Process for minting and using vehicle-related non-fungible tokens and information technology system

The method and system integrate vehicle-specific data to securely generate NFTs, addressing fraud and enhancing user comfort by ensuring secure and reliable NFT production.

DE102022000646B4Active Publication Date: 2025-09-04MERCEDES BENZ GROUP AG

Patent Information

Application Number
DE102022000646
Authority / Receiving Office
DE · DE
Patent Type
Patents
Current Assignee / Owner
Filing Date
2022-02-22
Publication Date
2025-09-04
Estimated Expiration
2042-02-22

AI Technical Summary

Technical Problem

Existing methods for generating vehicle-related non-fungible tokens (NFTs) lack security and reliability, leading to potential fraud and inadequate user comfort due to the inability to integrate the vehicle itself in the embossing process, thus allowing unauthorized NFT generation.

Method used

A method and information technology system that utilizes in-vehicle detection, collection, aggregation, and conversion devices to generate NFTs based on vehicle-specific data, ensuring secure integration into a blockchain while preventing unauthorized production by incorporating vehicle-specific properties and configurations.

Benefits of technology

Ensures secure and reliable generation of NFTs that enhance user comfort by preventing fraud and allowing unique vehicle configurations, enabling novel services and experiences.

✦ Generated by Eureka AI based on patent content.

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Abstract

Method for minting and using vehicle-related non-fungible tokens (NFT), wherein an information technology system (1) mints at least one non-fungible token (NFT) assigned to a vehicle (2) which contains at least one proof of ownership, usage rights and / or properties of the vehicle (2) includes, where at least one vehicle-internal recording device (ERF-i) records vehicle-related raw data (RD), an internal and / or external vehicle collection device (SAM-i, SAM-e) stores at least a subset of the raw data (RD), characterized in that an in-vehicle and / or an out-of-vehicle aggregation device (AGG-i, AGG-e) processes at least a subset of stored raw data (RD), an in-vehicle conversion device (WAN-i) converts processed data (AD) into NFT input data (ED), an in-vehicle transmission device (ÜBE-i) transmits the NFT input data (ED) to an out-of-vehicle minting device (PRÄ), which mints one of the non-fungible tokens (NFT) in unchanged form, including the NFT input data (ED); and wherein the properties configurable for the production of a vehicle (2) are included in one of the non-fungible tokens (NFT), and for a vehicle (2) with a unique property combination, the production of another vehicle (2) corresponding to the unique property combination is prevented, and wherein such a non-fungible token (NFT) is minted during the manufacture of the vehicle (2).
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Description

[0001] The invention relates to a method for minting and using vehicle-related non-fungible tokens according to the type defined in more detail in the preamble of claim 1 and to an information technology system for carrying out the method.

[0002] Certain digital currencies, or rather the respective blockchain underlying the digital currency, such as the Ethereum blockchain, the Binance Smart Chain, or Solana, allow the creation of so-called non-fungible tokens (NFTs), which is also referred to as minting. An NFT is a non-fungible digital object. To mint an NFT, relevant information for the NFT is integrated into the blockchain of the digital currency underlying the respective NFT in the form of information blocks. With the help of NFTs, files that are usually easy to copy digitally, such as computer-generated works of art, are marked as unique pieces, and their ownership is transferred to a specific actor through the sale of the NFT.

[0003] To avoid storing disproportionately large amounts of data in the blockchain, a block of information embedded in the blockchain can also include a link to a resource external to the blockchain. The owner and all properties of an NFT are publicly visible. The properties of the NFT cannot be changed after minting.

[0004] As the acceptance of cryptocurrencies increases, so does the popularity of NFTs. For example, patents US 10 505 726 B1 and US 11 113 754 B2 from Nike Inc. disclose practical methods for using NFTs in connection with purchasable physical goods. The methods describe the creation of an NFT representative of a retail item, such as a sports shoe, when a person purchases the retail item. The corresponding person includes a unique user ID to which the corresponding NFT is assigned. This provides the purchaser of the retail item with unique digital proof of purchase of the retail item. Properties of the retail item, such as a color, material, manufacturer, model name, size, or the like, can be incorporated into the creation of each NFT.The purchaser of the retail item can resell the NFT associated with the retail item to a third party. In doing so, the purchaser does not necessarily have to transfer the physical retail item or a digital image thereof to the third party. The methods also describe using a digital image of the physical retail item in a video game, creating combined digital images of retail items by blending the properties of two source retail items, and obtaining digital images and corresponding NFTs of an athletic shoe at an event.

[0005] Further revealed: LEKACH, Sasha: Alfa Romeo's Tonale hybrid SUV comes with an NFT. Mashable.com, February 9, 2022. URL: https: / / mashable.com / article / alfa-romeo-tonale-nft, Archived at https: / / web.archive.org / web / 20220209211600 / https: / / mashable.com / article / alfa-romeotonale-nft on February 9, 2022 - the delivery of a new car along with an NFT associated with the vehicle. The respective NFT is updated throughout the vehicle's lifetime. The NFT can be used to track vehicle maintenance and document milestones, such as reaching a certain mileage.

