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Multiple-process procedural texture

机译:多过程程序纹理

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Our newly developed generation of procedural textures (GPT) system automatically generates procedural textures for the computer graphics industry. The system makes use of hybrid parallel Monte Carlo tree search and gender-based genetic algorithm modules that share a common multiple-generation population of procedural textures and a knowledge database. It also uses a multi-objective fitness function. The parallel Monte Carlo tree search module was inspired by gaming algorithms. To speed up the search, this module is enhanced with knowledge from previous successfully created procedural textures or tree node analyses. The gender-based genetic algorithm module automatically simulates several key features in natural selection and uses a multiple-generation breeding population, the notion of gender, and the concept of aging. This maintains diversity while providing many breeding opportunities for highly successful offspring. A third module selects generated shaders from the multiple-generation population and mutates them by replacing nodes with subtrees using the knowledge database. We evaluated the fitness quality of each module and compared the fitness quality of the system running in both single- and multiple-process mode. The optimal fitness quality was achieved by executing the system in multiple-process mode using a hybrid of these modules. We give examples of the GPT running in interactive mode, where a user directs the search towards the desired look using an esthetic evaluation.
机译:我们新开发的程序纹理(GPT)生成系统自动为计算机图形业生成程序纹理。该系统利用混合并行蒙特卡罗树搜索和基于性别的遗传算法模块,这些模块共享通用的多代程序纹理和知识数据库。它还使用了多目标适应度函数。并行的蒙特卡洛树搜索模块受到游戏算法的启发。为了加快搜索速度,该模块使用先前成功创建的过程纹理或树节点分析的知识进行了增强。基于性别的遗传算法模块自动模拟自然选择中的几个关键特征,并使用多代育种种群,性别概念和衰老概念。这样既保持了多样性,又为成功的后代提供了许多繁殖机会。第三个模块从多代种群中选择生成的着色器,并使用知识数据库通过用子树替换节点来对它们进行突变。我们评估了每个模块的适应性质量,并比较了在单进程和多进程模式下运行的系统的适应性质量。通过使用这些模块的混合以多进程模式执行系统,可以达到最佳的适应性质量。我们给出了以互动模式运行的GPT的示例,在该模式下,用户使用美学评估将搜索引导至所需外观。

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