基于轻量级算法的安全物联网

A. H. Mohammed, M. Jafer
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引用次数: 0

摘要

未来有很多现代技术,最重要的是物联网,这项技术应该连接数十亿台设备,导致设备之间的大量通信,这些设备将产生大量信息,但同时也带来了另一种挑战,即保护这些信息免受风险。我们需要记住,这个设备体积小,功耗低,所以当我们使用许多轮来加密数据时,它将是昂贵的,也将是非常复杂的,正如你所知道的,当我们使用不那么复杂的计算时,我们可能会把完整性置于危险之中。我们提出了一种基于轻量级加密的算法(LWAES)。LWAES方案的第一个目标是实现最高的加密和解密速度。混合列阶段是AES设计中计算量要求最高的阶段,因此它消耗了加密和解密所需的大部分时间。在LWAES设计中,Mix Columns阶段被简单的SHIFT操作所取代。该操作从开始读取传感器到将其检索到用户所需的时间为1-8秒。此外,改进后的LWAES算法具有良好的安全性,加密过程速度快,存储过程轻量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Secure web of things based on a lightweight Algorithm
There are so many modern technologies for the future, the most important one to look for is the web of things (with), this technology supposed to connect billions of devices with lead to a massive number of communication between the devices that will produce a huge amount of the information but come with that another type of challenge which is protecting this information from being at risk. We need to put in mind that this device is small in shape and uses low power so when we use numerous rounds to encrypt the data it is will be expensive also it will be very complicated, as you know when we use less complex calculations, we may put the integrity in risk. We propose an algorithm based on lightweight encryption named (LWAES). The first goal of the LWAES scheme is to Highest speed in the encryption and decryption. The Mix Columns stage is the most computational demanding stage in the AES design, and therefore it consumes most of the time needed for encryption and decryption. In the LWAES design, the Mix Columns stage is replaced by simple SHIFT operations. This operation takes the time from the beginning of reading the sensors to the moment they were retrieved to the user 1–8 seconds. In addition to that, the modified LWAES algorithm provides good security With speed in the encryption process and lightweight in the storage process.
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