[0006] Common knowledge about NFTs can also be found in encyclopedias, such as: Non-fungible token. In: Wikipedia, The Free Encyclopedia. Edited on: February 21, 2022. URL: https: / / en.wikipedia.org / w / index.php?title=Non-fungible_token&oldid=1073140882.

[0007] Furthermore, US 2020 / 0 059 361 A1 discloses methods and systems for improving data protection and efficiency of networks based on distributed ledger technology. The document describes the creation and assignment of an NFT to a vehicle during the vehicle's production. NFTs can be assigned to individual parts of the vehicle. These NFTs are incorporated into the creation of the NFT representative of the vehicle and are thus combined.

[0008] Furthermore, US 2020 / 0 311 698 A1 discloses the creation of an NFT for a vehicle by the vehicle. For this purpose, the vehicle comprises a computer capable of reading vehicle data collected by the vehicle. The computer forms a node of a proof-of-stake network for calculating a blockchain. The computer itself causes the NFT to be minted. Using the NFT, the degree of wear and tear of the vehicle can be described and thus the residual value of the vehicle, for example in the form of monetary units, can be tracked decentrally.

[0009] In addition, DE 10 2018 115 347 A1 discloses methods and means for generating and managing a digital vehicle registration document based on blockchain technology.

[0010] Furthermore, DE 10 2013 003 063 A1 discloses the control of the communication behavior of a motor vehicle. The motor vehicle is capable of exchanging messages with devices external to the vehicle using a mobile device. The frequency with which messages are exchanged, the resulting data volume, and / or the respective message type are configurable in the device. The respective configuration is stored in the form of a configuration data set. Different configuration data sets can be loaded as needed by a central control unit, thus adapting the communication behavior of the mobile device.

[0011] The present invention is based on the object of providing a particularly secure and reliable method and information technology system for minting and using vehicle-related non-fungible tokens, with the aid of which the user convenience for vehicle owners can be increased.

[0012] According to the invention, this object is achieved by a method for minting and using vehicle-related non-fungible tokens having the features of claim 1 and an information technology system having the features of claim 11. Advantageous embodiments and further developments emerge from the dependent claims.

[0013] In a method for minting and using vehicle-related non-fungible tokens (NFTs), an information technology system mints at least one NFT associated with a vehicle, which comprises at least proof of ownership, usage rights and / or properties of the vehicle, wherein, according to the invention, at least one vehicle-internal recording device records vehicle-related raw data, an internal and / or external collection device stores at least a subset of the raw data, an internal and / or external aggregation device processes at least a subset of stored raw data to generate processed data, an internal conversion device converts processed data into NFT input data, an internal transmission device transmits the NFT input data to an external minting device, which mints one of the NFTs in an unchanged form, including the NFT input data, and wherein the properties configurable for the production of a vehicle are included in one of the non-fungible tokens and the production of another vehicle corresponding to the unique property combination is prevented for a vehicle with a unique property combination, and such a non-fungible token is minted during the production of the vehicle.

[0014] Using the method according to the invention, NFTs can be minted for vehicles, enriched with information relevant to the respective vehicles, and assigned to the corresponding vehicles or a respective vehicle user. This enables the provision of completely new types of services for a vehicle manufacturer's customers, thereby increasing customer satisfaction and user convenience. Unlike, for example, a sports shoe, painting, film, piece of music, or the like, a vehicle itself is an information technology system or part of a larger information technology system that participates in the minting of an NFT relating to itself.

[0015] For example, fraud attempts are increasingly occurring when minting object-related NFTs. For example, a fraudster can impersonate a famous artist and mint and sell an NFT of a work of art, even though they are not the creator or owner of the artwork. Similar problems also exist when creating NFTs for retail items. For example, a fraudster could perform the necessary steps to mint an NFT associated with a specific retail item in-store, such as scanning an identification tag or taking a photo, but then not purchase the retail item. However, by actively involving the object for which a specific NFT is to be created in the NFT generation process, such fraud attempts can be reliably prevented.

[0016] The vehicle's internal recording device is used to record vehicle-related raw data. The recording device can be a sensor, and the raw data can be measured values ​​from the respective sensor. The recording device can also be a system that has read access to a data bus and / or a physical storage medium and reads the corresponding data transmitted over the bus and / or stored in the storage medium. The vehicle can have one or more recording devices. The respective recording devices can be located anywhere in the vehicle and integrated or distributed into one or more independent vehicle subsystems. Raw data generated by the recording device(s) is then stored by one or more collection devices. A collection device can store raw data from one or more recording devices.To reduce storage requirements, subsets of the raw data that are no longer needed can also be discarded. Depending on the type of NFT to be minted, the required raw data is transferred from the collection facility to an aggregation facility, where it is processed. Preparing the raw data can include, for example, converting it to a specific file format, compressing the file size, sorting, filtering, integrating, or other data processing of the raw data.

