A Quantum Cryptography Communication Network Based on Software Defined Network

With the development of the Internet, information security has attracted great attention in today’s society, and quantum cryptography communication network based on quantum key distribution (QKD) is a very important part of this field, since the quantum key distribution combined with one-time-pad en...

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Main Authors: Zhang Hongliang, Quan Dongxiao, Zhu Changhua, Li Zhigang
Format: Article
Language:English
Published: EDP Sciences 2018-01-01
Series:ITM Web of Conferences
Online Access:https://doi.org/10.1051/itmconf/20181701008
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spelling doaj-1ef1ae9ae4364ef1ad84360cd083f73e2021-02-02T08:20:58ZengEDP SciencesITM Web of Conferences2271-20972018-01-01170100810.1051/itmconf/20181701008itmconf_wcsn2018_01008A Quantum Cryptography Communication Network Based on Software Defined NetworkZhang HongliangQuan DongxiaoZhu ChanghuaLi ZhigangWith the development of the Internet, information security has attracted great attention in today’s society, and quantum cryptography communication network based on quantum key distribution (QKD) is a very important part of this field, since the quantum key distribution combined with one-time-pad encryption scheme can guarantee the unconditional security of the information. The secret key generated by quantum key distribution protocols is a very valuable resource, so making full use of key resources is particularly important. Software definition network (SDN) is a new type of network architecture, and it separates the control plane and the data plane of network devices through OpenFlow technology, thus it realizes the flexible control of the network resources. In this paper, a quantum cryptography communication network model based on SDN is proposed to realize the flexible control of quantum key resources in the whole cryptography communication network. Moreover, we propose a routing algorithm which takes into account both the hops and the end-to-end availible keys, so that the secret key generated by QKD can be used effectively. We also simulate this quantum cryptography communication network, and the result shows that based on SDN and the proposed routing algorithm the performance of this network is improved since the effective use of the quantum key resources.https://doi.org/10.1051/itmconf/20181701008
collection DOAJ
language English
format Article
sources DOAJ
author Zhang Hongliang
Quan Dongxiao
Zhu Changhua
Li Zhigang
spellingShingle Zhang Hongliang
Quan Dongxiao
Zhu Changhua
Li Zhigang
A Quantum Cryptography Communication Network Based on Software Defined Network
ITM Web of Conferences
author_facet Zhang Hongliang
Quan Dongxiao
Zhu Changhua
Li Zhigang
author_sort Zhang Hongliang
title A Quantum Cryptography Communication Network Based on Software Defined Network
title_short A Quantum Cryptography Communication Network Based on Software Defined Network
title_full A Quantum Cryptography Communication Network Based on Software Defined Network
title_fullStr A Quantum Cryptography Communication Network Based on Software Defined Network
title_full_unstemmed A Quantum Cryptography Communication Network Based on Software Defined Network
title_sort quantum cryptography communication network based on software defined network
publisher EDP Sciences
series ITM Web of Conferences
issn 2271-2097
publishDate 2018-01-01
description With the development of the Internet, information security has attracted great attention in today’s society, and quantum cryptography communication network based on quantum key distribution (QKD) is a very important part of this field, since the quantum key distribution combined with one-time-pad encryption scheme can guarantee the unconditional security of the information. The secret key generated by quantum key distribution protocols is a very valuable resource, so making full use of key resources is particularly important. Software definition network (SDN) is a new type of network architecture, and it separates the control plane and the data plane of network devices through OpenFlow technology, thus it realizes the flexible control of the network resources. In this paper, a quantum cryptography communication network model based on SDN is proposed to realize the flexible control of quantum key resources in the whole cryptography communication network. Moreover, we propose a routing algorithm which takes into account both the hops and the end-to-end availible keys, so that the secret key generated by QKD can be used effectively. We also simulate this quantum cryptography communication network, and the result shows that based on SDN and the proposed routing algorithm the performance of this network is improved since the effective use of the quantum key resources.
url https://doi.org/10.1051/itmconf/20181701008
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AT quandongxiao aquantumcryptographycommunicationnetworkbasedonsoftwaredefinednetwork
AT zhuchanghua aquantumcryptographycommunicationnetworkbasedonsoftwaredefinednetwork
AT lizhigang aquantumcryptographycommunicationnetworkbasedonsoftwaredefinednetwork
AT zhanghongliang quantumcryptographycommunicationnetworkbasedonsoftwaredefinednetwork
AT quandongxiao quantumcryptographycommunicationnetworkbasedonsoftwaredefinednetwork
AT zhuchanghua quantumcryptographycommunicationnetworkbasedonsoftwaredefinednetwork
AT lizhigang quantumcryptographycommunicationnetworkbasedonsoftwaredefinednetwork
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