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Decoupled Current Controller Based on Reduced Order Generalized Integrator for Three-Phase Grid-Connected VSCs in Distributed System

机译:分布式系统中三相并网VSC的降阶广义积分解耦电流控制器

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Grid-connected voltage source converters (GC-VSCs) are used for interfacing the distributed power generation system (DPGS) to the utility grid. Performance of the current loop is a critical issue for these GC-VSCs. Recently, reduced order generalized integrator (ROGI)-based current controller is proposed, such that AC reference signal of positive or negative sequences can be separately tracked without steady-state error, which has the advantage of less computational burden. However, the cross-coupling within the ROGI-based current controller would deteriorate the transient response of the current loop. In this paper, a ROGI-based decoupled current controller is proposed to eliminate the coupling between α -axis and β -axis. Thus, the faster dynamic response performance can be achieved while maintaining the merits of ROGI-based current controller. An optimal gain parameter design method for the proposed current controller is presented to improve the stability and dynamic response speed of current loop. Simulation and experiments were performed in MATLAB/Simulink and TMS320C28346 DSP-based laboratory prototype respectively, which validated the proposed theoretical approach.
机译:并网电压源转换器(GC-VSC)用于将分布式发电系统(DPGS)连接到公用电网。对于这些GC-VSC,电流环路的性能是至关重要的问题。近来,提出了基于降阶广义积分器(ROGI)的电流控制器,使得可以分别跟踪正序或负序的交流参考信号而不会产生稳态误差,具有计算负担少的优点。但是,基于ROGI的电流控制器内的交叉耦合会恶化电流环路的瞬态响应。本文提出了一种基于ROGI的去耦电流控制器,以消除α轴和β轴之间的耦合。因此,在保持基于ROGI的电流控制器的优点的同时,可以实现更快的动态响应性能。提出了一种用于电流控制器的最优增益参数设计方法,以提高电流环的稳定性和动态响应速度。分别在MATLAB / Simulink和基于TMS320C28346 DSP的实验室原型中进行了仿真和实验,验证了所提出的理论方法。

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