TY - GEN
T1 - A Fast-Tracking Power Supply Based On Optimized D-CAP+ Control And Enhancement-mode GaN Transistor
AU - Lai, Xiaoxing
AU - Zhang, Donglai
N1 - Publisher Copyright:
© 2026 IEEE.
PY - 2026
Y1 - 2026
N2 - The space solar array simulator is a crucial part of satellite power systems, simulating the output characteristics of solar arrays under various load conditions during ground tests. However, existing power supplies exhibit limited fast-tracking performance. To address this challenge, this paper investigates a fast-tracking power supply based on optimized D-CAP+ control and enhancement-mode GaN transistor. It employs a sample-and-hold circuit to enhance DC accuracy, along with a simplified adaptive ripple injection circuit based on a divided-frequency technique. This approach mitigates phase distortion and shortens the control loop cycle in high-voltage, low-current applications. Simulation results show that the optimized control tracks a 50 V step signal in 15.3 μs (65.4 kHz), with a steady-state voltage error of 0.12%, ripple blow 300 mV, and minimal phase shift for a 50 kHz sine wave. A power supply prototype with a voltage rating of 100 V/50 V, power rating of 250 W, and power density of 43.03 W/in3 was built. Experimental results demonstrate a 20.4% improvement in dynamic response and good steady-state performance, verifying the effectiveness of optimized D-CAP+ control in improving tracking capability.
AB - The space solar array simulator is a crucial part of satellite power systems, simulating the output characteristics of solar arrays under various load conditions during ground tests. However, existing power supplies exhibit limited fast-tracking performance. To address this challenge, this paper investigates a fast-tracking power supply based on optimized D-CAP+ control and enhancement-mode GaN transistor. It employs a sample-and-hold circuit to enhance DC accuracy, along with a simplified adaptive ripple injection circuit based on a divided-frequency technique. This approach mitigates phase distortion and shortens the control loop cycle in high-voltage, low-current applications. Simulation results show that the optimized control tracks a 50 V step signal in 15.3 μs (65.4 kHz), with a steady-state voltage error of 0.12%, ripple blow 300 mV, and minimal phase shift for a 50 kHz sine wave. A power supply prototype with a voltage rating of 100 V/50 V, power rating of 250 W, and power density of 43.03 W/in3 was built. Experimental results demonstrate a 20.4% improvement in dynamic response and good steady-state performance, verifying the effectiveness of optimized D-CAP+ control in improving tracking capability.
KW - fast-tracking control
KW - gallium nitride devices
KW - interleaved parallel buck converter
UR - https://www.scopus.com/pages/publications/105041167239
U2 - 10.1109/APEC51134.2026.11516930
DO - 10.1109/APEC51134.2026.11516930
M3 - 会议稿件
AN - SCOPUS:105041167239
T3 - Conference Proceedings - IEEE Applied Power Electronics Conference and Exposition - APEC
SP - 2233
EP - 2238
BT - APEC 2026 - 41st Annual IEEE Applied Power Electronics Conference and Exposition
PB - Institute of Electrical and Electronics Engineers Inc.
T2 - 41st Annual IEEE Applied Power Electronics Conference and Exposition, APEC 2026
Y2 - 22 March 2026 through 26 March 2026
ER -