首页> 外文期刊>Signal Processing. Image Communication: A Publication of the the European Association for Signal Processing >Comparison between Digital Tone-Mapping Operators and a Focal-Plane Pixel-Parallel Circuit
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Comparison between Digital Tone-Mapping Operators and a Focal-Plane Pixel-Parallel Circuit

机译:数字色调映射运算符与焦面像素平行电路的比较

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摘要

In a previous work, we proposed a color extension of an existing focal-plane tone-mapping operator (FPTMO) and introduced circuit modifications that led to smaller sensing array area and simpler off-chip while-balance operations. The proposed FPTMO chip was fabricated and its experimental test setup is under development. In the present work, we systematically compare the previously proposed FPTMOs with conventional digital tone-mapping operators (DTMOs), both in terms of overall image quality and execution time. To assess the image quality, we use the Tone-Mapped image Quality Index (TMQI) metric, the Blind Tone-Mapped Quality Index (BTMQI) metric, and an image colorfulness metric. By statistically comparing the results given by both metrics, we verify that the proposed FPTMOs achieve results similar to those obtained with DTMOs, occasionally outperforming them. To compare the tone-mapping operators execution times, we perform a detailed complexity analysis. Results show that system-level software FPTMO descriptions (FPTMO functionality described in software) rank among the fastest DTMOs and that the hardware FPTMO (described in software) speed-up depends on the target frame rate. For 30-frames-per-second color image generation, the fastest FPTMO is 15 times faster than the DTMO with highest TMQI and BTMQI metric scores, and 170 times faster than the DTMO with best colorfulness metric score.
机译:在以前的工作中,我们提出了现有的聚焦平面音调映射操作员(FPTMO)的颜色扩展,并引入了导致更小的传感阵列区域和更简单的片外操作的电路修改。提出的FPTMO芯片是制造的,其实验测试设置正在开发中。在本工作中,我们系统地将先前提出的FPTMO与传统的数字色调映射运营商(DTMOS)进行了比较,无论是在整体图像质量和执行时间方面。为了评估图像质量,我们使用音调映射图像质量指数(TMQI)度量,盲音调映射质量指数(BTMQI)度量,以及图像彩色度量。通过统计上比较两个指标给出的结果,我们验证了所提出的FPTMOS达到与DTMOS获得的结果相似,偶尔会表现出来。要比较音调映射运算符的执行时间,我们执行详细的复杂性分析。结果表明,系统级软件FPTMO描述(软件中描述的FPTMO功能)在最快的DTMO中排名,并且硬件FPTMO(软件中描述的)加速取决于目标帧速率。对于每秒30帧彩色图像生成,最快的FPTMO比具有最高TMQI和BTMQI度量分数的DTMO快15倍,比DTMO具有最佳丰富度度量分数的速度快170倍。

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