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LPWAN-ENABLED REMOTE CONTROL PANEL FOR PLASTIC LUMP SHREDDER IN THE PLASTIC INDUSTRY

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LPWAN-ENABLED REMOTE CONTROL PANEL FOR PLASTIC LUMP SHREDDER IN THE PLASTIC INDUSTRY

ORDINARY APPLICATION

Published

date

Filed on 12 November 2024

Abstract

LPWAN-enabled remote control panel for plastic lump shredder in the plastic industry comprises LPRC_PLSCNode10, Lora Module12, ATmega 128 SMD Board14, Power Supply, Single Channel Relay Module11, LPRC_PLSRNode21, TFT Display23, Lora Module24, NuttyFi WiFi Module25, ATmega128 SMD Board26, Power Supply, Customized Keypad22. Authorized personnel can remotely control and monitor Plastic Lump Shredders in the Plastic Industry with enhanced user convenience thanks to the LPRC_PLSRNode, which is equipped with an ATmega128 SMD Board, Lora Module, NuttyFi Wifi Module, TFT Display, Customized Keypad, and Power Supply. It also provides a sophisticated user interface and connectivity options, including internet access and a customized web dashboard.

Patent Information

Application ID202411087327
Invention FieldCOMMUNICATION
Date of Application12/11/2024
Publication Number48/2024

Inventors

NameAddressCountryNationality
DR. (AR.) ATUL KUMAR SINGLALOVELY PROFESSIONAL UNIVERSITY, JALANDHAR-DELHI G.T. ROAD, PHAGWARA, PUNJAB-144 411, INDIA.IndiaIndia
DR. SAWINDER KAUR VERMANILOVELY PROFESSIONAL UNIVERSITY, JALANDHAR-DELHI G.T. ROAD, PHAGWARA, PUNJAB-144 411, INDIA.IndiaIndia
DR. REKHALOVELY PROFESSIONAL UNIVERSITY, JALANDHAR-DELHI G.T. ROAD, PHAGWARA, PUNJAB-144 411, INDIA.IndiaIndia
DR. SORABH LAKHANPALLOVELY PROFESSIONAL UNIVERSITY, JALANDHAR-DELHI G.T. ROAD, PHAGWARA, PUNJAB-144 411, INDIA.IndiaIndia
SAMI ANANDLOVELY PROFESSIONAL UNIVERSITY, JALANDHAR-DELHI G.T. ROAD, PHAGWARA, PUNJAB-144 411, INDIA.IndiaIndia
AMAN MITTALLOVELY PROFESSIONAL UNIVERSITY, JALANDHAR-DELHI G.T. ROAD, PHAGWARA, PUNJAB-144 411, INDIA.IndiaIndia

Applicants

NameAddressCountryNationality
LOVELY PROFESSIONAL UNIVERSITYJALANDHAR-DELHI G.T. ROAD, PHAGWARA, PUNJAB-144 411, INDIA.IndiaIndia

