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Título
Radar Technologies for Space Debris Detection: A Bibliometric Review
Autor(es)
Palabras clave
space debris radar
space debris detection
radar technology
Clasificación UNESCO
1203 Ciencia de los ordenadores
3325 Tecnología de las Telecomunicaciones
3307 Tecnología Electrónica
3307.10 Radar
Fecha de publicación
2026-08-28
Citación
del Bosque, A., Vergara, D., Burgos-García, M., Pérez-Martínez, F., Calvo-Gallego, J., & Fernández-Arias, P. (2026). Radar Technologies for Space Debris Detection: A Bibliometric Review. Aerospace, 13(9), 770. https://doi.org/10.3390/aerospace13090770
Resumen
The proliferation of artificial objects in Earth’s orbit has transformed space debris into one of the most critical challenges to space sustainability. Radar technologies play a pivotal role in the detection, tracking, and characterization of these non-functional objects, providing the backbone for global Space Situational Awareness (SSA) and collision avoidance systems. This study presents a comprehensive bibliometric analysis of radar-based space debris detection research published between 2005 and 2025. Using data retrieved from the Scopus and Web of Science databases, a curated dataset of 557 peer-reviewed journal articles was examined. The analysis explores publication trends, institutions, countries, and journals, as well as co-citation and keyword co-occurrence networks to map the intellectual and thematic structure of the field. Results reveal a sustained annual growth rate of 3.76%, with China and the United States leading global research output. Core motor themes—such as space-based radar, synthetic aperture radar, and remote sensing—define the technological foundation of the domain, while emerging clusters reflect growing interest in artificial intelligence and active debris removal. The study highlights a high degree of collaboration among researchers but significant geographic concentration of capabilities. By unveiling the evolution, collaboration patterns, and conceptual frontiers of radar-based space debris research, this work provides a quantitative foundation to guide future investigations and policy strategies aimed at ensuring long-term orbital sustainability.
URI
ISSN
2226-4310
DOI
10.3390/aerospace13090770
Versión del editor
Aparece en las colecciones
Patrocinador
Agencia Estatal de Investigación












