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Network Security Technology of Intelligent Information Terminal Based on Mobile Internet of Things

机译:基于移动物联网的智能信息终端网络安全技术

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In the process of implementing the Internet of Things, the object itself has identity information and identification equipment and encounters difficulties in communication security during the process of entering the network communication. Just like the Internet and wireless sensor networks, there are security issues in information transmission. Therefore, it is of great significance to study the mobile Internet of Things network security technology depression to protect the communication information in the mobile Internet of Things. This paper mainly studies the network security technology of intelligent information terminal based on mobile Internet of Things. This article will analyze and compare the mainstream encryption algorithms of the current mobile Internet and choose a safer and more secure HASH algorithm. We study the flow of key management, key generation, key distribution, verification key distribution, key update, key storage, key backup, and key validity time setting for mobile Internet of Things, using an existing identity cryptosystem. Based on encryption, the design technology of key management and authentication in this paper is improved. Compared with other methods, the storage consumption of this method on GWN is relatively medium. In the initial stage, the storage is 32 bytes, then in registration stage 1, it reaches 84?bytes, in registration stage 2, it is 82 bytes, and then, in the login authentication phase, the number of bytes rose and reached 356 bytes in authentication phase 3. Experimental results show that this protocol has certain advantages in ensuring safety performance.
机译:在实现事物互联网的过程中,对象本身具有身份信息和识别设备,并且在进入网络通信过程中遇到通信安全性的困难。就像互联网和无线传感器网络一样,信息传输中存在安全问题。因此,研究网络安全技术抑郁症的移动互联网,以保护移动互联网中的通信信息是具有重要意义。本文主要研究基于移动互联网的智能信息终端网络安全技术。本文将分析和比较当前移动互联网的主流加密算法,并选择更安全且更安全的哈希算法。我们使用现有的身份密码系统研究了移动Internet的关键管理,关键生成,关键分布,验证密钥分布,键更新,关键存储,键备份和密钥有效时间设置的流程。根据加密,提高了本文重点管理和认证的设计技术。与其他方法相比,在GWN上的该方法的存储消耗是相对介质的。在初始阶段,存储是32字节,然后在注册阶段1中,它达到84?字节,在注册阶段2中,它是82字节,然后在登录认证阶段,字节数升起并达到356认证阶段3的字节3.实验结果表明,该协议在确保安全性能方面具有一定的优势。

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