Development and evaluation of a composite supercapacitor-based 12 V transient start–stop power system for vehicles: Modelling, design and fabrication scaling up

Author:

Lei Chunhong1,Fields Richard1,Wilson Peter1,Lekakou Constantina1ORCID,Amini Negar2,Tennison Stephen2,Perry John3,Gosso Michele4,Martorana Brunetto4

Affiliation:

1. Department of Mechanical Engineering Sciences, University of Surrey, Guildford, UK

2. Carbon Tex Ltd, Woking, UK

3. Denchi Power Ltd, Thurso, UK

4. CRF, Torino, Italy

Abstract

The study involves a bottom-up approach, from bottom cells to large supercapacitor pouch cells, encompassing the design, modelling and fabrication stages of the cells leading to a 12 V transient start–stop (TSS) power system for automotive applications. More specifically, the design of a large composite supercapacitor is presented, consisting of a high power density component and a high energy density component, hybridised at material level. The composition of the composite supercapacitor is optimised to be application-specific so that it satisfies a specified energy-to-maximum power ratio for the 12 V TSS system. The testing of the large composite supercapacitor pouch cells and the 12 V TSS system proves the validity of the bottom-up approach, validates the design and the proposed electric circuit model and its parameters, fitted according to experimental data of small laboratory cells and applied successfully to the large cells, and proves the high quality of the scaled-up fabrication processes. The 12 V TSS power system of seven large composite supercapacitor cells satisfies the set criteria of energy and maximum power for the specified duration, 15 Wh and 4.2 kW respectively, at a total mass of 3.94 kg, below the original set limit of 5 kg.

Funder

FP7

Publisher

SAGE Publications

Subject

Mechanical Engineering,Energy Engineering and Power Technology

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