DocumentCode :
2074627
Title :
Improving energy efficiency for energy harvesting embedded systems
Author :
Yang Ge ; Yukan Zhang ; Qinru Qiu
Author_Institution :
EECS Dept., Syracuse Univ., Syracuse, NY, USA
fYear :
2013
fDate :
22-25 Jan. 2013
Firstpage :
497
Lastpage :
502
Abstract :
While the energy harvesting system (EHS) supplies green energy to the embedded system, it also suffers from uncertainty and large variation in harvesting rate. This constraint can be remedied by using efficient energy storage. Hybrid Electrical Energy Storage (HEES) system is proposed recently as a cost effective approach with high power conversion efficiency and low self-discharge. In this paper, we propose a fast heuristic algorithm to improve the efficiency of charge allocation and replacement in an EHS/HEES equipped embedded system. The goal of our algorithm is to minimize the energy overhead on the DC-DC converter while satisfying the task deadline constraints of the embedded workload and maximizing the energy stored in the HEES system. We first provide an approximated but accurate power consumption model of the DC-DC converter. Based on this model, the optimal operating point of the system can be analytically solved. Integrated with the dynamic reconfiguration of the HEES bank, our algorithm provides energy efficiency improvement and runtime overhead reduction compared to previous approaches.
Keywords :
DC-DC power convertors; embedded systems; energy conservation; energy harvesting; energy storage; heuristic programming; DC-DC converter; EHS supply; HEES bank; HEES system; charge allocation efficiency; cost effective approach; energy efficiency improvement; energy harvesting embedded systems; energy overhead; fast heuristic algorithm; high power conversion efficiency; hybrid electrical energy storage system; low self-discharge; power consumption model; runtime overhead reduction; task deadline constraints; Algorithm design and analysis; DC-DC power converters; Energy efficiency; Energy harvesting; Heuristic algorithms; Power demand; Supercapacitors; Hybrid electrical energy storage system; bank reconfiguration; energy harvesting system;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Design Automation Conference (ASP-DAC), 2013 18th Asia and South Pacific
Conference_Location :
Yokohama
ISSN :
2153-6961
Print_ISBN :
978-1-4673-3029-9
Type :
conf
DOI :
10.1109/ASPDAC.2013.6509645
Filename :
6509645
Link To Document :
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