<resource xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance" xmlns="http://datacite.org/schema/kernel-4" xsi:schemaLocation="http://datacite.org/schema/kernel-4 http://schema.datacite.org/meta/kernel-4.1/metadata.xsd"><identifier identifierType="DOI">10.7910/DVN/YQ7AUR</identifier><creators><creator><creatorName nameType="Personal">Al-barazanchi, Karrar Sameer Khudhair</creatorName><givenName>Karrar Sameer Khudhair</givenName><familyName>Al-barazanchi</familyName></creator></creators><titles><title>Hybrid Scattering-Based Modeling and Performance Analysis of 6G Sub-THz Backhaul in Severe Dust Storms</title></titles><publisher>Harvard Dataverse</publisher><publicationYear>2026</publicationYear><subjects><subject>Engineering</subject></subjects><contributors><contributor contributorType="ContactPerson"><contributorName nameType="Personal">Al-barazanchi, Karrar Sameer Khudhair</contributorName><givenName>Karrar Sameer Khudhair</givenName><familyName>Al-barazanchi</familyName></contributor><contributor contributorType="Producer"><contributorName nameType="Personal">Al-barazanchi, Karrar Sameer Khudhair</contributorName><givenName>Karrar Sameer Khudhair</givenName><familyName>Al-barazanchi</familyName></contributor></contributors><dates><date dateType="Submitted">2026-04-04</date><date dateType="Updated">2026-04-06</date></dates><resourceType resourceTypeGeneral="Dataset"/><sizes><size>19202</size></sizes><formats><format>text/plain</format></formats><version>1.0</version><rightsList><rights rightsURI="info:eu-repo/semantics/openAccess"/><rights rightsURI="http://creativecommons.org/publicdomain/zero/1.0">CC0 1.0</rights></rightsList><descriptions><description descriptionType="Abstract">A hybrid electromagnetic scattering model implemented in Octave/MATLAB that computes dust-induced signal attenuation across the 90–300 GHz sub-terahertz band by integrating Rayleigh, Mie, and Anomalous Diffraction Theory within a Maxwell-Garnett dielectric mixing framework. The model evaluates end-to-end 6G link performance metrics, including SNR, capacity, BER, latency, and link margin across visibility conditions ranging from clear haze to severe desert dust storms.</description></descriptions><geoLocations/></resource>