像, 光电转换电路把分辨的信息 数据输送至含储存器的中央处理器电路 43处理,
[79] 由光电装置与电磁波电路组合光电阅读装置 20, 通过光电阅读装置可从电子坐 标电路及平面媒介体分别获取不同的信息数据,
[80] 所述平面媒介体 14表面印有隐形代码 141 ,
[81] 所述电子装置 01包括信息储存器 011及中央处理器电路 012 ,
[82] 所述光电阅读装置可从平面媒介体及电子坐标电路中获取不同的信息数据, 与 关联电子装置档案的电子数据, 传送至读数装置含储存器的中央处理器电路 43 处理为组合电子数据 (A + XY + E) , 如图 1A所示,
[83] · 该组合电子数据可调出电子装置 01关联的电子档案, 通过附带电子阅读器阅览
, 或是外接的电子阅读产品阅览内容。
[84] 上述所指的电子阅读产品, 包括电脑、 掌上电脑、 手持式电子阅读器、 电子学 习机、 MP4、 手机及电视机等具可视屏幕的兼容电子产品。
[85] 所述电子坐标电路 42放置在阅读机盒 100的立体物状体内,
[86] 所述电子坐标电路 42是设有多个交错重叠电子天线回路的电子天线阵列式电路 板, 电子天线阵列式电路板是由一金属线为 X轴方向, 而另一金属线则为 Y轴方 向, 并与 X轴的方向形成交叉方式而构成阵列式的天线回路, 本实施例的电子天 线阵列式电路板釆用柔性的导电薄膜, 也可以采用其它材料, 电子天线阵列式 电路板可感应电磁波电路 21发出的固定频率信号, 电子天线阵列式电路板排列 的组合接口与含储存器的中央处理器电路板的 A D部分作电子连接,
[87] 所述电子坐标装置划分为坐标感应区域 1002及坐标非感应区域 1003 , 如图 1B所 示, 坐标感应区域对应于内置电子坐标电路的有效感应范围。 [88] 所述立体物状体内是可曲卷的的柔软体, 如图 7D及 7E所示, 板状体釆用柔软 的材料制造, 因此可以曲卷成一圆柱形, 更易于携带。
[89] 所述平面媒介体 14划分为阅读感应区域 142及阅读非感应区域 143 , 如图 5B所示
, 阅读感应区域对应于电子坐标装置的坐标感应区域, 阅读非感应区域对应于 电子坐标装置的坐标非感应区域。
[90] 所述平面媒介体 14表面印有隐形代码 141 ,
[91] 所述隐形代码 141是由复数个微小符号单元排列构成, 是以一荧光
[92] 油墨绘制, 荧光油墨对红外线发射器的红外线具光学反应,
[93] 平面媒介体表面可以不吸收红外光的油墨绘制印刷相关文字、 图案等内容, 该 等内容可与印有的隐形代码重叠或不重叠, 如图 2A、 2B、 2C及 2D所示, 由于隐 形代码的微小符号单元微小至在视觉上易忽略, 对印刷内容造成美观的影响近 乎零。
[94] 所述隐形代码 141可是单一的几何图像, 或是数字, 或是文字, 或是符号等字 符, 或是混合不同的字符组合。
[95] 需要特别强调, 为避免重码使用而导致阅读内容出现张冠李戴的混乱情况, 本 发明设定隐形代码相等于页码的数据, 也即是识别不同平面媒介体的关键依据
[96] 所述不同的平面媒介体 14表面不能印有相同的隐形代码 141 , 是可印有不同的 隐形代码 141 , 本例所指的平面媒介体是纸质材料, 也可是釆用其他材料。
[97] 所述平面媒介体表面以不吸收红外光的油墨绘制印刷的信息内容设定为识别标 志, 识别标志可是电子坐标电路的某一坐标点, 或是在电子坐标电路拟定信息 内容构成的区域范围内。
[98] 参阅图 4A及 4B所示, 2011年 03月 07日某期的新闻周刊, 其出版内容是传统的 设计, 如图 4A所示, 第 50页及第 51页所能表达信息的效果; 即一篇访问内容 ( 一) 、 访问内容 (二) 及一个手机广告图。
[99] 采用本发明的技术后所编辑同期新闻周刊的表达信息效果, 如图 4B所示, 把第
