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Advanced Design of DC Machines Using Finite Element Method Simulator


Affiliations
1 Applied automation and diagnostic industrial laboratory (LAADI), Ziane Achour University of djelfa, 17000 Djelfa, Algeria
2 Gas Turbine Joint Research Team, Ziane Anchor University of djelfa, Algeria

Given the importance of DC machine in the industrial field and with the technological development, researchers are interested in developing the design of DC machine of all kinds. In this work, an advanced design of different type for DC machines using finite element method simulator. Design series DC machine, shunt DC machine and compound DC machine were implemented using Ansys RMXprt and study electromagnetic phenomena in Maxwell software, we will study flux lines and magnetic flux density and identify areas of temperature distribution. The speed and torque rates for each design are evaluated with consideration of time. Then, a 3D design of a compound DC machine and series DC machine was created to evaluate the difference between the DC machine types.
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  • Advanced Design of DC Machines Using Finite Element Method Simulator

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Authors

Benkaihoul Said
Applied automation and diagnostic industrial laboratory (LAADI), Ziane Achour University of djelfa, 17000 Djelfa, Algeria
Mazouz Lakhdar
Applied automation and diagnostic industrial laboratory (LAADI), Ziane Achour University of djelfa, 17000 Djelfa, Algeria
Naas Toufik Tayeb
Gas Turbine Joint Research Team, Ziane Anchor University of djelfa, Algeria

Abstract


Given the importance of DC machine in the industrial field and with the technological development, researchers are interested in developing the design of DC machine of all kinds. In this work, an advanced design of different type for DC machines using finite element method simulator. Design series DC machine, shunt DC machine and compound DC machine were implemented using Ansys RMXprt and study electromagnetic phenomena in Maxwell software, we will study flux lines and magnetic flux density and identify areas of temperature distribution. The speed and torque rates for each design are evaluated with consideration of time. Then, a 3D design of a compound DC machine and series DC machine was created to evaluate the difference between the DC machine types.