Please use this identifier to cite or link to this item: https://doi.org/10.1109/TPEL.2016.2600035
Title: Single-Switch Quasi-Resonant DC-DC Converter for a Pulsed Plasma Thruster of Satellites
Authors: Kang, Bingyin 
Low, Kay-Soon 
Soon, Jing Jun 
Quang-Vinh, Tran
Keywords: Science & Technology
Technology
Engineering, Electrical & Electronic
Engineering
Pulsed plasma thruster (PPT)
quasi-resonant converter
resonant tank
satellite
zero-current switching (ZCS)
VOLTAGE MULTIPLIER
DESIGN
PROPULSION
ZCS
CAPACITOR
PPT
Issue Date: 1-Jun-2017
Publisher: IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
Citation: Kang, Bingyin, Low, Kay-Soon, Soon, Jing Jun, Quang-Vinh, Tran (2017-06-01). Single-Switch Quasi-Resonant DC-DC Converter for a Pulsed Plasma Thruster of Satellites. IEEE TRANSACTIONS ON POWER ELECTRONICS 32 (6) : 4503-4513. ScholarBank@NUS Repository. https://doi.org/10.1109/TPEL.2016.2600035
Abstract: © 2016 IEEE. Due to its low mass and medium impulse bit, the pulsed plasma thruster (PPT) is a suitable electric propulsion system for orbit maintenance and attitude control for nanosatellites. The PPT uses an igniter circuit to produce an arc in vacuum for plasma generation. In this paper, a new quasi-resonant converter topology is proposed for the PPT igniter. It consists of a resonant tank, a step-up transformer, and a Cockcroft-Walton voltage multiplier circuit. While other resonant converters require a switch bridge, the proposed approach uses only a single switch. This prevents the possible short-circuit of the same leg in a switch bridge caused by the noise interference or single event effect in space. Moreover, the switching control is realized without a dead time which simplifies the implementation. Both simulation and experimental results have validated that the proposed topology operates in a quasi-resonant state to realize zero-current switching. It reduces the switching noise, voltage spike, and switch's conduction loss. Moreover, the proposed topology also has a better boost capability than some of the existing resonant converters.
Source Title: IEEE TRANSACTIONS ON POWER ELECTRONICS
URI: https://scholarbank.nus.edu.sg/handle/10635/168421
ISSN: 0885-8993
1941-0107
DOI: 10.1109/TPEL.2016.2600035
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