[0017] The collection and storage of data can be subject to various data protection restrictions. By processing the raw data, the raw data can be manipulated in such a way that applicable data protection regulations are complied with. For this purpose, the raw data should preferably be stored for as short a time as possible.

[0018] The conversion device then collects the processed data generated by all aggregation devices and generates NFT input data, which is then transmitted to the vehicle-external stamping device via the transmission device. The NFT input data can be transmitted to the vehicle-external stamping device via a wired connection or, preferably, wirelessly. Proven transmission technologies such as mobile communications, Wi-Fi, Bluetooth, NFC, or similar technologies are suitable for this purpose. Data collection, (intermediate) storage, and transmission are preferably secured by cryptographic authentication and encryption measures.

[0019] The vehicle-external minting device is a computer system capable of generating new NFTs, i.e., integrating information-enriched data blocks into the blockchain underlying a cryptocurrency. The NFT input data is incorporated into the NFT minting process in an unaltered form. This means that the NFT input data is integrated one-to-one into a corresponding information block of the blockchain. For example, if a vehicle identification number is part of the NFT input data, the corresponding vehicle identification number is integrated into a corresponding NFT as plaintext. For data sets that are too large, such as an image, a corresponding link to an online data storage facility where the corresponding image is stored can also be integrated into the NFT.

[0020] The use of NFTs, as opposed to the direct integration of vehicle-related information and / or supply chain-related information into a blockchain to document the authenticity and / or origin of a product, allows for a particularly flexible design of subsequent use of the information stored in the blockchain (as NFT).

[0021] As described above, it is intended that one of the NFTs will include the properties configurable for the production of a vehicle, and for a vehicle with a unique combination of properties, the production of another vehicle corresponding to the unique combination of properties will be prevented. The properties of a vehicle include, for example, the vehicle's engine, the selected chassis, the selected special equipment, the selected vehicle paint, and the like. It is possible that the buyer of a vehicle has selected a unique vehicle configuration. If this is the case, the buyer can specify that no further vehicles with the same properties, i.e., with the unique combination of properties, will be produced by the vehicle manufacturer.This enables a unique user experience for the vehicle buyer, as there can be no other owner of such a vehicle and therefore no other NFT associated with it. Of course, the buyer of the vehicle can resell the NFTs they own with the unique combination of attributes.

[0022] For example, an NFT created during the manufacture of a vehicle may contain the following vehicle data, such as a vehicle identification number, a series, a model, a paint finish, an engine, an equipment, a production facility, a date and / or time of completion, a serial number of the vehicle on that day / month / year, or the like.

[0023] An advantageous development of the method provides for at least one vehicle-external recording device to be integrated into the process for generating processed data. The vehicle-external recording device and the vehicle-external collection device and / or aggregation device can be an integral component of a central processing unit, for example, a cloud server or server network. Such a cloud server can, for example, be operated by a vehicle manufacturer and used to manage vehicle fleet information. This enables the recording of information associated with the management of vehicle fleets. In addition, extensive data can be recorded that is only available to the vehicle manufacturer, for example, information generated during vehicle production.The individual recording devices, collection devices, and / or aggregation devices can thus be integrated anywhere in vehicles, vehicle subsystems, a cloud server, server network, or components thereof, as well as in mobile devices. However, at least one in-vehicle recording device is involved in the creation of the processed data in order to provide the conversion device with at least one piece of information representative of the respective vehicle, such as a vehicle identification number, a cryptographic private key of the vehicle, or another identifier. In the simplest case, the in-vehicle recording device can therefore be a device for reading digital information from a data storage device.The NFT input data is generated by a respective on-board conversion device and transmitted from the respective vehicle for which the respective NFT is to apply to the off-board minting device.

[0024] With an off-board recording device, raw data captured externally can also be transmitted to individual vehicles for further processing. Similarly, raw data captured internally can also be transmitted to the central processing unit for further processing. However, the processed data generated externally is then transmitted back to the respective vehicle for conversion into NFT input data. This ensures that fraudsters cannot create NFTs associated with the corresponding vehicle.

[0025] According to a further advantageous embodiment of the method, at least two separate vehicle subsystems each have their own aggregation device, wherein raw data recorded in a respective vehicle subsystem is processed by the respective aggregation device of the vehicle subsystem. This ensures that no raw data can leave a respective vehicle subsystem. Locally generated data therefore remains in a respective subsystem of the vehicle. Local data processing has two advantages. Firstly, the transmission of disproportionately large data sets is prevented, since processed data requires less storage space than the raw data itself. As a rule, the raw data is comparatively extensive and therefore particularly critical from a data protection perspective.However, if the raw data does not leave the respective subsystem in which it was created, there can be no risk of data protection violations.

