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首页> 外文期刊>Electrical engineering >RLC passive damped LCL single-phase voltage source inverter with capability to operate in grid-connected and islanded modes: design and control strategy
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RLC passive damped LCL single-phase voltage source inverter with capability to operate in grid-connected and islanded modes: design and control strategy

机译:RLC无源阻尼LCL单相电压源逆变器,具有以网格连接和岛状模式运行的能力:设计和控制策略

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摘要

A design procedure for an RLC damping branch applied at a voltage source inverter followed by an LCL output filter is carried out in this paper. The main purpose of the proposed methodology is to allow the system to operate properly in both grid-connected (GC) and islanded (IS) modes with smooth transitions between them. The usage of passive damping methods to smooth the resonating filters effects is well known. However, the design procedure of the damping branch is specific for either the GC or IS mode, and usually, the parameters tuned for an operation mode are unsuitable for the other one. Thereby, this paper contributes to presenting a methodology design of an RLC branch aimed to achieve damping effect for both operation modes, thus allowing the continuous operation with no hazardous transients during transitions. By means of the proposed approach, the passive elements are adequately designed in order to provide easy controller synthesis. Therefore, a two-loop control strategy is adopted where the inner loop controls the capacitor voltage and ensures the system stability for both operation modes; meanwhile, an additional outer loop controls the grid current for GC mode allowing active and reactive power flows. Experimental results for a 2-kW prototype are presented in order to validate the proposed design methodology and control strategy.
机译:本文在电压源逆变器处施加的RLC阻尼支线的设计过程,然后在本文中进行了LCL输出滤波器。所提出的方法的主要目的是允许系统在网格连接(GC)和孤岛(IS)模式中正常运行,在它们之间具有平滑的过渡。无源阻尼方法的使用使谐振过滤器的效果是众所周知的。然而,阻尼分支的设计过程对于GC或模式特定,通常,用于操作模式的参数不合适地对另一个进行调整。由此,本文有助于呈现RLC分支的方法设计,该方法旨在实现两个操作模式的阻尼效果,从而允许在过渡期间没有危险瞬态的连续操作。通过提出的方法,被动元件被充分设计,以便提供易于控制器合成。因此,采用了一个双环控制策略,其中内环控制电容器电压并确保两个操作模式的系统稳定性;同时,额外的外环控制GC模式的网格电流,允许有源和无功流量。提出了2 kW原型的实验结果,以验证所提出的设计方法和控制策略。

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