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A new backstepping finite time sliding mode control of grid connected PV system using multivariable dynamic VSC model

机译:基于多变量动态VSC模型的光伏并网光伏系统反步有限时间滑模控制

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This paper presents independent active and reactive power management of a three-phase grid-connected photovoltaic (PV) generation system using a new nonlinear control approach for the voltage source converter (VSC). Instead of controlling the direct and quadrature-axis currents of the VSC, the instantaneous active and reactive powers are used as error estimation parameters. This mode of control dispenses the unmodelled dynamics of the VSC phase-locked loop system and produces a robust control for the active reactive power, and dc voltage excursions. This approach reduces computational time as well as complexity by avoiding unnecessary PLL phase calculation in the beginning. However, the PLL is used only to obtain the frequency component needed to generate the PWM signal. Further to improve the stability and robust tracking of the grid connected PV array, backstepping finite time fast sliding mode (BFISM) control strategy is presented in this paper. The proposed controller offers invariant stability to modeling uncertainties due to converter parameter changes, changes in system frequency and exogenous inputs. Also the finite time sliding mode control offers an important tool for designing continuous finite time control laws. Comprehensive computer simulations are carried out in MATLAB/Simulink to verify the proposed control scheme under several system disturbances like changes in solar insolation, changes in local load, converter parametric changes, and faults on the converter and inverter buses, and partial shading condition of PV array. EMTDC/PSCAD model is established as confirmative study. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文介绍了一种使用新型非线性控制方法的电压源转换器(VSC)的三相并网光伏(PV)发电系统的独立有功和无功功率管理。代替控制VSC的直流和正交轴电流,瞬时有功功率和无功功率被用作误差估计参数。这种控制模式可消除VSC锁相环系统的非建模动态,并为有功无功功率和直流电压偏移提供可靠的控制。这种方法一开始就避免了不必要的PLL相位计算,从而减少了计算时间并降低了复杂度。但是,PLL仅用于获得生成PWM信号所需的频率分量。为了进一步提高并网光伏阵列的稳定性和鲁棒性,本文提出了反步有限时间快速滑模控制策略。由于转换器参数的变化,系统频率的变化和外部输入,所提出的控制器为建模不确定性提供了不变的稳定性。有限时间滑模控制也为设计连续的有限时间控制律提供了重要的工具。在MATLAB / Simulink中进行了全面的计算机仿真,以验证所提出的控制方案在多种系统扰动下的有效性,例如太阳日照的变化,局部负载的变化,转换器的参数变化以及转换器和逆变器母线上的故障以及PV的部分遮光条件数组。建立了EMTDC / PSCAD模型作为验证性研究。 (C)2016 Elsevier Ltd.保留所有权利。

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