[0026] A further advantageous embodiment of the method further provides for the processed data to be temporarily buffered in the aggregation device before being transmitted to the conversion device. Generally, it is possible for a respective aggregation device to process the raw data immediately before transmission to the conversion device. However, this requires a comparatively large amount of raw data to be stored by a respective aggregation device. However, the aggregation device can also process the raw data one or more times during the raw data acquisition process before the processed data is transmitted to the conversion device and buffer the processed data. This makes it possible to discard raw data and / or processed data that are no longer required, thus saving storage space.

[0027] According to a further advantageous embodiment of the method, a configuration data set is generated by means of a configuration device. This configuration data set comprises a configuration for a respective capture device, collection device, aggregation device, conversion device, and / or transmission device, which is read in by a respective device in order to control the behavior of the respective device for minting a specific NFT. Depending on the desired application or type of NFT to be generated, the collection and processing of certain vehicle-related raw data is required. Using the configuration data set, the corresponding devices can then be parameterized such that the information required for generating, i.e., minting, the desired NFT is obtained. Depending on the application and the NFT to be generated, it is not necessarily necessary to reconfigure each of the devices to generate a new NFT.

[0028] The configuration device can be implemented internally or externally within the vehicle. The configuration device is operated, for example, by a user such as a vehicle keeper, vehicle owner, vehicle dealer, the vehicle manufacturer, or the like. An internal human-machine interface such as the vehicle's infotainment system or a web application can be used to operate the configuration device. A corresponding web application can be operated, for example, via a browser running on a computer or via an application (app) running on a smartphone. The operation of the configuration device can vary in scope depending on the user's level of authorization and / or their specialist knowledge.This makes operation of the configuration device particularly easy for unauthorized users, while offering authorized experts a wealth of configuration options. For example, the user can operate the configuration device via an operating screen, while the expert can program the respective devices themselves, right down to defining parameter values ​​and constants.

[0029] A further advantageous embodiment of the method according to the invention further provides that a configuration data record comprises at least one of the following information: - a definition of the NFT input data to be generated; - a definition of events when an NFT should be minted; - a definition of the raw data to be collected; - a definition of an aggregation function used by an aggregation facility to process the raw data; and / or - a definition of a conversion function used by the conversion device to convert the processed data into NFT input data.

[0030] The decision regarding which NFTs should be created can be made using a top-down or bottom-up approach. The top-down approach requires a user to specify which NFTs are to be created. The configuration device then independently decides which raw data needs to be collected to create the respective NFTs and how this data should be further processed. The bottom-up approach, on the other hand, requires a user to inform the configuration device which raw data should be collected during vehicle use and how this data should be further processed. Depending on the settings made, different NFTs can then be minted.

[0031] According to a further advantageous embodiment of the method, a predefined configuration data set is generated by the configuration device from a list of predefined configuration data sets and read by the devices. This enables particularly intuitive and simple operation of the configuration device by a lay user using a corresponding input mask. For example, the lay user selects the desired NFTs to be minted, whereupon the configuration device loads the corresponding predefined configuration data sets, so that the capture device, collection device, aggregation device, conversion device, and transmission device enable the minting of the corresponding desired NFTs.

[0032] For example, a configuration data set can specify for a capture device in which system the capture device is to be executed (e.g. in the vehicle, on a cloud server, in a specific control unit or the like), a type and amount of raw data to be captured and under which conditions and / or times the respective raw data is to be captured and to which collection device(s) the raw data is to be transmitted.

[0033] For example, a configuration data record can specify for a collection device in which system the collection device is to be executed, from which collection devices information is to be received, which type and quantity of raw data is to be received by a respective collection device and under which conditions raw data is to be stored or discarded, a respective aggregation device to which stored raw data is to be forwarded and under which conditions and / or times which information is to be forwarded to a respective aggregation device.

[0034] For an aggregation device, a configuration data record can, for example, specify in which system the aggregation device should be executed, from which collection devices raw data should be received (whereby a type of raw data and a quantity of raw data to be processed can also be defined), an aggregation function to be used to prepare the raw data, and the precise behavior of each aggregation function. This includes, for example, the quantity of raw data on which each aggregation function depends, a calculation rule that specifies how prepared data should be generated from raw data, a set of times and / or conditions that determine when each aggregation function should be executed, and when which raw data can be deleted after use.

[0035] For example, a configuration data record can specify for a conversion device in which system the conversion device is to be executed, from which aggregation devices processed data is to be received, according to which conversion function NFT input data is to be generated from processed data, and / or a set of events and / or conditions at which times the minting of an NFT is to be initiated.

[0036] For example, a configuration data record can specify for a transmission device to which minting device the NFT input data to be used to mint an NFT is to be transmitted.

