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Architecture Exploration of a Heterogeneous Embedded Processor for the Smart Grid

机译:智能电网异构嵌入式处理器的架构探索

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摘要

Implementing the smart grid will require intelligent interaction between the power generating and consuming devices, which is achieved by installing devices capable of processing data and communicating it to various parts in the grid. The role of embedded processors will be to achieve high performance in the given real time situations. The embedded processors carry out tasks similar to security encryption, signal processing, power flow calculation etc. which are essential for data analysis and proper data transmission. Depending on where the embedded processor is in the smart grid hierarchy, the application running on the processor will be different. We show by qualitative analysis that there is a need for a new design in the micro-architecture of the processors. The method to develop this processor for the smart grid applications is discussed, this includes identifying the benchmarks, customizing the architecture for them and then finding the optimized configuration for the processor. We come up with a possible design for the embedded processor, for which performance is measured and optimized using a cycle accurate processor architecture simulator.
机译:实施智能电网将需要发电设备和用电设备之间的智能交互,这可以通过安装能够处理数据并将其通信到电网中各个部分的设备来实现。嵌入式处理器的作用将是在给定的实时情况下实现高性能。嵌入式处理器执行类似于安全加密,信号处理,潮流计算等的任务,这些任务对于数据分析和正确的数据传输至关重要。根据嵌入式处理器在智能电网层次结构中的位置,处理器上运行的应用程序将有所不同。我们通过定性分析表明,在处理器的微体系结构中需要一种新的设计。讨论了为智能电网应用程序开发该处理器的方法,其中包括确定基准,为其定制基准架构,然后找到处理器的优化配置。我们为嵌入式处理器提出了一种可能的设计,其性能可以使用周期精确的处理器体系结构模拟器进行测量和优化。

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