SPECTROMETRIC VERIFICATION-BASED SMART WASTE COLLECTION, CLASSIFICATION, AND DIGITAL REWARD SYSTEM
Patent Information
- Application Number
- TR202612700
- Authority / Receiving Office
- TR · TR
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2026-07-28
- Publication Date
- 2026-08-21
Smart Images

Figure 00000033_0000
Abstract
Description
1 TARIFF SPECTROMETRIC VERIFICATION-BASED SMART WASTE COLLECTION, CLASSIFICATION, AND... DIGITAL REWARD SYSTEM TECHNICAL AREA 5 The invention relates to the process of collecting recyclable waste, preferably using a dual-channel spectrometer. RGB image, spectral fingerprint and marker / luminescence-based data obtained with the module Automatic classification of material type through simultaneous or sequential processing of products. spectrometric verification of its authenticity and depending on the result of this verification A smart waste collection system where a digital reward is automatically credited to the user's account, 10 It includes a classification and digital reward system. The invention is particularly relevant in the waste management and recycling sector, for existing passive containers or innovative solutions aimed at overcoming the technical limitations of high-cost deposit return vending machines. It offers a system. 15 PREVIOUS TECHNIQUE For user-based collection and reward of recyclable packaging. Existing systems can be technically categorized into two main categories: deposit return vending machines and Traditional passive waste containers. Deposit return vending machines, 20 by the user into the system. Barcode scanners are mostly used to identify bottles, boxes, or similar packaging left behind. It consists of shape recognition sensors, metal detectors, weight sensors, and multiple cameras. It utilizes a complex sensor architecture. In these systems, the recognition and verification process is fundamental. this involves reading the barcode information on the product or the external geometric shape of the product. It is based on comparison with a previously recorded template. However, these approaches are technical. 25 It has significant limitations. Barcode-based verification prevents the detection of copied or counterfeit products. While shape-based recognition allows tags to be accepted into the system, it also allows physical recognition. incorrect rejection or misclassification of deformed or wrinkled packaging This can be the reason. More importantly, none of these systems can prove the authenticity of a product. Invisible marker paints integrated into the packaging material for this purpose, luminescence safety 30 the capacity to verify advanced security elements such as markers or spectral labels It does not have this. This situation, especially in high-deposit or branded packaging, leads to counterfeit products. and leading to unfair reward acquisition through the introduction of manipulated packaging into the system This creates a serious technical security vulnerability. In addition to this security vulnerability, the current deposit... Refund vending machines are large-volume, high-energy consuming, mechanically complex, and 35 Therefore, they are special-purpose machines that require high initial investment costs. These machines are very... 2 Because they contain numerous moving parts and sensitive sensors, they frequently malfunction. It requires calibration and maintenance, which significantly increases operating costs. A more significant technical disadvantage is that these systems are not compatible with existing municipal passive waste systems. Their structures are too large and too far from modular to be integrated into containers. Therefore, the existing passive container infrastructure should be transformed into a smart and reward-based system. The existing containers will be completely dismantled and replaced with these expensive machines in order to be converted. It is necessary to establish a distributed recycling network that spans a wide geographical area. This makes its creation economically impossible. On the other hand, it is widespread in cities. The passive waste containers found do not include any verification mechanism; they only... Simple structures for waste accumulation, with user incentives and proper waste management. 10 It offers no technical solution to this problem. Consequently, in the current technical situation, a On the other hand, there's a high-cost, fraud-prone, and incompatible deposit refund system that doesn't fit the existing infrastructure. between automata on one side, and passive containers devoid of any intelligent functionality on the other. There is a gap. This gap can be filled by low-cost, modular solutions for existing passive containers. Detecting counterfeit products that can be integrated later via insertion using spectrometric methods 15 capable of and thus suitable for distributed, large-scale field deployment, reliable and digitally engaging the user. This technically necessitates a rewarding smart waste collection system. Here is the present invention: This technical problem can be solved using, preferably, a dual-channel spectrometer and an RGB camera. It solves this with a hybrid optical verification module; marker and luminescence-based product verification, By combining spectral fingerprint analysis and image processing into a single modular system, both 20 It also enables the conversion of existing passive containers into smart stations. Significantly superior fraud resistance and materials compared to barcode and shape-based systems. It ensures classification accuracy. In patent document number US2025217780A1, the first individual or multiple individuals back 25 The consumer recyclable elements discarded by the transformation participant, respectively, When full, electronically enhanced homogeneous single units are individually discarded at a collection point. transporting these homogeneous containers into reusable containers, these containers are larger, electronically controlled. The electronic development component is recycled, assembled in improved poly container elements. The collection unit provides location, type, and weight information to the recycling collection logistics, and the collection unit is homogeneous 30 After collecting the waste, they take it to a recycling facility and each electronic item is separated. improved homogeneous recycling container, usable and unusable recycling the materials are sorted and processed and the relevant individual recycling participant is connected via the network. a productive process where participants are informed about their participation efforts through the user interface and given an award. This refers to a process involving an electronic and network-enhanced recycling system. The current 35 The difference from the invention is that the waste object is spectrometrically verified directly at the container inlet. 3 Automatic classification of material type and product authenticity based on marker luminescence. It does not include any optical verification module for detection. Patent document KR102420328B1 describes a user identification unit attached to a waste container. a waste analysis unit that assigns a rating based on the quality of discarded food waste, and 5 designated categories. a recycling reward that includes a reward-providing unit that provides rewards to the user based on their ranking The discussion focuses on a food waste collection management system based on a food waste recycling model. Its difference from the existing invention is that... It focuses solely on food waste and analyzes the waste optically or spectrometrically. It performs a quality analysis instead of verification. Patent document CN113762541A describes a system for acquiring information about an award project. the terminal, a system configuration terminal that uploads this information to a surveillance platform, surveillance a recycler who received information about the award project from the platform and is in a recycling branch The conversion log terminal records the recycling object information, along with the reward information. Generate recycling record approval information and monitor based on the transformation object information. 15 uploaded to the platform, especially for the recycling control of agricultural pesticide packaging waste. A system is being discussed. Its difference from the existing invention is that it is specific only to pesticide packaging. and it does not involve any optical verification or spectrometric analysis. Patent document CN109035106A describes a smart waste recycling system from a personal client. When a user manual regarding the use of the box is received, it is discarded by the personal client. a smart contract that tracks waste information and a monitored personal client that is stored in a database. Assigning and monitoring a reward value to a personal client based on waste information generated by the client. after storing information on waste discarded by the individual client, associated with the reward value then a waste recycling management method that spreads to various nodes on the blockchain network and 25 The device in question is different from the existing invention in that it uses blockchain-based rewards. It offers a mechanism for the verification and classification of waste, but without any It does not involve optical or spectrometric analysis. Patent document KR102838136B1 describes a return carried out by a reward system. the method of rewarding through transformation, recycling for recyclable products Recording classification information, a marker affixed to the product using an electronic device. As product information that can be recycled through this knowledge becomes recognized, the user's purchasing behavior... acquiring information, user purchase acquired with recorded recycling classification information. Generating reward information using its knowledge, by an autonomous recycling sorting system 35 products identified by a reader system for separated recyclable products matching the generated reward information with the defined product information and assigning the corresponding reward. 4 It is stated that it includes the steps for supplying the electronic device. The difference from the existing invention is that... based on the principle of marker reading at the time of purchase and subsequent matching at the time of recycling. It is based on spectrometric verification or material classification at the time of recycling. It is the failure to do so. Patent document number KR20160130627A describes the identification information of the discharger that discharges the waste. a waste identification piece containing information about the discharger that recognizes the waste and the company that produced the waste. A recycling bin containing a waste information recognition device that recognizes its information, and this bin A system and method for providing rewards using this method is described. From the present invention... The difference is based on recognizing the information of the waste producer company, the type of material of the waste, or 10 It does not include spectrometric verification of its authenticity. Patent document CN113734647A describes a sub-recycling device and a reward collection terminal. and a recycling monitoring platform, a recycling of the lower recycling device. The system consists of a window, a recycling log panel, and a communication module, recycling 15 its window has several standard-sized recycling windows and one non-standard item recycling window. The conversion window contains the lower recycling device for recyclable pesticide packaging. an automatically counted recyclable object that automatically counts or weighs its waste. By performing automatic calculations based on the information, it eliminates the manual calculation step. According to the reward information of the reward receiving terminal, it removed a reward of 20 from the recycling monitoring platform. The application was submitted, and the recycling monitoring platform confirmed the award application. By approving the corresponding payment interface based on the verification result, you will receive your recycling reward. from an agricultural pesticide packaging waste recycling reward audit system that has completed its notification It is mentioned. The difference from the existing invention is that it is specific only to pesticide packaging, It does not include spectrometric validation or marker luminescence analysis. 