[0037] A further advantageous embodiment of the method further provides that a user manually initiates the minting of one of the NFTs or, before an automatic minting of one of the NFTs, a query is sent to the user to confirm the minting of the NFT. In other words, a manual operation by the user is required before a vehicle-related NFT is minted. This gives the user full control to prevent the unwanted minting of NFTs for their vehicle. Since a blockchain is generally publicly visible, the user can prevent third parties from reading the information linked to the NFT input data from the blockchain if they do not want this. A user can also request the minting of certain NFTs but wish to avoid the publication of certain information in the form of NFT input data on the blockchain.This allows the user to initiate or allow the minting of the NFTs they desire and to prevent the minting of NFTs they do not want.

[0038] According to a further advantageous embodiment of the method, a private key, which can be used to initiate a transaction of one of the NFTs to a third party, is stored in an internal vehicle hardware wallet and / or in a wallet accessible from within the vehicle. This not only integrates the vehicle as an information technology system into the creation or minting of the NFT, but also enables the use of the NFT from within the vehicle. Particularly convenient access to NFTs is possible using a vehicle-integrated hardware wallet. The private key required to initiate transactions is then stored in this hardware wallet. However, a computing unit in the vehicle can also communicate, for example via a telematics unit, with the server of a service provider that manages a user account to which the corresponding NFTs are assigned.The vehicle's computing unit can, for example, also be in communication with a mobile device that includes a corresponding hardware wallet.

[0039] To complete transactions, a user may be required to authenticate themselves. This can involve common authentication methods such as entering passwords, reading biometric identifiers, scanning codes, or similar methods.

[0040] Preferably, an NFT will be minted when at least one of the following events occurs: - Sale of the vehicle; - Carrying out repairs or maintenance on the vehicle; - Staying with the vehicle at a specified location; - reaching a specified time or elapse of a specified period of time; - Travelling a specified distance by vehicle; - occurrence or absence of a specific vehicle function; and / or - Exceeding or falling short of a vehicle performance compared to the respective vehicle performance of the vehicles in a vehicle fleet.

[0041] An NFT can be minted when the vehicle is sold or given away, meaning a change of ownership occurs. This allows NFTs to be used to track the exact owners of the vehicle.

[0042] NFTs can also be minted when parts and / or components of the vehicle are repaired, maintained, or otherwise replaced or tampered with. This includes, for example, performing a software update or decommissioning / scrapping the vehicle. This ensures that only authorized repair or maintenance work is carried out on the vehicle. For example, the creation of corresponding NFTs may only be possible by an authorized workshop. Of course, physical changes to the vehicle can be made without minting new NFTs. However, if the corresponding NFT is missing for such a change, the vehicle owner or potential buyer will be aware that unauthorized tampering with the vehicle has occurred.

[0043] Minting NFTs is also possible when the vehicle is in a specific location. Various methods can be used to record the vehicle's location, such as GPS position monitoring. For this purpose, the vehicle can include a corresponding navigation system or communicate with a mobile device such as a smartphone or mobile navigation device. So-called "challenges" are well known in video games. If certain achievements are achieved in the video game, the player is awarded a trophy. This can also be applied to vehicles. For example, NFTs can be minted when the vehicle is visited in certain countries or cities. This can provide an incentive for a vehicle user to travel more with their own vehicle and improves their user experience.Other places that can involve minting an NFT include visiting certain landmarks, UNESCO World Heritage sites, attending a specific sporting event, groundhopping, or the like.

[0044] NFTs can also be minted when a specific time is reached or a specified period of time has elapsed. For example, an NFT can be minted when a specific time is reached on a specific date, the vehicle owner's birthday, the anniversary of the vehicle's registration or sale date, the expiration of a financing period, or similar events.

[0045] NFTs can also be minted when the vehicle has traveled a specified distance, for example, every 10,000 kilometers, 50,000 kilometers, or 100,000 kilometers, and / or when a certain number or combination of events has occurred, such as visiting 10 UNESCO sites or visiting 100 stadiums while groundhopping. An NFT can also include information representative of its rarity, such as bronze, silver, or gold status. For example, a silver-status NFT can be minted every 50,000 kilometers, and a gold-status NFT every 100,000 kilometers. Differentiation can also be made between different drivers of the vehicle.

[0046] This can also be used to mint driver-related NFTs, taking into account additional vehicle-related information. For example, an NFT can be minted if driver X has not exceeded the speed limit by more than, say, 10 km / h for ten years.

[0047] Generally, NFTs can be minted when individual vehicle functions occur or are used, or are missing or not used. For example, an NFT can be minted if the vehicle has been listened to the radio for 1,000 hours, a rear seat of the vehicle has never been used, the vehicle's windshield wipers have been wiped one million times, the vehicle's rear fog light has never been used, and so on. Minting such NFTs can also be used to assess the condition of the vehicle, which can be relevant for price negotiations when reselling the vehicle. For example, for a vehicle with an automatic transmission, the number of kickdowns performed can be counted, and an NFT can be minted every 1,000 kickdowns. The more such NFTs minted for the vehicle, the greater its wear and tear.

