An active hybrid energy storage system utilising a fuzzy logic rule-based control strategy
Abstract
The research presented in this paper documents the implementation of an active hybrid
energy storage system that combined a battery pack and an ultracapacitor bank. The implemented
hybrid energy storage system was used to reduce the peak-power that the battery needs to provide
to the load. An active topology utilising two direct current/direct current (DC/DC) converters and a
switch was used to implement the hybrid energy storage system. Fuzzy logic was used as a closeloop control structure to control the DC/DC converters in the topology, whilst a rule-based control
strategy was used to control the operating states of the hybrid energy storage system. Experimental
implementation of the system showed that the system was able to actively control the energy flow
throughout the hybrid energy storage system in order to limit the power drawn from the battery to
a user-defined limit. The performance of the fuzzy logic controllers was also experimentally found
to be sufficient when used in conjunction with the rule-based control strategy. The system allows
one to utilize batteries that are optimized for energy density seeing that the system was able to
actively limit the power drawn from the battery, whilst providing the required power to the load
by utilising the ultracapacitor bank
URI
http://hdl.handle.net/10394/34691https://www.mdpi.com/2032-6653/11/2/34/pdf
https://doi.org/10.3390/wevj11020034
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- Faculty of Engineering [1129]