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WSN-BASED CONTROL INNOVATION FOR TANK-BASED ULTRASONIC CRATE WASHER IN THE CHEMICAL INDUSTRY WITH CLOUD INTEGRATION
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Abstract
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Specification
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ORDINARY APPLICATION
Published
Filed on 13 November 2024
Abstract
WSN-based control innovation for tank-based ultrasonic crate washer in the chemical industry with cloud integration comprises CITBT_CW32Node (10), which is outfitted with an STM32 Board (10C), an XBee RF Module with Patch (10D), an Actuator (10A), an Indicator (10E), and a Power Supply (10B), the Actuator and Indicator allow for manual control of the system, and the system's responsiveness and dependability are enhanced in chemical industry operations for advanced control capabilities, the CITBR_CW32Node, which is outfitted with an STM32 Board, an XBee RF Module with Patch, a Touch Screen Display, a GSM Modem, and a Power Supply, is utilized, it offers cloud connectivity and local operator interaction through the Touch Screen Display and GSM Modem, enabling remote management and monitoring of a tank-based ultrasonic crate washer in the chemical industry.
Patent Information
Application ID | 202411087870 |
Invention Field | ELECTRICAL |
Date of Application | 13/11/2024 |
Publication Number | 48/2024 |
Inventors
Name | Address | Country | Nationality |
---|---|---|---|
DR. (AR.) ATUL KUMAR SINGLA | LOVELY PROFESSIONAL UNIVERSITY, JALANDHAR-DELHI G.T. ROAD, PHAGWARA, PUNJAB-144 411, INDIA. | India | India |
DR. CHANDRA MOHAN | LOVELY PROFESSIONAL UNIVERSITY, JALANDHAR-DELHI G.T. ROAD, PHAGWARA, PUNJAB-144 411, INDIA. | India | India |
DR. REKHA | LOVELY PROFESSIONAL UNIVERSITY, JALANDHAR-DELHI G.T. ROAD, PHAGWARA, PUNJAB-144 411, INDIA. | India | India |
DR. SORABH LAKHANPAL | LOVELY PROFESSIONAL UNIVERSITY, JALANDHAR-DELHI G.T. ROAD, PHAGWARA, PUNJAB-144 411, INDIA. | India | India |
MANISH KUMAR | LOVELY PROFESSIONAL UNIVERSITY, JALANDHAR-DELHI G.T. ROAD, PHAGWARA, PUNJAB-144 411, INDIA. | India | India |
SOOSAN CHHABRA | LOVELY PROFESSIONAL UNIVERSITY, JALANDHAR-DELHI G.T. ROAD, PHAGWARA, PUNJAB-144 411, INDIA. | India | India |
Applicants
Name | Address | Country | Nationality |
---|---|---|---|
LOVELY PROFESSIONAL UNIVERSITY | JALANDHAR-DELHI G.T. ROAD, PHAGWARA, PUNJAB-144 411, INDIA. | India | India |
Specification
Description:FIELD OF THE INVENTION
This invention relates to wsn-based control innovation for tank-based ultrasonic crate washer in the chemical industry with cloud integration.
BACKGROUND OF THE INVENTION
An adaptable and efficient solution for operators and authorized people is provided by the creative control system designed for a tank-based ultrasonic crate washer in the chemical industry. For seamless control and operation monitoring of the washer, it makes use of cutting-edge Wireless Sensor Network (WSN) technology and cloud integration. With a user-friendly Touch Screen Display built into the local control node, on-site management is made easier while maintaining consistent operating performance. Moreover, a bespoke online interface on the cloud-connected node enables customers to remotely monitor and operate the washer from any location with internet connectivity.
The problem of requiring an advanced and flexible control system for tank-based ultrasonic crate washers in the chemical industry is addressed by this ground-breaking technology. Traditional control strategies could not offer the adaptability and remote accessibility needed in contemporary industrial settings. Effectively supervising and monitoring crate washing procedures can be difficult for operators, particularly when real-time data access and remote control are crucial.
