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Observer-Based Non-singular Terminal Sliding Mode Control of Boost converters

机译:基于观测器的Boost变换器的非奇异终端滑模控制

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In order to overcome the difficulty of measuring the inductor current, as well as to solve the problem of non-minimum phase of boost converters, this paper proposes a novel observer-based non-singular terminal sliding mode (NTSM) control approach. In the structure of double closed loops, the unknown parameter perturbations and external disturbances are considered and a SM observer is first designed as the inner loop. Then taking the observed state signals, a novel energy storage function is constructed to contain all the nonlinear dynamics of inductor and capacitor so that the problem of non-minimum phase can be solved. Finally a NTSM controller is designed as the external loop to realize the transient control of inductor and capacitor simultaneously. Simulation results validate the proposed approach.
机译:为了克服测量电感电流的困难,并解决升压转换器的非最小相位问题,本文提出了一种新颖的基于观测器的非奇异终端滑模(NTSM)控制方法。在双闭环的结构中,考虑了未知的参数扰动和外部干扰,并且首先将SM观测器设计为内环。然后,利用观测到的状态信号,构造了一种新颖的能量存储函数,该函数包含了电感器和电容器的所有非线性动力学,从而可以解决非最小相位的问题。最后,将NTSM控制器设计为外部环路,以同时实现电感器和电容器的瞬态控制。仿真结果验证了该方法的有效性。

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