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An authentication protocol based on chaos and zero knowledge proof

机译:基于混沌和零知识证明的认证协议

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摘要

Port Knocking is a method for authenticating clients through a closed stance firewall, and authorising their requested actions, enabling severs to offer services to authenticated clients, without opening ports on the firewall. Advances in port knocking have resulted in an increase in complexity in design, preventing port knocking solutions from realising their potential. This paper proposes a novel port knocking solution, named Crucible, which is a secure method of authentication, with high usability and features of stealth, allowing servers and services to remain hidden and protected. Crucible is a stateless solution, only requiring the client memorise a command, the server's IP and a chosen password. The solution is forwarded as a method for protecting servers against attacks ranging from port scans, to zero-day exploitation. To act as a random oracle for both client and server, cryptographic hashes were generated through chaotic systems.
机译:端口爆震是通过封闭的立场防火墙进行身份验证客户端的方法,并授权其所请求的操作,使能够为经过身份验证的客户提供服务,而无需在防火墙上打开端口。 港口爆震的进步导致了设计的复杂性,防止港口敲击解决方案实现了潜力。 本文提出了一种新的港口敲击解决方案,名为Crucible,这是一种安全的认证方法,具有高可用性和隐形功能,允许服务器和服务保持隐藏和保护。 坩埚是无状态解决方案,只需要客户端记忆命令,服务器的IP和所选密码。 将解决方案作为保护服务器免受港口扫描范围的攻击,零日开采的方法转发为保护服务器。 要充当客户端和服务器的随机oracle,通过混沌系统生成加密哈希。

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