Abstract
In this paper, a new modulation technique is presented which aims to enhance the natural voltage balancing capability of neutral-point-clamped converters. The traditional carrier-based pulsewidth modulation technique with zero-sequence injection faces some drawbacks, namely, its inability to balance initial capacitor voltage imbalances quickly and the divergence of the capacitor voltages in the presence of nonlinear loads with even harmonics. This paper aims to find a trade-off between voltage balance performance and switching losses by reducing the difference between the average capacitor voltages without incorporating any external circuitry. A reference neutral-point (NP) current is generated using the average difference between the capacitor voltages. Depending on the reference NP current and predicted NP current, appropriate duty cycles are applied to switch the three phases. These duty cycles are directly linked to the voltage unbalance between the capacitor voltages and thus provides the necessary 'push' to mitigate deviations in natural balancing characteristics. To validate the proposed modulation technique, simulation results are presented for linear loads as well as for nonlinear loads with even harmonics.
Original language | English |
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Title of host publication | 2018 IEEE 4th Southern Power Electronics Conference, SPEC 2018 |
Publisher | Institute of Electrical and Electronics Engineers Inc. |
ISBN (Electronic) | 9781538682579 |
DOIs | |
Publication status | Published - Jul 2 2018 |
Externally published | Yes |
Event | 4th IEEE Southern Power Electronics Conference, SPEC 2018 - Singapore, Singapore Duration: Dec 10 2018 → Dec 13 2018 |
Publication series
Name | 2018 IEEE 4th Southern Power Electronics Conference, SPEC 2018 |
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Conference
Conference | 4th IEEE Southern Power Electronics Conference, SPEC 2018 |
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Country/Territory | Singapore |
City | Singapore |
Period | 12/10/18 → 12/13/18 |
Bibliographical note
Publisher Copyright:© 2018 IEEE.
ASJC Scopus Subject Areas
- Energy Engineering and Power Technology
- Electrical and Electronic Engineering
Keywords
- Carrier-based pulsewidth modulation
- moving average filter
- natural balancing
- neutral-point-clamped converter
- three-level modulation