QuantoSniff: A Next Generation Cyber Defence using Quantum-Safe Cryptography
QuantoSniff: A Next Generation Cyber Defence using Quantum-Safe Cryptography
批准号:
10076739
负责人:
金额:
$1.99万
依托单位国家:
英国
项目类别:
Collaborative R&D
财政年份:
2023
资助国家:
英国
项目状态:
已结题
起止时间:
2023 至 --
中文摘要
量子嗅探密码学是一种新颖的密码学方法,可以有效地抵御量子计算机的攻击。随着量子计算技术的进步,传统的密码系统越来越容易受到攻击。随着量子计算技术的进步,对抗量子加密解决方案的需求将越来越大。这是由于量子计算机能够快速解决经典计算机难以解决或无法解决的数学问题。为了利用量子安全加密技术实现下一代网络防御,必须引入能够抵御经典计算机和量子计算机攻击的密码系统。这将需要开发创新的加密算法,这些算法可以提供与传统加密算法相同的安全级别,同时不受量子计算机的攻击。作为我们加强网络安全弹性的持续承诺的一部分,我们推出了“QuantoSniff”——一个旨在促进和提供量子安全加密的安全平台。我们的方法是一种复杂的方法,利用量子力学特性来确保安全通信。它最有前途的技术之一是量子密钥分发(QKD),它利用量子力学原理安全地分发加密密钥。这个过程需要在升级现有密码系统的同时开发和集成新的密码算法。
英文摘要
QuantoSniff cryptography is a novel cryptographic approach that can effectively withstand attacks from quantum computers. With the advancement of quantum computing technology, conventional cryptographic systems are increasingly susceptible to attacks. As quantum computing technology progresses, there will be an increasing need for quantum-resistant cryptographic solutions. This is due to the ability of quantum computers to rapidly solve mathematical problems that are either challenging or impossible for classical computers.To achieve a next-generation cyber defence using quantum-safe cryptography, it is imperative to introduce cryptographic systems that can resist attacks from classical and quantum computers. This would necessitate the development of innovative cryptographic algorithms that can provide the same level of security as traditional cryptographic algorithms while being immune to attacks from quantum computers.As a part of our ongoing commitment to strengthening cybersecurity resilience, we introduce "QuantoSniff" - a secure platform designed to facilitate and deliver quantum-safe cryptography.Our approach is a sophisticated method that leverages quantum mechanical properties to ensure secure communication. One of its most promising techniques is known as quantum key distribution (QKD), which employs quantum mechanics principles to distribute encryption keys securely. This process entails developing and integrating new cryptographic algorithms while upgrading existing cryptographic systems.
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批准号:--
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项目类别:--
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资助金额:20万元
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批准年份:2020
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负责人:Panagiotis Kotetes
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依托单位: