Title :
Online fault detection and fault tolerance in electrical energy storage systems
Author :
Yanzhi Wang ; Xue Lin ; Pedram, Massoud ; Naehyuck Chang
Author_Institution :
Univ. of Southern California, Los Angeles, CA, USA
Abstract :
Electrical energy storage (EES) systems have broad application in portable electronic devices, electrical vehicles, data centers, etc. Faulty EES elements, i.e., open-circuited or short-circuited EES elements, which result in a shortening of the system lifetime, are inevitable especially for long-term use of EES systems. Manual EES element fault detection and elimination incur significant overhead and require the EES system to stop operation during the fault detection process. Therefore, online fault detection and tolerance methods without manual intervention provide great benefit in operability of the EES system. Existing EES system diagnosis techniques have limitations in that (i) they only focus on battery arrays and rely on battery management units for fault detection, and (ii) they lack systematic online fault tolerance architecture. In this paper, a framework of online fault detection and tolerance for supercapacitor EES arrays is presented. Precisely, an enhanced EES array reconfiguration architecture that serves as the hardware support is described, and efficient algorithms for online fault detection and tolerance are presented. The proposed fault detection algorithm identifies faulty supercapacitors with logarithmic time complexity. The fault tolerance algorithm bypasses faulty supercapacitors and produces the optimal configuration of the supercapacitor array considering the converter efficiency variation. The proposed method is not limited to a supercapacitor array. Experimental results demonstrate that the proposed fault detection and tolerance technique reduces the fault-induced EES system performance degradation by up to 91%.
Keywords :
battery management systems; energy storage; fault diagnosis; fault tolerance; power engineering computing; power system faults; supercapacitors; EES array reconfiguration architecture; EES system diagnosis techniques; battery arrays; battery management units; data centers; electrical energy storage systems; electrical vehicles; fault detection algorithm; fault detection process; fault tolerance algorithm; fault-induced EES system; faulty EES elements; faulty supercapacitors; logarithmic time complexity; manual EES element fault detection; online fault detection; online fault tolerance architecture; open-circuited EES elements; portable electronic devices; short-circuited EES elements; supercapacitor EES arrays; system lifetime; Batteries; Circuit faults; Event detection; Fault detection; Fault tolerance; Fault tolerant systems; Supercapacitors;
Conference_Titel :
PES General Meeting | Conference & Exposition, 2014 IEEE
Conference_Location :
National Harbor, MD
DOI :
10.1109/PESGM.2014.6938855