50页的访问内容 (一) 与 (二) 访问内容及一个手机广告图分别设定 2个不同的 识别标志, 并分别设置对应的电子档案 [100] 例如: 点读访问内容吋, 通过连接的电子阅读产品使读者可更深入地了解手机 产品相关的内容 (包括文字、 图档、 声音及视像等) ,
[101] 例如: 点读手机广告时, 通过连接的电子阅读产品使读者可更深入地了解手机 产品相关的内容 (包括文字、 图档、 声音及视像等) ,
[102] 实施例证明阅读该新闻周刊的效果明显提升。
[103] 如本发明结合无线网络技术, 把第 51页预置为 201 1年 03月 08日的阅读导向版面
(第 52页预置为 03月 09日, 如此类推) ; 版面的广告区、 导向阅读主题等 (如 0 1代表吋事新动、 02代表特别报导 ......11代表专栏
[104] 等) 设为相关的识别标志, 当读者点读不同日期的识别标志, 通过连接的电子 阅读产品可阅读的相关内容 (包括文字、 图档、 声音及视像等) ,
[105] 使该新闻周刊的传播能力可真正达到随时、 随地及随心的目标。
[106] 所述平面媒介体表面以附有立体的凹凸点为识别标志, 识别标志可是电子坐标 电路的某一坐标点, 或是在电子坐标电路拟定多个凹凸点构成的区域范围内, 盲文是通过不同的凹凸点组合表达不同的文字, 在盲人的阅读产品釆用本发明 的技术后, 将有效地解决盲人在阅读 (摸字) 盲文 (凸字) 时, 可与聆听互动 结合。
[107] 以下实施例是盲文版新闻周刊的阅读方案;
[108] 如图 3A所示, 阅读 (摸字) 该盲文版新闻周刊时, B组光电装置从该
[109] 盲文版新闻周刊的封面、 封底非资料感应区域的隐形代码 (也可印有附有相关 的内容讯息) 读取相关索引数据 (该盲文版新闻周刊的期号等) , 传送
[110] 至含储存器的中央处理器电路板处理快速调出该期关联的电子档案。
[111] 盲文是通过不同的凹凸标志组合表达不同的文字, 采用本发明的技术后, 如图 3B所示, 障视人仕可通过阅读 (摸字) 盲文内容时, 并根据目录导读指引进行 点选——调出关联电子档案聆听, 键盘装置配合声音的提示输出相关的电子数 据——进行更深层的阅读 (声音) , 将有效地解决盲人在阅读 (摸字) 盲文 ( 凸字) 时, 即使没有导师在场, 仍可获到盲文教材内容相关的提示 (包括文字 、 声音等) , 特别是解决融合教育发展的导师不足的问题。
[1 12] 所述平面媒介体 14可是不同尺寸规格, 不同尺寸规格的平面媒介体关联电子装 置同一档案的名称数据是一致性, 输送至含储存器的中央处理器电路 43处理。
[113] 以下是应用的实施例;
[114] 平面媒介体是 2012年 10月份的月历图 14A1 , 参阅图 2A所示, 假设以 10月 10日 辛亥革命的日子, 每日划分为 3个识别标志, 并分别为识别标志加上关联电子档 案的名称;
[115] 第 1个识别标志定为 (A1+X1Y1) 关联 (纪念简介) ' 设定为 (A1+X1Y1 +纪 念日简介) , 第 2个识别标志定为 (A1+X2Y2) 关联 (相关记事) , 设定为 (A1 +X2Y2十相关记事) , 第 3个识别标志定为 (A1+X3Y3) 关联 (当年今日) , 设 定为 (A1+X3Y3+当年今日) ,
[116] 当点选第 1个识别标志, 所述的组合电子数据可调出电子装置关联的电子档案
(纪念日简介) 一简介辛亥革命纪念日之源由,
[117] 当点选第 2个识别标志, 所述的组合电子数据可调出电子装置关联的电子档案
(相关记事) 一使用者记录的相关笔记内容,
[118] 当点选第 3个识别标志, 所述的组合电子数据可调出电子装置关联的电子档案
(当年今日) 一重温辛亥革命所发生的重要历史,
