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Adaptive Passivity-Based Control of dc–dc Buck Power Converter With Constant Power Load in DC Microgrid Systems

机译:直流微电网系统中具有恒定功率负载的基于dcdc降压功率转换器的基于无源自适应控制

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This paper presents a robust nonlinear control strategy to solve the instability problem of dc-dc buck power converter with a constant power load in dc microgrid systems. Based on the passivity-based control (PBC), a nonlinear disturbance observer (NDO) is designed to improve the control robustness against both load and line variations, whereas the PBC guarantees the system stability due to its property of transient energy dissipation. By applying the disturbance estimation technique, NDO works in parallel with the PBC controller to compensate the disturbances through a feed-forward channel. This strategy ensures large signal stability as well as fast recovery performance of the system during disturbance/uncertainty as compared to other nonlinear control methods. Hardware-inloop (HIL) experiment is performed on an OPAL-RT real-time simulator. MATLAB simulation and HIL results are provided to verify the proposed control strategy. Further validations are presented using a real hardware experiment to emphasize the robustness of the proposed controller.
机译:本文提出了一种鲁棒的非线性控制策略,以解决直流微电网系统中具有恒定功率负载的dc-dc buck功率转换器的不稳定性问题。基于无源控制(PBC),设计了一种非线性干扰观测器(NDO),以提高针对负载和线路变化的控制鲁棒性,而PBC由于其瞬态能量耗散特性而保证了系统稳定性。通过应用干扰估计技术,NDO与PBC控制器并行工作,以通过前馈通道补偿干扰。与其他非线性控制方法相比,该策略可确保较大的信号稳定性以及在干扰/不确定性期间系统的快速恢复性能。硬件在环(HIL)实验是在OPAL-RT实时模拟器上执行的。提供了MATLAB仿真和HIL结果以验证所提出的控制策略。使用实际的硬件实验提出了进一步的验证,以强调所提出控制器的鲁棒性。

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