Mobile commerce and authentication method having improved security based on quantum cryptography

US10644883B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-10644883-B2
Application numberUS-201715655323-A
CountryUS
Kind codeB2
Filing dateJul 20, 2017
Priority dateJan 23, 2015
Publication dateMay 5, 2020
Grant dateMay 5, 2020

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

Disclosed herein are technologies regarding a communication device and server which are capable of cryptographic communication based on quantum cryptography. A communication device for quantum cryptography authentication includes: an optical communication unit configured to receive a series of first quantum signals generated by passing through a first quantum filter of the communication device; a quantum signal generation unit configured to generate the first quantum signals by setting up the first quantum filter in a reception path for a series of second quantum signals generated and sent by a server; and a processor configured to select the setup of the first quantum filter based on a series of randomly generated first quantum states, and to control the quantum signal generation unit to generate the first quantum signals by using the first quantum filter.

First claim

Opening claim text (preview).

What is claimed is: 1. A server for quantum cryptography communication, the server comprising: an optical receiver configured to generate a series of first quantum signals by receiving a series of second quantum signals using a first quantum filter, the series of second quantum signals generated such that a series of third quantum signals are received and transmitted using a second quantum filter at a relay device, the series of third quantum signals generated by being transmitted using a third quantum filter at a mobile communication device, wherein: the series of second quantum signals pass through a first quantum channel between the relay device and the server; the series of third quantum signals pass through between the mobile communication device and the relay device; and the series of second quantum signals are generated such that at least a part of the series of third quantum signals pass through the second quantum filter at the relay device and are transferred to the server via the first quantum channel, and reach the server; a random number generator (RNG) configured to randomly generate a quantum characteristics of the optical receiver to form the first quantum filter in the first quantum channel; and a processor configured to: select a setting of the first quantum filter based on a series of randomly generated first quantum states by the random number generator; share information of the first quantum filter with the mobile communication device and the relay device via a non-quantum channel, receive information of the second quantum filter from the relay device via the non-quantum channel, and receive information of the third quantum filter from the mobile communication device or the relay device via the non-quantum channel; generate a first secret key by applying the information of the first quantum filter, the second quantum filter, and the third quantum filter to the series of first quantum signals, wherein the first secret key is the same as a second secret key generated by relay device applying the information of the first quantum filter, the second quantum filter, and the third quantum filter to the series of second quantum signals, and wherein the first secret key is the same as a third secret key generated by the mobile communication device applying the information of the first quantum filter, the second quantum filter, and the third quantum filter to the series of third quantum signals; and perform user authentication in conjunction with the mobile communication device and the relay device by using the first secret key. 2. The server of claim 1 , wherein the second quantum signals have signal strength adjusted based on a distance between the server and the relay device. 3. The server of claim 1 , wherein the random number generator (RNG) includes a quantum random number generator (QRNG). 4. A server for quantum cryptography communication, the server comprising: an optical receiver configured to receive a series of first quantum signals using a first quantum filter, the series of first quantum signals generated such that a series of second quantum signals are received and transmitted using the first quantum filter at a relay device, the series of second quantum signals generated by being transmitted using a second quantum filter at a mobile communication device, wherein: the series of first quantum signals pass through a first quantum channel between the relay device and the server; the series of second quantum signals pass through between the mobile communication device and the relay device; and the series of first quantum signals are generated such that at least a part of the series of second quantum signals pass through the first quantum filter at the relay device and are transferred to the server via the first quantum channel, and reach the server; a random number generator (RNG) configured to randomly generate a quantum characteristics of the optical receiver to form the first quantum filter in the first quantum channel; and a processor configured to: select a setting of the first quantum filter based on a series of randomly generated first quantum states by the random number generator; share information of the first quantum filter with the mobile communication device and the relay device via a non-quantum channel; and accept user authentication result performed by the relay device in conjunction with the mobile communication device by using a first secret key generated by the relay device applying the information of the first quantum filter and the second quantum filter to the series of first quantum signals, wherein the first secret key is the same as a second secret key generated by the mobile communication device applying the information of the first quantum filter and the second quantum filter to the series of second quantum signals. 5. A quantum cryptography authentication method for a server, the method comprising: randomly generating a series of first quantum states based on random numbers; selecting a first quantum filter based on the first quantum states; generating a series of first quantum signals by receiving a series of second quantum signals using the first quantum filter, the series of second quantum signals generated such that a series of third quantum signals are received and transmitted using a second quantum filter at a relay device, the series of third quantum signals generated by being transmitted using a third quantum filter at a mobile communication device, wherein: the series of second quantum signals pass through a first quantum channel between the relay device and the server; the series of third quantum signals pass through between the mobile communication device and the relay device; and the series of second quantum signals being generated such that at least a part of the series of third quantum signals pass through the second quantum filter at the relay device and are transferred to the server via the first quantum channel, and reach the server; sharing information of the first quantum filter with the mobile communication device and the relay device via a non-quantum channel, receive information of the second quantum filter from the relay device via the non-quantum channel, and receive information of the third quantum filter from the mobile communication device or the relay device via the non-quantum channel; generating a first secret key by applying the information of the first quantum filter, the second quantum filter, and the third quantum filter to the series of first quantum signals, wherein the first secret key is the same as a second secret key generated by relay device applying the information of the first quantum filter, the second quantum filter, and the third quantum filter to the series of second quantum signals, and wherein the first secret key is the same as a third secret key generated by the mobile communication device applying the information of the first quantum filter, the second quantum filter, and the third quantum filter to the series of third quantum signals; and performing user authentication in conjunction with the mobile communication device and the relay device by using the first secret key. 6. The quantum cryptography authentication method of claim 5 , wherein the second quantum signals have signal strength adjusted based on a distance between the server and the relay device.

Assignees

Inventors

Classifications

  • for authentication of entities (cryptographic mechanisms or cryptographic arrangements for entity authentication H04L9/32) · CPC title

  • H04L9/0852Primary

    Quantum cryptography (transmission systems employing electromagnetic waves other than radio waves, e.g. light, infrared H04B10/00; wavelength-division multiplex systems H04J14/02; WDM arrangements H04J14/03) · CPC title

  • using a plurality of keys or algorithms · CPC title

  • involving additional nodes, e.g. quantum relays, repeaters, intermediate nodes or remote nodes · CPC title

  • Wireless · CPC title

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What does patent US10644883B2 cover?
Disclosed herein are technologies regarding a communication device and server which are capable of cryptographic communication based on quantum cryptography. A communication device for quantum cryptography authentication includes: an optical communication unit configured to receive a series of first quantum signals generated by passing through a first quantum filter of the communication device;…
Who is the assignee on this patent?
Univ Seoul Ind Coop Found
What technology area does this patent fall under?
Primary CPC classification H04L9/0852. Mapped technology areas include Electricity.
When was this patent published?
Publication date Tue May 05 2020 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 10 related publications on this page (citations in our corpus or others sharing the same primary CPC).