Unbalanced control of grid-side converter based on DSOGI-PLL

Jin Li-jun, Jiang Miao-miao, Yang Guang-yao, Cheng Yi-fan, Li Rong-zheng, Zhu Hai-peng, Zhou Ke
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引用次数: 3

Abstract

Due to the nonlinear load and transient power grid failure (such as phase jumps, voltage sags and swells, frequency changes, harmonic pollutions), three-phase voltage is asymmetry and in distortion state. In this case, grid-side converter control system will lose control of the power signal, causing protection system tripping or damaged. Thus, we need to design a control strategy to ensure reliable and safe operation under abnormal power grid condition, which can help to low voltage ride through and grid voltage frequency support. This paper designed the current control system containing unbalanced algorithm. On the basis of the traditional dq control, this paper added the negative sequence current compensation part and solved the oscillation problem of injected active power and reactive power. This paper also presented a design method of PI regulator in current control loop. The new controller needs to deal with positive and negative sequence components respectively, so we designed the double second-order generalized integrator phase-locked loop (DSOGI-SPLL). The small signal model of phase-locked loop and the parameter setting method were given. In the end, we compared the old and new methods on the performance in balanced and imbalanced power grid. It was proved that the new control strategy can meet the target.
基于DSOGI-PLL的电网侧变换器不平衡控制
由于非线性负荷和电网暂态故障(如跳相、电压跌落和波动、频率变化、谐波污染),三相电压不对称,处于畸变状态。在这种情况下,电网侧变流器控制系统将失去对电力信号的控制,造成保护系统跳闸或损坏。因此,我们需要设计一种控制策略,以确保在电网异常情况下可靠安全运行,从而有助于低压穿越和电网电压频率的支持。本文设计了包含不平衡算法的电流控制系统。在传统dq控制的基础上,增加了负序电流补偿部分,解决了注入有功和无功的振荡问题。本文还提出了电流控制回路中PI调节器的设计方法。新控制器需要分别处理正、负序分量,因此设计了双二阶广义积分器锁相环(DSOGI-SPLL)。给出了锁相环的小信号模型和参数整定方法。最后,比较了新旧方法在平衡电网和不平衡电网中的性能。实验证明,该控制策略能够满足目标要求。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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