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An Evolutionary Cellular Automaton for Minimizing Energy Consumption in Network on Chip-based Soft real-time embedded systems

机译:一种进化蜂窝自动机,可在基于芯片的软实时嵌入式系统上最小化网络中的能耗

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Embedded multimedia systems with multi-application scenarios increase the number and computational power of processing elements. To satisfy this growing demand, a network on chip is used due to lower message latency, better scalability and more reliable performance predictability. Today the focus is not on the implementation of one single application on the many-core platforms, but using a single-die that support multi-application scenarios, and due to that the mapping strategies that map the application tasks on the chip should minimize the energy consumption of multiple parallel applications under timing constraints. We used a new paradigm called Evolutionary cellular automata offering diversity point of views called transition rules which are evolved in time progress in order to optimize an application's mapping.
机译:具有多应用方案的嵌入式多媒体系统增加了处理元件的数量和计算能力。为了满足这种不断增长的需求,由于较低的消息延迟,更好的可扩展性和更可靠的性能可预测性,使用芯片上的网络。今天,重点不是在许多核心平台上实现一个单一应用程序,而是使用支持多应用方案的单芯片,并且由于映射芯片上的应用程序任务的映射策略应该最小化时序约束下多个并行应用的能耗。我们使用了一种名为进化蜂窝自动机的新范式,提供了称为转换规则的分集视图,这些视图是在时间的推移中发展,以优化应用程序的映射。

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