[119] 通过附带电子阅读器阅览, 或是外接的电子阅读产品阅览内容, 读者可更深入 地了解该标志相关的内容 (包括文字、 图档、 声音及视像等) 。
[120] 平面媒介体是某期的新闻周刊 14A2, 参阅图 2B所示, 其出版文字内容涉及 10 月 10日辛亥革命历史, 该新闻周刊登载的文字内容位置与月历图日子的位置不 一致, 关联的内容划分为 2个识别标志, 并分别为识别标志
[121] 加上关联电子档案的名称;
[122] 第 4个识别标志定为 (A2+X4Y4) 关联 (纪念简介) , 设定为 (A2+X4Y4十纪 念日简介) , 第 5个识别标志定为 (A2+X5Y5) 关联 (当年今日) , 设定为 (A2 +X5Y5十当年今日) ,
[123] 当点选第 4个识别标志, 所述的组合电子数据可调出电子装置关联的
[124] 电子档案 (纪念日简介) 一简介辛亥革命纪念日之源由,
[125] 当点选第 5个识别标志, 所述的组合电子数据可调出电子装置关联的
[126] 电子档案 (当年今日) 一重温辛亥革命所发生的重要历史, [127] 其阅览的电子档案内容与平面月历图的效果一致。
[128] 平面媒介体是手写日记本纸页 14A3 , 参阅图 2C所示, 手写日记本纸页的日子 位置与月历图日子的位置不一致, 可与月历图一样, 手写日记本 10月 10日的日 子划分为 3个识别标志, 并分别为识别标志加上关联电子档案的名称;
[129] 第 6个识别标志定为 (A3+X6Y6) 关联 (纪念简介) , 设定为 (A3+X6Y6+纪 念日简介) , 第 7个识别标志定为 (A3+X7Y7) 关联 (相关记事) , 设定为 (A3 +X7Y7 +相关记事) ,
[130] 当点选第 6个识别标志, 所述的组合电子数据可调出电子装置关联的电子档案
(纪念日简介) 一简介辛亥革命纪念日之源由,
[131] 当点选第 7个识别标志, 所述的组合电子数据可调出电子装置关联的电子档案
(相关记事) 一使用者记录的相关笔记内容,
[132] 其阅览的电子档案内容与平面月历图的效果一致。
[133] 平面媒介体是相关辛亥革命活动的宣传广告 14A4, 如图 2D所示, 该广告附有 多项活动的资料简介, 为关联的内容划分为 2个识别标志, 并分别为识别标志加 上关联电子档案的名称;
[134] 第 8个识别标志定为 (A4+X8Y8) 关联 (相关记事) , 设定为 (A4+X8Y8
[ 135] 十相关记事) , 第 9个识别标志定为 (A4+X9Y9) 关联 (当年今日) , 设定为
(A4+X9Y9+当年今日) ,
[136] 当点选第 8个识别标志, 所述的组合电子数据可调出电子装置关联的电子档案
(相关记事) 一该辛亥革命纪念日活动的相关记事,
[137] 当点选第 9个识别标志, 所述的组合电子数据可调出电子装置关联的
[138] 电子档案 (当年今日) 一重温辛亥革命所发生的重要历史,
[ 139] 其阅览的电子档案内容与平面月历图的效果一致。
[140] 实施例所列的是 4种不同尺寸规格的平面媒介体, 可共享电子装置同一电子档 案, 大大提升平面媒介体的传播能力。
[141] 由于市场平面纸媒产品众多, 为快速寻找出相关的资料内容, 或者是保密之需 要;
[ 142] 所述光电装置是复数组合, 设有 B组光电装置 22B包括有红外线发射器 221B、 摄像器 222B及光电转换电路,
[143] 所述电子坐标装置设有 B组组光电装置 22B , 如图 3D所示, 放置在阅读机盒的 立体状体内, 如图 3C所示, 该立体状的面板开设有小通孔 105对应于平面媒介体
14阅读非感应区域的底面, 如图 3E所示, 光电装置 22B的贯通窗口 225与板状体 设有小通孔 105相邻对应贯通。
[144] 所述 B组光电装置可从平面媒介体读取隐形代码的信息数据, 光电转换电路把 分辨的信息数据输送至含储存器的中央处理器电路 43处理。
