AU2001295294A1 - Reproducing sound encoded in infrared ink on photographs - Google Patents
Reproducing sound encoded in infrared ink on photographsInfo
- Publication number
- AU2001295294A1 AU2001295294A1 AU2001295294A AU2001295294A AU2001295294A1 AU 2001295294 A1 AU2001295294 A1 AU 2001295294A1 AU 2001295294 A AU2001295294 A AU 2001295294A AU 2001295294 A AU2001295294 A AU 2001295294A AU 2001295294 A1 AU2001295294 A1 AU 2001295294A1
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- AU
- Australia
- Prior art keywords
- audio
- infra
- red
- photograph
- printed
- Prior art date
- Legal status (The legal status 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 status listed.)
- Granted
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Description
REPRODUCING SOUND ENCODED IN INFRARED INK ON PHOTOGRAPHS
Field of the Invention
The present invention relates to a camera system having an integral sound recording means for recording and outputting a permanent record of sound associated with a photograph and recorded in infra-red ink over the photograph. Hence, the present invention relates to a photograph reader to decode sound and play sound.
The present invention also relates to a means for reproducing the recorded sound and discloses a photograph reader to decode sound and play sound.
CO-PENDING APPLICATIONS
Various methods, systems and apparatus relating to the present invention are disclosed in the following co-pending applications filed by the applicant or assignee of the present invention simultaneously with the present application:
The disclosures of these co-pending applications are incorporated herein by reference.
Various methods, systems and apparatus relating to the present invention are disclosed in the following co-pending application filed by the applicant or assignee of the present invention on July 10, 1998:
USSN 09/113,060, USSN 09/113,070 USSN 09/112,741
USSN 09/112,785 and USSN 09/113,107 The disclosures of this co-pending application are incorporated herein by reference.
Various methods, systems and apparatus relating to the present invention are disclosed
in the following co-pending applications filed by the applicant or assignee of the present invention on June 30, 2000:
PCT/AU00/00743, PCT/AU00/00744, PCT/AU00/00745, PCT/AU00/00746,
PCT/AU00/00747 and PCT/AU00/00748 The disclosures of these co-pending applications is incorporated herein by reference.
BACKGROUND OF THE INVENTION
The production of images by means of photographic techniques have been well known for a substantial period of time. Further, recently, digital cameras have become increasingly popular where an image is captured by the digital camera device and stored for later printing.
In applicant's applications USSN 09/113,060, 09/113,070 and USSN 09/113,222, a camera system has been proposed that includes an integral printer device for the printing out of sensed images.
When using such devices and other image capture devices it will be desirable to be able to suitably deal with audio and other environmental information when taking a picture.
In applicant's application USSN 09/113,107 one such device was disclosed in which audio data was recorded on the rear of a card or photograph using black ink on a white background. A reader could read the data and reproduce the signal through audio generator means when the card or photograph was passed through a scanner means. In US 5,896,403 (Nagasaki et al.) a printing system is disclosed which prints images and audio information on print media, for example, a sheet, in dot codes which can be read by a pen device. The information can be decoded notwithstanding scanning of the data being irregular or random due to the organization of the dot codes. In Nagasaki et al. system the scanning of data is low. In applicant's printing and scanning system as disclosed in USSN 09/113,107 the process is a pagewidth process rather than a line by line process as in Nagasaki et al.
SUMMARY OF THE INVENTION
The present invention relates to a camera system able to record audio when acquiring a sensed image in addition to being able to playback the audio information when viewing a "photograph", the audio and "photograph" being recorded on the same surface of a print media.
In accordance with a first aspect of the present invention, there is provided a system for playing prerecorded audio encoded in a fault tolerant manner as an array of invisible ink dots printed on a photograph in substantially the same area thereas comprising: an infrared scanner means for scanning the printed invisible ink dots of said prerecorded audio; a processor means interconnected to said infra-red scanner means for decoding said scanned audio encoding to produce a corresponding audio signal; and audio emitter means interconnected to said processor means for emitting or playing said corresponding audio signal on demand.
