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首页> 外文期刊>Advances in space research >Fast spacecraft solar radiation pressure modeling by ray tracing on graphics processing unit
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Fast spacecraft solar radiation pressure modeling by ray tracing on graphics processing unit

机译:图形处理单元射线描绘快速航天器太阳辐射压力建模

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摘要

A novel method is presented to evaluate on the graphics processing unit (GPU) the force and torque on a spacecraft due to solar radiation pressure. The method employs efficient ray tracing techniques, developed in the graphics rendering discipline, to resolve spacecraft self-shadowing and reflections at faster than real-time computation speed. The primary algorithmic components of the ray tracing process which contribute to the method's computational efficiency are described. These components include two-level bounding volume hierarchy acceleration data structures, fast ray to bounding box intersection testing using the slab intersection algorithm and fast triangle intersection testing using the Moller-Trumbore algorithm. Spacecraft material optical properties are represented as a combination of Lambertian diffuse and ideal specular reflections. Both diffuse and specular ray-surface interactions are modeled. The approach is implemented using C++ and OpenCL and executed on a consumer grade GPU. Model validation is presented comparing ray traced force and torque values to the same quantities produce by a faceted analytic model. Numerical results illustrate the impact of self-shadowing on the force and torque calculation, and demonstrate the fast computational speed that is enabled with this implementation.
机译:提出了一种新的方法来评估图形处理单元(GPU)由于太阳辐射压力而在航天器上的力和扭矩。该方法采用高效的射线跟踪技术,在图形渲染学科中开发,以便在比实时计算速度快速解决空间自阴影和反射。描述了有助于该方法计算效率的射线跟踪过程的主要算法分量。这些组件包括双级边界体积层次加速度数据结构,使用板式交叉算法和使用Moller-Traxete算法的快速三角形交叉测试的边界盒交叉光线。航天器材料光学性质被表示为兰伯利亚弥散和理想的镜面反射的组合。弥漫性和镜面射线表面相互作用都是模拟的。该方法是使用C ++和OpenCL实现的,并在消费级GPU上执行。将射线追踪力和扭矩值的模型验证呈现到相同的数量通过刻面分析模型产生。数值结果说明了自阴影对力和扭矩计算的影响,并演示了这种实现启用的快速计算速度。

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