Abstract: ABSTRACT WATER REGENERATION SYSTEM USING IoT AND LoRa This invention is consists many nodes, LoRa module(11), a controlling unit (10), power supply (Battery) unit (15), Wi-Fi(12), cloud sensor (13), control room(14) all the nodes will connect to LoRa module(11), further it transmits the controlling units (10) .controlling unit (10) supply the Wi-Fi(12) information and provides signal to cloud server (13). Cloud server (13) provided information to control room (14) .the whole devices shall be powered by using a power supplier (battery) (15). A closed feedback loop is created within which the water is continually filtered & treated for purification purposes in a closed feedback system. A GPS sensor (17), a Cleaning alarm (12), a water purifier (11), a power supply (15), a LoRa module (16), a display (13), and a Gas Sensor (14). These components it completed purified the water it work firstly on TDS sensor (19) and a pH level sensor (18) are used to check the water that how many pollutants or dust particles are present in water and hence inform to controlling unit (10). Controlling unit (10) check how many TDS (19) and pH level (18) of the water then the water will to purify upon this process water will go to purified than a horn will produces by the cleaning alarm (12).
Description:Title of The Invention
WATER REGENERATION SYSTEM USING IoT AND LoRa
Field of the Invention
This invention relates to water regeneration system using IoT and LoRa
Background of the Invention
US8097151B2: The device disclosed is an improved water harvesting device providing the capability of diverting debris away from a water entry area and reducing potential for clogging of the water entry area. The water harvesting device comprises a tank portion for containment of water and a water entry portion for receiving water, particularly rainwater from a building water collection system such as an eaves and downspout configuration. Debris typically accompanying rainwater as it exits from the downspout of the building collection system is diverted away from the water entry area allowing for better water collection efficiency, preventing backing of water and reducing operator maintenance of the device.
US20100288375A1: A rainwater harvesting device and system that stores water for irrigation and outdoor use that provides constant pressure via gravity to a sprayer such as might be used for landscape or garden irrigation, or outdoor washing. The device and system comprise a water storage vessel that is free to move vertically, and optionally contained within a rack or other structure if necessary, and supported by one or more springs, which can be compression or tension springs or a combination thereof. When the vessel is at or near capacity, the spring assembly is largely or fully compressed/extended and supports the vessel at a minimal elevation. In such a state, the pressure head provided by the static water level is sufficient to provide a desired pressure at the sprayer. During periods of lower storage, however, such as following water draw-off and lower replenishment, the spring assembly responds to the lower load by extending vertically, thus raising the vessel and thereby providing an increase in elevation head, maintaining the same desired pressure at the sprayer, regardless of the volume contained in the vessel.
None of the prior art indicate above either alone or in combination with one another disclose what the present invention has disclosed. Present invention is uses GPS Sensor and display along with the buzzer (cleaning) alarm, this water is not only the use of irrigation but it will also the use of Domestic purpose (like washing, cooking, cleaning, drinking etc.)
SUMMARY OF THE INVENTION
This summary is provided to introduce a selection of concepts, in a simplified format, that are further described in the detailed description of the invention. This summary is neither intended to identify key or essential inventive concepts of the invention and nor is it intended for determining the scope of the invention.
To further clarify advantages and features of the present invention, a more particular description of the invention will be rendered by reference to specific embodiments thereof, which is illustrated in the appended drawings. It is appreciated that these drawings depict only typical embodiments of the invention and are therefore not to be considered limiting of its scope. The invention will be described and explained with additional specificity and detail with the accompanying drawings.