25 Patent document number KR20230064066A describes an artificial intelligence-based recycling waste management system. from the sorting device and a recycling waste management system that includes it, the device's return It can measure whether recycling waste contains pollutants and the level of pollution. It can dispose of waste containing harmful substances or collect them separately, thus achieving a real recycling rate of 30%. It increases the conversion rate and rewards the user with points, encouraging voluntary feedback from the user. It is mentioned that it encourages the sorting and cleaning of recyclable waste. Current Unlike other inventions, this product focuses on measuring the pollution level of waste using artificial intelligence. a spectrometric verification module for verifying authenticity or material type It does not include. 35 In patent document number KR102750900B1, scanning or reading the unique identification code and a user terminal that pays the fee billed based on the weight of food waste, The door is opened by scanning or reading the identification code, and the discarded food waste... A food waste measuring device that loads by weighing, with an identification code on the user terminal. When scanned or read, the pre-paired and stored food waste measuring device's 5 a control unit that opens the door, the weight of food waste from the food waste measuring device a storage system that stores the weight of food waste when measured, matching it with the user terminal. a unit that bills the user terminal based on the weight of food waste The billing unit determines that the weight of food waste is higher than a pre-set reference weight. a reward unit that gives an environmental reward if it is low and 10 on the user terminal The payment process is completed when the fee is paid using a pre-registered payment method. a food waste recycling reward service for an apartment complex that includes a payment unit The system being discussed is a weight-based verification system. Its difference from the existing invention is that it is based solely on weight. It offers a reward mechanism, regardless of the type or originality of the waste, in any optical sense. or does not include verification by spectrometric methods. 15 Patent document GR1009731B describes the processing of recyclable materials in separate streams. equipment for collecting waste, preventing waste generation and reusing it, students and It emphasizes raising awareness and rewarding citizens, separating and recycling resources. transformation system, a special reward loyalty card, a waste prevention and product 20 a specialized tool that includes an information, training and awareness center along with an exchange platform The text refers to a mobile waste collection and awareness platform. The difference from a stationary invention is that it offers a recycling collection service on a mobile vehicle. a modular system that can be integrated into containers and perform spectrometric verification It does not include. 25 Patent document number CN212291435U describes a device comprising a top cover and a side wall. The device has a screen on its front surface, a card reader below the screen for reading cards, and a dry battery. An input, a lithium battery input and an output, internet technology, user reputation, virtual reward and Battery recycling is encouraged by associating point exchanges, and the collected waste batteries are centralized at 30... This refers to a waste battery recycling device where batteries are recycled. The existing Unlike other inventions, it is a device specific to batteries only, and it processes waste optically or spectrometrically. It does not include verification. Patent document number CN109299787A describes a label dispensing device, a label vending device, and a 35 A vendor label distribution device that includes a waste recycling device and a backend server. The label vending machine adds labels to products in bulk to be sold to consumers. 6 by purchasing labels through [the company], it affixes them to products that do not yet have labels, and recycles waste materials. The recycling device recycles the waste by verifying the label of the product waste, back end server's label dispensing device, label vending device and waste recycling device The method managed involves the consumer delivering their product waste, and the waste recycling device having a label. display, extract the cookie, present it to the backend server, backend 5 The server verifies the cookie, and if the verification is valid, the backend server... collecting the consumer's payment account information, applying the reward, and deleting the cookie, and a consumer product waste recycling device includes the steps for recycling waste. The text discusses a reward system and method for recycling. It refers to the current invention. The difference is that it offers tag-based verification, and if it is imitated or copied, it will incur a 10 penalty. The system is vulnerable to deception. Patent document number TW202533138A describes an electricity trading platform and a logistics operator. and rewards different user categories both up and down, like an end consumer, Identifying these different user categories using QR code recognition, and each user receiving 15 a cyclical reward and feedback score that redirects the category to its own dedicated webpage. to increase the recycling efficiency of packaging material waste through this mechanism a packaging material recycling, reward and feedback system It is mentioned that the difference from the existing invention lies more in the business model and reward distribution mechanism. focusing on the waste itself, using any optical or spectrometric method 20 It does not include verification. Patent document number CN215157868U describes a safe body, a lifting mechanism, a Lifting system that includes storage and measurement mechanism and automation control system. its mechanism consists of a motor, a lifting frame and a guide channel, storage and measurement 25 the mechanism consists of an electronic scale and a storage frame, automation The control system consists of a scanner head, a screen, a wifi module, a monitor, a keypad, and a It contains a control card, an electronic scale that calculates the weight of the waste, and a scanner head. The shooter's mobile phone payment code is scanned and the corresponding fee is paid to the shooter, thus The Internet of Things enables the centralized recycling of waste materials, and 30 from a waste material recycling service station where savings are made on the recycling route It is mentioned that the difference from the existing invention is that it is a weight and QR scan-based payment system. ...and does not provide any verification of the type or authenticity of the waste material. It does not involve optical or spectrometric analysis. 35 Patent document number KR20230167649A describes a user with unique identifier information. the terminal, which downloads and installs applications from a service server, communicates with a household waste collector. 7 By establishing a unique user terminal, which selects a reward method for a recyclable product, The user receives identification information and reward information for the collected recyclable product. The unique connection between the household waste collector and the user terminal, and the household waste collector that transmits the waste to the terminal. It stores cookies, stores and transmits the application to be installed on the user terminal, and A service that creates a reward for collected recyclable products and sends it to the user's terminal. 5 a raffle as well as a prize for general recyclable products, which includes a server. methods that can increase collection efficiency by increasing user participation in recycling, The discussion concerns a household waste collection system where a reward method can be selected. This invention... The difference lies in focusing on the fact that the reward method can be chosen by the user, and the waste... It does not include any technical solution for verification. 10 Patent document number CN104331984A describes a smart recognition module for waste batteries, a separate waste battery... a coin collection module, a coin value adjustment and coin output module, and a stepper motor. A battery recycling module containing a driver and power control module and a separate collection module for waste batteries. The box consists of a battery detection compartment and a corresponding movable carrier, battery 15 the sensing chamber has a chamber door, a chamber base cover, and an insulated width-measuring pusher. The plate comprises a length-measuring pusher plate, an end fixing plate, and a side fixing plate. chamber door, chamber base cover, insulated width-measuring push plate, length-measuring push plate and The moving carrier has its corresponding drive mechanisms, respectively, battery detection A corresponding battery channel and an outlet are located at either end or under either side of the reservoir, respectively. 20 The channel is located where the battery channel leads to the battery recycling bin, and the output channel leads to the battery recycling bin. The control system is movable, connected to a waste outlet located on the outer wall of the box. by controlling the carrier and moving the battery detection chamber to the battery channel or output channel, and that it establishes a connection, and the device can accurately identify whether the discarded object is a battery or not, and A fee of 25 is charged to encourage people to dispose of used batteries in order to prevent environmental pollution. from a smart waste battery recycling machine that pays by identifying and paying a fee. It is mentioned. The difference from the existing invention is that it is based solely on physical size for battery-type waste. It performs an identification process, using marker luminescence-based authenticity verification or spectral analysis. It does not include fingerprint analysis. Patent document number CN106530173A describes the collection and recycling of recyclable waste. Recyclable waste is mixed and filled into a specific size packaging bag. Thus, avoiding the weighing process, a unique serial number and information system are used. The application uses a QR code in the form of an app to identify the waste packaging bag and a By scanning the code with an identification device, a points reward and penalty system is used for residents of 35 years old. Free measurement and steps included in the effective management of classified waste disposal. a hybrid recyclable waste management system based on actual resident households 8 The method being discussed differs from the existing invention in that the waste is processed according to bag size without being weighed. It is based on the management of waste, without any regard for the type or authenticity of the waste. It does not include verification. Patent document number CN204117267U describes a smart recognition module for waste batteries, which separates waste batteries into 5... a coin collection module, a coin value adjustment and coin output module, and a stepper motor. A battery recycling module containing a driver and power control module and a separate collection module for waste batteries. The battery housing consists of a battery detection chamber and a corresponding movable carrier. the sensing chamber has a chamber door, a chamber base cover, and an insulated width-measuring pusher. The plate includes a length-measuring pusher plate, an end fixing plate, and a side fixing plate, 10 chamber door, chamber base cover, insulated width-measuring push plate, length-measuring push plate and The moving carrier has its corresponding drive mechanisms, respectively, battery detection at each end or under each side of the reservoir, there is a corresponding battery channel and an outlet, respectively. The channel is located where the battery channel leads to the battery recycling bin, and the output channel leads to the battery recycling bin. The control system's movable 15 is connected to a waste outlet located on the outer wall of the box. by controlling the carrier and moving the battery detection chamber to the battery channel or output channel, and that it establishes a connection, and the device can accurately identify whether the discarded object is a battery or not, and a certain fee is offered to encourage people to dispose of used batteries in order to prevent environmental pollution. from a smart waste battery recycling machine that pays by identifying and paying a fee. It is mentioned. Unlike the existing invention, it is specific to batteries and uses physical size-based recognition. 