Abstract
Apparatuses, methods, and systems are disclosed for network access using blockchain payments. One apparatus includes a processor and a transceiver that receives an authentication request message for a remote unit, the authentication request message including a remote unit identifier, the remote unit identifier indicating the remote unit is requesting network access via a blockchain payment. The processor generates an address for a blockchain network indicated by the remote unit identifier for receiving the blockchain payment. The transceiver receives a blockchain payment information message from the remote unit and the processor provides network access to the remote unit in response to successfully validating the received blockchain payment information.
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5G | 10/01/2021 | ISLD-202012-059 | LENOVO | Yes | Basis Patent | ||||
5G | 10/01/2021 | ISLD-202101-001 | LENOVO |
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EP3724841A1 | 5G | 10/01/2021 | ISLD-202012-059 | LENOVO | Yes | Basis Patent | ||||
CN111344727A | 5G | 10/01/2021 | ISLD-202012-059 | LENOVO | Yes | Basis Patent | ||||
WO2019114934A1 | 5G | 10/01/2021 | ISLD-202012-059 | LENOVO | No | Family Member | ||||
WO2019114934A1 | 5G | 10/01/2021 | ISLD-202101-001 | LENOVO |
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Claim
1. An apparatus comprising:
a transceiver that receives an authentication request message for a remote unit, the authentication request message including a remote unit identifier, the remote unit identifier indicating that the remote unit is requesting network access via a blockchain payment; and a processor that generates an address for a blockchain network indicated by the remote unit identifier for receiving the blockchain payment, wherein the transceiver receives a blockchain payment information message from the remote unit and the processor provides network access to the remote unit in response to successfully validating the received blockchain payment information.
2. The apparatus of claim 1, wherein the received blockchain payment information message includes a blockchain transaction.
3. The apparatus of claim 2, wherein the transceiver receives a plurality of confirmation messages from the blockchain network, each confirmation message confirming the blockchain transaction, wherein providing network access to the remote unit comprises the processor:
providing a first level of access in response to validating the blockchain transaction and prior to the transceiver receiving a first transaction confirmation message, providing a second level of access in response to the transceiver receiving the first transaction confirmation message, and providing a third level of access in response to the transceiver receiving a threshold number of confirmation messages, wherein the first level of access is a reduced level of access, the second level of access is an intermediate level of access, and the third level of access is a full level of access.
4. The apparatus of claim 3, wherein the first level of access and the second level of access limit at least one of a traffic rate of the remote unit, a number of destinations accessible to the remote unit via the network and a number of communication protocols and ports accessible to the remote unit, wherein the third level of access removes the traffic limitations of the first level of access and of the second level of access.
5. The apparatus of claim 1, wherein the blockchain payment information message is received in response to the transceiver sending a payment request message to the remote unit, the payment request message including the generated address and one or more value options, each value option indicating an amount of network access and a corresponding payment value.
6. The apparatus of claim 5, wherein the received blockchain payment information message indicates a value to be paid corresponding to a selected one of the one or more value options.
7. The apparatus of claim 1, wherein the received blockchain payment information message includes a public key of the remote unit, wherein providing network access to the remote unit comprises the processor:
generating a master session key for protecting traffic of the remote unit; and encrypting the master session key with the public key of the remote unit, wherein the transceiver sends the encrypted master session key to the remote unit.
8. The apparatus of claim 1, wherein the received blockchain payment information message includes a reference to a prior transaction, wherein the processor validates the received payment information by:
determining whether the referenced prior transaction was made by the remote unit, and determining whether the referenced prior transaction has any remaining value.
9. The apparatus of claim 8, wherein the referenced prior transaction includes a public key of the remote unit, wherein providing network access to the remote unit comprises the processor:
generating a new master session key for protecting traffic of the remote unit; and encrypting the new master session key with the public key of the remote unit, wherein the transceiver sends the new encrypted master session key to the remote unit.
10. The apparatus of claim 8, wherein the transceiver further sends a second payment request message to the remote unit in response to the processor determining that the referenced prior transaction was not made by the remote unit or determining that the referenced prior transaction does not have any remaining value.
11. The apparatus of claim 1, wherein the messages with the remote unit are exchanged by using an Extensible Authentication Protocol (�EAP�) method.
12. A method comprising:
receiving an authentication request message for a remote unit, the authentication request message including a remote unit identifier, the remote unit identifier indicating that the remote unit is requesting network access via a blockchain payment; generating an address for a blockchain network indicated by the remote unit identifier for receiving the blockchain payment; receiving a blockchain payment information message from the remote unit; and providing network access to the remote unit in response to successfully validating the received blockchain payment information.
13. (canceled)
14. (canceled)
15. (canceled)
16. An apparatus comprising:
a transceiver that: transmits an authentication response message to a mobile communication network, the authentication response message including a remote unit identifier, the remote unit identifier indicating that the apparatus is requesting network access via a blockchain payment; receives an address of a blockchain network indicated by the remote unit identifier; transmits a blockchain payment information message associated with a blockchain payment to the received address; and receives network access in response to successful validation of the blockchain payment information message.
17. The apparatus of claim 16, wherein the transmitted blockchain payment information message includes a blockchain transaction.
18. The apparatus of claim 16, wherein the blockchain payment information message is transmitted in response to receiving a payment request message from the mobile communication network, the payment request message including the address in the blockchain network and one or more value options, each value option indicating an amount of network access and a corresponding payment value.
19. The apparatus of claim 18, wherein the transmitted blockchain payment information message indicates a value to be paid corresponding to a selected one of the one or more value options.
20. The apparatus of claim 16, wherein the transmitted blockchain payment information message includes a public key of the apparatus, wherein the transceiver receives an encrypted master session key from the mobile communication network, the apparatus comprising a processor that:
decrypts the master session key with a private key that corresponds to the public key included in the blockchain payment information message; and protects traffic communicated with the mobile communication network using the master session key.
21. The apparatus of claim 16, further comprising a processor that determines to access the mobile communication network using an unexpired prior transaction, wherein the transceiver further receives a payment request message from the mobile communication network, wherein transmitting the blockchain payment information message comprises the transceiver transmitting a reference to the prior transaction in a response to the payment request message.
22. The apparatus of claim 21, wherein the referenced prior transaction includes a public key of the remote unit, wherein the transceiver receives a new encrypted master session key from the mobile communication network, the apparatus comprising a processor that:
decrypts the new master session key with a private key that corresponds to the public key included in the prior transaction; and protects traffic communicated with the mobile communication network using the new master session key.
23. The apparatus of claim 16, wherein the messages with the mobile communication network are exchanged by using an Extensible Authentication Protocol (�EAP�) method.
24. (canceled)
25. (canceled)
26. (canceled)
27. (canceled)
Associated Portfolios
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SUMMARY
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The information in blue was extracted from the third parties (Standard Setting Organisation, Espacenet)
The information in grey was provided by the patent holder
The information in purple was extracted from the FrandAvenue
Explicitly disclosed patent:openly and comprehensibly describes all details of the invention in the patent document.
Implicitly disclosed patent:does not explicitly state certain aspects of the invention, but still allows for these to be inferred from the information provided.
Basis patent:The core patent in a family, outlining the fundamental invention from which related patents or applications originate.
Family member:related patents or applications that share a common priority or original filing.