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PLL-less Nonlinear Current-limiting Controller for Single-phase Grid-tied Inverters: Design, Stability Analysis and Operation Under Grid Faults

机译:用于单相并网逆变器的无pLL非线性限流控制器:电网故障下的设计,稳定性分析和操作

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摘要

A nonlinear controller for single-phase grid-tied inverters, that can operate under both a normal and a faulty grid with guaranteed closed-loop stability, is proposed. The proposed controller acts independently from the system parameters, does not require a phase-locked loop (PLL) and can achieve the desired real power regulation and unity power factor operation. Based on nonlinear input-to-state stability theory, it is analytically proven that the inverter current always remains below a given value, even during transients, independently from grid variations or faults (short circuit or voltage sag). The desired performance and stability of the closed-loop system are rigorously proven since the controller has a structure that does not require any switches, additional limiters or monitoring devices for its implementation. Therefore, nonlinear stability of a grid-tied inverter with a given current-limiting property is proven for both normal and faulty grid conditions. The effectiveness of the proposed approach is experimentally verified under different operating conditions of the grid.
机译:提出了一种用于单相并网逆变器的非线性控制器,该控制器可以在正常和故障电网下运行,并具有保证的闭环稳定性。所提出的控制器独立于系统参数起作用,不需要锁相环(PLL),并且可以实现所需的有功功率调节和单位功率因数操作。基于非线性输入到状态稳定性理论,已分析证明,即使在瞬变期间,逆变器电流也始终保持低于给定值,而不受电网变化或故障(短路或电压骤降)的影响。闭环系统具有理想的性能和稳定性,因为控制器具有不需要任何开关,附加限制器或监控装置即可实现的结构,因此得到了严格的证明。因此,在正常和故障电网条件下,都证明了具有给定限流特性的并网逆变器的非线性稳定性。在不同的电网运行条件下,通过实验验证了该方法的有效性。

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