[0048] The NFTs minted for a specific vehicle can be compared with those minted for other vehicles. This allows for a competition, a so-called challenge. For example, an NFT can be minted for the vehicle in a fleet that has traveled the greatest distance in a given year, was operated most efficiently, traveled the most passenger kilometers, driven the fastest, spent the longest time in traffic jams, had the longest service life, had the most gold-status NFTs, and so on. It is also possible to count the number of users who use a particular vehicle function, for example, the thousandth user of Live Traffic.

[0049] By holding such challenges, customers' interest in the vehicle is increased and a particularly exciting user experience is generated.

[0050] In an information technology system comprising a vehicle, a central processing unit, and a minting device, according to the invention, the vehicle, the central processing unit, and the minting device are configured to carry out a method described above. The vehicle can comprise one or more computing units that are actively involved in minting the NFT. These include said detection device, collection device, aggregation device, conversion device, and transmission device, wherein the vehicle has at least one internal detection device, conversion device, and transmission device. One or more detection devices, collection devices, and / or aggregation devices can also be provided externally in the central processing unit. A configuration device for configuring the respective devices can be implemented internally or externally in the vehicle.The minting device can also be part of the central processing unit or operated by a third party. For example, the minting device is a component of a distributed infrastructure used to manage a blockchain operated by distributed ledger technology. The individual components of the information technology system can exchange data with each other via a variety of proven communication paths.

[0051] An advantageous development of the information technology system comprises a mobile device coupled to the vehicle directly or indirectly via the central processing unit, wherein an external recording device, collection device and / or aggregation device is implemented on the mobile device. The mobile device is, for example, a smartphone, tablet computer, laptop, a wearable such as a smartwatch or the like. The connection between the vehicle and the mobile device can be wired, for example via a USB cable, and / or wireless, for example via WLAN, Bluetooth, NFC or the like. Software or an application can be executed on the mobile device, which provides the corresponding functionality of a recording device, collection device and / or aggregation device via the mobile device. The information technology system can thus be expanded particularly easily and flexibly.

[0052] Further advantageous embodiments of the method according to the invention for minting and using vehicle-related non-fungible tokens and of the information technology system used for this purpose also emerge from the exemplary embodiments which are described in more detail below with reference to the figures.

[0053] Showing: Fig. 1 a schematic representation of an information technology system according to the invention used for minting non-fungible tokens; and Fig. 2 a schematic flow diagram of a method according to the invention for minting a non-fungible token.

[0054] Fig. 1 shows a schematic representation of an information technology system 1 according to the invention, comprising a vehicle 2, a central processing unit 4, a configuration device KONF, a minting device PRÄ, and a wallet 3 for storing non-fungible tokens (NFTs). However, a non-fungible token (NFT) is not stored directly in the wallet 3, but is stored as an information block in a decentralized blockchain. The information block contains an identifier of a user account assigned to a user. This identifier is typically formed by a public key. To transfer a non-fungible token (NFT), the identifier of a new user is then written into the information block of the non-fungible token (NFT). For authenticated authorization of this process, a private key of the original owner is required. This private key is stored in the wallet 3.

[0055] With the help of information technology system 1, the minting and use of vehicle-related non-fungible tokens (NFTs) is possible. Such a non-fungible token (NFT) includes, for example, proof of ownership, usage rights, and / or properties of vehicle 2. Vehicle 2, with its internal systems and computing units (not shown in detail), is part of information technology system 1 and participates in the minting of the non-fungible token (NFT). Thus, vehicle-related data is collected from vehicle 2, which is used to mint the non-fungible token (NFT).

[0056] To acquire relevant data, for example, sensor values ​​or data read via a bus system of the vehicle 2, one or more processing units of the vehicle 2 comprise an acquisition device ERF-i. The acquisition device ERF-i reads corresponding sensor data and / or vehicle bus data and generates raw data RD from it. The raw data RD is forwarded to a collection device SAM-i for storage. A collection device SAM-i can also receive raw data RD from multiple acquisition devices ERF-i.

[0057] The stored raw data RD is then forwarded to an aggregation device AGG-i for processing. Here, too, an aggregation device AGG-i can receive raw data RD from one or more collection devices SAM-i. In the embodiment in Fig. 1 shows only one aggregation device AGG-i for vehicle 2. However, vehicle 2 can also contain multiple aggregation devices AGG-i.

[0058] After the raw data RD has been successfully transferred to the aggregation device AGG-i, the corresponding raw data RD can be deleted from the SAM-i collection devices. To prepare the raw data RD to generate processed data AD, the raw data RD is, for example, filtered, converted to a uniform file format, sorted, irrelevant data is discarded, integrated, or further digitally processed in another way.