20 It has a modular structure that allows for the creation of new containers and offers the possibility of retrofitting existing passive containers. It is the absence of. In patent document number KR20230064680A, it is stated that it should be distinguished from other collection boxes. a storage unit with a unique identification unit for storing waste 25 A waste collection bin found there recognizes the identification unit and places the waste collection bin in the bin. A discharge terminal paired with a discharger analyzes the collected waste, determining the type of waste and the discharge method. quantity and disposal status (type of waste, color, level of contamination, whether lid and label are removed) a waste analysis device that generates waste classification information (including whether it was removed) and Receiving waste discharger information paired with waste collection bin from the discharge terminal and waste 30 By obtaining waste classification information from the analysis device, the waste discharger, discharge point, and waste are identified. Includes a central server that generates individual waste disposal information, which also contains classification information. The text describes a reward payment system based on individual recycling waste disposal. Unlike the existing invention, it visually affects the level of contamination of the waste and whether the label cap is removed or not. We are conducting a situation analysis, performing an authenticity verification based on marker luminescence or spectral 35 It does not include fingerprint analysis. 9 Patent document number US2019333028A1 describes the use of colored and clear glass, without any trademark or special designation. Regardless of the company, it is collected, sorted, and recycled separately from other packaging waste. where glass is recycled, reintroduced into the economy, and a waste glass collection and recycling facility is established. glass, which motivates users by providing advantages and specific rewards during the transformation process a 5 that eliminates the transfer and separation step to the collection and separation facility after collection. a new generation of awards that reduce total recycling costs by offering a working method The text describes a method for collecting and recycling glass. Its difference from the existing invention is simply... It focuses on glass waste and does not require any optical or spectrometric verification module. It does not contain. Patent document CN117670433A describes a big data integration platform and a Wireless integration platform for big data with user terminal, including user terminal. It establishes a communication link with technology, from the source of urban waste recyclable materials. a big data integration platform where sensitive information positioning and tracking are carried out, starting from... through which early warning and monitoring of the entire recycling process is provided and the public is given access to recycling. various incentives to encourage participation in the transformation, such as cash rewards, point exchange, and ranking upgrades. Digital management for urban remnant and waste recycling using incentive methods The platform in question is different from the existing invention in that it focuses more on data management and tracking. It focuses on the system and any optical methods for physical verification of the waste. or the absence of a spectrometric solution. 20 Patent document CN108615291A describes a waste battery mounted on the housing of an environmental protection device. The device body has a waste battery disposal port and a new battery outlet, connected to the waste battery disposal port. a pull-up and downward mechanism on the side wall of the device body containing a battery storage box The device housing contains a sliding plate with the model of the user-removed batteries and 25 A smart recognition module that calculates the number of new batteries to be given as a reward by recognizing the quantity, and a computer setup with a new battery outlet and a box where new batteries are stored, A system that combines the functions of classifying, identifying, and rewarding waste battery collection. A simple, easy-to-use, low-production, and multifunctional battery with a wide range of applications. The device being discussed is a recycling environmental protection device. Its difference from the existing invention is that only the batteries are 30. It performs physical dimension and model identification, and spectrometric or optical verification. It does not contain. In patent document number KR20190008581A, it is stated that when a user inserts a waste battery, the input... By providing rewards corresponding to the result, it increases the rate of waste battery collection, with 35 waste batteries being collected. Automatically separates batteries according to their types and organizes each separated battery into its corresponding independent collection. It collects them in a box, and also checks the remaining charge level of the batteries, separating those with remaining charge. from a waste battery collection and reward device that enables them to be collected in some way It is mentioned. The difference from the current invention is that it only involves physical separation and charge level specific to the batteries. It performs the control and has no optical or spectrometric verification module. It is the absence of. Patent document CN113379078A describes an information system for circular packaging materials. from a method and information system for its use and recycling, The circular packaging materials have a number on them and the method is ordered. a method and information system that includes the steps of creation, receipt, installation, distribution and dismantling. Compared to manual processing, it increases the efficiency of using circular packaging materials and 10 by submitting product packaging images to the system and giving rewards for the use of circular packaging. It increases user and system user satisfaction, thus circular packaging. by promoting the application and introduction of these materials, reducing resource waste from single-use packaging. A method that reduces costs is being discussed. Its difference from the existing invention is that it focuses more on logistics processes. It focuses on the management of waste, including the physical verification or classification of waste. It does not contain any optical or spectrometric solutions. Patent document number CN113023168A describes a camera module, an intelligent recognition module, and a The camera includes a display module, a light source module, and an input module for a smart compartment. The module consists of a camera and a camera support, and the camera is located inside the trash can 20 It is fixed to a camera support, and the smart recognition module is located inside the trash can. The smart hopper entry module consists of a servo motor, a pulley, a nylon rope, an entry gate, and a The entrance includes a recognition desk and an entry lock to a chamber, located below the entrance door. received, the recognition workbench is located under the entrance, the recognition of the waste bottle collection module Located under the counter, the access lock to the bin is mounted inside the waste bottle collection module. 25 The smart recognition module consists of a servo motor, hopper entry lock, display module, and light source. It is connected to a module that can intelligently recognize the type of waste bottles and return the corresponding points. The discussion focuses on a smart waste recycling and points system. Its difference from the existing invention is... It performs image-based recognition, using spectrometric verification or marker luminescence. It does not include analysis. 30 Patent document number CN121459467A describes a container body, a main control device, and a user. The interface includes a paper processing device, a product output channel, and a digital scale reset device. The user confirms starting cardboard recycling by operating the user interface. By feeding a flattened cardboard into the paper processing machine, the flattened cardboard is processed into paper. 35 the device processes it as a paper recycling object, then the digital scale is reset. The device weighs the paper recycling object in question and assigns a weight value to the main control. 11 It transmits the data to the device, and the main control device converts the weight value into a current bonus point. The user can exchange their current bonus points for a reward or add it to their personal accumulated bonus points. that it can include, thus automating and rewarding waste paper recycling provided, recycling efficiency and user engagement are increased, bonus exchange a functional cardboard recycling equipment and a product storage and retrieval system containing it 5 The system in question is different from the existing invention in that it is specifically designed for paper and cardboard waste. and uses weight-based rewarding, without any optical or spectrometric validation. It does not contain. Patent document GB2431568A describes a system consisting of several containers that store separated waste, 10 a registered card that may contain a compression device that activates when a predetermined volume is reached or by recognizing multiple users identified via keypad input and awarding the user a monetary reward. scanners and weighing machines to determine the type and weight of the material, enabling the provision of incentives. The description refers to a recycling bin that can be equipped with sensors. Its difference from the existing invention is... It performs weight and scanner-based recognition, and marker luminescence-based spectrometric 15 It does not include verification or spectral fingerprint analysis. Patent document CN111229776A describes a kitchen waste recycling and processing module. user terminal, a user management module, a user information recognition module, a score A management module, an information processing module, and an Internet of Things platform, for processing 20 by logically integrating the necessary independent equipment into a cohesive system. where the entire processing process can be carried out continuously and in a closed manner, thus minimizing space occupancy. reduced, investment costs lowered, ease of operation provided, in the production process This eliminates potential odors and environmental pollution, and reduces material and energy waste. It also increased user motivation by providing a points reward system, 25 It effectively encourages users to separate kitchen waste from other household waste. a community points system for kitchen waste that increases sorting efficiency and improves the environment The text discusses the recycling and processing integration system and method. The current system... The difference from previous inventions is that it focuses solely on kitchen waste, and does not analyze the waste optically or spectrometrically. It does not include verification. 