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Closed-loop analysis and control of a non-inverting buck-boost converter

机译:同相降压-升压转换器的闭环分析和控制

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摘要

In this article, a cascade controller is designed and analysed for a non-inverting buck-boost converter. The fast inner current loop uses sliding mode control. The slow outer voltage loop uses the proportional-integral (PI) control. Stability analysis and selection of PI gains are based on the nonlinear closed-loop error dynamics incorporating both the inner and outer loop controllers. The closed-loop system is proven to have a nonminimum phase structure. The voltage transient due to step changes of input voltage or resistance is predictable. The operating range of the reference voltage is discussed. The controller is validated by a simulation circuit. The simulation results show that the reference output voltage is well-tracked under system uncertainties or disturbances, confirming the validity of the proposed controller.
机译:在本文中,设计并分析了用于同相降压-升压转换器的级联控制器。快速内部电流环路使用滑模控制。缓慢的外部电压环路使用比例积分(PI)控制。 PI增益的稳定性分析和选择基于结合了内部和外部环路控制器的非线性闭环误差动力学。事实证明,该闭环系统具有非最小相位结构。由于输入电压或电阻的阶跃变化而引起的瞬态电压是可以预测的。讨论了参考电压的工作范围。控制器由仿真电路验证。仿真结果表明,在系统不确定性或扰动条件下,参考输出电压具有良好的跟踪能力,证实了所提控制器的有效性。

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