The invisible ink may be an infrared (IR) absorbing ink with negligible absorption in the visible spectrum.
The encoding can include Reed-Solomon encoding of the prerecorded audio and comprises an array of IR (infrared) ink dots which are printed on the photograph using a page width ink jet printhead. The array of dots may be high frequency modulated to aid scanning, for example using a checkerboard pattern. The system can include a wand-like arm having a slot through which is inserted the photograph.
In accordance with a further aspect of the present invention, there is provided a method of decoding a prerecorded audio signal printed as an array of invisible ink dots in a fault tolerant encoded form on a surface of a photograph coincident with an image printed on said surface of said photograph, said method comprising the steps of:
(a) scanning the printed encoded form of said prerecorded audio on said photograph in the infra-red;
(b) decoding said encoded audio signal; and
(c) playing said audio signal on an audio output device.
Brief Description of the Drawings
Notwithstanding any other forms which may fall within the scope of the present invention, preferred forms of the invention will now be described, by way of example only, with reference to the accompanying drawings in which:
Fig. 1 illustrates schematically the camera system constructed in accordance to the preferred embodiment;
Fig. 2 illustrates schematically a printer mechanism for printing on the output media;
Fig. 3 illustrates a format of the output data on the photograph;
Fig. 4 illustrates an enlarged portion of the output media;
Fig. 5 illustrates a reader device utilized to read data from the photograph; and
Fig. 6 illustrates the utilization of an apparatus of the preferred embodiment.
Description of Preferred and Other Embodiments
The preferred embodiment is preferably implemented through suitable programming of a hand held camera device such as that described in USSN 09/113,060 and USSN 09/113,070.
The aforementioned patent specifications disclose a camera system, hereinafter known as an "Artcam" type camera, wherein sensed images can be directly printed out by an Artcam portable camera unit. Further, the aforementioned specifications disclose means and method for performing various manipulations on images captured by the camera sensing device leading to the production of various effects in any output image. The manipulations are disclosed to be highly flexible in nature and can be implemented through the insertion into the Artcam of cards having encoded thereon various instructions for the manipulation of images, the cards being known as Artcards. The Artcam further has significant onboard processing power implemented by an Artcam Central Processor unit (ACP) which is interconnected to a memory device for the storage of import data and images. In the preferred embodiment, the Artcam device is suitably modified so as to equip it with a microphone device and associated recording technologies. When a picture is taken, the opportunity is provided to record either the surrounding sound environment or a message associated with the image. The recorded audio is then printed on the photograph in an encoded format, the encoding preferably being of a highly resilient form. The recorded audio provides a permanent audio record associated with the photograph.
Subsequently, a playback apparatus is provided for scanning the encoded audio and decoding this information.
Turning now to Fig. 1, there is illustrated, in schematic form the preferred embodiment 1 which includes the arrangement as described in the aforementioned patent specifications wherein an image 2 is sensed via a CCD sensor 3 and forwarded to an
Artcam central processor 4 which includes significant computational resources as described in the aforementioned patent specifications. The Artcam central processor 4 can store the
image in memory 5 which preferably comprises a high speed RAMBUS (Trade Mark) interfaced memory. The Artcam central processor 4 is also responsible for controlling the operation of a printer device 6 having a page width ink jet printhead 15 (see Fig. 2) for the printing out of full color photographs, eg. 7, so as to provide for instant images on demand. The printhead 15 can print color images and has at least (4) ink jet nozzles for printing at a resolution of 1600 dpi. The four inks include an infra-red ink for printing data, and cyan, magenta and yellow inks for printing a color image. Such a printhead, but having the capacity to print with six (6) inks, is disclosed in applicant's applications PCT/AU00/00743, PCT/AU00/00744, PCT/AU00/00745, PCT/AU00/00746, PCT/AU00/00747 and PCT/AU00/00748 using a monolithic construction.