30 Patent document number PH22021050226U1 describes the recycling of solid plastic bottles. This machine separates non-recyclable waste using radio frequency identification technology. and appropriate measures to reduce solid waste pollution through the implementation of a points reward system. It aims to promote waste disposal, with a platform of 35 depending on the type of waste. A reverse vending machine that uses a motorized inclined platform where the stepper motor rotates at a specific angle. The invention in question is a bottle case. Its difference from the existing invention is that it is specifically designed for plastic bottles. 12 It performs identification based on radio frequency identification, spectrometric verification, or markers. It does not include luminescence analysis. Patent document number CN105253493A describes two boxes arranged side-by-side inside a main box body. It has multiple independent box compartments, each containing a waste paper recycling bin in 5 sections. a bin, a beverage can recycling bin, a plastic bottle recycling bin, and a waste bin A programmable logic controller is located on the main enclosure body, which also houses the battery recycling bin. and a card reader in each bin, in each recycling bin in each bin compartment. sensing sensors located at the corresponding positions and the card reader an integrated point reward system where sensing sensors are connected to a programmable logic controller 10 a resource with structured, functional, practical, low-cost, and intelligent management features The classification refers to a smart recycling station. Its difference from the existing invention is... It uses sensor-based occupancy monitoring and card reading for user identification, and handles waste management. optical or spectrometric verification or automatic identification of the material type. It does not include classification. 15 Patent document number CN111301903A describes classified packaged recyclable materials. an integrated machine for processing materials, and a cloud server for data calculation and storage. and an integrated machine that includes an operations endpoint for processing user data information management. The operation solved the problem of recycling recyclable materials in household waste. The end involves dismantling packaged and classified discarded recyclable materials, After identification and scanning, the final weight and final score are given to the user. It informs the user about the materials it has sent and those that have been filtered out from other categories. the user's reward points as well as the correct recycling types and processing methods It can learn, so that classified recyclable materials are ultimately kept free from pollution. a renewable resource smart recycling aimed at being recycled in a purified manner The discussion concerns a conversion machine. Its difference from the existing invention is that the waste is subsequently disassembled. and is based on scanning and does not include real-time spectrometric verification. Patent document number CN104392544A describes the collection of product waste information for a supermarket, 30 Installing a barcode laser scanner to read the barcode information of the waste, the barcode, the recycling of the waste information including whether the waste is recyclable and its recycling value Reading, classifying and processing discarded product waste based on barcode information, and Additionally, a reader-writer that awards points to waste disposalers who scan barcodes will be installed. Waste sorting and recycling 35, which includes steps and accumulates points suitable for markets. The method is being discussed. Its difference from the existing invention is that it performs barcode-based verification. It is vulnerable to copied or counterfeit barcodes. 13 Patent document number US2014025589A1 describes shaking and compressing waste and the waste's... To calculate the quantity, a waste compaction device, the device has a housing, a storage area. a cart, a compaction unit for compressing waste in a storage cart, storage a vibration unit to shake the car, some sensors, a storage level sensor, a 5 It includes an interface unit and a control unit, where the control unit controls compression and vibration. The interface unit determines the optimal time for shaking and compaction based on the waste level, and To participate in a points reward plan based on waste volume, or to receive a cash discount or gift. The description refers to a device that instructs a ticketing unit to distribute coupons. Unlike the existing invention, it focuses not on the verification of waste, but on its compression and quantity, which is 10. It focuses on calculation, without any optical or spectrometric verification. It does not contain. Patent document CN104386388A describes an identification technology and a waste classification system. a 15 that records each user's waste recycling information through recognition technology A user creates a waste disposal file and is scored by the control center. a special structure that enables users to receive corresponding rewards in a public service system Thanks to its design, the structures of a temporary storage bin and a recycling bin are interconnected. It has been made suitable that the use of temporary storage bins temporarily removes household waste at the source. It makes it easier to classify and store the items in the recycling bin, and 20 a smart waste sorting recycling system that prevents confusion at the source and a recycling method is mentioned. The difference from the existing invention is the user identity. In addition to verification and waste classification, the waste is also analyzed optically or spectrometrically. It does not include verification. Patent document number CN216573420U describes a box body, a waste mask processing device, and a The waste mask processing device, which includes a reward device, has a heating and grinding unit and a packaging unit. It consists of a collection unit, a heating and grinding unit, a processing cavity, a discharge nozzle, and a It contains a drop-down port and a heating tube, the processing cavity is located inside the box body, and the discharge The mouth is used for disposing of masks into the processing cavity; 30 masks are disposed of inside the disposition mouth. a sensor that detects the number and an infrared scanner that scans and records the number of discarded masks. It is located, there is a grinding component inside the drop mouth, so on the masks the illegal secondary use of waste masks in which bacteria and microorganisms are killed It was prevented, a reward mechanism based on the recycling of waste masks was added, and the reward The text refers to a waste mask processing box where the items are wrapped in plastic balls. 35 Unlike the existing invention, it is specific to masks only and does not involve any optical or spectrometric features. It does not include verification. 14 Patent document EP2689922A1 describes shaking and compressing waste and reducing the quantity of waste. To calculate, a waste compaction device, the device has a housing, a storage cart, a compaction unit for compressing waste in a storage cart, storage cart a vibration unit for shaking, a quantity sensor, a storage level sensor, an interface 5 It includes a control unit and an interface, where the control unit controls compression and vibration. The unit determines the optimal time for shaking and compaction based on the waste level, and the waste To participate in a points rewards plan or receive a cash discount or gift, depending on the amount. The description refers to a device that instructs a ticketing unit to distribute coupons. Unlike the existing invention, it focuses not on the verification of waste, but on its compression and quantity, which is 10. It focuses on calculation, without any optical or spectrometric verification. It does not contain. Patent document number CN201294014Y describes a hollow box with a battery slide inside the box, a lever, a stationary carrier, a thin slicing blade, a coin storage cylinder, and a 15 a box with a coin slide, a waste battery compartment and a coin outlet on the box, The waste battery inlet connects to the battery slide, which slopes upwards towards the top of the box. where it is positioned, a lever is located under the end of the battery slide, and the lever is a fixed carrier. hinged onto it, the lever is equipped with a return spring, and a thin slicing 20 a sloping coin slide positioned just below the thin slicing blade where the coin slide exit is connected to the coin outlet of the box, the prize a waste battery recycling mechanism that encourages people to recycle waste batteries The device in question is a reward system. Unlike the existing invention, it is entirely mechanical. It offers a reward mechanism and any optical, spectrometric or digital 25 It does not include verification. Patent document GR1010115B refers to citizens' actions of separating waste at the source. Providing mutual incentives and advanced management of system data using cutting-edge technologies. from a solid waste management system that increases separate collection and recycling rates through, 30 the system's core, all data entered into the system or stored from previous uses, and These are online platforms that store, manage, and modify information; these platforms have a distinguishing characteristic. a pickup truck platform, a loyalty rewards platform, a pickup truck fleet control The platform includes a machine learning platform and a data services platform, as mentioned above. platforms identify users via their mobile phones and vendors' information 35 It refers to a system that receives information from the rest of the system. Its difference from the current invention is that it is more... It focuses heavily on data management and fleet tracking, and spectrometric analysis of individual waste. It does not include any solution for verification. Patent document CN215045761U describes a machine similar to an ATM, with a single chip. a computer, a battery, a servo motor and a pressure sensor are located in a 5 at the lower end of the device housing. a gear chamber and a primary groove are opened inside the support arm where the support arm is fixed, gear its chamber is located above the first groove, with a handle on one side of the support arm where one end of the handle is inserted into the gear chamber and connected to an active gear wheel, active where the gear wheel is toothed onto a passive gear wheel, and the passive gear wheel is a primary screw. fixed to a rod, the activity of people is stimulated through a reward, thus 10 lithium batteries where recycling is complete, waste lithium batteries are collected at the bottom, and repeated weighing is performed. a lithium waste battery recycling that simplifies and makes it easy to move the device body The device in question is a conversion device. Unlike the existing invention, it is specific to lithium batteries only. It does not involve any optical or spectrometric verification. Patent document number CN107358726A describes a system containing a waste recycling cabinet and a server. The waste recycling cabinet consists of a cabinet body, a touchscreen, a main computer, a It includes a weighing device, a communication device and multiple box compartments, and a touchscreen. It is used to retrieve user processes, a waste of data relative to the host's user processes. It creates a waste disposal request and opens the bin compartment according to the waste disposal request, the weighing device is 20 The system obtains weighing data by weighing the recyclable waste deposited by the user, main The computer generates order information based on the weighing data, and the communication device receives the order information. the value information of the waste to be recycled according to the order information uploaded to the server. It refers to a waste recycling processing system that he calculated. Its difference from the existing invention is that... It performs a weight-based value calculation, and the wastes are analyzed optically or spectrometrically. It does not include verification or classification according to material type. Investigations revealed that the collection of recyclable waste and the users... Existing systems for rewarding individuals use traditional methods such as barcodes, shapes, weights, or images. It is based on recognition methods, these methods involve copied labels, deformed 30 It is insufficient against packaging and counterfeit products, especially in terms of markers, luminescence or completely lacking the capacity to verify the authenticity of packaging containing spectral security markings. It appears to be lacking. Existing deposit return machines have multiple cameras, barcode scanners, It contains complex and expensive components such as metal detectors and weight sensors, requiring high maintenance. and necessitates calibration, and also due to their large volume and non-modular structure 35 integrated into existing passive municipal waste containers commonly found in cities This is not possible. On the other hand, existing passive containers do not have any verification mechanism. 