Performance Analysis of LEO Satellite-Based IoT Networks in the Presence of Interference
Ayush Kumar Dwivedi, Sachin Chaudhari, Neeraj Varshney, Pramod K., Varshney

TL;DR
This paper analyzes the performance of a star-of-star IoT network topology using LEO satellites, focusing on interference mitigation, outage probability, and system optimization through stochastic geometry and decoding schemes.
Contribution
It introduces a novel satellite-based IoT topology with interference analysis, deriving outage probabilities and optimizing system parameters for reliable communication.
Findings
The proposed topology effectively reduces outage probability with multiple satellites.
Interference mitigation schemes like SIC and CM improve network reliability.
Simulation results validate analytical models and highlight system parameter impacts.
Abstract
This paper presents a star-of-star topology for internet-of-things (IoT) networks using mega low-Earth-orbit constellations. The proposed topology enables IoT users to broadcast their sensed data to multiple satellites simultaneously over a shared channel, which is then relayed to the ground station (GS) using amplify-and-forward relaying. The GS coherently combines the signals from multiple satellites using maximal ratio combining. To analyze the performance of the proposed topology in the presence of interference, a comprehensive outage probability (OP) analysis is performed, assuming imperfect channel state information at the GS. The paper employs stochastic geometry to model the random locations of satellites, making the analysis general and independent of any specific constellation. Furthermore, the paper examines successive interference cancellation (SIC) and capture model…
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Taxonomy
TopicsSatellite Communication Systems · IoT Networks and Protocols · Advanced MIMO Systems Optimization
