Design Analysis of Permanent Magnet Synchronous Generator (Pmsg) 18 Slot 8 Pole to Seek Efficiency in Series and Parallel Circuits

Veronica Ernita Kristianti, Priska Restu Utami, Aris Susanto, Universitas Gunadarma
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Abstract

Generator is an important component for converting renewable energy into electrical energy. This study aims to analyze the efficiency of designing a Permanent Magnet Synchronous Generator (PMSG) with a configuration of 18 slots 8 poles in series and parallel circuits. The research was conducted by simulating using Infolytica MagNet software and data analysis using Microsoft Excel. The test results show that the design efficiency of the PMSG generator is higher in a series circuit up to 84% at a speed of 2000 RPM and a load of 20 W  compared to a parallel circuit which is only 13% at a speed of 3000 RPM and a load of 10 W.. PMSG generator design, series configuration is more efficient than parallel configuration. The results of the study show that the performance and efficiency of the 18 slot 8 pole PMSG generator can be used for renewable energy based power generation systems.
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永磁同步发电机(Pmsg) 18槽8极的设计分析,寻求串联和并联电路的效率
发电机是将可再生能源转化为电能的重要部件。本研究旨在分析18槽8极串联与并联永磁体同步发电机(PMSG)的效率。研究采用Infolytica MagNet软件进行模拟,使用Microsoft Excel进行数据分析。试验结果表明,PMSG发生器在串联电路中,转速为2000 RPM、负载为20 W时的设计效率可达84%,而并联电路在转速为3000 RPM、负载为10 W时的设计效率仅为13%。PMSG发电机设计,串联配置比并联配置效率更高。研究结果表明,18槽8极PMSG发电机的性能和效率可用于可再生能源发电系统。
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