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ASOKA TECHNOLOGIES
(B.TECH/M.TECH ELECTRICAL PROJECTS USING MATLAB/SIMULINK)
WE OFFER ACADEMIC MATLAB SIMULATION PROJECTS FOR
1. ELECTRICAL AND ELECTRONICS ENGINEERING [EEE]
2. POWER ELECTRONICS AND DRIVES [PED]
3. POWER SYSTEMS [PS]….etc
We will develop your OWN IDEAS and your IEEE Papers with extension if necessary and also we give guidance for publishing papers…
For Further Details Call Us @
0-9347143789/9949240245
For Abstracts of IEEE papers and for any Queries mail to: asokatechnologies(gmail) and also visit asokatechnologies(blogspot)
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Electrical Engineering Students projects
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Renewable Energy and Systems Projects for MTech using Matlab/Simulink
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Wind Energy Projects for MTech using Matlab/Simulink
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Final Year Academic Electrical Projects for BTech/MTech using Matlab/S
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Power Electronics, Power Systems Projects for MTech using Matlab/Simul
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Matlab/Simulink Projects for BTech/MTech Final Year
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Readymade Electrical Projects IEEE for BTech/MTech using Matlab/Simuli
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Academic Projects in Electrical for BTech/MTech using Matlab/Simulink
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Major Electrical Projects for BTech/MTech using Matlab/Simulink
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2022/2023 Latest Electrical Projects for BTech/MTech using Matlab/Simu
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Best Electrical Engineering Projects for BTech/MTech using Matlab/Simu
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Modeling, Simulation and Implementation of a Five-Phase Induction Motor Drive System
http://asokatechnologies.in/
This paper presents a comprehensive simulation model of a five-phase induction motor drive system. Both open loop and closed-loop control is elaborated. The complete component modeling is developed using ‘simpower system’ blocksets of Matlab/Simulink. To address the real time implementation issues, dead banding of the inverter switches are also incorporated in the simulation model. To validate the modeling procedure, experimental implementation is done in TMS320F2812 DSP platform with a custom built five-phase drive system. Excitation, acceleration and loading transients are investigated. The developed simulation model is fully verified by the real time implementation.
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Single Phase 21 Level Asymmetric Cascaded Multilevel Inverter With Reduced Number Of Switches And Dc Sources
http://asokatechnologies.in/
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Modeling, Simulation and Implementation of a Five-Phase Induction Motor Drive System
This paper presents a comprehensive simulation model of a five-phase induction motor drive system. Both open loop and closed-loop control is elaborated. The complete component modeling is developed using ‘simpower system’ blocksets of Matlab/Simulink. To address the real time implementation issues, dead banding of the inverter switches are also incorporated in the simulation model. To validate the modeling procedure, experimental implementation is done in TMS320F2812 DSP platform with a custom built five-phase drive system. Excitation, acceleration and loading transients are investigated. The developed simulation model is fully verified by the real time implementation.
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Design and Simulation of Single-Phase Five-Level Symmetrical Cascaded H-Bridge Multilevel Inverter with Reduces Number of Switches
Multilevel inverter is an effective and practical solution for increasing power demand and reducing harmonics of ac waveforms. Such inverters synthesize a desired output voltage from several levels of dc voltages as inputs. This paper analyzes the performance of five level cascaded H-bridge multilevel inverter with reduce number of power switches. Further by reducing switches and increasing level will reduce filter cost & harmonic content. 5- Level cascaded H-bridge asymmetrical multilevel inverter topology requires 8 switches but in this new multilevel inverter it requires 6 switches in which same multilevel is obtained. Invariably switching losses and cost also reduced. In this paper only multilevel inverter circuitry will be studied. The performance has been analyzed by the MATLAB/Simulink.
Cascaded multilevel inverter SPWM APOD PD POD THD
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