TY - JOUR AU - Sergey Bushelenkov AU - Alexander Paramonov AU - Ammar Muthanna AU - Ahmed El-Latif AU - Andrey Koucheryavy AU - Osama Alfarraj AU - Pawel Plawiak AU - Abdelhamied Ateya AB -
This article presents a new network model for IoT that is based on a multi-story building structure. The model locates network nodes in a regular, cubic lattice-like structure, resulting in an equation for the signal-to-noise ratio (SNR). The study also determines the relationship between traffic density, network density, and SNR. In addition, the article explores the potential of percolation theory in characterizing network functionality. The findings offer a new approach to network design and planning, allowing for selecting a network topology that meets criteria and requirements while ensuring connectivity and improving efficiency. The developed analytical apparatus provides valuable insights into the properties of the network and its applicability to specific conditions.
BT - Mathematics DO - 10.3390/math11061403 LA - eng N2 -This article presents a new network model for IoT that is based on a multi-story building structure. The model locates network nodes in a regular, cubic lattice-like structure, resulting in an equation for the signal-to-noise ratio (SNR). The study also determines the relationship between traffic density, network density, and SNR. In addition, the article explores the potential of percolation theory in characterizing network functionality. The findings offer a new approach to network design and planning, allowing for selecting a network topology that meets criteria and requirements while ensuring connectivity and improving efficiency. The developed analytical apparatus provides valuable insights into the properties of the network and its applicability to specific conditions.
PY - 2023 T2 - Mathematics TI - Multi-Story Building Model for Efficient IoT Network Design UR - https://www.mdpi.com/2227-7390/11/6/1403 VL - 11 SN - 2227-7390 ER -