16 It does not include user incentives and proper classification of waste at the source. It offers no technical solution to this problem. Furthermore, a large portion of the existing systems... only one type of waste (glass, batteries, plastic bottles, food waste, masks, cardboard, etc.) It focuses on integrating different types of materials such as glass, plastic, metal, and composites within the same system. There is no universal solution that can classify and verify it within itself. The present invention does not cover all 5 By addressing these technical shortcomings, a container body with at least one waste acceptance opening an integrated, preferably dual-channel spectrometer module and an RGB display module It offers a hybrid optical verification system that includes both. This system verifies the waste object. Reflection, absorption, luminescence, and marker-based data in the visible, ultraviolet, and infrared regions. spectral fingerprint data, along with simultaneously acquired RGB image data, 10 By processing it, it verifies the product's authenticity with high reliability and automatically determines the material type. It is classified as such. Thus, it is common in traditional barcode or shape-based systems. The risk of fraud caused by counterfeit and fake products is significantly reduced. In addition sequence, present invention, optical verification module, user recognition module, microprocessor control unit, data communication module and digital reward infrastructure, existing passive or 15 Mechanical, optical, electronic and software integration of semi-passive municipal waste containers. Thanks to its modular retrofit architecture that allows for subsequent equipping, high Distributed, low-cost, and networked solutions for large areas without the need for expensive specialized machinery. It enables the establishment of a connected smart recycling infrastructure. Furthermore, it has been verified. 20 for the transportation, sorting according to material type, grinding and storage of waste. End-to-end automation of the waste recycling process through integrated mechanical processing infrastructure. This is being implemented, and the user receives municipal points, a deposit refund, or digital wallet balance. Various digital incentives, such as carbon credits, can be automatically identified. This allows, Unlike narrow systems in current technology that focus on only one type of waste, such as glass, plastic, and PET, A wide variety of recyclable materials such as HDPE, metal, and composite packaging can be used in the same system. 25 within which spectrometric verification, classification and rewarding are possible It is coming. Ultimately, the problems mentioned above, which cannot be solved with the current technology, are related to the technical aspects. This has made it necessary to make an innovation in the field. 30 A BRIEF DESCRIPTION OF THE INVENTION The present invention has been developed to eliminate the technical shortcomings mentioned above. Spectrometric verification-based smart waste collection, classification, and digital reward system. It is related to. 35 17 The main purpose of the invention is to replace traditional barcodes in the process of collecting recyclable waste. The inadequacy of shape and weight-based verification methods against counterfeit and fake products. The aim is to offer a fundamental technical solution to this problem. This would preferably involve a dual-channel spectrometer. RGB image data of marker, luminescence and spectral fingerprint data obtained with the module. By processing it in a hybrid manner, the reliability of product authenticity verification is increased. 5 Verification and acceptance of copied barcodes or manipulated packaging into the system. By preventing this, the risk of fraud is significantly reduced. Another aim of the invention is to reduce the low capacity of existing passive or semi-passive municipal waste containers. Converting them into smart recycling stations with costly optical and spectrometric modules 10 The aim is to offer a modular retrofit architecture that allows for costly and large-scale retrofitting. The existing container body can be completely repurposed without the need for bulky deposit return machines. Without altering it, this can be integrated onto the waste receiving opening or the outer surface of the container. Thanks to its modular structure, it is a distributed, low-cost, and networked smart backup system for large areas. It becomes possible to establish the transformation infrastructure. 15 Another purpose of the invention is to recycle glass, plastic, PET, HDPE, metal, composite packaging and other recyclable materials. according to the optical and spectral properties of different material types, such as convertible materials The goal is to develop a universal material recognition system that enables automatic classification. This allows for the recycling of a wide variety of waste, unlike existing systems that focus on only one type of waste. Spectrometric verification of recyclable packaging within the same system, by separating the material according to its type and directing it to the appropriate processing processes Recycling efficiency is significantly increased. Another purpose of the invention is to enable QR code, NFC, wireless communication between the user and the container. or through a connection established via similar digital communication methods, spectrometric ensuring that verified waste is instantly and accurately matched with the relevant user account. The aim is to provide the municipality with points for each verified waste item. such as deposit refund, digital wallet balance, loyalty points, carbon credits, or electronic vouchers. Digital incentives are automatically identified and the user's participation in recycling is 30 Motivation is increased. Another objective of the invention is to provide mobile device support with an in-container optical verification module. a hybrid system infrastructure capable of running the verification module together or alternately The aim is to provide this. In this way, if the user wishes, they can scan the QR code on the container with their mobile device for 35 seconds. By scanning the waste, users can verify its authenticity via their mobile device, or, if they wish, can proceed with the verification. It can leave the entire process to the optical verification modules inside the container, thus different 18 A flexible usage scenario tailored to user preferences and operational conditions. is provided. Another objective of the invention is to containerize waste that has been spectrometrically verified and classified. automatic transportation, sorting, handling, grinding and storage within 5 The goal is to develop an integrated mechanical processing infrastructure that enables the processing of verified waste materials. Transfer of the product to the processing section via conveyor belt, screw conveyor or pneumatic conveying system, Separation mechanism according to material type and its guidance in the line, grinder granulator The entire process of volume reduction and collection in the storage tank is automated. In this way, human intervention is minimized and operational efficiency is increased. 10 Another aim of the invention is to improve upon existing barcode, shape, weight, or image-based systems in the technology. conversely, the optical response of the waste object in the visible, ultraviolet and infrared regions simultaneously. The aim is to offer a dual-channel spectrometric validation architecture that can analyze in this way. This will enable, Reflection spectrum, absorption spectrum, color spectrum, luminescence of the waste object 15 Spectrum and marker-based spectral fingerprint data are obtained within a single system. thus a much higher performance compared to traditional single-channel or single-mode systems. Verification reliability and material identification accuracy are ensured. Another objective of the invention is to connect the first optical channel of the dual-channel spectrometer module with the waste 20 the measurement spectrum of the object, the output light of the illumination unit through the second optical channel The aim is to obtain the reference spectrum simultaneously or sequentially. Spectral and The data processing unit normalizes the aforementioned measurement spectrum relative to the reference spectrum. variations in illumination intensity, ambient light, sensor aberrations, and optical contamination This reduces its impact on the measurement results. This improves the accuracy of the verification and spectral 25. Reliability is increased; the likelihood of false acceptance, false rejection, and incorrect material classification is reduced. is being reduced. Another objective of the invention is to separate the dual-channel spectrometer module from the RGB display module. and the data obtained from the marker stimulation light source are processed by the spectral and data processing unit. 30 Comparison with spectral fingerprints found in a reference spectral database and / or with a classification model based on machine learning, deep learning or artificial intelligence This involves processing the waste material, determining its material class, product authenticity status, and verification. A confidence level is determined. The reference spectral database contains new and validated spectra. 35 by adding it to the system via the cloud and central server data communication module. It can be updated and the classification is performed by the spectral and data processing unit. The process can be adapted to new materials and product types. 