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Acceleration of Evolutionary Grammar Using an MISD Architecture Based on FPGA and Petalinuxs

机译:基于FPGA和Petalinux的MISD架构加速进化语法

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The evolutionary grammars are part of the optimization methods and searching for solutions based on the biological evolution postulates. The proposed technique is based on the genetic recombination's concept and could be used to automatically generate programs in any programming language according to the specified grammar. The objective of this work is to design and evaluate a hardware acceleration solution for a Java evolutionary grammar software application, performing modifications in the data processing phase using an MISD (Multiple Instruction Single Data) architecture. The implementation is performed on a platform that integrates the programmability of an ARM processor along with the programmable logic of an FPGA with a custom Linux embedded operative system like Petalinux. The tests carried out allow determining the viability of the project, the results show that the parallelized stage is faster than the original solution, and the whole system can be implemented in a SoC.
机译:进化语法是基于生物进化假设的优化方法的一部分,并寻找解决方案。 该提出的技术基于遗传重组的概念,可用于根据指定的语法自动生成任何编程语言的程序。 这项工作的目的是设计和评估Java进化语法软件应用的硬件加速解决方案,使用MISD(多个指令单数据)架构执行数据处理阶段的修改。 该实现是对集成ARM处理器的可编程性以及FPGA的可编程逻辑的平台上执行的实现,与Petalinux等自定义Linux嵌入式操作系统。 进行的测试允许确定项目的活力,结果表明并行化阶段比原始解决方案快,整个系统可以在SOC中实现。

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