CN107146483B - Experiential reading system - Google Patents
Experiential reading system Download PDFInfo
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- CN107146483B CN107146483B CN201710465937.XA CN201710465937A CN107146483B CN 107146483 B CN107146483 B CN 107146483B CN 201710465937 A CN201710465937 A CN 201710465937A CN 107146483 B CN107146483 B CN 107146483B
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- G—PHYSICS
- G09—EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
- G09B—EDUCATIONAL OR DEMONSTRATION APPLIANCES; APPLIANCES FOR TEACHING, OR COMMUNICATING WITH, THE BLIND, DEAF OR MUTE; MODELS; PLANETARIA; GLOBES; MAPS; DIAGRAMS
- G09B5/00—Electrically-operated educational appliances
- G09B5/06—Electrically-operated educational appliances with both visual and audible presentation of the material to be studied
- G09B5/065—Combinations of audio and video presentations, e.g. videotapes, videodiscs, television systems
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Abstract
The invention discloses an experiential reading system which comprises a reading pen, a reading pen and at least one VR (virtual reality) glasses, wherein a nib of the reading pen is provided with an identifier capable of identifying a coding layer, the reading pen is internally provided with a control system A, a signal transceiver A and a power supply A, the identifier, the signal transceiver A and the power supply A are respectively and electrically connected with the control system A, the VR glasses are internally provided with a control system B, a power supply B, a signal transceiver B, a display system, a storage card slot and a sound box B, the power supply B, the signal transceiver B, the display system, the storage card slot and the sound box B are respectively and electrically connected with the control system B, and the signal transceiver A is in signal connection with the signal transceiver B. According to the experience type reading system, the reading pen and the VR glasses are used, so that the visual experience of the VR glasses can be utilized, the previous reading mode is changed, a reader can feel the content of the book in the scene more personally, and the reader can actively participate in the scene.
Description
Technical Field
The invention relates to the technical field of experiential reading, in particular to an experiential reading system.
Background
Reading is an activity of acquiring information, recognizing the world, developing thinking and obtaining aesthetic experience by using language characters. It is the process of obtaining information from visual material. The visual materials are mainly characters and pictures, and also comprise symbols, formulas, charts and the like. The reading is an active process, and the reading is adjusted and controlled by the reader according to different purposes, so that the sentiment of people is mastered, and the self-maintenance is promoted. Reading is a mental process of understanding, appreciating, absorbing, appreciating, evaluating, and exploring articles. Reading is divided into speaking and reading by default.
However, the premise of acquiring information through characters is to know the characters, which results in that for children who do not know the characters, the children can acquire the information only through written pictures, and even some younger children have poor information acquisition capability and cannot acquire the information which the reader wants to acquire originally in the book; therefore, a parent or a teacher is required to describe, and information obtained in the description process inevitably carries subjective ideas of the describer per se, even ideas deviating from the ideas of the author of the book, so that children cannot correctly obtain the information of the book. In addition, the childhood period is also the best period for developing reading habits, and if the children lose the interest in reading due to problems of the narrator or the children themselves with weak ability to acquire information, the childhood period is more troublesome.
In addition, publicity books are generally made for some enterprises or scenic spots when publicizing. However, because the size of the brochure is limited, the publicized people cannot know the related situation in detail, and the publicizing effect of the brochure is certainly inferior to the field publicizing. If the person goes to the scene, not only a great deal of physical strength and time are consumed, but also the observation focus can be lost, and further physical strength and time are consumed. Moreover, in practical situations, the area of a lot of publicized scenic spots is large, the field environment of many enterprises is poor or dangerous, and the field environment of some enterprises is too high (such as an aseptic production workshop), so that publicized personnel need to take a set of complicated related measures to visit, and the feasibility of field publicity is low.
