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A novel global methodology to analyze the embeddability of real-time image processing algorithms

机译:一种新颖的全局方法,用于分析实时图像处理算法的可嵌入性

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Abstract Advanced driver assistance systems applications increasingly use cameras and image processing algorithms. To embed and achieve real-time execution of these algorithms, semiconductor companies propose heterogeneous systems-on-chip (SoCs). Embedding algorithms on this type of hardware is not trivial: One needs to determine how to partition the computational load on the different processing units. In addition, it is not easy to predict whether a given algorithm can be executed on a given heterogeneous SoC while meeting real-time constraints. We propose a novel global methodology to assist with embedding image processing algorithms on heterogeneous SoC while meeting real-time constraints (using a soft real-time analysis). Our approach proposes several heuristics predicting delays and execution times and is based on a set of multi-level test vectors which extract key features of heterogeneous architectures.
机译:摘要先进的驾驶员辅助系统应用程序越来越多地使用相机和图像处理算法。为了嵌入并实现这些算法的实时执行,半导体公司提出了异构片上系统(SoC)。在这种类型的硬件上嵌入算法并非无关紧要:需要确定如何划分不同处理单元上的计算负荷。另外,要预测是否可以在给定的异构SoC上执行给定算法同时满足实时约束并不容易。我们提出一种新颖的全局方法,以协助在异构SoC上嵌入图像处理算法,同时满足实时约束(使用软实时分析)。我们的方法提出了几种预测延迟和执行时间的启发式方法,并且基于一组提取了异构体系结构关键特征的多级测试向量。

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