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Supporting Symmetric 128-bit AES in Networked Embedded Systems: An Elliptic Curve Key Establishment Protocol-on-Chip

机译:在网络嵌入式系统中支持对称的128位AES:椭圆曲线密钥建立芯片上协议

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The secure establishment of cryptographic keys for symmetric encryption via key agreement protocols enables nodes in a network of embedded systems and remote agents to communicate securely in an insecure environment. In this paper, we propose a pure hardware implementation of a key agreement protocol, which uses the elliptic curve Diffie-Hellmann and digital signature algorithms and enables two parties, a remote agent and a networked embedded system, to establish a 128-bit symmetric key for encryption of all transmitted data via the advanced encryption scheme (AES). The resulting implementation is a protocol-on-chip that supports full 128-bit equivalent security (PoC-128). The PoC-128 has been implemented in an FPGA, but it can also be used as an IP within different embedded applications. As 128-bit security is conjectured valid for the foreseeable future, the PoC-128 goes well beyond the state of art in securing networked embedded devices.
机译:通过密钥协商协议为对称加密安全地建立加密密钥,使嵌入式系统和远程代理网络中的节点可以在不安全的环境中安全地通信。在本文中,我们提出了一种密钥协商协议的纯硬件实现,该协议使用椭圆曲线Diffie-Hellmann和数字签名算法,并使远程代理和网络嵌入式系统两方能够建立一个128位对称密钥通过高级加密方案(AES)对所有传输的数据进行加密。最终的实现是支持完整128位等效安全性(PoC-128)的片上协议。 PoC-128已在FPGA中实现,但它也可用作不同嵌入式应用程序中的IP。由于可以预见的将来128位安全性是有效的,因此PoC-128在保护联网嵌入式设备方面远远超出了现有技术水平。

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