Disclosure of Invention
The invention aims to: the defects of the prior art are overcome, and an experiential reading system is provided, so that the visual experience of VR glasses can be utilized, the previous reading mode is changed, a reader can feel the content of a book more personally and can actively participate in a scene; the reading pen is in signal interaction connection with the VR glasses, so that the reading content and reading rhythm of a reader can be controlled conveniently by a worker; through the action of the vibrating motor, the working personnel can conveniently know whether the reading personnel finishes reading the corresponding content, and the control of the reading rhythm of the reading personnel by the working personnel is further facilitated; the prompt tone is played through the sound A of the touch and talk pen, so that the first-time user can operate the touch and talk pen quickly; through the action of the charging interface, the touch and talk pen is convenient to charge; the pen point of the reading pen is flush with the recognizer, so that the recognition degree of the recognizer on the coding layer of the reading book is improved, the recognizer is protected, and the service life of the recognizer is prolonged.
The technical scheme adopted by the invention is as follows:
experiential formula reading system, including some books of reading, some reading pen and at least one VR glasses, the front cover and the page surface of some books of reading are equipped with the code picture layer, the nib of some reading pen is equipped with the recognizer on distinguishable code picture layer, still be equipped with control system A, signal transceiver A and power A in the some reading pen, recognizer, signal transceiver A and power A are connected with control system A electricity respectively, be equipped with control system B, power B, signal transceiver B, display system, storage card slot and stereo set B in the VR glasses, power B, signal transceiver B, display system, storage card slot and stereo set B are connected with control system B electricity respectively, signal transceiver A and signal transceiver B pass through signal connection.
The invention has the further improvement scheme that photosensitive signal transmitters are respectively arranged on the text pages of the point-reading books and are in signal connection with the signal transceiver A.
In a further development of the invention, the light-sensitive signal emitter is located on the page on the side adjacent to the spine.
According to a further improved scheme of the invention, the power supply A is fixed at the top of the inner part of the pen holder of the touch and talk pen, and a charging interface is arranged on one side of the power supply A facing the top of the touch and talk pen.
According to a further improvement scheme of the invention, an antenna A of the signal transceiver A penetrates through a through hole A formed in the side wall of a pen holder of the touch and talk pen.
According to a further improved scheme of the invention, the recognizer is arranged in a through hole B at the pen point end of the point-reading pen, and the recognizer is flush with the pen point of the point-reading pen.
According to a further improved scheme of the invention, a sound A is further arranged in the point reading pen, and the sound A is electrically connected with the control system A.
According to a further improved scheme of the invention, through holes C are formed in the side wall of the point reading pen corresponding to the sounding part of the sound A and the side wall of the VR glasses corresponding to the sounding part of the sound B.
According to a further improved scheme of the invention, a vibration motor is further arranged in the point reading pen, and the vibration motor is electrically connected with the control system A.
According to a further improvement scheme of the invention, a storage card is arranged in a storage card slot of the VR glasses, and the storage card records file contents matched with the point-to-read book.
The invention has the beneficial effects that:
first, the experience type reading system of the invention can change the previous reading mode by using the visual experience of the VR glasses through the point reading book, the point reading pen and the VR glasses, so that the reader can feel the content of the book more personally on the scene and actively participate in the scene.
Secondly, the experiential reading system effectively facilitates the control of reading contents and the control of reading rhythm of a worker for the reading content of the reader by utilizing the signal interactive connection of the point-reading pen and the VR glasses.
Thirdly, the experiential reading system of the invention is convenient for the staff to master whether the reading staff finishes reading the corresponding content or not through the action of the vibrating motor, and is further beneficial for the staff to control the reading rhythm of the reading staff.
Fourthly, the experiential reading system plays the prompt tone through the sound A of the touch and talk pen, so that the first user can operate the experiential reading system quickly.
Fifthly, the experiential reading system is convenient for charging the touch and talk pen under the action of the charging interface.
Sixth, the experiential reading system of the present invention improves the recognition degree of the recognizer for the code layer of the point reading book by aligning the recognizer with the pen point of the point reading pen, protects the recognizer, and prolongs the service life of the recognizer.
Description of the drawings:
FIG. 1 is a schematic diagram of the structure of the present invention.
