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Analysis of Interaction Among Multiple Parallel Three-phase Grid-connected Inverters Based on RGA

机译:基于RGA的多个平行三相网格连接逆变器之间的相互作用分析

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As the main interface device between distributed generation and public grid, grid connected inverter is responsible for the stable operation of distributed generation system. In order to solve the problem of interaction among inverters in the parallel system of inverters, based on the double closed-loop PR control system of LCL filter, a multiple three-phase inverter grid system which is close to the reality with relatively complex control structure based on droop control is established. For the current control loop with additional active damping control in the system, a transfer function is established at αβcoordinate system. According to the principle of relative gain array, a method is proposed to analyze the interaction among multiple parallel three-phase inverters. It can quantitatively analyze the relationship between the system control parameters, operation frequency, number of parallel inverters, filter capacitor and the interaction among inverters. Finally, a grid connected model of three-phase inverter is built in MATLAB / Simulink simulation platform to verify the correctness of theoretical analysis and the effectiveness of interaction analysis method.
机译:作为分布式发电和公共电网之间的主接口设备,网格连接逆变器负责分布式发电系统的稳定运行。为了解决逆变器的并联系统中的逆变器之间的相互作用问题,基于LCL滤波器的双闭环PR控制系统,多个三相逆变器网格系统接近具有相对复杂的控制结构的现实基于下垂控制建立。对于系统中具有额外主动阻尼控制的电流控制回路,在αβ符位系统中建立传递函数。根据相对增益阵列的原理,提出了一种方法来分析多个平行三相逆变器之间的相互作用。它可以定量地分析系统控制参数,操作频率,并联逆变器的数量,滤波器电容和逆变器之间的交互之间的关系。最后,内置了三相逆变器的网格连接模型,内置于Matlab / Simulink仿真平台,以验证理论分析的正确性和交互分析方法的有效性。

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