A high-level analysis of a multi-core vision processor using SystemC and TLM2.0

J. Y. Mori, M. Hübner
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引用次数: 7

Abstract

Vision Processors are integrated circuits with the aim to put together sensors and processing elements at the same chip. There are several constraints a designer may take into account when developing a vision processor: available technology, power consumption, thermal management, fault tolerance, speed, silicon area and application-specific needs. Most of these vision processors are based on analog circuits and can perform only low-level processing, like filtering and contrast adjustment. Digital processing elements can allow for more programmability in such systems, however, the approaches found in the literature do not explore the integration of sensor and processing elements in an efficient way. In addition, it is envisioned that vision processors can take advantage of the recent Multi/Many-Core advances. In this work, a full integration is analyzed, exploring the spatial distribution of sensors and processors. All the design blocks were developed using SystemC language with TLM2.0 standard, in order to allow for a better ESL analysis. The exploration of pure LT and mixed LT/AT models is used for extract information about parallelism in data transfer and operations. An application with some well-known algorithms is analyzed for a variable number of cores, in order to validate the tool-set and the methodology used.
基于SystemC和TLM2.0的多核视觉处理器的高级分析
视觉处理器是集成电路,目的是将传感器和处理元件放在同一芯片上。设计人员在开发视觉处理器时可能要考虑几个限制因素:可用技术、功耗、热管理、容错、速度、硅面积和特定应用需求。这些视觉处理器大多基于模拟电路,只能执行低级处理,如滤波和对比度调整。数字处理元素可以在这样的系统中允许更多的可编程性,然而,在文献中发现的方法并没有以有效的方式探索传感器和处理元素的集成。此外,预计视觉处理器可以利用最近的多核/多核进展。在这项工作中,分析了一个完整的集成,探索传感器和处理器的空间分布。为了更好地进行ESL分析,所有的设计模块都是使用TLM2.0标准的SystemC语言开发的。探索纯LT和混合LT/AT模型用于提取数据传输和操作中的并行性信息。为了验证所使用的工具集和方法,本文分析了一个具有可变核数的知名算法的应用程序。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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