Sensing System for Pool Floating Device
20230410625 ยท 2023-12-21
Inventors
Cpc classification
G01C9/04
PHYSICS
International classification
G08B21/08
PHYSICS
Abstract
A sensing system for a floating pool system for detecting and alerting a user of disturbances and detecting various levels and releasing chemicals into a liquid medium. The system comprises a controller that can comprise a wireless communication module and at least one sensor, and a receiving device can be configured to receive a signal from the wireless communication module. The controller can comprise at least one tilt sensor that is generally in an open position and closes with a waking event. The controller sends a message to the receiving device when a waking event occurs, alerting the user to a disturbance and possibly dangerous situation.
Claims
1. A system for detecting and alerting a user of disturbances comprising: an alarm body comprising a housing configured to couple to a float; a controller coupled to the alarm body, comprising a wireless communication module and at least one sensor; a power source electrically coupled to the controller; and a remote computing device wirelessly connected to the controller.
2. The system of claim 1, wherein the float is a body capable of floating in a liquid medium wherein the body has a lower portion configured to sit below the liquid medium and an upper portion configured to float partially below and partially above the liquid medium wherein the upper portion comprises the alarm body partially extending vertically through the upper portion and the lower portion having at least one port open to the liquid medium;
3. The system of claim 2, wherein the lower portion further comprises a cavity wherein chlorine is dispensed into the liquid medium through the at least one port.
4. The system of claim 1, wherein at least one sensor is at least one of: at least one tilt sensor, a chlorine sensor, thermometer, camera, and a pH detection sensor.
5. The system of claim 4, wherein the tilt sensor is a ball switch sensor.
6. The system of claim 4, wherein the at least one tilt sensor is a plurality of tilt sensors coupled to the controller in an array at an angle of at least 10 degrees and are configured to sense tilting in all directions.
7. The system of claim 1, wherein the controller further comprises at least a wake mode and a sleep mode.
8. The system of claim 6, wherein wake mode is active after a waking event.
9. The system of claim 6, wherein sleep mode is determined by the tilt sensor being in the open position.
10. The system of claim 1, wherein at least one of the at least one sensors has a sensing element that is in contact with the liquid medium.
11. The system of claim 1, wherein the power source is at least one of at least one battery, at least one long life battery, at least one rechargeable battery, at least one disposable battery, at least one AAA alkaline battery, and at least one photovoltaic panel.
12. The system of claim 11, wherein the at least one photovoltaic panel is used to recharge the at least one rechargeable battery.
13. The system of claim 1, wherein the controller can further comprise a wake button to manually initiate wake mode.
14. The system of claim 1, wherein the alarm body comprises at least one of polyethylene terephthalate glycol (PETG), nickel alloy, and fiberglass.
15. The system of claim 1, wherein the wireless communication module comprises at least one of: Wi-Fi, cellular, and Bluetooth.
16. A method of detecting and alerting a user of disturbances within a liquid medium comprising: removably attaching an alarm body with a controller to a float having an upper portion and a lower portion; sensing movement in a liquid medium with at least one tilt sensor; sleeping while the at least one tilt sensor is in an open position and has not detected any movement within a liquid medium; activating when movement is detected by the at least one tilt sensor on the liquid medium wherein the tilt sensor is tilted to at least a waking angle. determining whether the controller is in a sleep mode when the tilt sensor is in an open position, and in a wake mode after the tilt sensor has been tilted to at least a waking angle; sending a signal alerting the user that there has been a disturbance in the liquid medium by a remote computing device wherein the remote computing device can receive the signal and alert the user, based on the mode; resetting the controller to sleep mode after the remote computing device acknowledges receipt of the alert message.
17. The method of claim 16, wherein activating the alarm comprises activating while the floating pool system is floating on a liquid medium.