Fig. 2 is a schematic view of an unopened book of the present invention.
Fig. 3 is a schematic view of the opened book of the present invention.
FIG. 4 is a front sectional enlarged view of the touch and talk pen of the present invention.
Fig. 5 is a front view of VR glasses according to the present invention.
Fig. 6 is a schematic side view of VR glasses according to the present invention.
The specific implementation mode is as follows:
as can be seen from fig. 1 to 6, the electronic book reading device comprises a reading book 1, a reading pen 2 and at least one VR glasses 3, wherein the surface of the front cover and the surface of the page of the reading book 1 are provided with coding layers 11, the pen point of the reading pen 2 is provided with an identifier 21 capable of identifying the coding layers 11, the reading pen 2 is further internally provided with a control system a20, a signal transceiver a25 and a power supply a22, the identifier 21, the signal transceiver a25 and the power supply a22 are respectively and electrically connected with the control system a20, the VR glasses 3 are internally provided with a control system B, a power supply B, a signal transceiver B32, a display system, a memory card slot and a sound B34, the power supply B, the signal transceiver B32, the display system, the memory card slot and the sound B34 are respectively and electrically connected with the control system B, and the signal transceiver a25 is in signal connection with the signal transceiver B32; the text page of the reading book 1 is respectively provided with a photosensitive signal transmitter 12, and the photosensitive signal transmitter 12 is in signal connection with a signal transceiver A25; the photosensitive signal emitter 12 is positioned on one side of the page close to the spine; the power supply A22 is fixed at the inner top of the pen holder of the touch and talk pen 2, and a charging interface 24 is arranged on one side, facing the top of the touch and talk pen 2, of the power supply A22; an antenna A26 of the signal transceiver A25 penetrates through a through hole A formed in the side wall of the pen holder of the point reading pen 2; the recognizer 21 is arranged in a through hole B23 of the pen point end of the point reading pen 2, and the recognizer 21 is flush with the pen point of the point reading pen 2; a sound A27 is further arranged in the touch and talk pen 2, and the sound A27 is electrically connected with a control system A20; through holes C28 are formed in the side wall of the point reading pen 2 corresponding to the sounding part of the sound A27 and the side wall of the VR glasses 3 corresponding to the sounding part of the sound B34; a vibration motor 29 is further arranged in the point reading pen 2, and the vibration motor 29 is electrically connected with the control system A20; the memory card slot of the VR glasses 3 is provided with a memory card 33, and the memory card 33 is recorded with file contents matched with the point-reading book 1.
When the invention is used, experience readers wear VR glasses 3 respectively, then a worker selects a reading book 1, and then the worker contacts one end of the identifier 21 of the reading pen 2 with the cover of the reading book 1; at this time, the identifier 21 identifies the information of the code layer 11 on the cover of the point reading 1 and then transmits the information to the control system a20, and after the control system a20 identifies the point reading 1 through the identifier 21, the control system a20 controls the signal transceiver a25 to always receive the signal sent by the photosensitive signal transmitter 12 of the point reading 1; when light can be received by photosensitive signal emitter 12, photosensitive signal emitter 12 emits a signal, and when light received by photosensitive signal emitter 12 is stronger, the signal emitted by photosensitive signal emitter 12 is stronger; when the signal transceiver A25 cannot receive the signal of the photosensitive signal 12 of the point-reading book 1, the control system A20 controls the signal transceiver A25 to send the signal to the signal transceiver B32 of the VR glasses 3, the signal transceiver B32 sends the obtained signal to the control system B, and the control system B controls the display system and the sound box B34 to read the file content of the memory card 35 and play the cover content of the point-reading book 1; after the VR glasses 3 finish playing the cover content corresponding to the reading book 1, the control system B controls the signal transceiver B32 to send a signal to the signal transceiver A25, the signal transceiver A25 sends the obtained signal to the control system A20, and the control system A20 controls the vibration motor 29 to vibrate, so that a worker is prompted to open the reading book 1; after the worker opens the reading book 1, the light-sensitive signal emitter 12 of the opened page receives the strongest light compared with the light-sensitive signal emitters 12 of other pages; the control system A20 sends