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Analytic Spherical Harmonic Coefficients for Polygonal Area Lights

机译:多边形区域光的解析球谐系数

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Spherical Harmonic (SH) lighting is widely used for real-time rendering within Precomputed Radiance Transfer (PRT) systems. SH coefficients are precomputed and stored at object vertices, and combined interactively with SH lighting coefficients to enable effects like soft shadows, interreflections, and glossy reflection. However, the most common PRT techniques assume distant, low-frequency environment lighting, for which SH lighting coefficients can easily be computed once per frame. There is currently limited support for near-field illumination and area lights, since it is non-trivial to compute the SH coefficients for an area light, and the incident lighting (SH coefficients) varies over the object geometry. We present an efficient closed-form solution for projection of uniform polygonal area lights to spherical harmonic coefficients of arbitrary order, enabling easy adoption of accurate area lighting in PRT systems, with no modifications required to the core PRT framework. Our method only requires computing zonal harmonic (ZH) coefficients, for which we introduce a novel recurrence relation. In practice, ZH coefficients are built up iteratively, with computation linear in the desired SH order. General SH coefficients can then be obtained by the recently developed sparse zonal harmonic rotation method.
机译:球形谐波(SH)照明广泛用于预计算辐射传递(PRT)系统中的实时渲染。 SH系数被预先计算并存储在对象顶点,并与SH照明系数交互组合以实现诸如柔和阴影,相互反射和光泽反射的效果。但是,最常见的PRT技术采用遥远的低频环境照明,因此可以轻松地每帧计算一次SH照明系数。当前对近场照明和区域光的支持有限,因为计算区域光的SH系数并非易事,并且入射光(SH系数)随对象几何形状的变化而变化。我们提出了一种有效的封闭形式的解决方案,用于将均匀的多边形区域光投影到任意阶数的球谐系数,从而可以轻松地在PRT系统中采用准确的区域照明,而无需对核心PRT框架进行任何修改。我们的方法仅需要计算区域谐波(ZH)系数,为此我们引入了一种新颖的递归关系。在实践中,ZH系数是通过迭代方式建立的,其计算线性为所需的SH顺序。然后,可以通过最近开发的稀疏纬向谐波旋转方法获得一般的SH系数。

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