19 Another purpose of the invention is to utilize packaging, especially high-deposit or branded packaging. Advanced technologies such as invisible marker paints, luminescent safety signs, and spectral labels. The aim is to enable spectrometric verification of safety elements. This allows the product to be verified. The marker structure on the packaging, the marker is activated by a light source at specific wavelengths. It is stimulated and the resulting luminescence emission is analyzed with a dual-channel spectrometer module. The authenticity of the product is proven, thus eliminating any of the existing barcode and shape-based systems. The risk of sophisticated counterfeit products being accepted into the system, which it cannot detect in this way, is significant. is being reduced. All the purposes mentioned above and those that will emerge from the detailed explanation below. The existing invention aims to verify the recyclability of waste, classification, collection and digital reward of users Spectrometric verification-based smart waste collection, classification, and digital reward system. It is related to the system in question; at least 15 items left in the system that are recyclable. a small amount of waste material, having at least one waste acceptance opening for the acceptance of the said waste material. a container body, necessary for optical examination of the aforementioned waste object. At least one lighting unit that provides the necessary lighting conditions, the user's identity in the system a user recognition module that allows login with verification, the aforementioned waste at least one RGB 20 that analyzes the visual geometry, color distribution, and print patterns of the object. imaging module, reflection spectrum, absorption spectrum of the aforementioned waste object and at least one dual-channel spectrometer module that obtains the luminescence spectrum, as mentioned Safety markings based on markers and luminescence found on waste objects are emitted using specific wavelengths. at least one marker stimulus light source configured to stimulate at their height, as mentioned RGB display module, the aforementioned dual-channel spectrometer module and the aforementioned marker 25 Product authenticity verification and material processing are performed by processing data obtained from the stimulating light source. a spectral and data processing unit that performs type determination, and controls all system components, and a microprocessor and control unit that links the aforementioned waste object to the user account, external a data communication module that enables data transmission to a server or cloud infrastructure, mentioned 30 that connect to the system via a data communication module and provide digital interaction with the user. a user's mobile device is verified via the aforementioned data communication module and A cloud and central server that processes reward data, including rewards, points, and deposits. a reward database in which the calculations are kept, the aforementioned microprocessor and controller transporting the aforementioned waste object, verified by the unit, to the container processing section. a transport system, material classification from the aforementioned spectral and data processing unit 35 According to the data, a sorting system directs the aforementioned waste object to the relevant processing line. the mechanism, the aforementioned waste object guided by the aforementioned separation mechanism a grinder and granulator that enables the material to be broken down for the purpose of reducing its volume, mentioned a storage hopper in which the material processed by the grinder and granulator is collected and the digital reward calculated via the aforementioned reward database was transferred, The user's mobile device includes a digital wallet associated with it. The best way to utilize the advantages of the existing invention, together with its structure and additional elements. For it to be understood, it must be considered together with the figures explained below. BRIEF DESCRIPTION OF THE FIGURES Figure 1: Spectrometric verification-based smart waste collection, classification, and digital reward system 10 This is a schematic view of the system. REFERENCE NUMBERS 1. Container body 11. Waste object 15 12. Lighting unit 13. User recognition module 14. RGB display module 15. Spectrometer module 16. Marker stimulus light source 20 17. Spectral and data processing unit 18. Microprocessor and control unit 19. Data communication module 2. User's mobile device 3. Cloud and central server 25 4. Reward database 5. Transportation system 51. Decomposition mechanism 52. Grinder and granulator 53. Storage compartment 30 6. Digital wallet DETAILED DESCRIPTION OF THE INVENTION This detailed explanation focuses solely on the innovation in the invention to provide a better understanding of the subject matter. It is conveyed without being limited to examples. Accordingly, in the following explanation and figures, 35 21 Spectrometric verification-based smart waste collection, classification, and digital reward system. It is explained. Figure 1 shows the subject of the invention: spectrometric verification-based intelligent waste collection, classification, and digital processing. This is a schematic view of the reward system. Accordingly, the system consists of 5 - at least one waste object left in the system that has recyclable properties (11), - having at least one waste acceptance opening for the acceptance of the mentioned waste object (11) a container body (1), - lighting conditions necessary for optical examination of the mentioned waste object (11) at least one lighting unit providing (12), 10 - User identification that allows the user to log in to the system with authentication. module (13), - visual geometry, color distribution and print patterns of the mentioned waste object (11) at least one RGB display module that analyzes (14), Reflection spectrum, absorption spectrum and luminescence of the mentioned waste object (11) 15 at least one dual-channel spectrometer module (15) that obtains the spectrum, - Marker and luminescence-based safety on the mentioned waste object (11) at least one marker stimulation configured to excite signals at specific wavelengths light source (16), - the mentioned RGB display module (14), the mentioned dual-channel spectrometer module (15) 20 and by processing the data obtained from the aforementioned marker stimulus light source (16) the product a spectral and data processing unit (17) that performs authenticity verification and material type determination, - different material types, genuine products, counterfeit products, and marker or luminescence-based Spectral and data processing that stores reference spectral fingerprints of security signals. unit (17) that communicates with the cloud and central server (3) 25 a reference spectral that can be updated by adding new spectra via module (19) database - controlling all system components and the aforementioned waste object (11) and user account a microprocessor and control unit (18), - a data communication module (19) that enables data transmission to an external server or cloud infrastructure, 30 22 - connected to the system via the mentioned data communication module (19) and digitally with the user an interactive user mobile device (2), - Verification and reward data via the mentioned data communication module (19) a working cloud and central server (3), - a reward database in which reward, point and deposit calculations are kept (4), 5 - the aforementioned waste verified by the aforementioned microprocessor and control unit (18) a transport system (5) that transports the object (11) to the container processing section, According to the material classification data from the aforementioned spectral and data processing unit (17) a separation mechanism that directs the mentioned waste object (11) to the relevant processing line (51), 10 - The aforementioned waste object (11) is guided by the aforementioned separation mechanism (51) a grinder and granulator (52) that enables the product to be broken down in order to reduce its volume, - a storage area where the material processed by the mentioned grinder and granulator (52) is collected reservoir (53) and - The digital reward calculated via the aforementioned reward database (4) was transferred, 15 a digital wallet (6) associated with the mentioned user's mobile device (2) It includes. In the known state of the art, traditional methods such as barcodes, shape, or weight are used to identify counterfeit products. and causes copied labels to be accepted into the system, while the high-cost reverse vending machine 20 The systems also cannot be integrated into the existing municipal-type passive container infrastructure. The invention solves these technical problems in a container body with at least one waste acceptance opening (1) an integrated, preferably dual-channel spectrometer module (15) and an RGB display The system solves the problem through an optical verification module containing module (14). The user 25 under a marker stimulus light source (16) the waste object left by (11) Spectral fingerprint data such as luminescence spectrum and reflection / absorption spectrum, By processing visual geometry and color distribution data together, the product's authenticity is maximized. It reliably verifies and automatically identifies the material type (PET, glass, metal, composite, etc.). It classifies them. Thanks to this synergistic hybrid verification, fake or manipulated While the acceptance of waste into the system is prevented, verified waste undergoes a transportation and sorting process. 30 It is directed to the appropriate processing (e.g., grinding) by its mechanism (51) and simultaneously The municipality points, deposit refund, or digital gift card will be credited to the user's account verified via QR / NFC. 23 A reward is defined in the form of wallet (6) balance. In addition, the invention is defined in the form of existing passive containers subsequently with this optical verification, data communication and digital reward infrastructure By offering a modular architecture that allows for the equipping of expensive specialized machines, A smart system that is distributed, low-cost, and has increased verification reliability without the need for additional resources. It ensures the establishment of a recycling network. 5 The invention concerns intelligent waste collection, classification, and digital processing based on spectrometric verification. The reward system recognizes product authenticity and the process of collecting recyclable waste. A hybrid optic developed for the purpose of determining the type of material with high reliability. It is based on a verification and automatic reward mechanism. The system is a User identification on the container body (1) with the user mobile device (2) 10 It is initiated by establishing a digital connection between module (13) via QR code or NFC; As a result of the connection, the user ID is transmitted to the cloud and central via the data communication module (19). Verified via server (3) and the user's digital wallet (6) is activated. Then The user places the recyclable waste object (11) on the optical display located on the container body (1). Bring it in front of the verification area or optical window. At this time, the lighting unit (12) 15 Under controlled lighting conditions provided by, RGB display module (14) analyze the visual geometry, color distribution and print patterns of the mentioned waste object (11) while doing so, the dual channel spectrometer module (15) simultaneously or sequentially displays the aforementioned waste Obtain the reflection spectrum, absorption spectrum and luminescence spectrum of the object (11). The first optical channel of the dual-channel spectrometer module (15) is illuminated by unit (12) 20 Obtain the measurement spectrum of the returning light from the waste object illuminated by (11). The second optical channel of the dual-channel spectrometer module (15) is the illumination unit. (12) obtains the reference spectrum of the output light. Spectral and data processing unit (17), The measurement spectrum obtained from the first optical channel is compared with the reference spectrum obtained from the second optical channel. It normalizes it according to its spectrum. With the aforementioned normalization process, the lighting is 25 Changes in light intensity of the unit (12), ambient light, sensor deviations and optical surface Measurement differences caused by contamination are reduced. Thus, a dual-channel spectrometer module (15) spectral fingerprint of waste object (11) compared to single channel measurements It ensures that it is obtained in a stable and comparable manner. When the verification is successful. The system provides the user with a confirmation light, mobile notification, or similar acceptance signal, and the user wastes 30 The object (11) is placed into the container body (1) through the waste acceptance opening. The aforementioned waste having a marker or luminescence-based safety sign on object (11) In this case, the marker stimulation light source (16) stimulates the said marker at specific wavelengths and The resulting luminescence emission is again detected by the aforementioned dual-channel spectrometer module (15). is analyzed. RGB imaging module (14), dual channel spectrometer module (15) and marker 35 All these images obtained from the stimulus light source (16) are spectral, optical and marker-based. Data are processed by the spectral and data processing unit (17) to verify product authenticity, detect counterfeit products. 