Many nodes, LoRa module(11), a controlling unit (10), power supply (Battery) unit (15), Wi-Fi(12), cloud sensor (13), control room(14) all the nodes will connect to LoRa module(11), further it transmits the controlling units (10) .controlling unit (10) supply the Wi-Fi(12) information and provides signal to cloud server (13). Cloud server (13) provided information to control room (14) .the whole devices shall be powered by using a power supplier (battery) (15). The proposed system consists of a TDS Sensor (19) and a pH level sensor (18) which, upon analyzing the water streaming through pipes, sends a continuous reading to a controlling unit (10) which processes the data & translates it into purity levels which must cross a threshold function for the water to exit the system, passing through electronically triggered sluice gates. A closed feedback loop is created within which the water is continually filtered & treated for purification purposes in a closed feedback system. A GPS sensor (17), a Cleaning alarm (12), a water purifier (11), a power supply (15), a LoRa module (16), a display (13), and a Gas Sensor (14). these components it completed purified the water it work firstly on TDS sensor (19) and a pH level sensor (18) are used to check the water that how many pollutants or dust particles are present in water and hence inform to controlling unit (10) .controlling unit (10) check how many TDS (19) and pH level (18) of the water then the water will to purified upon this process water will go to purified than a horn will produces by the cleaning alarm (12). It will give the signal that water purification process will be stated. after this process the controlling unit(10) sends the information to display(13) .so that it will show all the information of water that how much water will purified .in this devices we use a gas sensor(14) because for storing a water in underground tank many types of gases will evolved so to detect this gases we use a gas sensor (14) to know about the gases .in this system we use a GPS (17) tracker which will show the direction of water tank the GPS (17) tracker was control by the controlling unit (10) .the controlling unit (10) sends all the information to lora module (16). LoRa module (16) will transmit the information .the whole device shall be powered using a power supplier (battery) (15) through this process the whole system work and the water will be purified.
BRIEF DESCRIPTION OF THE DRAWINGS
The illustrated embodiments of the subject matter will be understood by reference to the drawings, wherein like parts are designated by like numerals throughout. The following description is intended only by way of example, and simply illustrates certain selected embodiments of devices, systems, and methods that are consistent with the subject matter as claimed herein, wherein:
Fig 1 consists many nodes, LoRa module(11), a controlling unit (10), power supply (Battery) unit (15), Wi-Fi(12), cloud sensor (13), control room(14) all the nodes will connect to LoRa module(11), further it transmits the controlling units (10) .controlling unit (10) supply the Wi-Fi(12) information and provides signal to cloud server (13). Cloud server (13) provided information to control room (14) .the whole devices shall be powered by using a power supplier (battery) (15). The proposed system consists of a TDS Sensor (19) and a pH level sensor (18) which, upon analyzing the water streaming through pipes, sends a continuous reading to a controlling unit (10) which processes the data & translates it into purity levels which must cross a threshold function for the water to exit the system, passing through electronically triggered sluice gates. A closed feedback loop is created within which the water is continually filtered &treated for purification purposes in a closed feedback system. A GPS sensor (17), a Cleaning alarm (12), a water purifier (11), a power supply (15), a LoRa module (16), a display (13), and a Gas Sensor (14). these components it completed purified the water it work firstly on TDS sensor (19) and a pH level sensor (18) are used to check the water that how many pollutants or dust particles are present in water and hence inform to controlling unit (10) .controlling unit (10) check how many TDS (19) and pH level (18) of the water then the water will to purified upon this process water will go to purified than a horn will produces by the cleaning alarm (12). It will give the signal that water purification process will be stated. after this process the controlling unit(10) sends the information to display(13) .so that it will show all the information of water that how much water will purified .in this devices we use a gas sensor(14) because for storing a water in underground tank many types of gases will evolved so to detect this gases we use a gas sensor(14) to know about the gases .in this system we use a GPS(17) tracker which will show the direction of water tank the GPS(17) tracker was control by the controlling unit(10) .the controlling unit(10) sends all the information to lora module(16). LoRa module (16) will transmit the information .the whole device shall be powered using a power supplier (battery)(15) through this process the whole system work and the water will be purified.
The figures depict embodiments of the present subject matter for the purposes of illustration only. A person skilled in the art will easily recognize from the following description that alternative embodiments of the structures and methods illustrated herein may be employed without departing from the principles of the disclosure described herein.
