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Enhancement of Grid Connected PV Arrays Fault Ride Through and Post Fault Recovery Performance

机译:并网光伏阵列故障穿越和故障恢复后性能的增强

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摘要

In this paper, a novel nonlinear control system for enhancing the low-voltage ride through capability and post-fault recovery performance of two-stage grid connected PV arrays (GCPAs) is proposed. The proposed control scheme is composed of two controllers: 1) finite-time sliding mode control (FTSMC) and 2) proxy-based sliding mode control (PBSMC). The FTSMC, which assures the finite time convergence of the tracking error, controls the dc/dc converter of GCPA during voltage sags to assure the dc-link capacitor voltage does not exceed its limits. PBSMC controls the dc/ac inverter. PBSMC provides accurate and fast tracking feature during normal condition (similar to PID controller) and is capable of very smooth resuming to the desired reference value/trajectory after large disturbances that may lead the control signal to exceed the limits. Therefore, during post-fault voltage recovery period, PBSMC exits saturation faster and smoother which significantly enhances the recovery performance of GCPA. The advantages of the proposed control schemes are demonstrated using simulation results.
机译:本文提出了一种新型的非线性控制系统,用于增强两级并网光伏阵列(GCPA)的低压穿越能力和故障后恢复性能。所提出的控制方案由两个控制器组成:1)有限时间滑模控制(FTSMC)和2)基于代理的滑模控制(PBSMC)。 FTSMC确保跟踪误差的有限时间收敛,它在电压骤降期间控制GCPA的DC / DC转换器,以确保DC链路电容器电压不超过其极限。 PBSMC控制直流/交流逆变器。 PBSMC在正常情况下(类似于PID控制器)提供准确且快速的跟踪功能,并且在可能导致控制信号超出限制的大干扰之后,能够非常平滑地恢复到所需的参考值/轨迹。因此,在故障后电压恢复期间,PBSMC更快,更平滑地退出饱和状态,这显着增强了GCPA的恢复性能。仿真结果证明了所提出的控制方案的优势。

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