Abstract

Due to exponential growth of Internet of Things (IoT) devices, the volume of data exchanged between IoT devices has increased drastically. Most IoT systems handle sensitive and confidential information with low-resource applications. For low-resource devices conventional encryption techniques are unsuitable. Ciphers are used for encrypting information on those devices to compensate for security and power consumption requirements. The objective of this study is to explore ways of improving the effectiveness and power consumption of low-resource IoT technologies in chip design using lightweight cryptography. This research work introduces an effective power algorithm to improve the low-resource IoT device which enables critical messages to be encrypted in low-power mode. For lightweight cipher performance metrics, we have created a simple and efficient model. The experimental analysis of mathematical model for power consumption in terms of using various power parameters has been compared and validated.

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