DocumentCode :
624235
Title :
An investigation into the PNGV battery model with the addition of a dynamic temperature range
Author :
Leslie, Kenneth ; Demirkiran, Ilteris ; Rask, Eric ; Lohse-Busch, Henning
Author_Institution :
Electr., Comput., Software, & Syst. Eng., Embry-Riddle Aeronaut. Univ., Daytona Beach, FL, USA
fYear :
2013
fDate :
4-7 April 2013
Firstpage :
1
Lastpage :
6
Abstract :
The Partnership for Next Generation-Vehicles Hybrid Pulse Power Characterization (HPPC) battery model was used to develop a base-line estimation. Within the HPPC is a method to establish an estimated open circuit voltage (VOC) from a linear calculation of internal resistances and currents. The flexibility of the parameterization was tested over a changing temperature range. Algorithms were developed that predict the VOC and state of charge (SOC) based on the battery´s temperature, current draw, terminal voltage, and sampling time step; therefore, increasing the accuracy of the battery parameterization estimator (BPE). Three production vehicles with lithium based battery chemistries were used in the study. A least square method is used as in the PNGV battery model to determine initial parameters; an improvement was shown over this base-line by using a non-linear algorithm. The estimates from both algorithms were compared to the measured data as verification.
Keywords :
battery powered vehicles; hybrid electric vehicles; secondary cells; PNGV battery model; base-line estimation; battery parameterization estimator; dynamic temperature range; hybrid pulse power characterization battery model; open circuit voltage; partnership for next generation-vehicles; state of charge; Batteries; Mathematical model; Resistance; Schedules; System-on-chip; Temperature measurement; Vehicles;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Southeastcon, 2013 Proceedings of IEEE
Conference_Location :
Jacksonville, FL
ISSN :
1091-0050
Print_ISBN :
978-1-4799-0052-7
Type :
conf
DOI :
10.1109/SECON.2013.6567452
Filename :
6567452
Link To Document :
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