DocumentCode :
3569247
Title :
A data-driven energy efficient and flexible compute fabric architecture: For adaptive computing applied to ULSI of FFT
Author :
Nsame, Pascal ; Bois, Guy ; Savaria, Yvon
Author_Institution :
Dept. of Comput. & Electr. Eng., Polytech. Montreal, Montreal, QC, Canada
fYear :
2014
Firstpage :
750
Lastpage :
753
Abstract :
In this work, we investigate architectures that can provide the benefits of dedicated hardware implementations and the flexibility of software defined environments. We call this new approach a data defined environment, in which hardware and software scales together based on workload variability to provide state-of-the-art hardware energy-efficiency. An integrated architecture for rapidly implementing efficient large-scale Digital Signal Processing (DSP) functions is presented. The target DSP functions are represented by an application space with one or more dimensions and several ensembles of Adaptive Computing Fabrics (ACF). It is shown that the proposed fabric allows achieving deterministic performance exceeding 245GOPs/mW for data workload characterized by high dynamic variability such as FFT of various size including 64, 128, 512, 1,024, 2,048, 4,098, 8,192, 262,144 and 746,496. Experimental results show improvements on the order of 1000× in power efficiency when compared to published alternatives for several applications, including H.265 High-Efficiency Video Coding (HEVC), Bluetooth, LTE, xDSL/DVB, WLAN and mm-Waves Wireless Personal Networks (WPAN).
Keywords :
digital signal processing chips; fast Fourier transforms; hardware-software codesign; FFT; ULSI; adaptive computing fabrics; data-driven energy efficient fabric architecture; digital signal processing; flexible compute fabric architecture; hardware energy-efficiency; large-scale DSP function; Application specific integrated circuits; Computer architecture; Digital signal processing; Fabrics; Hardware; Program processors; Adaptive Computing Fabrics (ACF); Data-Driven Architectures; Design Methods; Hardware Transactional Memory (HTM);
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Electronics, Circuits and Systems (ICECS), 2014 21st IEEE International Conference on
Type :
conf
DOI :
10.1109/ICECS.2014.7050094
Filename :
7050094
Link To Document :
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