CN103769402B: The present invention relates to a kind of ultrasonic box washer, it includes soaking box and spraying and cleaning apparatus, is provided with active chain and the drivewheel of rotation capable of circulation in soaking box; Actively it is provided with a plurality of soaking compartment frame for fixing case to be cleaned on chain; Cleanout fluid in soaking box is arranged with supersonic generator, and the outlet mouth of soaking box is connected with the inlet mouth of spraying and cleaning apparatus by transfer gantry; Spraying and cleaning apparatus includes spraying box and the Spray-cleaning Machine arranging in spraying box and the brush unit scrubbed for casing. The present invention is by soaking casing to be cleaned and after ultrasonic waves for cleaning, is more repeatedly rushed by spraying and cleaning apparatus, scrubbed, and substantially increases clean rate and the work efficiency of casing, and saves manpower and labor time, greatly reduces the concentration of energy consumption and alkali; And the dirt and the alkali liquor that will attach to surface wash out so that it is disposable cleaning meets state health standards, its cleaning speed is fast, effective, not part of damage.
RESEARCH GAP: A Wireless solution with WSN-Based Control Innovation for Tank-based Ultrasonic Crate Washer is the novelty of the system.
CN202010673U: The utility model discloses an ultrasonic box washer, which solves the problems of unsatisfactory washing effect, water resource waste and low operating efficiency in prior art and includes a trapezoidal slideway, a steam heating tube and an ultrasonic vibrator head which are provided in an ultrasonic water box; the water in the ultrasonic water box is reused after being filtered; a transmission device is provided on a box body wall; a transmission chain is disposed between a transmission sprocket wheel and another transmission sprocket wheel provided on a drive motor; a pressing wheel device provided on the box body wall of the ultrasonic water box presses a lower circulation chain of the transmission chain down to the water of the ultrasonic water box; and the scraper plates for pushing the washed water box to move forward are spaced at the same interval on the transmission chain in the circulation operation. The utility model having the good operating efficiency realizes washing, spraying and drying to the bean product box on a transmission line.
RESEARCH GAP: A Wireless solution with WSN-Based Control Innovation for Tank-based Ultrasonic Crate Washer is the novelty of the system.
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.
This invention improves the flexibility and efficiency of operating a tank-based ultrasonic crate washer in the chemical industry by combining local and remote control capabilities, utilizing cloud integration and WSN technology. This idea uses Wireless Sensor Network (WSN) technology and cloud connectivity to function as an advanced control system. Let us dissect the constituents of this breakthrough into multiple important components. The system is made up of two main nodes, CITBT_CW32Node and CITBR_CW32Node, which are equipped with STM32 Boards and XBee RF Modules and serve as hubs for wireless communication between the system's numerous components. The CITBR_CW32Node, intended for advanced control, includes a touch screen display, a GSM modem, and extra power supply components. The CITBT_CW32Node, which is outfitted with an actuator, indicator, and power supply, manages basic control functions.
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: SYSTEM ARCHITECTURE
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.
This invention improves the flexibility and efficiency of operating a tank-based ultrasonic crate washer in the chemical industry by combining local and remote control capabilities, utilizing cloud integration and WSN technology. This idea uses Wireless Sensor Network (WSN) technology and cloud connectivity to function as an advanced control system. Let us dissect the constituents of this breakthrough into multiple important components. The system is made up of two main nodes, CITBT_CW32Node and CITBR_CW32Node, which are equipped with STM32 Boards and XBee RF Modules and serve as hubs for wireless communication between the system's numerous components. The CITBR_CW32Node, intended for advanced control, includes a touch screen display, a GSM modem, and extra power supply components. The CITBT_CW32Node, which is outfitted with an actuator, indicator, and power supply, manages basic control functions.