In the preferred embodiment, the camera arrangement 1 is also supplied with a sound chip 10 which interfaces via RAMBUS bus 11 to memory 5 under the control of the ACP processor 4. The sound chip 10 can be of a standard or specialised form and can, for example, comprise a DSP processor that takes an analogue input 12 from a sound microphone 13. Alternatively, with increasing chip complexities (Moore's Law), the functionality of sound chip 10 can be incorporated onto the ACP chip which preferably comprises a leading edge CMOS type integrated in circuit chip. It will be readily evident that many other types of arrangements can be provided which fall within the scope of the present invention. The sound chip 10 converts the analogue input 12 to a corresponding digital form and forwards it for storage in memory 5. The recording process can be activated by means of the depressing of a button (not shown) on the camera device, the button being under the control of the ACP processor 4 otherwise it can be substantially automatic when taking a photograph. The recorded data is stored in the memory 5.
Turning now to Fig.2, the camera arrangement preferably includes a printer device 6 which includes printhead 15. The printhead 15 is utilized to print an image on print media
17 and at the same time print audio (or other) information on the same face of print output media 17 using an IR ink. Similar arrangements but for printing information on the back of an output photo image are described in USSN 09/112,741, the contents of which are hereby incorporated by reference mutatis mutandis. By using a single printhead a simpler apparatus is provided than as therein disclosed. The applicant has disclosed an infrared ink suitable for this purpose in Australian Provisional Patents Applications PQ9412 and
PQ9376 both filed on August 14, 2000 and applicant's applications PQ9509 filed on August 18, 2000, and PQ9571, and PQ9561 both filed on August 21, 2000.
Turning now to Fig. 3, there is illustrated an example of output printed on the photographic media 17. The media 17 includes a photographic image 18 along with which is printed information 20 and data 22. The detail of the image 18 is not shown for ease of illustration. The information 20 can include location, date and time data with the location data being provided by means of keyboard input or, alternatively, through the utilization of attached positioning systems such as GPS or the like. The information 20 is presented in a viewable form. The data 22 is provided in an encoded invisible (but infra-red visible) form with the beginning and end thereof marked by target boundaries 23. The format of the encoding can be many and various, however, preferably the encoding is provided in a highly fault tolerant manner so as to tolerate scratches, grime, writing, wear, rotation, fading etc. One form of suitable technology is the printing technology utilized in the construction of "Artcards" as described in the aforementioned patent specifications USSN 09/113,060 or as disclosed in USSN 09/112,070 and USSN 09/112J85 or the co-pending applications Docket Nos PCT/AU01/ (Docket No. ART80), PCT/AU01/ (Docket No. ART81) and PCT/AU01/ (Docket No. ART82) filed concurrently herewith. The encoding format relies heavily upon utilisation of Reed- Solomon encoding of the data to provide for a high degree of fault tolerance. A portion of the data 25 is shown in schematic form in Fig. 4 and the data comprises an array of IR dots as printed by the printhead 15 of Fig. 2 which is additionally modulated by a high frequency "checkerboard" pattern 21 added to the data so as to assist in sensing of the encoded data. The data 22, in this particular instance, can comprise sound data as well as image information 20. The disclosed methodologies as discussed in applicant's co-pending applications Docket Nos PCT/AU01/ (Docket No. ART80), PCT/AU01/ (Docket No. ART81) and PCT/AUOl/ (Docket No. ART82) provide for the storage of about 6 Megabytes of arbitrary data on a photograph having a size of 4" x 6" (102mm. x 152mm.) for data printed at a resolution of 1600dpi.
When it is desired to "play back" the recorded audio, the photograph 17 is passed through a reader device 26 which includes pinch rollers for pinch rolling the photograph 17 past a linear CCD sensor device 27 sensitive to infra-red, the photograph 17 being illuminated by an infra-red source of complimentary characteristics. The sensor device 27
can be a suitably adapted sensor device as described in the aforementioned patent specification or in applicant's application PCT/AUOl/ (Docket No.
