Title :
Leakage-aware scratch-pad memory banking for embedded multidimensional signal processing
Author :
Balasa, Florin ; Abuaesh, Noha ; Gingu, Cristian V. ; Nasui, Doru V.
Author_Institution :
American Univ. in Cairo, Cairo, Egypt
Abstract :
Partitioning a memory into multiple banks that can be independently accessed is an approach mainly used for the reduction of the dynamic energy consumption. When leakage energy comes into play as well, the idle memory banks must be put in a low-leakage `dormant´ state to save static energy when not accessed. The energy savings must be large enough to compensate the energy overhead spent by changing the bank status from active to dormant, then back to active again. This paper addresses the problem of energy-aware on-chip memory banking, taking into account - during the exploration of the search space - the idleness time intervals of the data mapped into the memory banks. As on-chip storage, we target scratch-pad memories (SPMs) since they are commonly used in embedded systems as an alternative to caches. The proposed approach proved to be computationally fast and very efficient when tested for several data-intensive applications, whose behavioral specifications contain multidimensional arrays as main data structures.
Keywords :
embedded systems; power aware computing; signal processing; storage management; SPMs; data structures; dynamic energy consumption reduction; embedded multidimensional signal processing; embedded systems; energy-aware on-chip memory banking; leakage energy; leakage-aware scratch-pad memory banking; low-leakage dormant state; multidimensional arrays; on-chip storage; Arrays; Banking; Energy consumption; Lattices; Memory management; Signal processing algorithms; System-on-chip; memory banking; memory management; multidimensional signal processing; scratch-pad memory;
Conference_Titel :
Acoustics, Speech and Signal Processing (ICASSP), 2014 IEEE International Conference on
Conference_Location :
Florence
DOI :
10.1109/ICASSP.2014.6854559