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Smart In House Waste Water Management System Through Iot Technologies

Abstract: This invention relates to Smart In-House Waste Water Management System Through Iot Technologies. A method of smart in-house waste water management system through IoT technologies comprises Collection of wastewaters from various common sources [100]; Storage of wastewater [101]; Simple purification and heating process of wastewater [102]; Distribution of purified water for various common applications of household [103]; and an Application [105]. The wastewater is collected from various common sources of the household like Pedestal sink, kitchen sink, dishwasher, shower, refrigerator wastewater, washing machine, water purifier (RO based), bathtub etc. and stored in filtration chamber.

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Notices, Deadlines & Correspondence

Patent Information

Application #
Filing Date
11 March 2022
Publication Number
24/2022
Publication Type
INA
Invention Field
COMPUTER SCIENCE
Status
Email
Parent Application

Applicants

UTTARANCHAL UNIVERSITY
ARCADIA GRANT, P.O. CHANDANWARI, PREMNAGAR, DEHRADUN - 248007, UTTARAKHAND, INDIA

Inventors

1. MR. GAURAV SINGH NEGI,
UTTARANCHAL UNIVERSITY, ARCADIA GRANT, P.O. CHANDANWARI, PREMNAGAR, DEHRADUN - 248007, UTTARAKHAND, INDIA
2. MR. MUKESH KUMAR
UTTARANCHAL UNIVERSITY, ARCADIA GRANT, P.O. CHANDANWARI, PREMNAGAR, DEHRADUN - 248007, UTTARAKHAND, INDIA
3. MRS. YAMINI GHILDIYAL
UTTARANCHAL UNIVERSITY, ARCADIA GRANT, P.O. CHANDANWARI, PREMNAGAR, DEHRADUN - 248007, UTTARAKHAND, INDIA
4. MR. SOMIL KUMAR GUPTA
UTTARANCHAL UNIVERSITY, ARCADIA GRANT, P.O. CHANDANWARI, PREMNAGAR, DEHRADUN - 248007, UTTARAKHAND, INDIA
5. MR. RAVI DHAUNDIYAL
UTTARANCHAL UNIVERSITY, ARCADIA GRANT, P.O. CHANDANWARI, PREMNAGAR, DEHRADUN - 248007, UTTARAKHAND, INDIA
6. MR. ANURAJ MALAV
UTTARANCHAL UNIVERSITY, ARCADIA GRANT, P.O. CHANDANWARI, PREMNAGAR, DEHRADUN - 248007, UTTARAKHAND, INDIA
7. DR. RACHNA JUYAL
UTTARANCHAL UNIVERSITY, ARCADIA GRANT, P.O. CHANDANWARI, PREMNAGAR, DEHRADUN - 248007, UTTARAKHAND, INDIA
8. MS. VYESHIKHA ARORA
UTTARANCHAL UNIVERSITY, ARCADIA GRANT, P.O. CHANDANWARI, PREMNAGAR, DEHRADUN - 248007, UTTARAKHAND, INDIA
9. MR. GAURAV THAKUR
UTTARANCHAL UNIVERSITY, ARCADIA GRANT, P.O. CHANDANWARI, PREMNAGAR, DEHRADUN - 248007, UTTARAKHAND, INDIA

Claims

1. A method of smart in-house waste water management system through IoT technologies comprises Collection of wastewaters from various common sources [100]; Storage of wastewater [101]; Simple purification and heating process of wastewater [102]; Distribution of purified water for various common applications of household [103]; and an Application [105].

2. The method as claimed in claim 1, wherein wastewater is collected from various common sources of the household like Pedestal sink, kitchen sink, dishwasher, shower, refrigerator wastewater, washing machine, water purifier (RO based), bathtub etc. and stored in filtration chamber.

3. The method as claimed in claim 1, wherein all the waste water is collected at single place in this level; and all Waste water collected is purified through various purification methods; and a flow sensor is installed in this chamber to notify the user about the water level.

