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Research on the Application of an SMES Based on Sliding Mode Control to Enhance the LVRT Capability of a Grid-Connected PV System

机译:基于滑模控制的SMES提高并网光伏系统LVRT能力的应用研究

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摘要

In this paper, a superconducting magnetic energy storage (SMES) device based on sliding mode control (SMC) is proposed for grid-connected photovoltaic (PV) systems that can effectively improve the ability of a PV system to withstand low-voltage ride-through (LVRT) during faults. SMC theory is selected as a nonlinear control technique, since the SMES has the characteristics of being multivariable and nonlinear and having strong coupling in the running process. Both the voltage outer loop and the current inner loop adopt the SMC strategy based on an exponential reaching law to increase the system startup speed and effectively reduce system jitter. Next, the SMES system based on SMC is used in a 100-kW class PV system. When a symmetrical fault or asymmetrical fault occurs suddenly in the grid-connected PV system, the SMES based on SMC can more significantly improve the power and voltage of the point of common coupling (PCC) and effectively suppress the voltage fluctuations of the DC link than the case of not using auxiliary measures or the use of a PI-SMES.
机译:本文提出了一种基于滑模控制(SMC)的超导磁储能(SMES)装置用于并网光伏(PV)系统,可以有效提高光伏系统承受低压穿越的能力(LVRT)在故障期间。 SMC理论被选作非线性控制技术,因为SMES具有多变量和非线性的特性,并且在运行过程中具有很强的耦合性。电压外环和电流内环均采用基于指数到达律的SMC策略,以提高系统启动速度并有效降低系统抖动。接下来,将基于SMC的SMES系统用于100 kW级PV系统。当并网光伏系统中突然出现对称故障或非对称故障时,基于SMC的SMES可以显着提高公共耦合点(PCC)的功率和电压,并有效地抑制了直流母线的电压波动。不使用辅助措施或使用PI-SMES的情况。

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