Stability Improvement of Pulse Power Supply With Dual-Inductance Active Storage Unit Using Hysteresis Current Control
Autor: | Songrong Wu, Jianping Xu, Peng Yusheng, Ping Yang, Chen Xi, Rongqian Chen |
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Rok vydání: | 2021 |
Předmět: |
Pulse repetition frequency
Materials science business.industry 020208 electrical & electronic engineering Ripple Electrical engineering 020302 automobile design & engineering 02 engineering and technology Pulsed power Inductor Power (physics) law.invention Inductance Capacitor 0203 mechanical engineering Duty cycle law 0202 electrical engineering electronic engineering information engineering Electrical and Electronic Engineering business |
Zdroj: | IEEE Journal on Emerging and Selected Topics in Circuits and Systems. 11:111-120 |
ISSN: | 2156-3365 2156-3357 |
DOI: | 10.1109/jetcas.2020.3048699 |
Popis: | The output power of the pulsed power supply (PPS) pulsates at the pulse repetition frequency (PRF) of pulse load. The pulsating power will result in a large bus voltage ripple. To balance the instantaneous power difference, a single or dual-inductance active storage unit (ASU) is usually connected in parallel with the output terminal of the PPS. Poor compensating current tracking accuracy of ASU will lead to the output current of PPS suffered from serious current spikes, which affects the stability of the bus voltage. A hysteresis current control (HCC) is proposed to achieve an excellent pulse current compensation performance. Compared with the current mode control (CMC), the small-signal modeling of dual-inductance with HCC is established to illustrate good compensation performance. Besides, a valley voltage loop is introduced to regulate the storage capacitor voltage in dual-inductance ASU to reduce the power loss at any pulse duty cycle. An experimental prototype is built to verify the spikes in output current can be eliminated effectively, the bus voltage keeps smooth and stable, and the output capacitor of the per-stage DC/DC converter is reduced significantly. |
Databáze: | OpenAIRE |
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