Issue 11, 2024

A high frequency alternating current heater using the advantages of a damped oscillation circuit for low voltage Li-ion batteries

Abstract

In many cases, batteries used in light e-mobility vehicles such as e-bikes and e-scooters do not have an active thermal management system. This poses a challenge when these batteries are stored in sub-zero temperatures and need to be charged. In such cases, it becomes necessary to move the batteries to a warmer location and allow them to acclimatize before charging. However, this is not always feasible, especially for batteries installed permanently in vehicles. In this work, we present an internal high-frequency AC heater for a 48 V battery, which is used for light electric vehicles of EU vehicle classes L1e and L3e-A1 for a power supply of up to 11 kW. We have taken advantage of the features of a damped oscillating circuit to improve the performance of the heater. Additionally, only a small inductor was added to the main current path through a cable with three windings. Furthermore, as the power electronics of the heater is part of the battery main switch, fewer additional parts inside the battery are required and therefore a cost and space reduction compared to other heaters is possible. For the chosen setup we reached a heating rate of up to 2.13 K min−1 and it was possible to raise the battery temperature from −10 °C to 10 °C using only 3.1% of its own usable capacity.

Graphical abstract: A high frequency alternating current heater using the advantages of a damped oscillation circuit for low voltage Li-ion batteries

Article information

Article type
Paper
Submitted
10 May 2024
Accepted
12 Sep 2024
First published
25 Sep 2024
This article is Open Access
Creative Commons BY license

Energy Adv., 2024,3, 2828-2841

A high frequency alternating current heater using the advantages of a damped oscillation circuit for low voltage Li-ion batteries

J. Oehl, A. Gleiter, D. Manka, A. Fill and K. P. Birke, Energy Adv., 2024, 3, 2828 DOI: 10.1039/D4YA00303A

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