Specification

Description:FIELD OF THE INVENTION
this invention relates to LPWAN-enabled remote control panel for plastic lump shredder in the plastic industry
BACKGROUND OF THE INVENTION
The efficient management and control of plastic lump shredders is a substantial challenge to the plastics industry. Traditional control methods are not very flexible and often require physical closeness, which causes delays and operational inefficiencies. Shredders that must be manually started in order to be turned on or off present safety risks, and the lack of a remote monitoring system makes them less responsive to operational demands. Furthermore, there isn't a comprehensive solution available in the industry that combines cutting-edge communication technologies with ease to enable remote control and real-time monitoring of these crucial processing units.
KR20140137027A The present invention relates to a shredder for cutting waste having a rotary drum with a square-shaped blade and, more specifically, the shredder is used for crushing waste like nonflammable, big and tough garbage, comprising a hopper; a screw part connected to the lower end of the hopper; a rotary drum which is allowed to crush waste transferred by the screw part and is made of the connection of a plurality of divided units; and multiple rotary cutters that are separately installed on the outer circumference of the unit drum included in the rotary drum.
CN218892113U The utility model belongs to the technical field of shredders, in particular to a waste plastic shredder, which comprises a bottom box, wherein a treatment box is fixedly connected to the bottom box; the mincing spiral blade is arranged in the treatment box; when putting into the processing case with the material, accessible pedal spring plate drives the rotation of haulage rope on the fixed pulley and drives the opposite side and rotate the traction block of being connected on the top cap and rotate the top cap and put into the material, then rotatory closed top cap makes the material be in a sealed state, can not lead to the material to outwards splash at the disintegration, tear up the in-process to can make the material carry out a material crushing under a complete enclosure, then the conveyer belt of spiral blade below is minced to the rethread, can convey the crushed material into semi-closed receiver in, reduced the everywhere splash that smashes the material exports again, thereby can not cause the injury to operating personnel.
RESEARCH GAP: A Solution with LPWAN and Cloud Control Panel for Plastic Lump Shredder with in plastic shredder industry 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 ground-breaking development offers an incredibly effective and flexible way to supervise plastic lump shredders in the plastic industry from a distance. The solution lets operators and authorized people to effortlessly control the shredder's power condition through a user-friendly interface. The shredder's extended-range wireless connection capabilities allow for both local and distant management by users, providing an unmatched level of ease. By incorporating internet connectivity, accessibility is further enhanced and allows for real-time control and monitoring via a personalized web dashboard.
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.
The two primary parts of the carefully crafted system that power the LPWAN-Enabled Remote Control Panel for Plastic Lump Shredders in the Plastic Industry are the LPRC_PLSCNode and the LPRC_PLSRNode. This component serves as the main control unit for the Plastic Lump Shredder, starting with the LPRC_PLSCNode. It has an ATmega128 SMD Board, a dependable power source, a Single Channel Relay Module for controlling the shredder's power state, and a LoRa Module for long-range wireless communication. Through the use of the LoRa Module, operators can wirelessly give commands to switch the shredder on or off by facilitating connection with the remote-control system.
The LPRC_PLSRNode, on the other hand, has a more advanced connectivity and user interface. An ATmega128 SMD Board, a LoRa Module for PLSCNode connection, a NuttyFi WiFi Module for internet access, a TFT Display for visual feedback, a Customized Keypad for local control, and a power supply are all included in the LPRC_PLSRNode. The purpose of this node is to provide a user-friendly interface through which authorized workers can operate the Plastic Lump Shredder remotely.
The shredder's control system may be accessed via a personalized online interface with the help of the NuttyFi Wifi Module, which enables internet communication. Operators and authorized users communicate with the system via the web dashboard that is connected to the internet or the Customized Keypad on the LPRC_PLSRNode as part of the operational process. The LoRa Modules ensure dependable and long-range communication with the LPRC_PLSCNode by transmitting commands over the LPWAN network. The Plastic Lump Shredder's power state is regulated by the PLSCNode using the Single Channel Relay Module in response to orders.
BEST METHOD OF WORKING
1. The LPRC_PLSCNode, which is outfitted with an ATmega128 SMD Board, a Lora Module, a Single Channel Relay Module, and a Power Supply, is utilized to enable smooth and effective operation in the plastic industry by integrating LoRa communication with remote on/off functionality for Plastic Lump Shredders.
2. Authorized personnel can remotely control and monitor Plastic Lump Shredders in the Plastic Industry with enhanced user convenience thanks to the LPRC_PLSRNode, which is equipped with an ATmega128 SMD Board, Lora Module, NuttyFi Wifi Module, TFT Display, Customized Keypad, and Power Supply. It also provides a sophisticated user interface and connectivity options, including internet access and a customized web dashboard.
3. The LPRC_PLSCNode and LPRC_PLSRNode both use the ATmega128 SMD Board, which is integrated into both of the motes, to provide computational power and control capabilities. This allows for a smooth integration and effective operation of the remote control system for plastic lump shredders in the plastic industry.
4. Both of the motes have an integrated LoRa Module that allows long-range wireless communication between the LPRC_PLSCNode and LPRC_PLSRNode. This reliable connectivity allows for remote control and monitoring of Plastic Lump Shredders in the Plastic Industry.