24 Product identification and material type determination (PET, HDPE, glass, metal, composite packaging, etc.) are performed. and a decision is made to accept or reject the system. Spectral and data processing unit (17), dual channel Normalized reflection, absorption and obtained from the spectrometer module (15) luminescence spectra, color, geometry and obtained from the RGB display module (14) print pattern characteristics and luminescence data generated with marker excitation light source (16) 5 They work together. The spectral and data processing unit (17) processes the mentioned data using reference spectral data. comparing with reference spectral fingerprints stored on the base and / or machine learning, using a deep learning or artificial intelligence-based classification model, of waste object (11) material class, product authenticity status and verification confidence value It determines the material class created by the spectral and data processing unit (17) and 10 The verification confidence value is transmitted to the microprocessor and control unit (18) of the waste object (11) the decision to accept or reject and the referral to be sent to the separation mechanism (51) It is used in the creation of the command. Reference spectral database, plastics, PET, Reference spectra for HDPE, glass, metal, paper, cardboard, and composite materials, original. Marker or luminescence profiles of products and spectral 15 of counterfeit or invalid products. It stores profiles. Adding a new spectrum to the reference spectral database, cloud and verification by the central server (3) and / or microprocessor and control unit (18) This is done depending on whether it meets a certain confidence threshold determined by the organization. The verified new spectra are transmitted via the data communication module (19) to the reference spectral data. The classification model used by the spectral and data processing unit (17) is added to the base and the new 20 It can be updated based on the data. When the verification process is successful and waste When object (11) is accepted, the microprocessor and control unit (18) are the aforementioned waste object. (11) matches the previously defined user ID and rewards database (4) performs the digital reward calculation; the calculated reward (municipality points, deposit refund, digital wallet (6) balance, loyalty points, carbon credit or electronic coupon 25 (as follows) it is transferred to the aforementioned digital wallet (6). The accepted aforementioned waste object (11), through the transport system (5) under the control of the microprocessor and control unit (18) inside the container The material is transferred to the processing section and classified from the spectral and data processing unit (17). According to the data, it is directed to the relevant processing pipeline by the parsing mechanism (51). The aforementioned waste object (11) is directed to a grinder and granulator 30 for volume reduction purposes. (52) it is broken down inside and finally collected in the storage container (53). This In this way, all these components work synergistically in an integrated manner within the container body (1). As a result, the verification, classification, processing of waste from the moment of acceptance and the user's The entire reward process is automated and reliable. The alternative application forms and working variations of the invention are as follows: 35 Within the scope of this invention, the system is not limited to a single physical application but encompasses different forms. Container-based verification, mobile device-supported verification, pre-validation, depending on the use case. Waste acceptance with verification, uniform waste collection, multiple waste collection and existing containers. It can be applied in subsequent integration forms. In an application, the validation process is performed on or inside the container body (1) 5 This is carried out in the positioned optical verification area. In this application, waste object (11), optical verification zone on container body (1) by the user or brought in front of the optical window; spectrometer module (15), optional RGB display Waste module (14), lighting unit (12) and / or marker warning light source (16) Spectral, optical, image and / or marker-based validation data of object (11) are obtained. The obtained data are processed by the spectral and data processing unit (17) and the product Authenticity, marker / luminescence verification, and material type determination are performed. In another application, the verification process can be carried out with the user's mobile device (2). In this application, the user's mobile device (2) can scan the barcode, emblem, marker on the waste object (11), an external spectrometer to read the luminescence region and / or spectral verification area 15 module (15), preferably an external dual-channel spectrometer module (15) or similar external optical It can be used with accessories. Verification data obtained by the mobile device, data communication module (19), cloud and central server (3) or directly container body (1) This information is shared with the system; once verification is successful, the system issues a waste acceptance permit. is being created. 20 In one application, the system pre-validates the waste before it is directly dropped into the container. It works in such a way as to make the waste object (11) waste acceptance. Optical verification on the container body (1) before releasing it into the system through the opening Bring it in front of the area or optical window. When verification is successful, a confirmation light and an audible alert will appear. mobile notification, screen notification or similar user feedback mechanism to reduce waste to 25%. Acceptance is permitted. The user can only accept the waste object (11) after this acceptance notification. It releases into the container body (1) through its opening. If verification fails, the system discards the waste. It prevents acceptance and redirects the user to a different process. In an application, the system can be configured to collect only one type of waste. In this case... For example, only plastic bottles, only glass packaging, only metal cans, or only a specific 30 If deposit-based packaging type is to be accepted, the transport system (5), the sorting mechanism (51) The grinder and granulator (52) may not be used. In this case, the verified waste object (11), It is directed directly to the storage tank (53). Thus, a lower cost and simpler system A smart container application is obtained. 26 In another application, the system is used for the purpose of collecting and classifying multiple types of waste. It can be configured. In this case, the waste object (11) is transported after the verification process. The system (5) is transferred to the in-container processing section, spectral and data processing unit (17) processing through the separation mechanism (51) according to the type of material determined by. It is directed to the line and the hopper. Grinder and granulator (52) 5 for high volume wastes The volume of waste is reduced by using and the processed material is stored in the storage tank (53) This application collects different types of recycled materials such as plastic, glass, metal, composite, and the like. It allows recyclable materials to be separated within the same system. In another application of the invention, the system can handle existing passive or semi-passive municipal waste management systems. It can be implemented as a modular structure that can be integrated into containers later. This 10 In practice, the existing container body (1) remains unchanged; spectrometer module (15), lighting unit (12), optional RGB display module (14), marker warning light source (16), user recognition module (13), microprocessor and control unit (18), data communication module (19) and digital reward infrastructure on the outer surface of the container, waste acceptance opening It can be added to the surrounding area or internal transport network. In this way, the existing waste collection infrastructure can be expanded by 15. By maintaining protection, a low-cost and networked smart recycling system can be established. When these different application forms are considered together, the invention represents a uniform container structure, a single Waste type is not limited to a single verification mechanism or a single mechanical processing scheme. The system includes in-container verification, uniform waste collection, multiple waste classification, and existing... It has one or more methods of implementing post-integration into containers. 20 The invention relates to environmental technologies, the recycling industry, waste management, smart city applications, and deposits. return systems, packaging verification, municipal services, and digital reward infrastructures It can be directly applied in these fields. The form of industrial application involves existing passive or semi-passive systems. Municipal type recycling containers, optical verification module, preferably dual channel. spectrometer module (15), marker excitation light source (16), data communication module (19) and 25 This involves transforming them into smart recycling stations using digital reward software. In this way, the authenticity of recyclable waste can be verified, and the type of material can be classified. Suitable waste can be directed to the storage or sorting line and a digital notification is sent to the user. The reward, points, or deposit refund can be defined. The invention is suitable for municipalities, recycling facilities, packaging manufacturers, deposit return system operators, shopping malls, campuses, industry 30 It can be used by regions and public institutions. In addition, data obtained from the system; waste Collection planning, monitoring of recycling rates, environmental sustainability reporting. and can be evaluated in circular economy applications. In the agricultural field, the invention; agricultural plastic packaging, fertilizer packaging, pesticide packaging, greenhouse plastics, and agricultural materials. Verification, classification and controlled collection of recyclable packaging 35 27 It can be used for this purpose. Also, dual channel spectrometer module (15) and marker / optical verification. With its infrastructure, appropriate calibration, and database support, it can prevent pesticide residue, chemical contamination, or It can also be used to detect special optical security markings on packaging. In this respect... The system enables the safe collection of agricultural waste, the monitoring of pesticide packaging, and environmental protection. It is also feasible in terms of reducing the risk of contamination. 5 Some of the advantages gained through the invention are: - Transformation of existing containers into intelligent systems: The invention applies to existing passive or semi-passive containers. Smart municipal recycling containers can be completely replaced without the need for a full replacement. This enables them to be converted into recycling stations. In this way, new and large-volume The need to buy deposit return vending machines decreases. 