18. The method of claim 16, wherein the controller sends a signal via the wireless communication module wherein the signal is sent using at least one of Wi-Fi, cellular, and Bluetooth.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0015] These and other features, aspects, and advantages of the present specification will become better understood with regard to the following description, appended claims, and accompanying drawings where:
[0016]
[0017]
[0018]
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[0020]
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[0023]
DETAILED DESCRIPTION
[0024] In the following description, and for the purposes of explanation, numerous specific details are set forth in order to provide a thorough understanding of the various aspects of the invention. It will be understood, however, by those skilled in the relevant arts, that the present invention may be practiced without these specific details. In other instances, known structures and devices are shown or discussed more generally in order to avoid obscuring the invention. In many cases, a description of the operation is sufficient to enable one to implement the various forms of the invention, particularly when the operation is to be implemented in software. It should be noted that there are many different and alternative configurations, devices and technologies to which the disclosed inventions may be applied. The full scope of the inventions is not limited to the examples that are described below.
[0025] the inventors are fully informed of the standards and application of the special provisions of 35 U.S.C. 112 (f). Thus, the use of the words function, means or step in the Detailed Description or Description of the Drawings or claims is not intended to somehow indicate a desire to invoke the special provisions of 35 U.S.C. 112 (f), to define the invention. To the contrary, if the provisions of 35 U.S.C. 112 (f) are sought to be invoked to define the inventions, the claims will specifically and expressly state the exact phrases means for or step for, and will also recite the word function (i.e., will state means for performing the function of [insert function]), without also reciting in such phrases any structure, material or act in support of the function. Thus, even when the claims recite a means for performing the function of . . . or step for performing the function of . . . , if the claims also recite any structure, material or acts in support of that means or step, or that perform the recited function, then it is the clear intention of the inventors not to invoke the provisions of 35 U. S. C. 112 (f). Moreover, even if the provisions of 35 U.S.C. 112 (f) are invoked to define the claimed inventions, it is intended that the inventions not be limited only to the specific structure, material or acts that are described in the preferred embodiments, but in addition, include any and all structures, materials or acts that perform the claimed function as described in alternative embodiments or forms of the invention, or that are well known present or later-developed, equivalent structures, material or acts for performing the claimed function.
[0026] While the following description relates to swimming pools, it may be equally applied to any standing body of water or other fluid.
[0027] Referring to
[0028] The power source 23 can be anything that can provide approximately 2.4V of power or more. The power source 23 can comprise at least one of at least one of a battery and a photovoltaic cell. The battery may be at least one long life battery, at least one rechargeable battery, at least one disposable battery, at least one AAA alkaline battery, or the like. The photovoltaic cell can provide power directly, or can charge one or more batteries that can provide power to the controller.
[0029] The sensing system 4 can comprise at least one sensing element 70 that can be in contact with the water. The sensing element 70 can be coupled to the controller 18.
[0030] Referring now to
[0031] The at least one sensor can be at least one tilt sensor 15, at least one chlorine sensor, at least one thermometer, at least one camera, at least one pH sensor, and the like. In one or more embodiments the at least one tilt sensor is a plurality of tilt sensors. The tilt sensors are arranged such that they are able to sense movement in any direction and optimize the detection of the slightest movement of the sensing system 4. In one or more embodiments the at least one tilt sensor 15 is three tilt sensors coupled to the controller 18 and PCB 24, forming a triangular array equidistant from the center of the PCB 24 and from each other. The axis of the tilt sensors 15 can be tilted toward the center of the PCB 24 at an angle of, for example, between 5 degrees and 90 degrees, more preferably between 10 and 50 degrees, still more preferably at approximately 20 degrees, or the like, from the plane of the PCB 24. The tilt sensor 15 can be coupled to the same PCB 24 as the wireless module, or it can be connected to a separate PCB that is coupled to the controller 18. Each tilt sensor 15 can be any type of tilt sensor, such as, ball tilt switch, single axis, dual axis, force balance, accelerometer, or the like.
[0032] The controller can comprise a wake button 19. The wake button 19 can be a physical button, or it can be a digital button or a programmed response to a signal from, for example, a mobile device application. It can be coupled to the printed circuit board 24, the receiving device 54, an app, or the like.
[0033] Referring now to
[0034] The sensing system 4 can be coupled to the float 8 to form a floating pool system 10. The float 8 can be an aftermarket device, wherein the alarm body 14 is configured to be housed within the lid 8, or to replace the lid 8. The float 8 can be made specifically for the sensing system 4, wherein the sensing system 4 can be removable from, or integral with the float 8. The floating pool alarm system 10 can comprise an LED 76 which can be aesthetically pleasing when in a dark environment and can alert the user visually if there is a disturbance within the water.