5. The LPRC_PLSCNode's integrated Single Channel Relay Module is utilized to regulate the power state of Plastic Lump Shredders, giving it the ability to precisely and effectively handle on/off operations in the Plastic Industry from a distance.
6. The LPRC_PLSRNode's NuttyFi Wifi Module is used to improve connectivity by giving it internet access, facilitating a smooth web dashboard integration, and extending the capacity for remote control and monitoring of plastic lump shredders in the plastic industry.
7. In order to improve user engagement and provide real-time feedback for remote control and monitoring of plastic lump shredders in the plastic industry, the LPRC_PLSRNode is interfaced with a TFT display.
8. Local control and input are made possible by the LPRC_PLSRNode's customized keypad, which provides operators with an easy-to-use interface for interacting with and managing plastic lump shredders in the plastic industry.
ADVANTAGES OF THE INVENTION
1. This ground-breaking invention's central control unit, the LPRC_PLSCNode, integrates LoRa communication to enable remote on/off capability for Plastic Lump Shredders. In order to meet the particular requirements of the plastics industry, this integration guarantees smooth and effective functioning.
2. The LPRC_PLSRNode is essential for offering a complex user interface and a range of connectivity choices. This provides greater user convenience in the plastic industry by enabling authorized workers to remotely manage and monitor Plastic Lump Shredders through internet access and a customized web interface.
3. The LPRC_PLSCNode and LPRC_PLSRNode can communicate wirelessly over great distances thanks in large part to the LoRa Module. This feature makes it easier to monitor and operate plastic lump shredders remotely in the plastics industry, providing dependable connectivity for efficient operations.
4. An essential part of managing the Plastic Lump Shredders' power state is the Single Channel Relay Module. With the help of this module, the LPRC_PLSCNode can precisely and effectively handle on/off operations remotely, meeting the unique operating needs of the plastics industry.
5. The NuttyFi Wifi Module improves connectivity by giving the LPRC_PLSRNode access to the internet. The ability to seamlessly integrate with a web dashboard is made possible by this function, which increases the capacity of plastic lump shredders in the plastic industry for remote control and monitoring.
6. Local control and input are facilitated by the LPRC_PLSRNode's Customized Keypad, which provides an easy-to-use interface. With the use of this capability, operators may easily and effectively interface with Plastic Lump Shredders in the Plastic Industry.
, Claims:1. A system of LPWAN-enabled remote control panel for plastic lump shredder in the plastic industry comprises LPRC_PLSCNode10, Lora Module12, ATmega 128 SMD Board14, Power Supply, Single Channel Relay Module11, LPRC_PLSRNode21, TFT Display23, Lora Module24, NuttyFi WiFi Module25, ATmega128 SMD Board26, Power Supply, and Customized Keypad22.
2. The system as claimed in claim 1, wherein Authorized personnel remotely control and monitor Plastic Lump Shredders in the Plastic Industry with enhanced user convenience thanks to the LPRC_PLSRNode, which is equipped with an ATmega128 SMD Board, Lora Module, NuttyFi Wifi Module, TFT Display, Customized Keypad, and Power Supply; and provides a sophisticated user interface and connectivity options, including internet access and a customized web dashboard.
3. The system as claimed in claim 1, wherein the LPRC_PLSCNode and LPRC_PLSRNode both use the ATmega128 SMD Board, which is integrated into both of the motes, to provide computational power and control capabilities; and allows for a smooth integration and effective operation of the remote-control system for plastic lump shredders in the plastic industry.
4. The system as claimed in claim 1, wherein both of the motes have an integrated LoRa Module that allows long-range wireless communication between the LPRC_PLSCNode and LPRC_PLSRNode; and reliable connectivity allows for remote control and monitoring of Plastic Lump Shredders in the Plastic Industry.
5. The system as claimed in claim 1, wherein the LPRC_PLSCNode's integrated Single Channel Relay Module is utilized to regulate the power state of Plastic Lump Shredders, giving it the ability to precisely and effectively handle on/off operations in the Plastic Industry from a distance.
6. The system as claimed in claim 1, wherein the LPRC_PLSRNode's NuttyFi Wifi Module is used to improve connectivity by giving it internet access, facilitating a smooth web dashboard integration, and extending the capacity for remote control and monitoring of plastic lump shredders in the plastic industry.
7. The system as claimed in claim 1, wherein to improve user engagement and provide real-time feedback for remote control and monitoring of plastic lump shredders in the plastic industry, the LPRC_PLSRNode is interfaced with a TFT display.
8. The system as claimed in claim 1, wherein Local control and input are made possible by the LPRC_PLSRNode's customized keypad, which provides operators with an easy-to-use interface for interacting with and managing plastic lump shredders in the plastic industry.

Documents

NameDate
202411087327-COMPLETE SPECIFICATION [12-11-2024(online)].pdf12/11/2024
202411087327-DECLARATION OF INVENTORSHIP (FORM 5) [12-11-2024(online)].pdf12/11/2024
202411087327-DRAWINGS [12-11-2024(online)].pdf12/11/2024
202411087327-EDUCATIONAL INSTITUTION(S) [12-11-2024(online)].pdf12/11/2024
202411087327-EVIDENCE FOR REGISTRATION UNDER SSI [12-11-2024(online)].pdf12/11/2024
202411087327-EVIDENCE FOR REGISTRATION UNDER SSI(FORM-28) [12-11-2024(online)].pdf12/11/2024
202411087327-FORM 1 [12-11-2024(online)].pdf12/11/2024
202411087327-FORM FOR SMALL ENTITY(FORM-28) [12-11-2024(online)].pdf12/11/2024
202411087327-FORM-9 [12-11-2024(online)].pdf12/11/2024
202411087327-POWER OF AUTHORITY [12-11-2024(online)].pdf12/11/2024
202411087327-REQUEST FOR EARLY PUBLICATION(FORM-9) [12-11-2024(online)].pdf12/11/2024

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