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VSG scheme under unbalanced conditions controlled by SMC

机译:SMC控制的非平衡条件下的VSG方案

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摘要

The presence of distributed generators (DGs) based on renewable energy is a fact in the electrical grid. However, DGs based on renewable resources such as photovoltaic panels and storage systems lack inertia, which is used by synchronous generators to compensate oscillations in the electrical grid. Thus, virtual inertia is introduced via a virtual synchronous generator (VSG) scheme. Although VSG is widely used, its robustness cannot be ensured since it employs proportional-integral-derivative-type (PID-type) controllers, which are sensitive to parameters variations. Furthermore, PID-type controllers are designed assuming balance conditions and the negative sequence components produced during unbalanced conditions are not considered. This paper proposes a robust VSG topology working under unbalanced conditions. A sliding mode control (SMC) algorithm named super-twisting (ST) is integrated into the control loop of VSG providing insensitivity to matched disturbances/uncertainties and finite-time convergence. Since the design of the ST algorithm considers the presence of negative-sequence components, it is not necessary a modification of the control loop before, during, or after the fault. The method to compute the ST control gains and the stability test using Lyapunov are provided. The VSG scheme is tested via simulations, where voltage sags are applied to generate the unbalanced conditions.
机译:电网中存在基于可再生能源的分布式发电机(DG)。但是,基于可再生资源(例如光伏面板和存储系统)的DG缺乏惯性,同步发电机可利用惯性来补偿电网中的振荡。因此,经由虚拟同步发电机(VSG)方案引入虚拟惯性。尽管VSG被广泛使用,但由于它采用对参数变化敏感的比例积分微分型(PID型)控制器,因此无法确保其鲁棒性。此外,PID型控制器的设计假设平衡条件,不考虑在不平衡条件下产生的负序分量。本文提出了一种在不平衡条件下工作的稳健VSG拓扑。名为超扭曲(ST)的滑模控制(SMC)算法被集成到VSG的控制回路中,从而对匹配的干扰/不确定性和有限时间收敛不敏感。由于ST算法的设计考虑了负序分量的存在,因此在故障发生之前,期间或之后,无需修改控制回路。提供了ST控制增益的计算方法和使用Lyapunov的稳定性测试。 VSG方案通过仿真进行了测试,其中施加了电压骤降以生成不平衡条件。

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