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通过SALIGP和加密身份验证来提高云安全性和脱复制效率.

J K Periasamy1, S Prabhakar2, A Vanathi3

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本研究介绍了一种后量子云安全方法,该方法通过使用遗传编程和区块链提高了数据删复效率. 采用加密分复制身份验证方案 (CDAS) 的SALIGP方法提高了云安全性和存储效率.

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科学领域:

  • 计算机科学 计算机科学
  • 信息安全 信息安全
  • 云计算 云计算 云计算 云计算

背景情况:

  • 云计算提供了可扩展性和资源共享,但在数据安全,资源管理和数据重复方面面临挑战.
  • 云中的数据重复导致存储效率低下,成本增加和潜在的隐私风险.
  • 现有的云安全措施与分散的监管和动态环境作斗争.

研究的目的:

  • 提出一个后量子机制,以提高云安全性和数据脱复制效率.
  • 解决分布式云环境中数据重复和安全的挑战.
  • 引入一种用于云计算中安全和高效的数据管理的新方法.

主要方法:

  • 采用SALIGP方法,利用基因编程和采用Bloom过器的几何方法来检测重复.
  • 整合使用区块链进行安全文件存储和检索的加密分复制身份验证计划 (CDAS).
  • 在外包之前预先加密用户数据,以便在删除重复过程中增强隐私.

主要成果:

  • 显著减少跨网络节点的计算和通信时间,特别是在密钥生成和组操作中.
  • 通过在云外包之前对用户数据进行预加密来增强隐私保护.
  • 证明了云数据安全性,可靠性和存储效率的改进.

结论:

  • 建议使用CDAS的SALIGP方法为现代云计算提供了一个可扩展和安全的框架.
  • 双层方法有效地解决了在动态,分布式云环境中的冗余数据问题.
  • 该系统在云数据安全性,可靠性和存储效率方面提供了实质性的改进.