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Can Ternary Computing Improve Information Assurance?

机译:三元计算可以改善信息保障吗?

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Modern computer microarchitectures build on well-established foundations that have encouraged a pattern of computational homogeneity that many cyberattacks depend on. We suggest that balanced ternary logic can be valuable to Internet of Things (IoT) security, authentication of connected vehicles, as well as hardware and software assurance, and have developed a ternary encryption scheme between a computer and smartcard based on public key exchange through non-secure communication channels to demonstrate the value of balanced ternary systems. The concurrent generation of private keys by the computer and the smartcard uses ternary schemes and cryptographic primitives such as ternary physical unclonable functions. While general purpose ternary computers have not succeeded in general use, heterogeneous computing systems with small ternary computing units dedicated to cryptographic functions have the potential to improve information assurance, and may also be designed to execute binary legacy codes.
机译:现代计算机微体系结构建立在完善的基础之上,这些基础鼓励了许多网络攻击所依赖的计算同质性模式。我们建议平衡三元逻辑对于物联网(IoT)安全性,联网车辆的身份验证以及硬件和软件保证都可能有价值,并且已经开发了一种基于计算机密钥与智能卡之间的三元加密方案,该方案通过非公钥交换来实现-安全的沟通渠道,以证明平衡的三元系统的价值。计算机和智能卡同时生成私钥使用三元方案和密码原语,例如三元物理不可克隆功能。尽管通用三元计算机未能普遍使用,但具有专用于密码功能的小型三元计算单元的异构计算系统具有改善信息保证的潜力,并且还可被设计为执行二进制旧代码。

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