ART85) specification. Suitable sensors are found in flat bed scanners or facsimile machines. The sensors of the CCD device are provided with lensing and/or filtering arrangements to optimise their sensitivity and coverage to that of the photograph's size and the spectral characteristics of the IR ink. An ink with minimal response in the wavelength range 400-700mm and maximal response in the wavelength range 700mm- 1200mm has been found suitable as disclosed in Australian Provisional Patent Applications PQ9412 and PQ9376 filed on 14 August 2000 and applicant's applications PQ9509 filed on 18 August, 2000, and PQ9571, and PQ9561 filed on 21 August 2000.
Referring now to Fig. 6, there is illustrated in schematic form the operation of the audio reader device 26 of Fig. 5. The linear CCD IR sensor 27 is interconnected to a second Artcam central processor 28 which is suitably adapted to read and decode the data stored in infra-red on the photograph. The decoded audio information is stored in memory 32 for playback via a sound processing chip 33 on speaker 29. The sound processing chip
33 can operate under the control of the ACP decoder 28 which in turn operates under the control of various user input controls 33 which can include volume controls, rewind, play and fast forward controls etc. Importantly, the CCD linear IR sensor 27 and the ACP decoder 28 can implement the reading process as if the information were printed in an Artcard or an alternative Artcard format as described in the aforementioned patent specifications USSN 09/113,070 and USSN 09/112,785, or applicant's co-pending applications Docket Nos PCT/AUOl/ (Docket No. ART80), PCT/AUOl/ (Docket No. ART81) and PCT/AUOl/ (Docket No. ART82)
It can be seen from the foregoing description of the preferred embodiment that there is provided a system for the automatic recording of audio associated with an output image so as to provide an audio record associated with a photograph. There is also disclosed an audio reader system for reading an audio output recorded on a photograph with IR ink.
It would be appreciated by a person skilled in the art that numerous variations and/or modifications any be made to the present invention as shown in the specific embodiment without departing from the spirit or scope of the invention as broadly described. For example, the utilisation of more complex audio recording and playback
techniques such as stereo and B-format techniques. The present embodiment is, therefore, to be considered in all respects to be illustrative and not restrictive.
Claims (9)
1. A system for playing prerecorded audio encoded in a fault tolerant manner as an array of invisible ink dots printed on a photograph in substantially the same area thereas comprising: an infra-red scanner means for scanning the printed infra-red ink dots of said prerecorded audio; a processor means interconnected to said infra-red scanner means for decoding said scanned audio encoding to produce a corresponding audio signal; and audio emitter means interconnected to said processor means for emitting or playing said corresponding audio signal on demand.
2. A system for playing prerecorded audio as claimed in claim 1 wherein the invisible ink is an infra-red (IR) absorbing ink with little absorption in the visible spectrum.
3. A system as claimed in claim 1 wherein said audio encoding includes Reed- Solomon encoding of said prerecorded audio.
4. A system as claimed in claim 1 wherein said system includes a wand-like arm having a slot through which said card is inserted.
5. A system as claimed in claim 1 wherein said encoding includes a high-frequency checkerboard modulation of said array of IR dots.
6. A method of decoding a prerecorded audio signal printed as an array of invisible ink dots in a fault tolerant encoded form on a surface of a photograph coincident with an image printed on said surface of said photograph, said method comprising the steps of:
(a) scanning the printed encoded form of said prerecorded audio on said photograph in the infra-red; (b) decoding said encoded audio signal; and
(c) playing said audio signal on an audio output device.
7. A method of decoding a prerecorded audio signal as claimed in claim 6 wherein the invisible ink is an infra-red (IR) absorbing ink with little absorption in the visible spectrum.
8. A method as claimed in claim 6 wherein said audio signal is Reed-Solomon encoded before printing as said array of infra-red ink dots on the surface of said photograph.
9. A method as claimed in claim 7 wherein said encoded form includes modulating said array of infra-red dots with a high frequency checkerboard signal component.
