Scheduling exercise equipment based on medical data
US-2018126222-A1 · May 10, 2018 · US
US10115016B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10115016-B2 |
| Application number | US-201715399252-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jan 5, 2017 |
| Priority date | Jan 5, 2017 |
| Publication date | Oct 30, 2018 |
| Grant date | Oct 30, 2018 |
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A system and method having a number of technological elements, one of which being a controller, which causes improvements to the controller and creates significantly more than the original default controller functionality. The elements collaborating to cause the controller to operate a camera to record images of a visual content; store the recorded images to a memory, the recorded images being in a digital form as digital images; perform a visual recognition module to identify at least one targeted object within at least one digital image; produce the identification results of the visual recognition module; compare the identification results to the vehicle-reservation information; generate reservation information derived from the comparison outcome of the identification results to the vehicle-reservation information; and operate the display to exhibit the reservation information.
Opening claim text (preview).
The invention claimed is: 1. A method to generate reservation information, the method comprising: (a) providing a memory configured to comprise at least one module of executable instructions, the memory further configured to comprise a database of reservation information; (b) providing a controller configured to execute the module and communicate with the database; (c) providing a mobile computing device comprising a display configured to exhibit information; (d) providing a camera on the mobile computing device, the camera configured to record images of at least a portion of a vehicle-license plate; (e) providing a visual recognition module configured to identify at least one character or symbol positioned on the vehicle-license plate; (f) recording images, via the camera, of the at least a portion of the vehicle-license plate; (g) storing the images recorded by the camera, via the controller, in a digital form as digital images in the memory, wherein the substance of the digital images is at least a portion of the vehicle-license plate; (h) performing, via the controller, the visual recognition module to identify at least one character or symbol positioned on the vehicle-license plate within at least one digital image; (i) producing, via the controller, the identification results of the visual recognition module, wherein the identification results include processed vehicle-license plate information; (j) looking up, via the controller, at least one vehicle-share record based, at least in part, on the identification results; (k) verifying, via the controller, the at least one vehicle-share record is adequate as well as a logical match for the identification results; (l) exhibiting, via the display, reservation information generated from the at least one vehicle-share record, based upon the outcome of step (k); and wherein the visual recognition module comprises: a cascade classifier module configured to utilize a sliding-window search scheme in which windows of various scales can be slid across the substance of at least one digital image; a Maximally Stable External Regions (MSER) module configured to detect any regions of interest in the substance of at least one digital image; and an Optical Character Recognition (OCR) module configured to extract any text from the detected regions of interest within the substance of at least one digital image. 2. The method of claim 1 , further comprising: (m) providing a transceiver on the mobile computing device, the transceiver configured to communicate one or more data transmissions; (n) based upon the outcome of step (k), communicating, via the transceiver, the digital images to the controller; and (o) after step (n), receiving, at the transceiver, the reservation information. 3. The method of claim 2 , wherein the memory and controller are located in a call center. 4. The method of claim 1 , wherein the module of executable instructions is a reservation module configured to assist in completing a vehicle reservation. 5. The method of claim 4 , further comprising: (m) based upon the outcome of step (k), requesting, via the controller, a reservation based on the reservation information; and (n) based upon step (m), generating, via the controller, a completed reservation from the reservation request. 6. The method of claim 4 , wherein: the reservation module further comprising a Continuously Adaptive Mean Shift (camshift) module configured to assist in tracking the location of at least one targeted object; and the method further comprising: (m) after step (g), performing, via the controller, the camshift module to assist in tracking the location of at least one targeted object within at least one digital image. 7. The method of claim 1 , wherein the reservation information comprising: vehicle name; vehicle location; reservation cost; reservation availability facts; and reservation request options. 8. A system to generate vehicle-reservation information, the system comprising: a memory configured to comprise at least one module of executable instructions, the memory further configured to comprise a database of vehicle-reservation information; a controller configured to execute the module and communicate with the database; a mobile computing device comprising a display configured to exhibit information; a camera on the mobile computing device, the camera configured to record images of at least a portion of a vehicle-license plate; a visual recognition module configured to identify at least one character or symbol positioned on the vehicle-license plate, wherein the visual recognition module comprises: a cascade classifier module configured to utilize a sliding-window search scheme in which windows of various scales can be slid across the substance of at least one digital image; a Maximally Stable External Regions (MSER) module configured to detect any regions of interest in the substance of at least one digital image; and an Optical Character Recognition (OCR) module configured to extract any text from the detected regions of interest within the substance of at least one digital image; wherein module enables the controller to: operate the camera to record images of the at least a portion of the vehicle-license plate; store the recorded images to the memory, the recorded images being in a digital form as digital images, wherein the substance of the digital images is at least a portion of the vehicle-license plate; perform the visual recognition module to identify at least one character or symbol positioned on the vehicle-license plate within at least one digital image; produce the identification results of the visual recognition module, wherein the identification results include processed vehicle-license plate information; look up at least one vehicle-share record based, at least in part, on the identification results; verify the at least one vehicle-share record is adequate as well as a logical match for the identification results; and operate the display to exhibit reservation information generated from the at least one vehicle-share record, when the at least one vehicle-share record is verified to be adequate as well as a logical match for the identification results. 9. The system of claim 8 , further comprising: a transceiver on the mobile computing device, the transceiver configured to communicate one or more data transmissions, the data transmissions comprising the reservation information; and wherein the module enables the controller to: receive the reservation information from the transceiver. 10. The system of claim 9 , wherein the memory and controller are located in a call center. 11. The system of claim 8 , wherein the module is a reservation module configured to assist in completing a vehicle reservation. 12. The system of claim 11 , wherein the module enables the controller to: request a vehicle reservation based on the reservation information; and generate a completed vehicle reservation from the vehicle reservation request. 13. The system of claim 12 , wherein: the reservation module further comprising a Continuously Adaptive Mean Shift (camshift) module configured to assist in tracking the location of at least one targeted object; and wherein the reservation module enables the controller to perform the camshift module to assist in tracking the location of at least one targeted object within at least one digital image. 14. A non-transitory and machine-readable medium having stored thereon a module of executable instructions to generate vehicle-reservation information, comprising machine executable code,
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