[0035] Referring now to
[0036] [step 92] The sensing system remains in sleep mode until a waking event occurs. The waking event can be when the floating pool system 10 is tilted past a waking angle 52 of at least 10 degrees, causing at least one tilt sensor 15 to close. The waking event can also be the activation of the wake button 19.
[0037] [Step 94] The waking event puts the sensing system 4 in wake mode.
[0038] [Step 95] Based on the mode, the controller 18 can send a message to the receiving device 54, alerting the user that the system is in wake mode, or that there has been a disturbance in the water. The wireless module 43 can utilize any wireless communication system, such as, Wi-Fi, Bluetooth, cellular, and the like. The receiving device 54 can deliver the message to the user with a visual, audio, or tactile message/alert, such as, a text message, a light, a flashing light, a vibration, a voice message, a siren, a video, a live stream video, or the like. The message can be a generic message, a custom message, an audible alarm, or the like, notifying the user that a child or large object has entered the water. The message can be delivered through an app. The app can be a third-party app, such as PushOver, IFTTT, and the like, or it can be an app specific for the sensing device 4 or floating pool system 10. The receiving device may include a camera situated to observe the cite of the cite of the sensing system 4. The waking event may activate the camera and notify a user such that the user can observe the area of the sensing system 4 when a waking event has been detected.
[0039] [Step 96] The controller can continue to send the message to the receiving device 54 until an acknowledgement is received, and/or the receiving device 54 can continue to alert the user until an acknowledgement is sent. An acknowledgement can be the user opening the message, the user sending an acknowledgement, or any interaction that would indicate the user has received the message.
[0040] [step 97] The receiving device 54 can determine that the user has received the message and acknowledges receipt of the message to the controller.
[0041] [step 98] The sensing system 4 can reset to sleep mode based on the status of the message. If the message has been received, the system can change to sleep mode. The system 4 can return to sleep mode as quickly as 10 seconds after wake mode was instigated saving power.
[0042] Various messages or information can be sent by the controller 18 and received by the receiving device 54, such as, wake mode, power level, temperature, chlorine level, pH level, and the like. The receiving device can also display a monitor of the mode, power level, temperature, chlorine level, pH level, and/or the like.
[0043] The body 12 can be shaped in a way to minimize false alarms in the system wherein the shape will only tilt to a waking angle 52 when there is a major disturbance in the water such as a child falling in.
[0044] The floating pool system 10 can differentiate between a disturbance caused by wind blowing and a disturbance caused by a child entering the water. In certain embodiments a camera can be coupled to the controller 18. The camera can be connected to the alarm body, or it can be remote from the alarm body, such as on the float 8, or a pool deck. The user can use the camera to remotely and quickly investigate the cause of the waking event.
[0045] It is to be understood that although aspects of the present specification are highlighted by referring to specific embodiments, one skilled in the art will readily appreciate that these disclosed embodiments are only illustrative of the principles of the subject matter disclosed herein. Therefore, it should be understood that the disclosed subject matter is in no way limited to a particular methodology, protocol, and/or reagent, etc., described herein. As such, various modifications or changes to or alternative configurations of the disclosed subject matter can be made in accordance with the teachings herein without departing from the spirit of the present specification. Lastly, the terminology used herein is for the purpose of describing particular embodiments only and is not intended to limit the scope of the present disclosure, which is defined solely by the claims. Accordingly, embodiments of the present disclosure are not limited to those precisely as shown and described.
[0046] Certain embodiments are described herein, including the best mode known to the inventors for carrying out the methods and devices described herein. Of course, variations on these described embodiments will become apparent to those of ordinary skill in the art upon reading the foregoing description. Accordingly, this disclosure includes all modifications and equivalents of the subject matter recited in the claims appended hereto as permitted by applicable law. Moreover, any combination of the above-described embodiments in all possible variations thereof is encompassed by the disclosure unless otherwise indicated herein or otherwise clearly contradicted by context.