4. The method as claimed in claim 1, wherein after applying all purification method in layered fashion, a heating process is also applied to heat the purified wastewater for further uses; and after heating, water is transferred to next storage for distribution.

5. The method as claimed in claim 1, wherein a Water quality sensor is installed in this storage chamber to check the water quality.

6. The method as claimed in claim 1, wherein Once the quality is reached at threshold value, sensor sends a signal to the connected modem. Information sent by the sensor is reached at the application [105] indicating the quality improvement of the stored water; and Once information received, water is utilized for different applications.

Specification

This invention relates to Smart In-House Waste Water Management System Through Iot Technologies.
Background of the Invention
CN200946300Y discloses a household wastewater recycling and reusing device, which overcomes the disadvantage of present product that household wastewater flows into the toilet water supply tank directly without being processed. The device comprises a wastewater recycling device, a wastewater processing device and a wastewater reusing device. Said wastewater recycling device comprises a wastewater collecting pipe arranged on the sewers of washbasins, vegetable basins and tubs, and a waste pipe that is arranged coordinately with the wastewater collecting pipe and is communicated with the sewer. A over-turn switch is arranged on the coordinate ends of said waste pipe and wastewater collecting pipe. Said wastewater processing device comprises a filtering device arranged on said wastewater collecting pipe, a flow rate inductor and a disinfector. A disinfection solution container is arranged on the upper part of said disinfector. The disinfection solution flows into said disinfector through the electromagnetism valve. Said wastewater reusing device comprises a water storage tank and a second-water pipe arranged on the side of said water storage tank. Said second-water exit is communicated with the toilet water tank through a pump. The product can be widely used in houses, factories, trains, ships and bathing centers.
Research gap:
The Proposed system uses conventional purification methods to purify the collected waste water from different sources in a house hold and checks the quality of purified water with the help of different sensors so that effective and timely utilization of purified water can be done. The key difference between these two systems is the notification mechanism through sensing devices installed in the later system. A User interface is designed for receiving the alarm and notification about the overflow of water as well as quality check of the water.
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 smart in-house waste water management system through IoT technologies
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.

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:
Figure 1: Block Diagram of Proposed Model.
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.
It should also be noted that in some alternative implementations, the functions/acts noted may occur out of the order noted in the figures. For example, two figures shown in succession may, in fact, be executed concurrently or may sometimes be executed in the reverse order, depending upon the functionality/acts involved.
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.
These and other advantages of the present subject matter would be described in greater detail with reference to the following figures. 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.
Wastewater management is the process of recycling the wastewater and reusing them for various purposes. This proposed system is focused on wastewater management in a household. In this system, wastewater is collected from various common sources of the household such as Pedestal sink, kitchen sink, dishwasher, shower, refrigerator wastewater, washing machine, water purifier (RO based), bathtub etc into a common storage tank. After collecting the wastewater from various common sources, a multilayer purification technique is applied in order to remove the wastes from the waste water. Along with purification of wastewater, a simple heating procedure is also applied for better treatment. The final output of this proposed method is the purified water that can be used for various common applications of household-like- Floor cleaning, water for toilet cleaning purposes, gardening etc. Overall Process is divided into FOUR levels as described below.
Best Method of working:
Level 1: Collection of wastewaters from various common sources [100]- In this level, wastewater is collected from various common sources of the household for example- Pedestal sink, kitchen sink, dishwasher, shower, refrigerator wastewater, Washing machine, water purifier (RO based), bathtub etc. and stored in fileration chamber.
Level 2: Storage of wastewater [101]- All the waste water is collected at single place in this level. AllwWaste water collected is purified through various purification methods. A flow sensor is installed in this chamber to notify the user about the water level.
Level 3: Simple purification and heating process of wastewater [101] – At this level, after applying all purification method in layered fashion, a heating process is also applied to heat the purified wastewater for further uses. After heating, water is transferred to next storage for distribution.
Level 4: Distribution of purified water for various common applications of household [103]- This is the final stage of proposed method where distribution of purified water is done for various common applications of household like- Floor cleaning, Storage of purified wastewater for toilet cleaning purposes etc., A Water quality sensor is installed in this storage chamber to check the water quality. Once the quality is reached at threshold value, sensor sends a signal to the connected modem. Information sent by the sensor is reached at the application [105] indicating the quality improvement of the stored water. Once information received, water can be utilized for different applications.
ADVANTAGES OF THE INVENTION:
Following are the advantages of proposed method.
1) It will help the society to effectively use household wastewater inorder to conserve the limited ground water.
2) Using the proposed method, wastewater can be reused for various common households purposes like Floor Cleaning, Toilet cleaning etc.
3) Consumption of drinkable water can be reduced with the help of proposed system as waste water is utilized for processes other than drinking or food making.
NOVEL FEATURES OF THE INVENTION
1. The proposed system collects the waste water from heterogenous sources in a household.
2. This system purifies the waste water with the help of conventional water purification methods.
3. This system notifies the over flow of waste water to the user through sensor.
4. This system checks the water quality and notify the user, if water quality improves above the threshold value.