[145] 如图 5A所示, B组光电装置获取的数据与电子数据 (A + XY + E) 合成新的电 子数据 (A + XY + E+B) ,使本发明的输出数据能力获得几何倍数的大幅度提升
[146] 以下是读取 B组数据的另一种方法;
[147] 所述读数装置设有电子读卡器, 放置在电子坐标电路的坐标非感应区域范围内
, 对应平面媒介体的阅读非感应区域, 平面媒介体设有 IC卡, 基于含储存器的 中央处理器电路板或 IC卡可釆用闪速存储器, 数据读取可是线性连接, 或是非 接触式射频感应, 电子读卡器把读取 IC卡的电子数据传送至含储存器的中央处 理器电路处理。
[148] 所述电子装置 01是独立的电子阅读产品, 电子装置的信息储存器 011及中央处 理器电路 012内置在电子阅读产品的电路, 如图 6A所示。
[149] 所述电子装置 01是独立的中央信息处理系统 (如云计算、 云存储等新技术) , 如图 6B所示。
[150] 所述电子装置 01与读数装置是有线电连接, 或是无线传送, 使本发明的传播能 力达到随时、 随地及随心的发展目标, 其扩展性和效率优势的将使传统平面媒 体实现与电子移动信息化同步发展的目标。
[151] 所述光电装置 22与电磁波电路 21组合的光电阅读装置, 内置在兼容的电子阅读 产品,如图 7A、 7B及 7C所示, 使用内置光电阅读装置的电子阅读产品点选平面 媒介体的识别标志。
[152] 为读取信息数据的准确性, 电子阅读机盒的顶部放置平面媒介体的四角分别设 有夹持装置 106, 如图 5B所示, 使平面媒介体可稳定在坐标感应区域及坐标非感 应区域, 本实施例的夹持装置釆用透明材料制造。
尽管通过以上实施例对本发明进行了揭示, 伹是本发明的范围并不局限于此, 在不偏离本发明构思的条件下, 以上各构件可用所属技术领域人员了解的相似 或等同元件来替换。

Claims

权利要求书
[权利要求 1] 1、 一种平面媒介体识别标志与电子装置档案的数据关联技术系统
, 数据关联技术系统由读数装置、 平面媒介体 (14) 及电子装置
(01) 组合, 其特征在于;
所述读数装置包括电子坐标装置、 光电装置 (22) 及含储存器的 中央处理器电路 (43) ,
所述电子坐标装置是由电子坐标电路 (42) 及一可发出固定频率 信号的电磁波电路 (21) 构成,
所述光电装置 (22) 包括有红外线发射器 (221) 、 摄像器 (222 ) 及光电转换电路, 摄像器可摄取隐形代码的回应影像, 光电转 换电路把分辨的信息数据输送至含储存器的中央处理器电路 (43 ) 处理,
由光电装置与电磁波电路组合光电阅读装置 (20) , 通过光电阅 读装置可从电子坐标电路及平面媒介体分别获取不同的信息数据 所述平面媒介体 (14) 表面印有隐形代码 (141) ,
所述电子装置 (01) 包括信息储存器 (01 1 ) 及中央处理器电路 (
012) ,
所述光电阅读装置可从平面媒介体及电子坐标电路中获取不同的 信息数据, 与关联电子装置档案的电子数据, 传送至读数装置含 储存器的中央处理器电路 (43) 处理为组合电子数据,
该组合电子数据可调出电子装置 (01) 关联的电子档案, 通过附 带电子阅读器阅览, 或是外接的电子阅读产品阅览内容。
[权利要求 2] 2、 如权利要求 1所述的平面媒介体识别标志与电子装置档案的数 据关联技术系统, 其特征在于,
所述电子坐标电路 (42) 放置在阅读机盒 (100) 的立体物状体内 所述电子坐标电路 (42) 是设有多个交错重叠电子天线回路的电 子天
线阵列式电路板., 电子天线阵列式电路板是由一金属线为 X轴方向 , 而另一金属线则为 Y轴方向, 并与 X轴的方向形成交叉方式而构 成阵列式的天线回路, 电子天线阵列式电路板可感应电磁波电路
