BUOYANT CAMERA SYSTEM AND METHOD
20190246030 ยท 2019-08-08
Inventors
Cpc classification
G08B21/084
PHYSICS
H04N23/661
ELECTRICITY
H04N23/695
ELECTRICITY
International classification
Abstract
A buoyant camera system is disclosed herein. The buoyant camera system comprises a buoyant body having a top-side and a bottom-side. A top-camera is attached to the top-side of the buoyant body. The top-camera is protected by a top-dome that is configured to protect the top-camera from fluid. A bottom-camera is attached to the bottom-side of the buoyant body. The bottom-camera is protected by a bottom-dome that is configured to protect the bottom-camera from fluid. A controller is disposed within the buoyant body. The controller is in electrical communication with the top-camera and the bottom-camera. A program may direct the controller to be in wireless communication with the mobile device. The program may be configured to send and receive audio and video to the mobile device.
Claims
1. A buoyant camera system for use in water, the buoyant camera system comprising: a buoyant body, said buoyant body including a top-side and a bottom-side; a top-camera, said top-camera being attached to said top-side of said buoyant body, said top-camera being protected by a top-dome configured to protect said top-camera from fluid; a bottom-camera, said bottom-camera being attached to said bottom-side of said buoyant body, said bottom-camera being protected by a bottom-dome configured to protect said bottom camera from fluid; a controller, said controller being disposed within said buoyant body, said controller being in electrical communication with said top-camera and said bottom-camera; and a non-transitory computer-readable medium having stored therein a program for causing a computer to execute a process of controlling a mobile device to receive instructions from said controller.
2. The buoyant camera system of claim 1, further including a photovoltaic array.
3. The buoyant camera system of claim 1, further including a rechargeable battery.
4. The buoyant camera system of claim 1, further including a microphone.
5. The buoyant camera system of claim 1, further including a speaker
6. The buoyant camera system of claim 5, wherein said controller includes a wireless transceiver.
7. The buoyant camera system of claim 1, wherein said wireless transceiver is configured to communicate on the 2.4 GHz frequency.
8. The buoyant camera system of claim 1, further comprising a plurality of buttons.
9. The buoyant camera system of claim 1, wherein said process on said non-transitory computer-readable medium includes instructions to receiving video signal from said top-camera.
10. The buoyant camera system of claim 1, wherein said process on said non-transitory computer-readable medium includes instructions to display video signal from said top-camera.
11. The buoyant camera system of claim 1, wherein said process on said non-transitory computer-readable medium includes instructions to receive video signal from said bottom-camera.
12. The buoyant camera system of claim 1, wherein said process on said non-transitory computer-readable medium includes instructions to display video signal from said bottom-camera.
13. The buoyant camera system of claim 1, wherein said process on said non-transitory computer-readable medium includes instructions to receive video signal.
14. The buoyant camera system of claim 1, wherein said process on said non-transitory computer-readable medium includes instructions to communicate with a mobile network.
15. The buoyant camera system of claim 1, wherein said top-camera is pivotably coupled to said buoyant body, said top-camera being configured to rotate 360 degrees.
16. The buoyant camera system of claim 1, wherein said bottom-camera is pivotably coupled to said buoyant body, said bottom-camera being configured to rotate 360 degrees.
17. A buoyant camera system comprising: a buoyant body, said buoyant body includes a top-side and a bottom-side; a top-camera, said top-camera is attached to said top-side of said buoyant body, said top-camera is protected by a top-dome configured to protect said top-camera from fluid; a bottom-camera, said bottom-camera is attached to said bottom-side of said buoyant body, said bottom-camera is protected by a bottom-dome configured to protect said bottom camera from fluid; a controller, said controller is disposed within said buoyant body and in electrical communication with said top-camera and said bottom-camera; a non-transitory computer-readable medium having stored therein a program for causing a computer to execute a process of controlling a mobile device to receive instructions from said controller; further including a photovoltaic array; further including a rechargeable battery; further including a microphone; further including a speaker; wherein said controller includes a wireless transceiver; wherein said wireless transceiver is configured to communicate on the 2.4 GHz frequency; further comprising a plurality of buttons; wherein said process on said non-transitory computer-readable medium includes instructions to receiving video signal from said top-camera; wherein said process on said non-transitory computer-readable medium includes instructions to display video signal from said top-camera; wherein said process on said non-transitory computer-readable medium includes instructions to receiving video signal from said bottom-camera; wherein said process on said non-transitory computer-readable medium includes instructions to display video signal from said bottom-camera; wherein said process on said non-transitory computer-readable medium includes instructions to receive video signal; wherein said process on said non-transitory computer-readable medium includes instructions to communicate with a mobile network; wherein said top-camera is configured to rotate 360 degrees; and wherein said bottom-camera is configured to rotate 360 degrees.
