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Stream Processor for Real-Time Inverse Tone Mapping of Full-HD Images

机译:全高清图像实时逆色调映射的流处理器

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摘要

In this paper, an architecture design of a hardware accelerator capable to expand the dynamic range of low dynamic range images to the 32-bit high dynamic range counterpart is presented. The processor implements on-the-fly calculation of the edge-preserving bilateral filtering and luminance average, to elaborate a full-HD (1920 1080 pixels) image in 16.6 ms (60 frames/s) on field-programmable logic (FPL), by processing the incoming pixels in streaming order, without frame buffers. In this way, the design avoids the use of external DRAM and can be tightly coupled with acquiring devices, thus to enable the implementation of smart sensors. The processor complexity can be configured with different area/speed ratios to meet the requirements of different target platforms from FPLs to ASICs, obtaining, in both implementations, state-of-the-art performances.
机译:本文提出了一种硬件加速器的体系结构设计,它能够将低动态范围图像的动态范围扩展到32位高动态范围对应物。处理器对保留边缘的双边滤波和亮度平均值进行即时计算,以在现场可编程逻辑(FPL)上以16.6毫秒(60帧/秒)的速度制作出全高清(1920 1080像素)图像,通过以流顺序处理传入像素,而无需帧缓冲区。这样,设计避免了使用外部DRAM,并且可以与采集设备紧密耦合,从而可以实现智能传感器。可以将处理器复杂性配置为不同的面积/速度比,以满足从FPL到ASIC的不同目标平台的要求,在两种实现方式中均获得最先进的性能。

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