Optimized Solution for Multipath Faded Mm-Wave Signal in IoT Network
摘要
The extensive bandwidth within the millimeter-wave (mm-wave) communication system significantly benefits Internet of Things (IoT) applications. This paper introduces an optimization algorithm with a mathematical model to tackle the challenges posed by multipath fading in this communication system. Developing an optimized solution for multipath faded mm-wave signals in IoT networks enhances communication efficiency and aligns with the imperative for a smart environment, fostering intelligent connectivity that contributes to sustainable and eco-friendly practices. The introduced method improves the signal power and minimizes interference in transmission. The receiver may only sometimes operate under the line of sight (LOS) conditions but instead needs to rely on multipath faded signals that need to be optimized for maximum signal power. The proposed optimization method considers the threshold value of the receiver and maximizes system performance. The universal optimization process applies to multipath fading signals with minimum computational complexity in mm-wave communication. Simulations test the model’s performance, and results are compared using the ideal phase-shift method. The results demonstrate high performance compared with the ideal results.