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建立信任——在创建新的网络服务中兼顾质量和易用性——量子安全城域网.pdf

上传人: 明**** 编号:1011342 2025-12-21 51页 5.79MB

1、OCP EMEA Summit 29 April|Dublin,IrelandCatherine White,BTEstablishing Trust,Quality and Ease-of-Use in Creating New Network Services The Quantum Secured Metro NetworkINSECURE EXTERNAL NETWORKUltra Secure Key Exchange-Quantum Key DistributionUltra-secure key distribution on single photons using quant

2、um mechanics.QKD systems readiness at high TRL(Industrialisation,Assurance,Performance)EncryptorEncryptorSensitive DataSensitive DataDigital key derived from informationencoded on single photons-Guarantee of secrecyQuantum Key DistributionQuantum Key DistributionQUANTUM KEYCHANNELEncrypted DataSite

3、ASite BWhy Quantum Key Distribution(QKD)?oQuantum key distribution is secure against all advances in computation,including quantum computers.oQuantum Key Distribution is approaching readiness for an increasing number of use-cases,with published standards,and progress towards photonic integrated circ

4、uit QKD systems.oAdvances in Quantum Computing research pose a risk to existing cryptography.oPost Quantum Cryptography such as ML-KEM for key exchange is still limited to computational security.oChallenge 1:we need to integrate QKD into existing networks.oChallenge 2:we need cryptographers and CISO

5、/CTOs to select QKDoChallenge 3:we need to demonstrate the technology is ready oChallenge 4:we need to evolve the technology,especially for long linksIn unconditional security,there are no assumptions of computational hardness.A misnomer,as nothing is perfectly secure.(side channels,implementation f

6、laws)It means no advance in maths,computation or algorithms can lead to a vulnerabilityA similar concept/term is:information theoretic securityUnconditional Security5CryptomaniaTHE INTERNET DEPENDS ON ITAssumes trap door functions existAsymmetric(public/private key pair)cryptography is possiblePessi

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根据报告的内容,全文主要内容概括如下: 1. **量子密钥分发(QKD)技术**:QKD利用量子力学原理提供无条件安全的数据传输,抵御所有计算进步,包括量子计算机的威胁。 2. **QKD系统进展**:BT与Toshiba合作,逐步推出量子安全城域网络,包括早期试验和客户试用。 3. **UKQNTel项目**:该项目通过光纤连接剑桥大学和Adastral Park,实现加密流量传输,并使用QKD生成端到端密钥。 4. **性能与挑战**:QKD系统在45公里长链路上的性能稳定,但需要优化性能和鲁棒性。 5. **QAssure项目**:旨在加速量子安全通信技术的保证方法,包括QKD系统和网络的验证。 6. **安全性保证**:通过硬件验证、软件验证、系统级分析和内存安全设计来确保QKD系统的安全性。 7. **未来展望**:量子安全技术在网络安全领域具有巨大潜力,但仍需解决部署、管理和保证方面的挑战。
未来网络安全新篇章?" 破解未来密码的钥匙?" 如何保障数据传输安全?"
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