Rank: 566 based on 246 downloads (last 30 days) and 4 files submitted
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Karuna Mudliyar

E-mail
Company/University
Ecofrost Technologies Pvt Ltd

Personal Profile:

Design Engineer

Professional Interests:
control design, signal processing, system modeling

 

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Files Posted by Karuna View all
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(last 30 days)
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09 Sep 2013 Screenshot Closed Loop Three Phase Buck Converter This model shows the working of "Closed loop three phase synchronous buck converter" Author: Karuna Mudliyar power electronics, simulation, measurement, buck converter 42 0
09 Sep 2013 Screenshot Three Phase Buck Converter The working of "Three phase synchronous buck converter" is shown through this model. Author: Karuna Mudliyar power electronics, simulation, simulink, buck converter, three phase dcdc conv... 44 0
05 Sep 2013 Screenshot Closed Loop Boost Converter: Equation Model The boost converter is modeled in simu-link with inductor current and capacitor voltage equations. Author: Karuna Mudliyar control design, power electronics, simulation, simulink, boost converter, boost regulator 109 4
04 Sep 2013 Screenshot Closed Loop three phase boost converter This modal consists of three phase boost converter with closed loop operation. Author: Karuna Mudliyar power electronics, power electronics con... 51 0
Comments and Ratings by Karuna View all
Updated File Comments Rating
15 Nov 2013 Code Verification using RTDX Verify your DSP Implementation using RTDX and Simulink Author: Kerry Schutz

Thank you very much sir.

06 Nov 2013 Closed Loop Boost Converter: Equation Model The boost converter is modeled in simu-link with inductor current and capacitor voltage equations. Author: Karuna Mudliyar

Christain,

Its a type III compensation, with two poles and zeros placed coincident respectively. It is placed in such a way to have enough phase margin for better stability and to minimize the effect of maximum phase lag due to Right-Half plane zero.

There are many literature on type-III compensation for dc-dc boost converter.

04 Nov 2013 Closed Loop Boost Converter: Equation Model The boost converter is modeled in simu-link with inductor current and capacitor voltage equations. Author: Karuna Mudliyar

Christian,

I derived the small-signal ac modeling transfer function for dc-dc converter.

Comments and Ratings on Karuna's Files View all
Updated File Comment by Comments Rating
06 Nov 2013 Closed Loop Boost Converter: Equation Model The boost converter is modeled in simu-link with inductor current and capacitor voltage equations. Author: Karuna Mudliyar Mudliyar, Karuna

Christain,

Its a type III compensation, with two poles and zeros placed coincident respectively. It is placed in such a way to have enough phase margin for better stability and to minimize the effect of maximum phase lag due to Right-Half plane zero.

There are many literature on type-III compensation for dc-dc boost converter.

05 Nov 2013 Closed Loop Boost Converter: Equation Model The boost converter is modeled in simu-link with inductor current and capacitor voltage equations. Author: Karuna Mudliyar Christian

I don`t get it :( I know how you get the state equations, but I don`t understand how you develope the transfer function of the controller out of these state equations. Thank you for your support.

04 Nov 2013 Closed Loop Boost Converter: Equation Model The boost converter is modeled in simu-link with inductor current and capacitor voltage equations. Author: Karuna Mudliyar Mudliyar, Karuna

Christian,

I derived the small-signal ac modeling transfer function for dc-dc converter.

04 Nov 2013 Closed Loop Boost Converter: Equation Model The boost converter is modeled in simu-link with inductor current and capacitor voltage equations. Author: Karuna Mudliyar Christian

Hello, how do you receive the transfer function of the controller?

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