signals to all photosensitive signal transmitters 12 of the point reading book 1 received by the signal transceiver A25, the control system A20 controls the signal transceiver A25 to send the signals to the signal transceiver B32 of the VR glasses 3, the signal transceiver B32 sends the obtained signals to the control system B, and the control system B controls the display system and the sound box B34 to switch and play page scene contents corresponding to the photosensitive signal transmitter 12 which transmits the strongest signal; the staff identifies the coding layer 11 in the page through the touch and talk pen 2, then the control system a20 controls the signal transceiver a25 to send signals to the signal transceiver B32 of the VR glasses 3, the signal transceiver B32 sends the obtained signals to the control system B, and the control system B controls the display system and the sound B34 to read the file content of the memory card 35 and play the corresponding content of the coding layer 11 identified by the touch and talk pen 2. After the VR glasses 3 finish playing the corresponding content, the control system B controls the signal transceiver B32 to send a signal to the signal transceiver A25, the signal transceiver A25 sends the obtained signal to the control system A20, and the control system A20 controls the vibration motor 29 to vibrate, so that a worker is prompted to continuously click or perform other operations; when the reading pen 2 is operated, the control system a20 can also control the sound device a27 to play a prompt tone, so that the prompt is convenient for an operator; when the power supply 22 of the touch and talk pen 2 is not powered, the power supply 22 can be charged directly through the charging interface 24; when the VR glasses 3 play the content, the reader can participate in the scene displayed by the VR glasses 3 through the body movement.
The invention can be suitable for reading materials for children, in particular to various reading materials for children who are not literate; the invention can also be applied to propaganda reading materials, in particular to propaganda reading materials in places with larger area, more propaganda points or poorer field environment, dangerous fields or places with higher field environment requirement.
Claims (5)
1. Experiential reading system, its characterized in that: the reading device comprises a reading book (1), a reading pen (2) and at least one VR (virtual reality) glasses (3), wherein a code layer (11) is arranged on the surface of a cover and a page of the reading book (1), a pen point of the reading pen (2) is provided with an identifier (21) capable of identifying the code layer (11), a control system A (20), a signal transceiver A (25) and a power supply A (22) are further arranged in the reading pen (2), the identifier (21), the signal transceiver A (25) and the power supply A (22) are respectively and electrically connected with the control system A (20), a control system B, a power supply B, a signal transceiver B (32), a display system, a storage card slot and a sound box B (34) are arranged in the VR glasses (3), the power supply B, the signal transceiver B (32), the display system, the storage card slot and the sound box B (34) are respectively and electrically connected with the control system B, and the signal transceiver A (25) is in signal connection with the signal transceiver B (32),
the text page of the point reading book (1) is respectively provided with a photosensitive signal transmitter (12), the photosensitive signal transmitter (12) is connected with a signal transceiver A (25) through signals,
the photosensitive signal emitter (12) is positioned on one side of the page close to the spine,
a sound A (27) is also arranged in the point reading pen (2), the sound A (27) is electrically connected with a control system A (20),
a vibration motor (29) is also arranged in the point reading pen (2), the vibration motor (29) is electrically connected with the control system A (20),
a memory card (33) is arranged in a memory card slot of the VR glasses (3), the memory card (33) is recorded with the file content matched with the reading book (1),
the experience reading method by using the experiential reading system comprises the following steps:
the experience reader wears VR glasses, a worker selects a reading book, and the worker contacts one end of the recognizer of the reading pen (2) with the cover of the reading book; the recognizer recognizes the information of the coding layer on the cover of the book to be read and then transmits the information to the control system A, and when the control system A recognizes the book to be read through the recognizer, the control system A controls the signal transceiver A to always receive a signal sent by the photosensitive signal transmitter of the book to be read; when the photosensitive signal emitter can receive light, the photosensitive signal emitter sends out a signal, and when the light received by the photosensitive signal emitter is stronger, the