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SUSTAINABLE ENERGY AND ADVANCED MATERIALS : Proceeding of the 4th International Conference and Exhibition on Sustainable Energy and Advanced Materials 2015 (ICE-SEAM 2015) | 2016

Design, simulation and analysis of 3 kW low speed axial flux permanent magnet generator

Muhammad Kasim; Pudji Irasari; Muhammad Hikmawan

Design and simulation of an axial flux permanent magnet generator (AFPMG) have been described in this paper. It was designed using the single rotor – single stator construction. The analytical method was using in the design process. The design process also employed the simulation using Finite Element Method Magnetics (FEMM) 4.2 software for identifying the magnetic characteristic and heat transfer. The effect of fill factor (FF) variation on the generator performances also observed in this paper. The design result shows that using the selected FF, the conductor diameter, power output, efficiency and heat distribution are affected but not for the Bg. The generator output can achieve up to 5.2 kW using the FF 0.4 which is more than assumed power output at the pre-design using FF 0.3. It also can be seen that the increasing FF will increase the power output and the efficiency. Despite a higher temperature compared with FF 0.3 and 0.35, the value of 0.4 is the most appropriate FF for designing the AFPMG.


THE 1ST INTERNATIONAL CONFERENCE ON MATHEMATICS, SCIENCE, AND COMPUTER SCIENCE (ICMSC) 2016: Sustainability and Eco Green Innovation in Tropical Studies for Global Future | 2017

Effect of air gap variation on the performance of single stator single rotor axial flux permanent magnet generator

Muhammad Kasim; Pudji Irasari; M. Fathul Hikmawan; Puji Widiyanto; Ketut Wirtayasa

The axial flux permanent magnet generator (AFPMG) has been widely used especially for electricity generation. The effect of the air gap variation on the characteristic and performances of single rotor - single stator AFPMG has been described in this paper. Effect of air gap length on the magnetic flux distribution, starting torque and MMF has been investigated. The two dimensional finite element magnetic method has been deployed to model and simulated the characteristics of the machine which is based on the Maxwell equation. The analysis has been done for two different air gap lengths which were 2 mm and 4 mm using 2D FEMM 4.2 software at no load condition. The increasing of air gap length reduces the air-gap flux density. For air gap 2 mm, the maximum value of the flux density was 1.04 T while 0.73 T occured for air gap 4 mm.. Based on the experiment result, the increasing air gap also reduced the starting torque of the machine with 39.2 Nm for air gap 2 mm and this value decreased into 34.2 Nm when the ...


international seminar on intelligent technology and its applications | 2016

The implementation of hybrid bonded permanent magnet on permanent magnet generator for renewable energy power plants

Novrita Idayanti; Dedi; Tony Kristiantoro Nanang; Sudrajat; Ardita Septiani; Dadang Mulyadi; Pudji Irasari

This paper describes application of permanent magnet on permanent magnet generator (PMG) for renewable energy power plants. Permanent magnet used are bonded hybrid magnet that was a mixture of barium ferrite magnetic powders 50 wt % and NdFeB magnetic powders 50 wt % with 15 wt % of adhesive polymer as a binder. Preparation of bonded hybrid magnets by hot press method at a pressure of 2 tons and temperature of 200°C for 15 minutes. The magnetic properties obtained were remanence induction (Br) =1.54 kG, coercivity (Hc) = 1.290 kOe, product energy maximum (BHmax) = 0.28 MGOe, surface remanence induction (Br) = 1200 gauss, density = 3.83 g/cm3, and curie temperature of 400°C. Magnet samples were implemented on PMG at speed of 100–600 rpm. The maximum power at nominal speed was 93 Watt.


International Journal of Electrical and Computer Engineering | 2015

Performance Measurement of a Compact Generator - Hydro Turbine System

Pudji Irasari; Priyono Sutikno; Puji Widiyanto; Qidun Maulana


Journal of Mechatronics, Electrical Power, and Vehicular Technology | 2014

Rotor-Dynamic Characteristic Evaluation of Interior Permanent Magnet Motor using Finite Element Method

Hilman Syaeful Alam; Pudji Irasari


Jurnal Teknologi Indonesia (JTI) | 2012

OPTIMASI KEMIRINGAN MAGNET PADA GENERATOR MAGNET PERMANEN KECEPATAN RENDAH FLUKS RADIAL

Pudji Irasari; Muhammad Kasim; Fitriana


Journal of Mechatronics, Electrical Power, and Vehicular Technology | 2012

Analytical and Numerical Deflection Study on the Structure of 10 kW Low Speed Permanent Magnet Generator

Hilman Syaeful Alam; Pudji Irasari; Dyah Kusuma Dewi


Journal of Mechatronics, Electrical Power, and Vehicular Technology | 2012

Experiment and Analysis of Car Alternator for Wind Turbine Application

Pudji Irasari


IPTEK: The Journal for Technology and Science | 2011

Thermal Analysis on Radial Flux Permanent Magnet Generator (PMG) using Finite Element Method

Pudji Irasari; Hilman Syaeful A Syaeful A; Muhammad Kasim


Jurnal Sains Materi Indonesia | 2018

APLIKASI MAGNET PERMANEN BaFe12O19 DAN NdFeB PADA GENERATOR MAGNET PERMANEN KECEPATAN RENDAH SKALA KECIL

Pudji Irasari; Novrita Idayanti

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Muhammad Kasim

Indonesian Institute of Sciences

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Puji Widiyanto

Indonesian Institute of Sciences

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Hilman Syaeful Alam

Indonesian Institute of Sciences

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Muhammad Hikmawan

Indonesian Institute of Sciences

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Ketut Wirtayasa

Indonesian Institute of Sciences

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Novrita Idayanti

Indonesian Institute of Sciences

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Anwar Muqorobin

Indonesian Institute of Sciences

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Fitriana Fitriana

Indonesian Institute of Sciences

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Aditya Sukma Nugraha

Indonesian Institute of Sciences

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Ardita Septiani

Indonesian Institute of Sciences

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