The Ultrasonic Crate Washer's fundamental control operations are handled by the CITBT_CW32Node, which also uses an actuator to turn the washer on and off in response to wireless commands. In the event that there are problems with remote control or cloud connectivity, the washer may still be manually handled on-site thanks to the Indicator, which offers real-time feedback on its condition. The integration of a GSM modem and touch screen display in the CITBR_CW32Node enhances management. Operators can interact directly with the system using the Touch Screen Display, which acts as a local interface. Meanwhile, the GSM Modem facilitates connectivity with the cloud, allowing for remote control and monitoring features. For the purpose of controlling the Ultrasonic Crate Washer, this node provides an intuitive and feature-rich interface.
The Ultrasonic Crate Washer may be remotely controlled and monitored by authorized staff thanks to the integration of cloud technologies into both nodes. Users can access the system online and get real-time scheduling, monitoring, and troubleshooting from any location with an internet connection thanks to a web dashboard with a customized user interface. Operators and authorized workers can use the web dashboard to access the system remotely via the internet, or they can use the local Touch Screen Display to control the system on-site. The ability to communicate in two modes improves accessibility and flexibility by supporting a range of scenarios and user preferences.
BEST METHOD OF WOKING
A Tank-based Ultrasonic Crate Washer can be managed on-site via wireless communication with the help of the CITBT_CW32Node, which is outfitted with an STM32 Board, an XBee RF Module with Patch, an Actuator, an Indicator, and a Power Supply. The Actuator and Indicator allow for manual control of the system, and the system's responsiveness and dependability are enhanced in chemical industry operations.
For advanced control capabilities, the CITBR_CW32Node, which is outfitted with an STM32 Board, an XBee RF Module with Patch, a Touch Screen Display, a GSM Modem, and a Power Supply, is utilized. It offers cloud connectivity and local operator interaction through the Touch Screen Display and GSM Modem, enabling remote management and monitoring of a tank-based ultrasonic crate washer in the chemical industry.
The central processing unit of this innovation, the STM32 Board, which is integrated into both motes, helps both the CITBT_CW32Node and the CITBR_CW32Node function. This ensures effective control and communication within the Wireless Sensor Network for a Tank-based Ultrasonic Crate Washer in the Chemical Industry.
Moreover, both of the motes have an XBee RF Module with Patch, which is used for wireless communication. This innovation improves the control and monitoring capabilities of the Tank-based Ultrasonic Crate Washer in the Chemical Industry by enabling seamless connectivity and data exchange between nodes.
The Tank-based Ultrasonic Crate Washer's on and off states are directly controlled by the actuator built into the CITBT_CW32Node, improving the system's responsiveness and operational functionality in the chemical industry.
Providing a user-friendly local interface for operators to interact with the Tank-based Ultrasonic Crate Washer, the Touch Screen Display interfaced on the CITBR_CW32Node enhances ease of use in the chemical industrial context by delivering extensive control features.
The GSM modem built inside the CITBR_CW32Node allows for cloud connection, which improves accessibility and operational efficiency by enabling remote control and monitoring of a chemical industry tank-based ultrasonic crate washer.
ADVANTAGES OF THE INVENTION
1. This novel system uses wireless communication to provide on-site management of a Tank-based Ultrasonic Crate Washer. Its central control unit is the CITBT_CW32Node. Its manual control capabilities, which include an actuator and an indicator, increase the system's dependability and responsiveness in chemical industry operations.
2. The CITBR_CW32Node, which offers sophisticated control features with a Touch Screen Display and GSM Modem, is essential to this advancement. These capabilities enable remote management and monitoring of a tank-based ultrasonic crate washer in the chemical industry by facilitating local operator contact and cloud communication.
3. The XBee RF Module with Patch acts as the foundation for wireless communication, guaranteeing uninterrupted connectivity and data transfer amongst nodes. With this creative approach, the Tank-based Ultrasonic Crate Washer in the Chemical Industry has improved control and monitoring capabilities.
4. This system's actuator is used to directly control the Tank-based Ultrasonic Crate Washer's on and off states, improving the system's responsiveness and operational functionality in the chemical industry.