18. The buoyant camera system of claim 17, further comprising set of instructions; and wherein the buoyant camera system is arranged as a kit.
19. A method of using a buoyant camera system, the method comprising the steps of: providing a buoyant camera system; placing said buoyant camera system in water; and executing an application on a mobile device.
20. The method of claim 19, further comprising the steps of rotating a top-camera and a bottom-camera.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0011] The figures which accompany the written portion of this specification illustrate embodiments and methods of use for the present disclosure, a buoyant camera system and method, constructed and operative according to the teachings of the present disclosure.
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[0017] The various embodiments of the present invention will hereinafter be described in conjunction with the appended drawings, wherein like designations denote like elements.
DETAILED DESCRIPTION
[0018] As discussed above, embodiments of the present disclosure relate to a surveillance system and more particularly to a buoyant camera system and method as used to improve the monitoring of children in a pool.
[0019] Generally, the buoyant camera system is an aquatic sentry drone that will assist homeowners in keeping watch over their home pools. The buoyant camera system enables pool owners' immediate visibility to their aquatic environment through their mobile device. The components that comprise the buoyant camera system are designed utilizing industry leading techniques for durability as well as versatility for a range of environments and stresses. The buoyant camera system provides an autonomous means to notify homeowners that a child, pet, or family member is submerged in water. The buoyant camera system was designed to be used in conjunction with existing pool fences and safety protocols.
[0020] The buoyant camera system comprises of a buoyant body having a camera disposed on both the top, and the bottom. The system is designed to float in a pool and monitor any activity. The system may include photovoltaic cells, allowing for a longer duration of electrical components functionality. The buoyant camera system is designed to communicate wirelessly to an application on a mobile device. The application is configured to receive and display video signals from the camera system. The application may also be designed to send and receive audio to and from the buoyant camera system. This functionality allows for the buoyant camera system to serve as a direct communication device between users.
[0021] Optional integrated features to the buoyant camera system are paralleled with conceived and available technologies. Integration of voice recognition services may be considered. Voice recognition, in combination with means of sending and receiving audio, may allow the buoyant camera system to serve both as a digital assistant, and an entertainment system. The buoyant camera system and associated program accommodates scalable technologies including thermal imaging, and digital recognition algorithms. The scalable technologies allow the buoyant camera system to be used for residential and commercial purposes.
[0022] Referring now more specifically to the drawings by numerals of reference, there is shown in
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[0024] A non-transitory computer-readable medium, may be included. The non-transitory computer-readable medium has a stored program for causing a computer to execute a process of controlling a mobile device 300 (
[0025] According to one embodiment, the buoyant camera system 100 may be arranged as a kit 105. In particular, the buoyant camera system 100 may further include a set of instructions 107. The instructions 107 may detail functional relationships in relation to the structure of the buoyant camera system 100 such that the buoyant camera system 100 can be used, maintained, or the like, in a preferred manner.
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[0030] It should be noted that step 504 is an optional step and may not be implemented in all cases. Optional steps of method of use 500 are illustrated using dotted lines in
[0031] The embodiments of the invention described herein are exemplary and numerous modifications, variations and rearrangements can be readily envisioned to achieve substantially equivalent results, all of which are intended to be embraced within the spirit and scope of the invention. Further, the purpose of the foregoing abstract is to enable the U.S. Patent and Trademark Office and the public generally, and especially the scientist, engineers and practitioners in the art who are not familiar with patent or legal terms or phraseology, to determine quickly from a cursory inspection the nature and essence of the technical disclosure of the application.