Parallel Series Configuration Influence Analysis on Winding PMSG 12s8p to Output Performance using FEM-Based Software

Laily Dwi Rahmawati, Hamdan Hadi Kusuma, Agus Sudarmanto

Abstract


Abstract—The 3-phase permanent magnetic synchronous generator used is a type of radial flux. Finite Element Method (FEM) software is used to solve physical problems numerically. The goal is to find the relationship between the configuration of the coil and the performance of the output produced by the generator. The method used in this study is laboratory research. That is, by changing the configuration of the coil (series, 2 parallels, or 4 parallels), the resulting output is then analyzed. Low (0%-30%), medium (31%-60%), and high (61%-100%) content efficiency rates. The result of this study is that for series configurations, 2 parallels and 4 parallels have fairly good output performance, indicated by the increasing voltage, current, and input and output power that are directly proportional to increasing the rotational speed of the rotor. The largest output value is generated by the series configuration, and the smallest is generated by the parallel 4 configuration. Nilai efission in series configurations and 2 parallels is relatively good and stable (>80%), and 4 parallel configurations have efficiency values that are directly proportional to the rotor's rotary speed value.  Series configurations result in  better output performance  compared to parallel configurations.

 


Keywords


winding;PMSG;FEM

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References


S. Anwar, T. Artono, Nasrul, Dasrul, and A. Fadli, "PZEM-004T-Based Electric Energy Measurement," Pros. Semin. Nas. Politek. Lhokseumawe State, vol. 3, no. 1, pp. 272–276, 2019.

B.C. Wibowo, I.B. Winardi, M. Kom, and L. Rear, "Simulation of SYNCHRONOUS MAGNET SYNCHRONOUS GENERATOR (PMSG) 12S8P Output Voltage Change AGAINST ROTOR ROTARY SPEED VARIATION WITH FINITE ELEMENT METHOD (FEM) BASED SOFTWARE , "J. Tek. Electro, vol. 2, no. 1, pp. 1–9, 2020.

I. Arifianto and M. R. HS, "Efficiency Analysis and Design of Permanent Magnet Generator 12 Slot 8 Pole Using Magnet Software 7. 5," Semin. Nas. Microwave, Antenna and Propagation, pp. 43–48, 2018.

H. Piggott, T. Kirby, and H. Piggott, Windpower Workshop Windpower Workshop BUilding Your Own Wind Turbine. 2001.

Y. Prasetyo, "Comparative Analysis of Magnetic Material Materials in Permanent Modeling of Synchronous Magnet Generator (Pmsg) 12 8 Pole Slots Using Finite Element Method (Fem) Software," 2019.

A. A. Syarif et al. , "Design of small-scale power plants," Thesis, pp. 1–64, 2015.

H.M. Zuhdi, Analysis Back EMF Permanent Magnet Synchronous Generator 12 Slot Pole 1/4 Model Using Infolytica 7.5 Magnet Software. 2021.

Agus Nur Hidayat, Suyitno, and Daryanto, "The Effect of the Number of Coils Stator Coils on the Performance of the Permanent Magnte Generator of One-Phase Axial Flux," J. Electr. Vocat. Educ. Technol. , vol. 2, no. 2, pp. 28–31, 2020, doi: 10.21009/jevet.0022.06.

M. Siregar, N. Evalina, Cholish, Abdullah, and M. Zainul Haq, "Analysis of Series And Parallel Relationships To Solar Cell Characteristics In Medan City," Tech. Electro, vol. 3, no. 2, pp. 94–100, 2021, [Online]. Available: http://jurnal.umsu.ac.id/index.php/RELE/article/view/v3i2.6492/5248.

A. Rosman, Risdayana, E. Yuliani, and Vovi, "Characteristics of Current and Voltage in Series And Parallel Circuits Using Resistors," J. Ilm. d'Computare, vol. 9, no. 2, pp. 40–43, 2019.

A. Yahya, "Optimization of PMSG 12S8P Design," J. Elektro, vol. 4, no. 3, pp. 148–162, 2019.

P. Mangera and D. Hardiantono, "Analysis of Distribution Network Voltage Loss of 20 kV at PT. PLN (Persero) Merauke Branch," Musamus J. Electro Machanical Eng. , vol. 1, no. 2, pp. 61–69, 2019, doi: https://doi.org/10.5281/zenodo.3516283.




DOI: http://dx.doi.org/10.52155/ijpsat.v32.2.4340

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