Skip to content
Review

Smart dust technology in distributed sensor networks: architecture, energy strategies, and emerging challenges

Aug 2026 · Geotechnology, Mining and Rational Use of Natural Resources (GeoTech-VII 2026) · Vol 14297, pp. 1429706 - 1429706-10 · 0 citations · 15 references
Engineering

Abstract

Smart Dust technology represents a new class of distributed sensor networks based on large populations of autonomous micronodes with volumes on the order of a few cubic millimeters. This paper provides a structured overview of the functional architecture of such nodes, including MEMS-based sensing modules, ultra-low-power processing cores, and heterogeneous communication interfaces, as well as integrated power-management subsystems designed for operation under extreme energy constraints. Particular attention is given to energy-management strategies such as duty cycling, event-driven activation, and multimodal energy harvesting, together with the role of TinyML-based local inference in reducing communication overhead at the network edge. The discussion further addresses fundamental physical limits of miniaturization, reliability and calibration issues, security and privacy challenges in large-scale autonomous deployments, and the prospects of biodegradable platforms for environmentally sustainable implementations, highlighting the need for interdisciplinary co-design across microsystems engineering, materials science, and machine learning.

View source

We use cookies to run the site and, with your consent, for analytics and to show ads. See our Cookie Policy.