WE CLAIM:

1. A method of smart in-house waste water management system through IoT technologies comprises Collection of wastewaters from various common sources [100]; Storage of wastewater [101]; Simple purification and heating process of wastewater [102]; Distribution of purified water for various common applications of household [103]; and an Application [105].
2. The method as claimed in claim 1, wherein wastewater is collected from various common sources of the household like Pedestal sink, kitchen sink, dishwasher, shower, refrigerator wastewater, washing machine, water purifier (RO based), bathtub etc. and stored in filtration chamber.
3. The method as claimed in claim 1, wherein all the waste water is collected at single place in this level; and all Waste water collected is purified through various purification methods; and a flow sensor is installed in this chamber to notify the user about the water level.
4. The method as claimed in claim 1, wherein after applying all purification method in layered fashion, a heating process is also applied to heat the purified wastewater for further uses; and after heating, water is transferred to next storage for distribution.
5. The method as claimed in claim 1, wherein a Water quality sensor is installed in this storage chamber to check the water quality.
6. The method as claimed in claim 1, wherein Once the quality is reached at threshold value, sensor sends a signal to the connected modem. Information sent by the sensor is reached at the application [105] indicating the quality improvement of the stored water; and Once information received, water is utilized for different applications.

Documents

Application Documents

# Name Date
1 202211013289-STATEMENT OF UNDERTAKING (FORM 3) [11-03-2022(online)].pdf 2022-03-11
2 202211013289-PROVISIONAL SPECIFICATION [11-03-2022(online)].pdf 2022-03-11
3 202211013289-POWER OF AUTHORITY [11-03-2022(online)].pdf 2022-03-11
4 202211013289-FORM FOR SMALL ENTITY(FORM-28) [11-03-2022(online)].pdf 2022-03-11
5 202211013289-FORM 1 [11-03-2022(online)].pdf 2022-03-11
6 202211013289-EVIDENCE FOR REGISTRATION UNDER SSI(FORM-28) [11-03-2022(online)].pdf 2022-03-11
7 202211013289-EVIDENCE FOR REGISTRATION UNDER SSI [11-03-2022(online)].pdf 2022-03-11
8 202211013289-EDUCATIONAL INSTITUTION(S) [11-03-2022(online)].pdf 2022-03-11
9 202211013289-DRAWINGS [11-03-2022(online)].pdf 2022-03-11
10 202211013289-DECLARATION OF INVENTORSHIP (FORM 5) [11-03-2022(online)].pdf 2022-03-11
11 202211013289-FORM-9 [07-06-2022(online)].pdf 2022-06-07
12 202211013289-DRAWING [07-06-2022(online)].pdf 2022-06-07
13 202211013289-COMPLETE SPECIFICATION [07-06-2022(online)].pdf 2022-06-07
14 202211013289-Proof of Right [18-07-2022(online)].pdf 2022-07-18
15 202211013289-FORM 18 [29-04-2023(online)].pdf 2023-04-29
16 202211013289-FER.pdf 2024-12-30

Search Strategy

1 wasteWaterE_31-10-2024.pdf