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Energy-Efficient Elliptic Curve Cryptography-Based DTLS Key Establishment Protocol for IoT Communication

机译:基于节能椭圆曲线加密的DTLS关键建立协议,用于物联网通信

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Security is the most important aspect in the Internet of Things (IoT) network. Datagram transport layer security (DTLS) protocol helps in achieving secure communication in IoT network. To run the DTLS protocol, key establishment should take place between communicating devices. Key establishment can be done by using either symmetric keys or asymmetric keys. Using symmetric key (preshared key) mode perfect secrecy and security cannot be achieved. If symmetric key is compromised, then there may be a chance of decrypting the messages of the previous sessions by the attacker. In order to overcome above-mentioned drawbacks and to increase the level of security an efficient elliptic curve cryptography (ECC)-based DTLS key establishment protocol for IoT communication is proposed. In the proposed method, ECC plays a major role in providing security. The proposed key establishment protocol is implemented in MATLAB, and the performance of proposed protocol with traditional key establishment protocol in terms of different simulation parameters is compared.
机译:安全是事物互联网(物联网)网络中最重要的方面。数据报传输层安全性(DTLS)协议有助于实现IOT网络中的安全通信。要运行DTLS协议,应在通信设备之间进行密钥建立。可以通过使用对称键或非对称键来完成键建立。使用对称密钥(预先提示键)模式无法实现完美的保密和安全性。如果对称密钥受到损害,则可能有机会解密攻击者的前一会话的消息。为了克服上述缺点并提高安全水平,提出了基于IOT通信的基于高效的椭圆曲线加密(ECC)的DTL密钥建立协议。在该方法中,ECC在提供安全方面发挥着重要作用。该拟议的关键建立议定书在Matlab中实施,比较了在不同仿真参数方面与传统关键建立协议的提议议定书的表现。

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