Details
Original language | English |
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Title of host publication | Proceedings |
Subtitle of host publication | 2014 International Conference on Electrical Machines, ICEM 2014 |
Publisher | Institute of Electrical and Electronics Engineers Inc. |
Pages | 762-767 |
Number of pages | 6 |
ISBN (electronic) | 9781479943890 |
Publication status | Published - 17 Nov 2014 |
Event | 21st International Conference on Electrical Machines, ICEM 2014 - Berlin, Germany Duration: 2 Sept 2014 → 5 Sept 2014 |
Publication series
Name | Proceedings - 2014 International Conference on Electrical Machines, ICEM 2014 |
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Abstract
In this paper, a new analytical and time-saving method is presented to generate an efficiency-optimized torque-speed characteristic for induction machines within minutes. The computed loss maps are incorporated into a vehicle simulation model and a thermal lumped parameter model in order to predict the energy consumption and the temperature distribution in the machine for any driving cycle. The effect of weighting certain losses during an efficiency calculation as well as the impact of different gear ratios on the energy consumption during a driving cycle is also presented.
Keywords
- coupled thermal-electromagnetic, driving cycle, efficiency-optimized torque-speed characteristics, electrical vehicle, induction machine, loss modeling, weighting of losses
ASJC Scopus subject areas
- Engineering(all)
- Electrical and Electronic Engineering
- Engineering(all)
- Mechanical Engineering
Sustainable Development Goals
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Proceedings: 2014 International Conference on Electrical Machines, ICEM 2014. Institute of Electrical and Electronics Engineers Inc., 2014. p. 762-767 6960267 (Proceedings - 2014 International Conference on Electrical Machines, ICEM 2014).
Research output: Chapter in book/report/conference proceeding › Conference contribution › Research › peer review
}
TY - GEN
T1 - Evaluation of an analytical, efficiency-optimized torque-speed characteristic of induction machines coupled with a thermal-electromagnetic energy consumption calculation
AU - Emmrich, K.
AU - Brune, Adré
AU - Ponick, Bernd
N1 - Publisher Copyright: © 2014 IEEE. Copyright: Copyright 2014 Elsevier B.V., All rights reserved.
PY - 2014/11/17
Y1 - 2014/11/17
N2 - In this paper, a new analytical and time-saving method is presented to generate an efficiency-optimized torque-speed characteristic for induction machines within minutes. The computed loss maps are incorporated into a vehicle simulation model and a thermal lumped parameter model in order to predict the energy consumption and the temperature distribution in the machine for any driving cycle. The effect of weighting certain losses during an efficiency calculation as well as the impact of different gear ratios on the energy consumption during a driving cycle is also presented.
AB - In this paper, a new analytical and time-saving method is presented to generate an efficiency-optimized torque-speed characteristic for induction machines within minutes. The computed loss maps are incorporated into a vehicle simulation model and a thermal lumped parameter model in order to predict the energy consumption and the temperature distribution in the machine for any driving cycle. The effect of weighting certain losses during an efficiency calculation as well as the impact of different gear ratios on the energy consumption during a driving cycle is also presented.
KW - coupled thermal-electromagnetic
KW - driving cycle
KW - efficiency-optimized torque-speed characteristics
KW - electrical vehicle
KW - induction machine
KW - loss modeling
KW - weighting of losses
UR - http://www.scopus.com/inward/record.url?scp=84916231945&partnerID=8YFLogxK
U2 - 10.1109/ICELMACH.2014.6960267
DO - 10.1109/ICELMACH.2014.6960267
M3 - Conference contribution
AN - SCOPUS:84916231945
T3 - Proceedings - 2014 International Conference on Electrical Machines, ICEM 2014
SP - 762
EP - 767
BT - Proceedings
PB - Institute of Electrical and Electronics Engineers Inc.
T2 - 21st International Conference on Electrical Machines, ICEM 2014
Y2 - 2 September 2014 through 5 September 2014
ER -