[0059] The processed data AD is then transmitted to a conversion device WAN-i, which converts it into NFT input data ED. The NFT input data ED has a corresponding file format required for minting non-fungible tokens (NFTs) and contains the information to be integrated into a non-fungible token (NFT). The minting device PRÄ can then read the NFT input data ED and mint it in an unchanged form into a non-fungible token (NFT). For this purpose, the minting device PRÄ integrates corresponding information blocks into the blockchain managed by a distributed infrastructure. To transmit the NFT input data ED from vehicle 2 to the minting device PRÄ, vehicle 2 sends the NFT input data ED via a transmission device ÜBE-i.For example, the NFT input data ED can be transmitted via mobile communications to a cloud server, which then forwards the NFT input data ED to the distributed infrastructure used to manage the blockchain via the internet. The cloud server can also form a node of the distributed infrastructure itself. Likewise, the central processing unit 4 can form the cloud server or operate as a node of the distributed infrastructure.

[0060] After processing the corresponding NFT input data ED and minting the non-fungible token NFT by the distributed infrastructure, the corresponding non-fungible token NFT is assigned to the user account accessible via the private key stored in Wallet 3.

[0061] Depending on the information to be included in a non-fungible token (NFT), data can also be retrieved from the central processing unit 4, for example, a cloud server or the backend of a vehicle manufacturer. This allows the integration of information related to the management of a vehicle fleet into a non-fungible token (NFT). For this purpose, the central processing unit 4, analogous to the vehicle 2, comprises at least one acquisition device (ERF-e), one collection device (SAM-e), and one aggregation device (AGG-e). The processed data (AD) generated by the aggregation device (AGG-e) integrated into the central processing unit 4 is then transmitted to the vehicle 2 and fed into the conversion device (WAN-i).By integrating the vehicle 2 into the minting process of a non-fungible token (NFT) that includes data obtained from the central processing unit 4, it is ensured in a particularly reliable manner that unauthorized minting of non-fungible tokens (NFT) valid for the vehicle 2 is prevented.

[0062] Depending on the desired non-fungible token (NFT), a wide variety of data must be collected by different devices for different periods of time. For this purpose, the individual devices, such as the ERF-i, ERF-e collection device, the SAM-i, SAM-e collection device, the AGG-i, AGG-e aggregation device, the WAN-i conversion device, and the ÜBE-i transmission device, must be parameterized, i.e., configured. Such configuration is performed using a configuration data set K generated by the KONF configuration device. The KONF configuration device can be implemented internally in the vehicle, in the central processing unit 4, or externally to these two devices, as shown.The extent to which the individual devices of the information technology system 1 are configured by the configuration device KONF depends on the type of non-fungible token (NFT) to be created and the authorization level of the user operating the configuration device KONF. For example, a layperson can select predefined configuration profiles from a list of predefined configuration data sets. However, an expert, should this be desired or necessary, will be able to make detailed settings on the individual devices down to a programming level.

[0063] Fig. Figure 2 shows a schematic flow diagram of a method sequence according to the invention for minting a non-fungible token (NFT). In a method step 201 indicated by an arrow, an administrator of the central processing unit 4 defines which types of non-fungible tokens (NFT) can be issued. From this, a definition data set (DEF) is generated, which contains the NFT definitions, including the configuration and settings of the individual devices.

[0064] In a process step 202, a list of mintable non-fungible tokens (NFT) is generated from the definition data set DEF. These tokens are then made available for issuance to an NFT service.

[0065] In a method step 203, a user allows his vehicle 2 to participate in the NFT service and selects the desired non-fungible tokens NFT to be minted.

[0066] In a method step 204, data is transmitted for all vehicles 2 for which non-fungible tokens (NFTs) are desired. This data informs the respective vehicles 2 which raw data RD must be collected to generate the corresponding non-fungible tokens (NFTs) and how this data should be further processed. The corresponding information is obtained by a first distributed system 5, which comprises the vehicles 2 and the central processing unit 4. Mobile devices such as a smartphone can also be part of the first distributed system 5. The acquisition of the raw data RD is symbolized by a box 6, and the processing of the raw data RD into NFT input data ED is symbolized by a box 7.

[0067] In method step 205, the NFT input data ED are transmitted to the embossing device PRÄ via the vehicle-internal transmission device ÜBE-i. In the embodiment in Fig.2, the data transmission takes place indirectly via a processing device AGG-PRÄ integrated into the central processing unit 4. Thus, using the processing device AGG-PRÄ, several data sets of NFT input data ED can be summarized and then transferred to the minting device PRÄ in method step 206. The minting device PRÄ can also be part of a second distributed system 9, which manages the blockchain underlying a corresponding non-fungible token NFT. In method step 207, the minting device PRÄ is configured according to the definition data set DEF.

[0068] In method step 208, vehicle 2 makes a request as to whether non-fungible tokens (NFTs) can be received or automatically issues a notification that non-fungible tokens (NFTs) can be issued.

[0069] In process step 209, the minting device PRÄ finally mints the non-fungible tokens (NFTs) to be generated according to the NFT input data ED by including corresponding information blocks in the respective underlying blockchain. For this purpose, intelligent contracts (SCs), also known as smart contracts, are signed. In process step 210, the minting device PRÄ initiates the transfer of the minted non-fungible tokens (NFTs) to the user's wallet 3.

