首页|期刊导航|Computational Visual Media|A multi-scale yarn appearance model with fiber details

A multi-scale yarn appearance model with fiber detailsOA

中文摘要

Rendering cloth realistically has always been a challenge due to its intricate structure.Cloth is made up of fibers,plies,and yarns,and previous curvebased models,while detailed,were computationally expensive and inflexible for large pieces of cloth.To address this,we propose a simplified approach.We introduce a geometric aggregation technique that reduces ray-tracing computation by using fewer curves,focusing only on yarn curves.Our model generates ply and fiber shapes implicitly,compensating for the lack of explicit geometry with a novel shadowing component.We also present a shading model that simplifies light interactions between fibers by categorizing them into four components,accurately capturing specular and scattered light in both forward and backward directions.To render large pieces of cloth efficiently,we propose a multi-scale solution based on pixel coverage.Our yarn shading model can be rendered 3–5 times faster with less memory,for near-field views,compared to fiberbased models.Additionally,our multi-scale solution offers a 20%speed boost for distant cloth observation.

Apoorv Khattar;Junqiu Zhu;Jean-Marie Aubry;Emiliano Padovani;Marc Droske;Ling-Qi Yan;Zahra Montazeri

The University of Manchester,Manchester M139PL,UKUniversity of California Santa Barbara,California 93106,USAWETA FX,Wellington 6011,New ZealandWETA FX,Wellington 6011,New ZealandWETA FX,Wellington 6011,New ZealandUniversity of California Santa Barbara,California 93106,USAThe University of Manchester,Manchester M139PL,UK

轻工纺织

clothrenderingyarnshadingbidirectional scattering distribution function(BSDF)

《Computational Visual Media》 2026 (1)

P.203-219,17

partially funded a University of Manchester Dean’s Award.

10.26599/CVM.2025.9450440

评论