DETAILED DESCRIPTION OF THE INVENTION
The detailed description of various exemplary embodiments of the disclosure is described herein with reference to the accompanying drawings. It should be noted that the embodiments are described herein in such details as to clearly communicate the disclosure. However, the amount of details provided herein is not intended to limit the anticipated variations of embodiments; on the contrary, the intention is to cover all modifications, equivalents, and alternatives falling within the scope of the present disclosure as defined by the appended claims.
It is also to be understood that various arrangements may be devised that, although not explicitly described or shown herein, embody the principles of the present disclosure. Moreover, all statements herein reciting principles, aspects, and embodiments of the present disclosure, as well as specific examples, are intended to encompass equivalents thereof.
The terminology used herein is for the purpose of describing particular embodiments only and is not intended to be limiting of example embodiments. As used herein, the singular forms “a",” “an” and “the” are intended to include the plural forms as well, unless the context clearly indicates otherwise. It will be further understood that the terms “comprises,” “comprising,” “includes” and/or “including,” when used herein, specify the presence of stated features, integers, steps, operations, elements and/or components, but do not preclude the presence or addition of one or more other features, integers, steps, operations, elements, components and/or groups thereof.
In addition, the descriptions of "first", "second", “third”, and the like in the present invention are used for the purpose of description only, and are not to be construed as indicating or implying their relative importance or implicitly indicating the number of technical features indicated. Thus, features defining "first" and "second" may include at least one of the features, either explicitly or implicitly.
Unless otherwise defined, all terms (including technical and scientific terms) used herein have the same meaning as commonly understood by one of ordinary skill in the art to which example embodiments belong. It will be further understood that terms, e.g., those defined in commonly used dictionaries, should be interpreted as having a meaning that is consistent with their meaning in the context of the relevant art and will not be interpreted in an idealized or overly formal sense unless expressly so defined herein.
It should be noted that the description merely illustrates the principles of the present subject matter. It will thus be appreciated that those skilled in the art will be able to devise various arrangements that, although not explicitly described herein, embody the principles of the present subject matter and are included within its scope.
Fig 1 consists many nodes, LoRa module(11), a controlling unit (10), power supply (Battery) unit (15), Wi-Fi(12), cloud sensor (13), control room(14) all the nodes will connect to LoRa module(11), further it transmits the controlling units (10) .controlling unit (10) supply the Wi-Fi(12) information and provides signal to cloud server (13). Cloud server (13) provided information to control room (14) .the whole devices shall be powered by using a power supplier (battery) (15). The proposed system consists of a TDS Sensor (19) and a pH level sensor (18) which, upon analyzing the water streaming through pipes, sends a continuous reading to a controlling unit (10) which processes the data & translates it into purity levels which must cross a threshold function for the water to exit the system, passing through electronically triggered sluice gates. A closed feedback loop is created within which the water is continually filtered &treated for purification purposes in a closed feedback system. A GPS sensor (17), a Cleaning alarm (12), a water purifier (11), a power supply (15), a LoRa module (16), a display (13), and a Gas Sensor (14). these components it completed purified the water it work firstly on TDS sensor (19) and a pH level sensor (18) are used to check the water that how many pollutants or dust particles are present in water and hence inform to controlling unit (10) .controlling unit (10) check how many TDS (19) and pH level (18) of the water then the water will to purified upon this process water will go to purified than a horn will produces by the cleaning alarm (12). It will give the signal that water purification process will be stated. After this process the controlling unit (10) sends the information to display (13). So that it will show all the information of water that how much water will purified .in this devices we use a gas sensor(14) because for storing a water in underground tank many types of gases will evolved so to detect this gases we use a gas sensor(14) to know about the gases .in this system we use a GPS(17) tracker which will show the direction of water tank the GPS(17) tracker was control by the controlling unit(10) .the controlling unit(10) sends all the information to lora module(16). LoRa module (16) will transmit the information .the whole device shall be powered using a power supplier (battery)(15) through this process the whole system work and the water will be purified.
ADVANTAGES OF THE INVENTION:
• It reduces storm water runoff, flooding, and pollution of surface water with fertilizers, pesticides, metals and other sediments.
• It can be used for domestic purpose, watering gardens in our homes and crop plants in agricultural fields.
• It reduced the need for imported water.