Claims

[1] Method for minting and using vehicle-related non-fungible tokens (NFT), wherein an information technology system (1) mints at least one non-fungible token (NFT) assigned to a vehicle (2) which contains at least one proof of ownership, rights of use and / or properties of the vehicle (2) includes, where at least one vehicle-internal recording device (ERF-i) records vehicle-related raw data (RD), an internal and / or external vehicle collection device (SAM-i, SAM-e) stores at least a subset of the raw data (RD), characterized by , that an in-vehicle and / or an out-of-vehicle aggregation device (AGG-i, AGG-e) processes at least a subset of stored raw data (RD), an in-vehicle conversion device (WAN-i) converts processed data (AD) into NFT input data (ED), an in-vehicle transmission device (ÜBE-i) transmits the NFT input data (ED) to an out-of-vehicle minting device (PRÄ), which mints one of the non-fungible tokens (NFT) in unchanged form, including the NFT input data (ED); and wherein the properties configurable for the production of a vehicle (2) are included in one of the non-fungible tokens (NFT), and for a vehicle (2) with a unique property combination, the production of another vehicle (2) corresponding to the unique property combination is prevented, and wherein such a non-fungible token (NFT) is minted during the manufacture of the vehicle (2). [2] Method according to claim 1, characterized bythat at least one vehicle-external recording device (ERF-e) is integrated into the process for generating processed data (AD). [3] Method according to claim 1 or 2, characterized by that at least two separate vehicle subsystems each have their own aggregation device (AGG-i) and raw data (RD) recorded in a respective vehicle subsystem are processed by the respective aggregation device (AGG-i) of the vehicle subsystem. [4] Method according to one of claims 1 to 3, characterized by that processed data (AD) are temporarily stored in the aggregation device (AGG-i, AGG-e) before they are transmitted to the conversion device (WAN-i). [5] Method according to one of claims 1 to 4, characterized bythat a configuration data record (K) is generated by means of a configuration device (KONF), which configuration data record comprises a configuration for a respective acquisition device (ERF-i, ERF-e), collection device (SAM-i, SAM-e), aggregation device (AGG-i, AGG-e), conversion device (WAN-i) and / or transmission device (ÜBE-i), which configuration is read in by a respective device (ERF-i, ERF-e, SAM-i, SAM-e, AGG-i, AGG-e, WAN-i, ÜBE-i) in order to control the behavior of a respective device (ERF-i, ERF-e, SAM-i, SAM-e, AGG-i, AGG-e, WAN-i, ÜBE-i) for minting a specific non-fungible token (NFT). [6] Method according to claim 5, characterized by that a configuration data record (K) comprises at least one of the following information: - a definition of the NFT input data (ED) to be generated; - a definition of events when a non-fungible token (NFT) should be minted; - a definition of the raw data to be collected (RD); - a definition of an aggregation function used by an aggregation device (AGG-i, AGG-e) to process the raw data (RD); and / or - a definition of a conversion function used by the conversion device (WAN-i) to convert the processed data (AD) into NFT input data (ED). [7] Method according to claim 5 or 6, characterized by that a predefined configuration data record (K) is generated from a list of predefined configuration data records (K) by the configuration device (KONF) and read in by the devices (ERF-i, ERF-e, SAM-i, SAM-e, AGG-i, AGG-e, WAN-i, ÜBE-i). [8] Method according to one of claims 1 to 7, characterized by that a user manually initiates the minting of one of the non-fungible tokens (NFT) or that a query is sent to the user to confirm the minting of the non-fungible token (NFT) before an automatic minting of one of the non-fungible tokens (NFT). [9] Method according to one of claims 1 to 8, characterized by that a private key, with the help of which a transaction of one of the non-fungible tokens (NFT) can be initiated to third parties, is stored in a vehicle-internal hardware wallet and / or in a wallet (3) which can be accessed from the vehicle (2). [10] Method according to one of claims 1 to 9, characterized by that a non-fungible token (NFT) will be minted if at least one of the following events occurs: - Sale of the vehicle (2); - carrying out repairs or maintenance on the vehicle (2); - stay, with the vehicle (2), at a fixed location; - reaching a specified time or elapse of a specified period of time; - covering, with the vehicle (2), a specified distance; - occurrence or absence of a specific vehicle function; and / or - Exceeding or falling short of a vehicle performance in comparison to the respective vehicle performance of the vehicles (2) in a vehicle fleet. [11] Information technology system (1) with a vehicle (2), a central processing unit (4) and a stamping device (PRÄ), characterized by that the vehicle (2), the central processing unit (4) and the embossing device (PRÄ) are designed to carry out a method according to one of claims 1 to 10. [12] Information technology system (1) according to claim 11, characterized by a mobile terminal coupled to the vehicle (2) directly or indirectly via the central processing unit (4), wherein a vehicle-external recording device (ERF-e), collecting device (SAM-e) and / or aggregating device (AGG-e) is executed on the mobile terminal.

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