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Fast Adaptive Robust Differentiator Based Robust-Adaptive Control of Grid-Tied Inverters with a New L Filter Design Method

机译:基于快速的自适应鲁棒鉴别器,具有新的L滤波器设计方法的基于网格栓逆变器的鲁棒 - 自适应控制

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摘要

In this research, a new nonlinear and adaptive state feedback controller with a fast-adaptive robust differentiator is presented for grid-tied inverters. All parameters and external disturbances are taken as uncertain in the design of the proposed controller without the disadvantages of singularity and over-parameterization. A robust differentiator based on the second order sliding mode is also developed with a fast-adaptive structure to be able to consider the time derivative of the virtual control input. Unlike the conventional backstepping, the proposed differentiator overcomes the problem of explosion of complexity. In the closed-loop control system, the three phase source currents and direct current (DC) bus voltage are assumed to be available for feedback. Using the Lyapunov stability theory, it is proven that the overall control system has the global asymptotic stability. In addition, a new simple L filter design method based on the total harmonic distortion approach is also proposed. Simulations and experimental results show that the proposed controller assurances drive the tracking errors to zero with better performance, and it is robust against all uncertainties. Moreover, the proposed L filter design method matches the total harmonic distortion (THD) aim in the design with the experimental result.
机译:在该研究中,提出了一种具有快速自适应鲁棒区分器的新的非线性和自适应状态反馈控制器,用于网格连接的逆变器。在没有奇点和过度参数化的情况下,所有参数和外部干扰都在设计方面不确定。基于二阶滑动模式的鲁棒差分器也具有快速自适应结构,能够考虑虚拟控制输入的时间导数。与传统的Backstepping不同,所提出的差异克服了复杂性爆炸的问题。在闭环控制系统中,假设三相源电流和直流(DC)总线电压可用于反馈。使用Lyapunov稳定性理论,证明整体控制系统具有全球渐近稳定性。此外,还提出了一种基于总谐波失真方法的新的简单L滤波器设计方法。仿真和实验结果表明,建议的控制器保证将跟踪误差驱动到零,具有更好的性能,并且对所有不确定性具有稳健性。此外,所提出的L滤波器设计方法与实验结果的设计符合总谐波失真(THD)。

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