• It promotes both water conservation and energy conservation.
• This technology is relatively simple, easy to install and operate.
, Claims:We Claim:
1. Water regeneration system using IoT and LoRa system is comprises with LoRa module (11), a controlling unit (10), power supply (Battery) unit (15), Wi-Fi 12), cloud sensor (13), control room (14) all the nodes will connect to LoRa module (11), further it transmits the controlling units (10).
2. The system is claimed in claim 1, wherein all the nodes are connected to LoRa module (11), further it transmits the controlling units (10). controlling unit (10) supply the Wi-Fi(12) information and provides signal to cloud server (13). Cloud server (13) provided information to control room (14).
3. The system is claimed in claim 1, wherein the whole devices shall be powered by using a power supplier (battery) (15).; and a TDS Sensor (19) and a pH level sensor (18) which, upon analyzing the water streaming through pipes, sends a continuous reading to a controlling unit (10) which processes the data & translates it into purity levels which must cross a threshold function for the water to exit the system, passing through electronically triggered sluice gates.
4. The system is claimed in claim 1, wherein a closed feedback loop is created within which the water is continually filtered & treated for purification purposes in a closed feedback system.
5. The system is claimed in claim 1, wherein a GPS sensor (17), a Cleaning alarm (12), a water purifier (11), a power supply (15), a LoRa module (16), a display (13), and a Gas Sensor (14); and said components it completed purified the water it work firstly on TDS sensor (19) and a pH level sensor (18) are used to check the water that how many pollutants or dust particles are present in water and hence inform to controlling unit (10) controlling unit (10) check how many TDS (19) and pH level (18) of the water then the water will to purified upon this process water will go to purified than a horn will produces by the cleaning alarm (12).
6. The system is claimed in claim 1, wherein it gives the signal that water purification process will be stated. after this process the controlling unit(10) sends the information to display(13); so that it shows all the information of water that how much water will purified in this devices user use a gas sensor(14) because for storing a water in underground tank many types of gases are evolved so to detect this gases we use a gas sensor (14) to know about the gases.
7. The system is claimed in claim 1, wherein user uses a GPS (17) tracker which will show the direction of water tank the GPS (17) tracker was control by the controlling unit (10); and the controlling unit (10) sends all the information to lora module (16).
8. The system is claimed in claim 1, wherein LoRa module (16) transmit the information and the whole system is powered using a power supplier (battery) (15) through this process the whole system work and the water will be purified.
| # | Name | Date |
|---|---|---|
| 1 | 202311029362-STATEMENT OF UNDERTAKING (FORM 3) [23-04-2023(online)].pdf | 2023-04-23 |
| 2 | 202311029362-REQUEST FOR EARLY PUBLICATION(FORM-9) [23-04-2023(online)].pdf | 2023-04-23 |
| 3 | 202311029362-POWER OF AUTHORITY [23-04-2023(online)].pdf | 2023-04-23 |
| 4 | 202311029362-OTHERS [23-04-2023(online)].pdf | 2023-04-23 |
| 5 | 202311029362-FORM-9 [23-04-2023(online)].pdf | 2023-04-23 |
| 6 | 202311029362-FORM FOR SMALL ENTITY(FORM-28) [23-04-2023(online)].pdf | 2023-04-23 |
| 7 | 202311029362-FORM 1 [23-04-2023(online)].pdf | 2023-04-23 |
| 8 | 202311029362-EVIDENCE FOR REGISTRATION UNDER SSI(FORM-28) [23-04-2023(online)].pdf | 2023-04-23 |
| 9 | 202311029362-EDUCATIONAL INSTITUTION(S) [23-04-2023(online)].pdf | 2023-04-23 |
| 10 | 202311029362-DECLARATION OF INVENTORSHIP (FORM 5) [23-04-2023(online)].pdf | 2023-04-23 |
| 11 | 202311029362-COMPLETE SPECIFICATION [23-04-2023(online)].pdf | 2023-04-23 |
| 12 | 202311029362-FORM 18 [15-06-2025(online)].pdf | 2025-06-15 |