Related Experiment Video
Updated: Dec 28, 2025

Generation and Coherent Control of Pulsed Quantum Frequency Combs
Published on: June 8, 2018
Carrier-based sinusoidal pulse-width modulation techniques for flying capacitor modular multi-level cascaded
O J K Oghorada1, Li Zhang2, B A Esan1
1Electrical & Information Engineering Department, Landmark University, Omu-Aran, Nigeria.
New swapped carrier pulse-width modulation (PWM) techniques effectively control modular multilevel cascaded converters with flying capacitor sub-modules. These novel PWM methods reduce power loss while maintaining voltage balancing and performance.
Area of Science:
- Electrical Engineering
- Power Electronics
- Control Systems
Background:
- Modular multilevel cascaded converters (MMCC) are crucial for high-voltage applications.
- Conventional carrier-based PWM techniques like PD-PWM and PS-PWM are standard for MMCCs with H-bridge sub-modules.
- A variant, the MMCC five-level flying capacitor converter, introduces challenges in voltage balancing.
Purpose of the Study:
- To evaluate conventional PWM techniques (PD-PWM, PS-PWM) on a five-level flying capacitor MMCC.
- To introduce and assess two novel swapped carrier PWM techniques for this specific MMCC.
- To compare the performance of new and conventional PWM schemes.
Main Methods:
- Implementation and simulation of phase disposed PWM (PD-PWM) and phase shifted PWM (PS-PWM).
- Development and implementation of two novel swapped carrier PWM techniques.
- Comparative analysis based on voltage waveform quality, flying capacitor voltage balancing, power loss, and switch utilization.
Main Results:
- The proposed swapped carrier PWM techniques demonstrate superior performance in reducing switching and conduction power losses.
- Novel PWM schemes achieve comparable voltage waveform performance to PS-PWM.
- Effective natural flying capacitor voltage balancing is maintained by the new PWM techniques.
Conclusions:
- Swapped carrier PWM techniques offer an improved control strategy for MMCCs with flying capacitor sub-modules.
- These novel techniques provide a better balance between power loss reduction and operational performance.
- The findings suggest a promising alternative for advanced MMCC control applications.
More Related Videos
05:11High-precision Electromagnetic Flowmeter with Empty Pipe Detection via Complex Programmable Logic Device-based Waveform Recognition
Published on: June 27, 2025
06:04Experimental Investigation of the Hierarchical Control in DC Microgrids Using a Real-time Simulator
Published on: February 14, 2025
Related Concept Videos
Design Example: Capacitance Multiplier Circuit
The circuit illustrated in Figure 1 below incorporates two op-amps, with the first operating as a voltage follower and the second acting as an inverting amplifier.
Voltage Doubler Circuit
Half wave rectifier
Power Factor Correction
Generator Voltage Control
Full wave rectifier