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Design-Oriented Transient Stability Analysis of PLL-Synchronized Voltage-Source Converters

机译:PLL同步电压源转换器的面向设计的瞬态稳定性分析

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摘要

Differing from synchronous generators, there are lack of physical laws governing the synchronization dynamics of voltage-source converters (VSCs). The widely used phase-locked loop (PLL) plays a critical role in maintaining the synchronism of current-controlled VSCs, whose dynamics are highly affected by the power exchange between VSCs and the grid. This article presents a design-oriented analysis on the transient stability of PLL-synchronized VSCs, i.e., the synchronization stability of VSCs under large disturbances, by employing the phase portrait approach. Insights into the stabilizing effects of the first- and second-order PLLs are provided with the quantitative analysis. It is revealed that simply increasing the damping ratio of the second-order PLL may fail to stabilize VSCs during severe grid faults, whereas the first-order PLL can always guarantee the transient stability of VSCs when equilibrium operation points exist. An adaptive PLL that switches between the second-order and the first-order PLL during the fault-occurring-clearing transient is proposed for preserving both the transient stability and the phase-tracking accuracy. Time-domain simulations and experimental tests, considering both the grid fault and the fault recovery, are performed, and the obtained results validate the theoretical findings.
机译:与同步发电机不同,缺乏控制电压源转换器(VSC)同步动态的物理定律。广泛使用的锁相环(PLL)在维持电流控制的VSC的同步性方面起着关键作用,电流控制的VSC的动态性受VSC与电网之间的功率交换影响很大。本文采用相位肖像方法,对PLL同步VSC的瞬态稳定性(即大干扰下VSC的同步稳定性)进行了面向设计的分析。定量分析提供了对一阶和二阶PLL的稳定效应的见解。结果表明,仅增加二阶PLL的阻尼比可能在严重电网故障期间无法稳定VSC,而当存在平衡工作点时,一阶PLL始终可以保证VSC的瞬态稳定性。为了保持瞬态稳定性和相位跟踪精度,提出了一种在故障清除瞬态期间在二阶和一阶PLL之间切换的自适应PLL。进行了同时考虑电网故障和故障恢复的时域仿真和实验测试,所得结果验证了理论结论。

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