• Tidak ada hasil yang ditemukan

Bharanikumar

N/A
N/A
Protected

Academic year: 2017

Membagikan "Bharanikumar"

Copied!
2
0
0

Teks penuh

(1)

Profile

Name : R BHARANI KUMAR

Designation : Associate Professor

Email ID : bharanikumar.rbk@gmail.com

Areas of Specialization : Power Electronics applications to Renewable energy sources

Total Experience : Academic : 13 years Industry : 1

Educational Qualification :

Degree Branch / Specialisation University Year of

Passing B.E. Electrical and Electronics

Engineering

Bharathiar university 1998

M.E. Power Electronics and Drives CEG Campus, Anna University,Chennai

2002

Journals

:

1. Bharanikumar, R. Nirmalkumar, A. and Maheswari, K.T. “New MPPT controller for wind turbine driver PMG with power converter”, International Review of Electrical Engineering (IREE), Italy, Vol. 5, No. 4, pp. 1555-1562, 2010.

2. Bharanikumar, R. Maheswari, K.T. and Nirmalkumar, A. “Comparative Analysis of Permanent Magnet Materials for Wind Turbine Driven Permanent Magnet Generator”, International Journal of Electrical Engineering, Vol. 10, No. 4, pp. 128-135, 2010.

3. Bharanikumar, R. and Nirmalkumar, A. “Analysis of Wind Turbine Driven PM Generator with Power Converters”, International Journal of Computer and Electrical Engineering, Vol. 2, No. 4, pp. 766-769, 2010.

4. Bharanikumar, R., Yazhini, A.C. and Nirmalkumar, A. “Modeling and Simulation of Wind Turbine Driven Permanent Magnet Generator with New MPPT Algorithm”, Asian Power Electronics Journal, Vol. 4, No.2, pp. 52-58, 2010.

5. Bharanikumar, R., Nirmal Kumar, A. and Maheswari, K. T. “Modeling and Simulation of Wind Turbine Driven Axial type PMG with Z-Source Inverter”, Australian Journal of Electrical and Electronics Engineering, (Accepted).

6. Bharanikumar, R. and Nirmal Kumar, A. “Performance analysis of wind turbine driven permanent magnet generator with matrix converter”, Turkish journal of Electrical Engineering and Computer Sciences, (Accepted).

7. Bharanikumar, R. and Nirmalkumar, A. “Novel method of wind energy conversion system by incorporating permanent magnet generator and single stage AC-AC power converter”, Journal of Scientific and Industrial Research, Vol. 70, No. 5, pp. 379-384, 2011

Conferences :

1.

Bharanikumar, R. , Kandasamy, V., Prabha Maheswari, M. and Nirmal Kumar, A. “Steady

(2)

Conference on Emerging trends in Engineering Technology, ICETET 2008, at G.H.Raisoni Engineering College, Nagpur, Maharashtra, pp. 922-926, 2008.

2. Bharanikumar, R., Senthilkumar, R. and Nirmal Kumar, A., “Impedance Source Inverter for Wind Turbine Driven Permanent Magnet Generator”, International Conference on Power System Technology and IEEE Power India Conference POWERCON 2008, Intercontinental the Grand, New Delhi, pp. 1-7, 2008.

3. Bharanikumar, R., Senthilkumar, R., Yazhini, A.C. and Nirmalkumar, A , “FPGA Controller based Z – Source inverter for wind turbine driven Permanent Magnet Generator” , on Power System Technology and IEEE Power India Conference POWERCON 2008, Intercontinental The Grand, New Delhi, pp. 1-5,2008.

4. Bharanikumar, R., Prabha Maheswari, M. and S.Palanichamy, “Boot Chopper Circuit for Low Power Wind Turbine Driven PM Synchronous Generator”, International Conference on Intelligent & Advanced Systems 2007, ICIAS 2007, Kuala Lumpur, Malaysia, pp. 859-863, 2007.

5. Bharanikumar, R., Prabha Maheswari, M., Ramakrishnan, C and S.Palanichamy, “Simulation of SPWM Boost Chopper for Low Power Wind Turbine Driven PMSG”, International Conference in ESCT 07 NIT, Calicut, Kerala, 2007.

6. Bharanikumar, R. and Karthikeyan, C “A new Active common mode EMI filter for Switched mode PWM Inverter”, International Conference on Systemic Cybernetics and Informatics ICSCI-2005 Hyderabad, pp.6-9, 2005.

7. Bharanikumar, R. and Karunamoorthy, B. “Impedance Source Inverter for AC Drive Application” International Conference on Systemic Cybernetics and Informatics, ICSCI-2005 Hyderabad 2005.

Seminar, Conference, Workshop Attended : 6

Seminar, Conference, Workshop Organised :7

Contributions to the Institution, Department and Society:

Referensi

Dokumen terkait

Abstract — In this paper, we present the doubly-fed induction generator (DFIG) control in wind energy conversion system using adaptive neuro-fuzzy approach.. The wind turbine

General concept of the doubly-fed induction generator is shown in Figure 2.The mechanical power generated by the wind turbine is transformed into electrical

If the mechanical energy is instead converted to electricity, the machine is called a wind generator, wind turbine, wind power unit (WPU), wind energy converter (WEC), or

Design and Performance Measurement of the Integrated Low Speed Permanent Magnet Generator with the Very Low Head Turbine Prototype Abdul Muis2, Priyono Sutikno2, Puji

The curve of the ratio of the generator output power to the rotor speed and the operating point of the generator connected to the wind turbine The power rating of this type of

2010 ‘Design and Analysis Aspects of Radial Flux Air-cored Permanent Magnet Wind Generator System for Direct Battery Charging Applications’, Electronic Engineering, December.. 2018

Performance Improvement of a Linear Permanent Magnet Synchronous Motor Drive using Fuzzy Logic Controller J.. Faiz, Senior Member, IEEE,

It is used to run a windmill which in turn drives a wind generator or wind turbine to produce electricity Figure: 3.2 Wind Power Wind turbines work by converting the kinetic energy in