Title :
Networked architecture for hybrid electrical energy storage systems
Author :
Kim, Younghyun ; Park, Sangyoung ; Chang, Naehyuck ; Xie, Qing ; Wang, Yanzhi ; Pedram, Massoud
Author_Institution :
Seoul Nat. Univ., Seoul, South Korea
Abstract :
A hybrid electrical energy storage (HEES) system that consists of multiple, heterogeneous electrical energy storage (EES) elements is a promising solution to achieve a cost-effective EES system because no storage element has ideal characteristics. The state-of-the-art HEES systems are based on a shared-bus charge transfer interconnect (CTI) architecture. Consequently, they are quite limited in scalability which is a function of the number of EES banks. This paper is the first introduction of a HEES system based on a networked CTI architecture, which is highly scalable and is capable of accommodating multiple, concurrent charge transfers. The paper starts by presenting a router architecture for the networked CTI and an effective on-line routing algorithm for multiple charge transfers. In the proposed algorithm, negotiated congestion (NC) routing for multiple charge transfers is performed and any lack of routing resources is addressed by merging two or more charge transfers while maximizing the overall energy efficiency by setting the optimal voltage level for the shared CTI. Examples of the proposed networked CTI are presented and the efficacy of the routing algorithm is demonstrated on a mesh-grid networked CTI.
Keywords :
charge exchange; energy conservation; energy storage; interconnections; network routing; EES banks; HEES system; NC routing; concurrent charge transfers; cost-effective EES system; energy efficiency; heterogeneous electrical energy storage elements; hybrid electrical energy storage systems; mesh-grid networked CTI; multiple charge transfers; negotiated congestion routing; networked CTI architecture; on-line routing algorithm; optimal voltage level; router architecture; routing resources; shared-bus charge transfer interconnect architecture; Charge transfer; Computer architecture; Field programmable gate arrays; Merging; Optimization; Routing; System-on-a-chip; Charge transfer interconnect; Hybrid electrical energy storage; Routing algorithm;
Conference_Titel :
Design Automation Conference (DAC), 2012 49th ACM/EDAC/IEEE
Conference_Location :
San Francisco, CA
Print_ISBN :
978-1-4503-1199-1