(21) 发出的固定频率信号, 电子天线阵列式电路板排列的组合 接口与含储存器的中央处理器电路板的 A/D部分作电子连接, 所述电子坐标装置划分为坐标感应区域 (1002) 及坐标非感应区 域 (1003) , 坐标感应区域对应于内置电子坐标电路的有效感应 范围。
3、 如权利要求 2所述的平面媒介体识别标志与电子装置档案的数 据关联技术系统, 其特征在于,
所述立体物状体内是可曲卷的的柔软体。
4、 如权利要求 1所述的平面媒介体识别标志与电子装置档案的数 据关联技术系统, 其特征在于;
所述平面媒介体 (14) 划分为阅读感应区域 (142) 及阅读非感应 区域 (143) , 阅读感应区域对应于电子坐标装置的坐标感应区域 , 阅读非感应区域对应于电子坐标装置的坐标非感应区域。
5、 如权利要求 1所述的平面媒介体识别标志与电子装置档案的数 据关联技术系统, 其特征在于;
所述平面媒介体 (14) 表面印有隐形代码 (141) ,
所述隐形代码 (141) 是由复数个微小符号单元排列构成, 是以一 荧光
油墨绘制, 荧光油墨对红外线发射器的红外线具光学反应, 所述隐形代码 (141) 可是单一的几何图像, 或是数字, 或是文字 , 或是符号等字符, 或是混合不同的字符组合。
6、 如权利要求 1所述的平面媒介体识别标志与电子装置档案的数 据关联技术系统, 其特征在于;
所述不同的平面媒介体 (14) 表面不能印有相同的隐形代码 (141 ) , 是可印有不同的隐形代码 (141) 。
7、 如权利要求 6所述的平面媒介体识别标志与电子装置档案的数 据关联技术系统, 其特征在于;
所述平面媒介体表面以不吸收红外光的油墨绘制印刷的信息内容 设定为识别标志, 识别标志可是电子坐标电路的某一坐标点, 或 是在电子坐标电路拟定信息内容构成的区域范围内。
8、 如权利要求 6所述的平面媒介体识别标志与电子装置档案的数 据关联技术系统, 其特征在于;
所述平面媒介体表面以附有立体的凹凸点为识别标志, 识别标志 可是电子坐标电路的某一坐标点, 或是在电子坐标电路拟定多个 凹凸点构成的区域范围内。
9、 如权利要求 1所述的平面媒介体识别标志与电子装置档案的数 据关联技术系统, 其特征在于;
所述平面媒介体 (14) 可是不同尺寸规格, 不同尺寸规格的平面 媒介体关联电子装置同一档案的名称数据是一致性, 输送至含储 存器的中央处理器电路 (43) 处理。
10、 如权利要求 1所述的平面媒介体识别标志与电子装置档案的数 据关联技术系统, 其特征在于;
所述光电装置是复数组合, 设有 Β组光电装置 (22Β) 包括有红外 线发射器 (221B) 、 摄像器 (222Β) 及光电转换电路, 所述 Β组光电装置可从平面媒介体读取隐形代码的信息数据, 光电 转换电路把分辨的信息数据输送至含储存器的中央处理器电路 (4 3) 处理。
11、 如权利要求 1所述的平面媒介体识别标志与电子装置档案的数 据关联技术系统, 其特征在于,
所述电子装置 (01) 是独立的电子阅读产品, 电子装置的信息储 存器 (011) 及中央处理器电路 (012) 内置在电子阅读产品的电 路。
[权利要求 12] 12、 如权利要求 1所述的平面媒介体识别标志与电子装置档案的数 据关联技术系统, 其特征在于,
所述电子装置 (01) 是独立的中央信息处理系统。
[权利要求 13] 13、 如权利要求 1所述的平面媒介体识别标志与电子装置挡案的数 据关联技术系统, 其特征在于,
所述电子装置 (01) 与读数装置是有线电连接, 或是无线传送。
PCT/CN2012/000301 2011-03-08 2012-03-08 平面媒介体识别标志与电子装置档案的数据关联技术系统 WO2012119486A1 (zh)

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