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A holistic link budget analysis for mmwave and thz communications in non-terrestrial networks

dc.contributor.authorEvla Safahan Ahrazoglu
dc.contributor.authorEylem Erdogan
dc.contributor.authorIbrahim Altunbas
dc.contributor.authorHalim Yanikomeroglu
dc.contributor.departmentElektronik ve Hab.Müh.Bölümü
dc.contributor.departmentElektronik ve Hab.Müh.Bölümü
dc.contributor.ituauthorAhrazoğlu, Evla Safahan
dc.contributor.ituauthorAltunbaş, İbrahim
dc.date.accessioned2026-09-17T09:10:13Z
dc.date.issued2026-01-01
dc.description.abstractThe non-terrestrial network (NTN) architecture has gained significant interest from the academia owing to its versatility and the ability to provide worldwide service. To achieve extremely high data rates in NTNs, as intended in the sixth-generation (6G) communication systems, millimeter wave (mmWave) and terahertz (THz) frequencies can be considered, enabling substantial bandwidth and data transmission capacity, which makes them highly suitable for NTN applications. However, these high-frequency signals suffer from significant propagation challenges, including atmospheric attenuation, pointing errors, and various environmental effects. Therefore, a comprehensive link budget analysis is essential to accurately assess the feasibility of mmWave/THz-based NTN systems. Existing studies in the literature often fail to fully capture certain frequency-, altitude-, and direction-dependent effects observed in mmWave/THz transmission or possible communication scenarios within the NTN architecture. In particular, while most prior works primarily focus on free-space loss or atmospheric attenuation, this study adopts a much more comprehensive approach. In this work, a detailed link budget analysis is conducted for mmWave/THz NTNs, considering free-space loss, atmospheric absorption, weather-induced effects, ionospheric disturbances, polarization mismatches, feeder losses, antenna and circuitry constraints, fading, pointing errors, and non-white noise characteristics. The results have revealed that the multi-layer structure of the NTN architecture can help reducing the excessive loss levels to a certain level that can be tolerated by high-gain directional antennas/arrays, providing multi-gigabit links and making mmWave/THz NTNs feasible for 6G communication systems.en
dc.identifier.doi10.1109/ojvt.2026.3707298
dc.identifier.eissn2644-1330
dc.identifier.endpage2007
dc.identifier.openaire2a0a2beb4a375ae3bc6a6f82895aafbb
dc.identifier.scopus2-s2.0-105043406391
dc.identifier.startpage1993
dc.identifier.urihttps://doi.org/10.1109/ojvt.2026.3707298
dc.identifier.urihttps://hdl.handle.net/11527/80940
dc.identifier.volume7
dc.identifier.wos001820965700002
dc.publisherInstitute of electrical and electronics engineers (ieee)
dc.relation.ispartofIeee open journal of vehicular technology
dc.rightsopenAccess
dc.subjectSignal processing (eess.sp)
dc.subjectSignal processing
dc.subjectFos: electrical engineering, electronic engineering, information engineering
dc.titleA holistic link budget analysis for mmwave and thz communications in non-terrestrial networks
dc.typeArticle
dspace.entity.typePublication
person.identifier.orcid0000-0002-3639-3729

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