signal sent by the photosensitive signal emitter is stronger; when the signal transceiver A cannot receive the signal of the photosensitive signal transmitter for reading the book, the control system A controls the signal transceiver A to transmit the signal to the signal transceiver B of the VR glasses, the signal transceiver B transmits the obtained signal to the control system B, and the control system B controls the display system and the sound B to read the file content of the memory card and play the cover content of the book; after the VR glasses finish playing corresponding to the cover content of the click-to-read book, the control system B controls the signal transceiver B to send a signal to the signal transceiver A, the signal transceiver A sends the obtained signal to the control system A, and the control system A (20) controls the vibration motor to vibrate, so that a worker is prompted to open the click-to-read book; after the worker opens the point reading book, the light-sensitive signal emitter (12) of the opened page receives the strongest light compared with the light-sensitive signal emitters of other pages; the signal transceiver A receives signals sent by all photosensitive signal transmitters for reading, the control system A controls the signal transceiver A to send the signals to a signal transceiver B of VR glasses, the signal transceiver B sends the obtained signals to the control system B, and the control system B controls the display system and the sound box B to switch and play page scene contents corresponding to the photosensitive signal transmitter which transmits the strongest signals; a worker identifies a coding layer in a page through a touch and talk pen, then a control system A controls a signal transceiver A to send a signal to a signal transceiver B of VR glasses, the signal transceiver B sends the obtained signal to a control system B, and the control system B controls a display system and a sound box B (34) to read the file content of a storage card and plays the corresponding content of the coding layer identified by the touch and talk pen; after the VR glasses finish playing the corresponding content, the control system B controls the signal transceiver B to send a signal to the signal transceiver A, the signal transceiver A sends the obtained signal to the control system A, and the control system A controls the vibration motor to vibrate, so that a worker is prompted to continuously click or perform other operations; when the reading pen is operated, the control system A also controls the sound A to play a prompt tone, so that the prompt is convenient for workers; when the power supply of the touch and talk pen is in a power failure state, the power supply can be directly charged through the charging interface; when the VR glasses play the content, the reader can participate in the scene displayed by the VR glasses through the action of limbs.
2. The experiential reading system of claim 1, wherein: the power A (22) is fixed at the top of the pen holder of the touch and talk pen (2), and a charging interface (24) is arranged on one side of the power A (22) facing to the top of the touch and talk pen (2).
3. The experiential reading system of claim 1, wherein: an antenna A (26) of the signal transceiver A (25) penetrates through a through hole A formed in the side wall of the pen holder of the point reading pen (2).
4. The experiential reading system of claim 1, wherein: recognizer (21) is arranged in through hole B (23) of the pen point end of point-reading pen (2), and recognizer (21) is flush with the pen point of point-reading pen (2).
5. The experiential reading system of claim 1, wherein: the lateral wall of point-and-read pen (2) all is equipped with through-hole C (28) corresponding to the sound production department of stereo set A (27) and the lateral wall of VR glasses (3) corresponding to the sound production department of stereo set B (34).
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CN201710465937.XA CN107146483B (en) | 2017-06-19 | 2017-06-19 | Experiential reading system |
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CN201710465937.XA CN107146483B (en) | 2017-06-19 | 2017-06-19 | Experiential reading system |
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CN107146483B true CN107146483B (en) | 2022-12-16 |
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CN108847069A (en) * | 2018-07-19 | 2018-11-20 | 商洛学院 | The dedicated reading device of English teaching |
CN112863271A (en) * | 2021-01-20 | 2021-05-28 | 重庆电子工程职业学院 | English education device |
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CN207037960U (en) * | 2017-06-19 | 2018-02-23 | 江苏通瑞包装有限公司 | Experience type reading system |
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US20060245730A1 (en) * | 2005-04-28 | 2006-11-02 | Ultmost Industrial Corp. | [identifier recorder for identifying picture identification code] |
CN103021209A (en) * | 2012-12-07 | 2013-04-03 | 周智昂 | Video touch and talk pen |
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