实时鱼眼镜头失真校正使用自动生成的流加速器

Nikolaos Bellas, S. Chai, Malcolm Dwyer, D. Linzmeier
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引用次数: 27

摘要

鱼眼镜头通常用于科学或虚拟现实应用,以扩大传统相机的视野。鱼眼镜头畸变校正是一种将扭曲的鱼眼图像恢复到自然视角空间的图像处理应用。该应用程序的特点是非线性流存储器访问模式,使主存储器带宽成为关键的性能限制。我们在包含Xilinx Virtex-4 FPGA的定制板上开发了一个鱼眼镜头畸变校正系统。我们使用高级流语言表达应用程序,并利用Proteus(一个架构合成工具)快速探索设计空间并生成最适合我们的成本和性能限制的流加速器。本文表明,适当的ESL工具可以快速原型化和设计现实生活中,具有复杂内存访问模式和硬件软件交互机制的性能关键和成本敏感系统。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Real-Time Fisheye Lens Distortion Correction Using Automatically Generated Streaming Accelerators
Fisheye lenses are often used in scientific or virtual reality applications to enlarge the field of view of a conventional camera. Fisheye lens distortion correction is an image processing application which transforms the distorted fisheye images back to the natural-looking perspective space. This application is characterized by non-linear streaming memory access patterns that make main memory bandwidth a key performance limiter. We have developed a fisheye lens distortion correction system on a custom board that includes a Xilinx Virtex-4 FPGA. We express the application in a high level streaming language, and we utilize Proteus, an architectural synthesis tool, to quickly explore the design space and generate the streaming accelerator best suited for our cost and performance constraints. This paper shows that appropriate ESL tools enable rapid prototyping and design of real-life, performance critical and cost sensitive systems with complex memory access patterns and hardware-software interaction mechanisms.
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