Applications Claiming Priority (3)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
US09/693,078 | 2000-10-20 | ||
US09/693,078 US6647369B1 (en) | 2000-10-20 | 2000-10-20 | Reader to decode sound and play sound encoded in infra-red ink on photographs |
PCT/AU2001/001327 WO2002035286A1 (en) | 2000-10-20 | 2001-10-19 | Reproducing sound encoded in infrared ink on photographs |
Related Child Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
AU2004226963A Division AU2004226963A1 (en) | 2000-10-20 | 2004-11-04 | Photographs incorporating audio data |
Publications (2)
Publication Number | Publication Date |
---|---|
AU2001295294A1 true AU2001295294A1 (en) | 2002-07-11 |
AU2001295294B2 AU2001295294B2 (en) | 2004-08-19 |
Family
ID=24783218
Family Applications (2)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
AU9529401A Pending AU9529401A (en) | 2000-10-20 | 2001-10-19 | Reproducing sound encoded in infrared ink on photographs |
AU2001295294A Ceased AU2001295294B2 (en) | 2000-10-20 | 2001-10-19 | Reproducing sound encoded in infrared ink on photographs |
Family Applications Before (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
AU9529401A Pending AU9529401A (en) | 2000-10-20 | 2001-10-19 | Reproducing sound encoded in infrared ink on photographs |
Country Status (9)
Country | Link |
---|---|
US (11) | US6647369B1 (en) |
EP (1) | EP1352294A4 (en) |
JP (1) | JP2004511877A (en) |
KR (1) | KR100584029B1 (en) |
CN (2) | CN100343756C (en) |
AU (2) | AU9529401A (en) |
IL (2) | IL155469A0 (en) |
WO (1) | WO2002035286A1 (en) |
ZA (1) | ZA200303173B (en) |
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2000
- 2000-10-20 US US09/693,078 patent/US6647369B1/en not_active Expired - Fee Related
-
2001
- 2001-10-19 IL IL15546901A patent/IL155469A0/en unknown
- 2001-10-19 WO PCT/AU2001/001327 patent/WO2002035286A1/en not_active Application Discontinuation
- 2001-10-19 CN CNB2005100720357A patent/CN100343756C/en not_active Expired - Fee Related
- 2001-10-19 JP JP2002538208A patent/JP2004511877A/en active Pending
- 2001-10-19 KR KR1020037005528A patent/KR100584029B1/en not_active IP Right Cessation
- 2001-10-19 AU AU9529401A patent/AU9529401A/en active Pending
- 2001-10-19 EP EP01975883A patent/EP1352294A4/en not_active Withdrawn
- 2001-10-19 CN CNB018177492A patent/CN1210614C/en not_active Expired - Fee Related
- 2001-10-19 AU AU2001295294A patent/AU2001295294B2/en not_active Ceased
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2002
- 2002-12-04 US US10/309,068 patent/US6910014B2/en not_active Expired - Fee Related
-
2003
- 2003-04-15 IL IL155469A patent/IL155469A/en not_active IP Right Cessation
- 2003-04-24 ZA ZA200303173A patent/ZA200303173B/en unknown
- 2003-08-08 US US10/636,220 patent/US7155394B2/en not_active Expired - Fee Related
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2004
- 2004-11-08 US US10/982,834 patent/US7533022B2/en not_active Expired - Fee Related
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2005
- 2005-05-06 US US11/123,008 patent/US7610203B2/en not_active Expired - Fee Related
- 2005-05-06 US US11/123,009 patent/US7664647B2/en not_active Expired - Fee Related
- 2005-05-06 US US11/123,007 patent/US20050207746A1/en not_active Abandoned
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2008
- 2008-11-26 US US12/324,559 patent/US8065153B2/en not_active Expired - Fee Related
-
2009
- 2009-10-05 US US12/573,877 patent/US8032381B2/en not_active Expired - Fee Related
- 2009-12-20 US US12/642,829 patent/US8082155B2/en not_active Expired - Fee Related
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2011
- 2011-09-19 US US13/236,576 patent/US20120004921A1/en not_active Abandoned
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