This application claims priority of Taiwan Patent Application No. 98142437, filed on Dec. 11, 2009, the entirety of which is incorporated by reference herein.
1. Field of the Invention
The present invention relates to a contactless communication device and method thereof and in particular relates to a visual-based contactless communication device and method thereof.
2. Description of the Related Art
There are two types of communication methods between general electronic devices. One is a contact method and the other is a contactless method. Contact communications, is when two or more devices physically, directly or indirectly, are in contact with one another. For contact communications between devices, conventionally, a fixed location for contacting at a specific time is necessary for each electronic device. Alternately, contactless communications is when two or more devices are not physically in contact with one another. Examples of contactless communication methods include wireless communications, or optical communications methods. The former may be a blue-tooth or a wireless communications method, and the latter may be an infrared communications method.
Conventional contactless communication signals such as electromagnetic waves may be harmful for human beings or may interfere with other communication signals. Additionally, electromagnetic waves may interfere with subsistence equipment or sophisticated instruments in hospitals, airplane equipment and semiconductor fabrication machinery. Meanwhile, signals of infrared transmission devices such as remote controllers may not interfere with other communication signals and cause electromagnetic interference. However, infrared transmission signals may co-interfere with one another, resulting in communication error. Also, infrared transmission signals are limited by distance, speed and dead corners.
Thus, a visual-based contactless communication device and method thereof that mitigates co-interference with other contactless communication devices is required.
A detailed description is given in the following embodiments with reference to the accompanying drawings.
In one embodiment, the present invention provides a visual-based contactless communication device adapted to communicate with one or more visual-based contactless devices. The visual-based contactless communication device comprises: a photographic device for photographing image data displayed by one or more visual-based contactless communication devices; a center control device for identifying predetermined information in the image data, producing response information according to the predetermined information and generating effective image data being identifiable by one or more visual-based contactless communication devices according to the response information or specified information; and a display device for displaying the effective image data to be photographed by one or more visual-based contactless communication devices. When two visual-based contactless communication devices communicate with each other, one displays the effective image data with the response information after identifying the predetermined information, the other proceeds with subsequent communication only after identifying the effective image data with the response information and confirming that the response information is recognized.
In another embodiment, the present invention provides a visual-based contactless communication method adapted to communicate with one or more visual-based contactless devices. The visual-based contactless communication method comprises: photographing image data displayed by one or more visual-based contactless communication devices by a photographic device in a visual-based contactless communication device; identifying predetermined information in the image data, producing response information according to the predetermined information and generating effective image data being identifiable by one or more visual-based contactless communication devices according to the response information or specified information by a center control device in the visual-based contactless communication device; and displaying the effective image data to be photographed by one or more visual-based contactless communication devices by a display device in the visual-based contactless communication device. When two visual-based contactless communication devices communicate with each other, one displays the effective image data with the response information after identifying the predetermined information, the other proceeds with subsequent communication only after identifying the effective image data with the response information and confirming that the response information is recognized.
The present invention can be more fully understood by reading the subsequent detailed description and examples with references made to the accompanying drawings, wherein:
The following description is of the best-contemplated mode of carrying out the invention. This description is made for the purpose of illustrating the general principles of the invention and should not be taken in a limiting sense. The scope of the invention is best determined by reference to the appended claims.
The photographic device 110 such as a camera is mainly used to photograph image data displayed from other visual-based contactless communication devices. The center control device 120 is used to identify the image data photographed by the photographic device 110, and transform certain information into effective image data. The center control device 120 may generate response information according to predetermined information contained in the image data and then transform the response information into effective image data, or generate specified information by itself and then transform the specified information into the effective image data, or receive specified information from extra devices 134 and then transform the specified information into effective image data. In one embodiment, the predetermined information, specified information and response information are a kind of communication message having substantially expressible meaning. The image data or the effective image data may be symbols, letters, pictures, articles, or barcodes, or any other meaningful images or codes, or combinations thereof only as the data is recognizable by visual-based contactless communication devices. Hence, users can devise various types of image data in the application.
The center control device 120 further includes receiving unit 122 and transmitting unit 130. The receiving unit 122 is used to receive image data from the photographic device 110, detect whether the image data include the predetermined information and send the predetermined information to extra devices 134. The transmitting unit 130 is used to receive specified information from extra devices 134 or generate specified information by itself and transform the response information or the specified information into the effective image.
In one embodiment, the receiving unit 122 further includes an image pre-processing unit 124, an image search unit 126 and an interpreting unit 128. The image pre-processing unit 124 is used to perform luminance adjustment, noise elimination, color graying and binarization to the photographed image data. In another embodiment, the image pre-processing unit 124 may selectively employ an image processing technique; for example, if necessary only luminance adjustment or noise elimination is performed to the image data. The image search unit 126 is used to find a distribution range of the predetermined information in the image data. Generally, pictures or symbols which contain the predetermined information only occupy a small portion of the image data. Therefore, the image search unit 126 will find the range or location of the predetermined information according to a predetermined characteristic such as specific color area, covered area by a frame, or covered area by an appearance shape defined by users. The interpreting unit 128 is used to interpret the predetermined information within the range defined by the predetermined characteristic. The interpreting method is variable according to different image types. For example, when the image data is a letter/number, an optical character recognition (OCR) is used. When the image data is a barcode, a barcode engine is used. When the image data is a user-defined color/gray image, an image comparison device is used. In another embodiment, when the image type changes, the function of the receiving unit 122 may also change. For example, a new unit for further processing the image data may be added into the receiving unit 122, or a unit such as an image pre-processing unit 124 may be not used. The above-mentioned embodiment is for illustrative purposes and not limiting.
The display device 140 such as an LCD etc. is used to display the effective image data that contains the specified information or the response information. For other visual-based contactless communication device, the effective image data is viewed as the image data that contains the predetermined information.
While the invention has been described by way of example and in terms of the preferred embodiments, it is to be understood that the invention is not limited to the disclosed embodiments. To the contrary, it is intended to cover various modifications and similar arrangements (as would be apparent to those skilled in the art). Therefore, the scope of the appended claims should be accorded the broadest interpretation so as to encompass all such modifications and similar arrangements.
| Number | Date | Country | Kind |
|---|---|---|---|
| 098142437 | Dec 2009 | TW | national |