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Rapid design space exploration of DSP applications using programmable SOC devices - a case study

机译:使用可编程SOC设备的DSP应用的快速设计空间探索 - 以案例研究

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In this paper, we present results of our experiments in implementation of a widely used DSP primitive on a programmable SoC (System-on-a-Chip) Device. The DSP primitive is a 16-bit digital FIR filter which we implemented on Triscend E5 CSoC family. Experimental results show that by properly breaking the DSP task into hardware and software parts, one can achieve higher throughput compared to DSP processor implementations, while having more flexibility and less time-to-design compared to full-hardware realizations. Programmable SoC device facilitates rapid design-space exploration, which we employed to optimize our mixed hardware-software architecture. We compared our filter throughput to TI's announced figures of performance for its 16-bit family, and outperformed it by over 8% although our processor (8032 compatible) was an 8-bit processor more suitable for control rather than DSP applications.
机译:在本文中,我们在可编程SOC(芯片)设备上的广泛使用DSP原语中实现了我们的实验的结果。 DSP原语是一个16位数字FIR滤波器,我们在Triscend E5 CSOC系列上实现。实验结果表明,通过将DSP任务正确破坏硬件和软件部件,与DSP处理器实现相比,可以实现更高的吞吐量,同时与全硬件实现相比具有更大的灵活性和更少的时间。可编程SOC设备促进了快速的设计空间探索,我们采用了优化我们的混合硬件软件架构。我们将过滤吞吐量与TI宣布的16位家庭表现宣布的表现形象,并且优于8%以上,尽管我们的处理器(8032兼容)是一个8位处理器更适合控制而不是DSP应用。

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