Michael N. Gitau

Orcid: 0000-0003-3396-604X

Affiliations:
  • University of Pretoria, Department of Electrical, Electronic and Computer Engineering, South Africa


According to our database1, Michael N. Gitau authored at least 11 papers between 1998 and 2021.

Collaborative distances:
  • Dijkstra number2 of six.
  • Erdős number3 of five.

Timeline

Legend:

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PhD thesis 
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Links

Online presence:

On csauthors.net:

Bibliography

2021
Unified Approach for Synthesis and Analysis of Non-Isolated DC-DC Converters.
IEEE Access, 2021

Carrier Modulation Schemes of Asymmetric, Multileveled, Switched Reluctance Machine Drives.
Proceedings of the 22nd IEEE International Conference on Industrial Technology, 2021

2018
A Single-Switch High Boost-Ratio Active Rectifier Interface for Low-Voltage Wind Generator.
Proceedings of the IECON 2018, 2018

2017
Rotor Speed Control of a Direct-Driven Permanent Magnet Synchronous Generator-Based Wind Turbine Using Phase-Lag Compensators to Optimize Wind Power Extraction.
J. Control. Sci. Eng., 2017

Z-source active rectifier for wind energy applications.
Proceedings of the IEEE AFRICON 2017, Cape Town, South Africa, September 18-20, 2017, 2017

2016
Analysis of N-phase tapped inductor boost DC-DC converters.
Proceedings of the IECON 2016, 2016

2015
Conducted EMC modeling for accreditation in DC-DC converters.
Proceedings of the IECON 2015, 2015

2014
High-power fault-tolerant and multiple independent loads LED driver.
Proceedings of the IECON 2014 - 40th Annual Conference of the IEEE Industrial Electronics Society, Dallas, TX, USA, October 29, 2014

Analysis of a 4-phase tapped-inductor DC-DC converter for high boost ratio wide input voltage range applications.
Proceedings of the IECON 2014 - 40th Annual Conference of the IEEE Industrial Electronics Society, Dallas, TX, USA, October 29, 2014

2013
Modelling and measurement of high switching frequency conducted EMI.
Proceedings of the IECON 2013, 2013

1998
Mathematical Modeling of Analog Controlled Voltage Source Converters for Improved Dynamic Response.
J. Circuits Syst. Comput., 1998


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