TY - JOUR
T1 - Research on the intermediate process of a free-piston linear generator from cold start-up to stable operation
T2 - Numerical model and experimental results
AU - Feng, Huihua
AU - Guo, Chendong
AU - Jia, Boru
AU - Zuo, Zhengxing
AU - Guo, Yuyao
AU - Roskilly, Tony
N1 - Publisher Copyright:
© 2016 Elsevier Ltd. All rights reserved.
PY - 2016/8/15
Y1 - 2016/8/15
N2 - The free-piston linear generator (FPLG) has more merits than the traditional reciprocating engines (TRE), and has been under extensive investigation. Researchers mainly investigated on the starting process and the stable generating process of FPLG, while there has not been any report on the intermediate process from the engine cold start-up to stable operation process. Therefore, this paper investigated the intermediate process of the FPLG in terms of switching strategy and switching position based on simulation results and test results. Results showed that when the motor force of the linear electric machine (LEM) declined gradually from 100% to 0% with an interval of 50%, and then to a resistance force in the opposite direction of piston velocity (generator mode), the operation parameters of the FPLG showed minimal changes. Meanwhile, the engine operated more smoothly when the LEM switched its working mode from a motor to a generator at the piston dead center, compared with that at the middle stroke or a random switching time. More importantly, after the intermediate process, the operation parameters of FPLG were smaller than that before the intermediate process. As a result, a gradual motor/generator switching strategy was recommended and the LEM was suggested to switch its working mode when the piston arrived its dead center in order to achieve smooth engine operation.
AB - The free-piston linear generator (FPLG) has more merits than the traditional reciprocating engines (TRE), and has been under extensive investigation. Researchers mainly investigated on the starting process and the stable generating process of FPLG, while there has not been any report on the intermediate process from the engine cold start-up to stable operation process. Therefore, this paper investigated the intermediate process of the FPLG in terms of switching strategy and switching position based on simulation results and test results. Results showed that when the motor force of the linear electric machine (LEM) declined gradually from 100% to 0% with an interval of 50%, and then to a resistance force in the opposite direction of piston velocity (generator mode), the operation parameters of the FPLG showed minimal changes. Meanwhile, the engine operated more smoothly when the LEM switched its working mode from a motor to a generator at the piston dead center, compared with that at the middle stroke or a random switching time. More importantly, after the intermediate process, the operation parameters of FPLG were smaller than that before the intermediate process. As a result, a gradual motor/generator switching strategy was recommended and the LEM was suggested to switch its working mode when the piston arrived its dead center in order to achieve smooth engine operation.
KW - Engine performance
KW - Free-piston linear generator
KW - Motor/generator switching
KW - Numerical model
KW - Test results
KW - The intermediate process
UR - http://www.scopus.com/inward/record.url?scp=84971578607&partnerID=8YFLogxK
U2 - 10.1016/j.enconman.2016.05.068
DO - 10.1016/j.enconman.2016.05.068
M3 - Article
AN - SCOPUS:84971578607
SN - 0196-8904
VL - 122
SP - 153
EP - 164
JO - Energy Conversion and Management
JF - Energy Conversion and Management
ER -