5. The Touch Screen Display is a crucial part of the CITBR_CW32Node, offering operators an easy-to-use local interface through which to communicate with the Ultrasonic Crate Washer situated in a tank. It provides sophisticated control features that make it easier to utilize in the context of the chemical industry.
6. This creative technique makes it easier to communicate with the cloud thanks to the GSM modem built inside the CITBR_CW32Node. This feature improves accessibility and operational efficiency by allowing remote control and monitoring of a chemical industry tank-based ultrasonic crate washer.
, Claims:1. A WSN-based control system for tank-based ultrasonic crate washer in the chemical industry with cloud integration comprises CITBT_CW32Node (10), which is outfitted with an STM32 Board (10C), an XBee RF Module with Patch (10D), an Actuator (10A), an Indicator (10E), and a Power Supply (10B), the Actuator and Indicator allow for manual control of the system, and the system's responsiveness and dependability are enhanced in chemical industry operations.
2. The system as claimed in claim 1, wherein for advanced control capabilities, the CITBR_CW32Node, which is outfitted with an STM32 Board, an XBee RF Module with Patch, a Touch Screen Display, a GSM Modem, and a Power Supply, is utilized, it offers cloud connectivity and local operator interaction through the Touch Screen Display and GSM Modem, enabling remote management and monitoring of a tank-based ultrasonic crate washer in the chemical industry.
3. The system as claimed in claim 1, wherein the central processing unit of this innovation, the STM32 Board, which is integrated into both motes, helps both the CITBT_CW32Node and the CITBR_CW32Node function, this ensures effective control and communication within the Wireless Sensor Network for a Tank-based Ultrasonic Crate Washer in the Chemical Industry.
4. The system as claimed in claim 1, wherein moreover, both of the motes have an XBee RF Module with Patch, which is used for wireless communication, this innovation improves the control and monitoring capabilities of the Tank-based Ultrasonic Crate Washer in the Chemical Industry by enabling seamless connectivity and data exchange between nodes.
5. The system as claimed in claim 1, wherein the Tank-based Ultrasonic Crate Washer's on and off states are directly controlled by the actuator built into the CITBT_CW32Node, improving the system's responsiveness and operational functionality in the chemical industry.
6. The system as claimed in claim 1, wherein providing a user-friendly local interface for operators to interact with the Tank-based Ultrasonic Crate Washer, the Touch Screen Display interfaced on the CITBR_CW32Node enhances ease of use in the chemical industrial context by delivering extensive control features.
7. The system as claimed in claim 1, wherein the GSM modem built inside the CITBR_CW32Node allows for cloud connection, which improves accessibility and operational efficiency by enabling remote control and monitoring of a chemical industry tank-based ultrasonic crate washer.
Documents
Name | Date |
---|---|
202411087870-COMPLETE SPECIFICATION [13-11-2024(online)].pdf | 13/11/2024 |
202411087870-DECLARATION OF INVENTORSHIP (FORM 5) [13-11-2024(online)].pdf | 13/11/2024 |
202411087870-DRAWINGS [13-11-2024(online)].pdf | 13/11/2024 |
202411087870-EDUCATIONAL INSTITUTION(S) [13-11-2024(online)].pdf | 13/11/2024 |
202411087870-EVIDENCE FOR REGISTRATION UNDER SSI [13-11-2024(online)].pdf | 13/11/2024 |
202411087870-EVIDENCE FOR REGISTRATION UNDER SSI(FORM-28) [13-11-2024(online)].pdf | 13/11/2024 |
202411087870-FORM 1 [13-11-2024(online)].pdf | 13/11/2024 |
202411087870-FORM FOR SMALL ENTITY(FORM-28) [13-11-2024(online)].pdf | 13/11/2024 |
202411087870-FORM-9 [13-11-2024(online)].pdf | 13/11/2024 |
202411087870-POWER OF AUTHORITY [13-11-2024(online)].pdf | 13/11/2024 |
202411087870-REQUEST FOR EARLY PUBLICATION(FORM-9) [13-11-2024(online)].pdf | 13/11/2024 |
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