10 - Low-cost installation advantage: The system is suitable for large-volume and expensive reverse vending machines. because it offers a modular structure that can be integrated into existing containers instead of the initial investment. It reduces costs. This provides an economic advantage for municipalities and recycling businesses. provides. - More reliable verification of product authenticity: The invention allows product verification not only by barcode, 15 It does not do this based on QR codes or camera images. It uses marker / luminescence-based optical markers. It verifies product authenticity using spectral fingerprint data. This helps identify counterfeit packaging and imitations. The risk of products with copied labels, barcodes, or manipulated designs being accepted into the system is reduced. - Enhanced measurement reliability with dual-channel spectrometric validation: Dual channel Measurement of the waste object (11) with the first optical channel of the spectrometer module (15) 20 obtaining the reference spectrum of the lighting unit (12) with the second optical channel. The spectral and data processing unit (17) converts the measurement spectrum to the reference spectrum. normalizing the effect of environmental and optical changes on the measurement result. This reduces the safety signs that are activated by the marker warning light source (16). and more reliable determination of the spectral fingerprint of the waste object (11) 25 This ensures that the likelihood of incorrect acceptance, incorrect rejection, and incorrect classification is reduced. - Material classification with artificial intelligence and updatable reference data: Spectral and data. processing unit (17), dual channel spectrometer module (15), RGB display module (14) and data obtained from the marker excitation light source (16) are compared with the reference spectral data. by comparing with the records in the database and / or using machine learning, deep learning or 30 by processing the material class of the waste object (11) with an artificial intelligence based classification model and It determines the authenticity of the product. The reference spectral database is cloud-based and centralized. The system can be updated via the server (3) and the data communication module (19). It can be adapted to new materials and product types. 28 - Adaptation to single and multiple waste collection systems: In applications where single-type waste is collected, the system... It can operate in a simpler way. In multi-waste collection applications, the transport system (5), separation mechanism (51) and, if necessary, grinder / granulator to separate different materials. It can be directed to the line or storage container (53). - Digital rewards that increase user engagement: User, QR / NFC user recognition module 5 (13) or can log in to the system via a mobile device-supported verification system. In return for verified waste, the municipality receives points, a deposit refund, and a digital wallet (6) balance. They can receive electronic coupons or similar digital rewards. - Support for sustainable waste management for municipalities: The invention encourages recycling behavior. by increasing municipalities' waste collection and recycling rates and improving the environment. It contributes to sustainability goals. - Adaptability to different container types: Thanks to its modular structure, the system can adapt to different volumes, It can be adapted to municipal-type containers with different geometry and waste inlet openings. Therefore... Neighborhood, campus, park, school, public building, industrial area and open space waste collection It can be applied at these points. 15 - Distributed installation capability: Low-cost solutions using numerous containers instead of large, centralized machines. A cost-effective optical verification module can be integrated. This allows for a wider distribution, An accessible and distributed smart recycling infrastructure can be established. - Ease of maintenance and operation: Compared to existing large-volume deposit return vending machines, it offers better performance. Because it offers a modular structure, maintenance, parts replacement and system updates are easier. 20 It can be done. - Database-based recycling tracking: The system includes user authentication, product acceptance, material type, It can digitally record data such as reward information and waste quantities. This allows municipalities and Recycling companies can implement data-based waste management. - Advantage of mobile device supported use: External dual 25 that can be attached to the user's mobile device (2) Product verification can be performed using a multi-channel spectrometer. This alternative setup allows for in-container monitoring. It can reduce hardware requirements and provide flexibility for different application scenarios. - Environmental and economic contribution: The invention enables more efficient collection of recyclable waste, by enabling their classification and processing, it helps reduce environmental pollution, resources It contributes to increasing efficiency and the circular economy. 30
Claims
29 REQUESTS 1. Smart waste collection, classification, and digital reward system based on spectrometric verification. It is a system, and its feature is; at least one waste item left in the system that has recyclable properties (11), 5 having at least one waste acceptance opening for the acceptance of the mentioned waste object (11) a container body (1), necessary lighting for optical examination of the mentioned waste object (11) at least one lighting unit that meets the conditions (12), User identification that allows the user to log in to the system with authentication. 10 module (13), Spectral, optical and marker-based verification features of the mentioned waste object (11) at least one spectrometer module (15) that determines the aforementioned spectrometer module (15) and optionally at least one RGB display Product authenticity verification and material 15 by processing the data obtained from module (14) a spectral and data processing unit that performs species determination (17), controlling all system components and the aforementioned waste object (11) and the user a microprocessor and control unit (18) that matches the account, A data communication module that enables data transmission to an external server or cloud infrastructure. (19) 20 It includes.
2. The system is in accordance with claim 1 and its feature is that the spectrometer module (15) is a dual-channel module. It is the fact that.
3. The system according to claim 1 or 2, and its feature is the visual representation of the mentioned waste object (11). at least one RGB image that analyzes its geometry, color distribution, and print patterns 25 It includes module (14).
4. The system is according to any of the claims 1-3 and its characteristic is that it is on the mentioned waste object (11). The markers and luminescence-based safety signs found are designed to provide warnings at specific wavelengths. It must contain at least one structured marker stimulus light source (16).
5. A system according to any of the requirements 1-4, characterized by its capacity to transport verified waste for at least 30 days. It contains a small transport system (5).
6. The system is according to claim 5 and its feature is that it comes from the mentioned spectral and data processing unit (17). According to the material classification data, the aforementioned waste object (11) is sent to the relevant processing line. It includes a guiding separation mechanism (51).
7. The system is according to claim 6 and its characteristic is the reduction of the volume of the mentioned waste object (11). It includes a grinder and granulator (52) that enables it to be broken down for this purpose. 5 8. A system according to any of claims 1-7, characterized by the location from which the processed material is collected. It contains a storage compartment (53).
9. The system is defined according to any of the requirements 1-8, and its characteristic is the aforementioned data communication module. (19) A user mobile connects to the system and provides digital interaction with the user via (19). It includes the device (2). 10 10. The system is defined according to any of the requirements 1-9, and its characteristic is; the aforementioned data communication module. (19) a cloud and central server that processes verification and reward data. (3) is included.
11. A system based on any of claims 1-10, characterized by rewards, points, and deposits. It includes a reward database (4) in which the calculations are kept. 15 12. The system is in accordance with claim 11 and its feature is; through the aforementioned reward database (4). the calculated digital reward is transferred to the aforementioned user's mobile device (2) It is characterized by containing a digital wallet (6).
13. The system is according to any of the claims 9-12, and its feature is that the user's mobile device (2), waste Barcode, emblem, marker, luminescence region and spectral verification on object (11) 20 used with an external dual-channel spectrometer module (15) to read the field. It is a device.
14. The system is in accordance with any of the claims 1-13 and its feature is; RGB display module (14), dual channel spectrometer module (15), marker excitation light source (16), user recognition module (13), microprocessor and control unit (18) and data communication module (19), 25 mechanical, optical, electronic and software components in an existing passive or semi-passive waste container. The advantage is that it has a modular structure that can be integrated later through integration.
15. The system according to any of the claims 1-14, and its feature is; spectral and data processing unit (17), a unit that classifies the waste object (11) as plastic, glass, metal, composite, paper or cardboard That is. 30 31 16. The system according to any of claims 2 to 4, and its characteristic is; marker stimulus light source. (16) a safety sign on the waste object (11) that is alerted in the ultraviolet or infrared region The presence of a light source, the spectral spectrum of the luminescence emission resulting from the aforementioned stimulation. There is a module that obtains the data and the spectral and data processing unit (17), the aforementioned spectral It is a unit that analyzes the data as spectral fingerprint data. 5 17. The system complies with Request 10, and its feature is; cloud and central server (3), different material types, genuine products, counterfeit products, and marker or luminescence-based safety markings containing a reference spectral database in which reference spectral data is stored. The aforementioned reference spectral database has been expanded with the addition of newly verified spectra. It is a server that updates. 10 18. The system is compliant with claim 10 and its feature is that the data communication module (19) mentioned It is a module that transmits reference spectral data to the spectral and data processing unit (17) and spectral and the spectral data obtained from the waste object (11) by the data processing unit (17) by comparing with reference spectral data and / or using machine learning, deep learning or artificial intelligence. by processing the material type (11) of the waste object and / or 15 with an intelligence-based classification model It is a unit that determines the authenticity of the product.
19. Spectrometric verification-based smart waste collection, classification, and digital reward system. It is a method, and its characteristic is; A spectral, optical, image and marker-based verification data of the waste object (11) Obtained by a spectrometer module (15) and an RGB display module (14); 20 The obtained data are processed by a spectral and data processing unit (17) and the product Determining the authenticity and type of material; When verification is successful, the user is given an acceptance notification and the waste object is identified. (11) acceptance of waste into the container body (1) through a waste acceptance opening; The verified waste object (11) is controlled by a microprocessor and control unit (18) 25 matching with the user account; When verification is successful, a reward is calculated via a database (4) digital reward, points, deposit refund or digital wallet (6) balance to a digital wallet (6) transfer It includes the steps of the process. 30 20. The method is in accordance with claim 18, and its characteristic is; the transport system (5) of the verified waste object (11) transport by, spectral and data processing unit (17) according to the type of material determined by 32 Directing to the processing line with the separation mechanism (51), grinder and granulator (52) the process of reducing its volume and collecting the processed material in the storage tank (53) It includes the steps.