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A Robust Backstepping High-Order Sliding Mode Control Strategy for Grid-Connected DG Units With Harmonic/Interharmonic Current Compensation Capability

机译:具有谐波/间谐波电流补偿能力的并网DG单元的鲁棒Backstepping高阶滑模控制策略

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摘要

This paper presents a new nonlinear current control strategy based on backstepping control and high-order sliding mode differentiator in order to employ distributed generation (DG) unit interfacing converters to actively compensate harmonics/interharmonics of local loads. The converter-based DG unit is connected to a weak grid (with uncertain impedance) and local load (that can be parametrically uncertain and topologically unknown) through an LCL filter. The proposed strategy robustly regulates the inverter output currents and delivers pure sinusoidal, three-phase balanced currents to the grid. The new controller demonstrates the robust performance and robust stability of the DG unit system with respect to the filter parameters uncertainties, grid impedance, grid frequency, and grid voltage as well as the unknown load dynamics that include unbalanced loads and nonlinear loads with harmonic and interharmonic currents. We should remark that the local compensation of the loads with interharmonic current using a DG unit system is first proposed in this paper. When compared with the popular parallel proportional resonant control technique, the proposed controller offers smoother transient responses and a lower level of current distortion. The performance of the proposed control strategy is verified in MATLAB/SimPowerSystems toolbox.
机译:本文提出了一种基于反推控制和高阶滑模微分器的新型非线性电流控制策略,以便采用分布式发电(DG)单元接口转换器来主动补偿局部负载的谐波/间谐波。基于转换器的DG单元通过LCL滤波器连接到弱电网(具有不确定的阻抗)和局部负载(可能在参数上不确定并且在拓扑上未知)。提出的策略可稳健地调节逆变器输出电流,并向电网提供纯正弦的三相平衡电流。新的控制器展示了DG单元系统在滤波器参数不确定性,电网阻抗,电网频率和电网电压以及未知的负载动态(包括不平衡负载和带有谐波和间谐波的非线性负载)方面的鲁棒性能和鲁棒稳定性。潮流。我们应该指出,本文首先提出了使用DG单元系统对谐波电流进行负荷的局部补偿。与流行的并联比例谐振控制技术相比,该控制器可提供更平滑的瞬态响应和更低的电流失真。在MATLAB / SimPowerSystems工具箱中验证了所提出控制策略的性能。

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