ENCRYPTION COMMUNICATION SYSTEM, ENCRYPTION COMMUNICATION APPARATUS, AND ENCRYPTION COMMUNICATION METHOD
According to one embodiment, an encryption communication system configures a network with a plurality of nodes, and shares the encryption key between a first node (131) that delivers the encryption key to a first user (11) and a second node (132) that delivers the encryption key to a second user (12...
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creator | KOBAYASHI, Manabu KAINO, Kazuhisa MATSUO, Masakatsu ANDO, Koki |
description | According to one embodiment, an encryption communication system configures a network with a plurality of nodes, and shares the encryption key between a first node (131) that delivers the encryption key to a first user (11) and a second node (132) that delivers the encryption key to a second user (12). The first node (131) forms n (n > 1) systems of paths to the second node (132) over the network, generates n pieces of first data, distributes the n pieces of first data to the n systems of paths and transmits the n pieces of first data to the second node, and generates the encryption key by superimposing the n pieces of first data. The second node (132) receives the n pieces of first data from the first node (131) via the n systems of paths, and generates the encryption key by superimposing the n pieces of first data. |
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The first node (131) forms n (n > 1) systems of paths to the second node (132) over the network, generates n pieces of first data, distributes the n pieces of first data to the n systems of paths and transmits the n pieces of first data to the second node, and generates the encryption key by superimposing the n pieces of first data. 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The first node (131) forms n (n > 1) systems of paths to the second node (132) over the network, generates n pieces of first data, distributes the n pieces of first data to the n systems of paths and transmits the n pieces of first data to the second node, and generates the encryption key by superimposing the n pieces of first data. The second node (132) receives the n pieces of first data from the first node (131) via the n systems of paths, and generates the encryption key by superimposing the n pieces of first data.</abstract><oa>free_for_read</oa></addata></record> |
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language | eng ; fre ; ger |
recordid | cdi_epo_espacenet_EP4254856A1 |
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subjects | ELECTRIC COMMUNICATION TECHNIQUE ELECTRICITY TRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHICCOMMUNICATION |
title | ENCRYPTION COMMUNICATION SYSTEM, ENCRYPTION COMMUNICATION APPARATUS, AND ENCRYPTION COMMUNICATION METHOD |
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