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A Custom FPGA Processor for Physical Model Ordinary Differential Equation Solving

机译:用于物理模型常微分方程求解的定制FPGA处理器

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摘要

Models of physical systems, such as of human physiology or of chemical reactions, are typically comprised of numerous ordinary differential equations (ODEs). Today's designers commonly consider simulating physical models utilizing field-programmable gate arrays (FPGAs). This letter introduces a resource efficient custom processor—the differential equation processing element, or DEPE—specifically designed for efficient solution of ODEs on FPGAs, and also introduces its accompanying compilation tools. We show that a single DEPE on a Xilinx Virtex6 130T FPGA executes several physiological models faster than real-time while requiring only a few hundred FPGA lookup tables (LUTs). Experiments with a commercial high-level synthesis(HLS) tool show that while a single DEPE is 5–50$times$ slower than HLS circuits, DEPE is 10–200 $times$ smaller. We show that a single DEPE is only 10$times$ slower than a relatively massive and costly 3 GHz Pentium 4 desktop processor for ODE solving, and its speed is also competitive with a 700 Mhz TI digital signal processor and an 450 Mhz ARM9 processor. DEPE is 4$times$–17$times$ faster than a Xilinx MicroBlaze soft-core processor and 3 $times$–6 $times$ smaller. DEPE thus represents an excellent processing element for use by itself for small physical models, and in future parallel networks for larger models.
机译:诸如人类生理学或化学反应之类的物理系统模型通常由许多常微分方程(ODE)组成。当今的设计人员通常考虑使用现场可编程门阵列(FPGA)模拟物理模型。这封信介绍了一种资源高效的定制处理器-微分方程处理元件或DEPE-专为FPGA上ODE的有效解决方案而设计,并介绍了其随附的编译工具。我们证明,Xilinx Virtex6 130T FPGA上的单个DEPE执行多个生理模型的速度比实时执行的速度快,而仅需要数百个FPGA查找表(LUT)。使用商业高级综合(HLS)工具进行的实验表明,尽管单个DEPE比HLS电路慢5–50%,但DEPE小10–200 $ x。我们显示,单个DEPE比用于ODE解决的相对庞大且昂贵的3 GHz Pentium 4台式机处理器仅慢10倍,并且其速度在700 Mhz TI数字信号处理器和450 Mhz ARM9处理器方面也具有竞争力。 DEPE比Xilinx MicroBlaze软核处理器快4到17倍,小3到6倍。因此,DEPE代表了一个出色的处理元素,可单独用于小型物理模型,并在未来的并行网络中用于大型模型。

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