MODELING AND DESIGN OF A FAST-DYNAMIC RESPONSE PHASE-LOCKED LOOP BASED ON MOVING AVERAGE FILTER

F. Martinz, R. Destro, N. Ama, Kelly C. M. Carvalho, W. Komatsu, Lourenco Matakas Junior
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Abstract

Phase Locked Loops (PLLs) with in-loop Moving Average Filter (MAF) and a Proportional Integral (PI) controller are effective methods to achieve synchronization in grid-connected converters, since they have simple implementation, low computational burden and excellent filtering capability. However, they are known to be slow. The reasons are the MAF time delay and the PI controller tuning method, which makes the design of a fast control loop challenging. This paper demonstrates that the second-order Padé approximation is enough to achieve an accurate model for the MAF, and presents a controller design technique that results in the minimum settling times achievable for a MAF-PLL with a PI controller. Simulation and experimental results validate the proposed approach. 
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基于移动平均滤波器的快速动态响应锁相环的建模与设计
锁相环加环内移动平均滤波器(MAF)和比例积分控制器(PI)是实现并网变流器同步的有效方法,具有实现简单、计算量小、滤波性能好等优点。然而,他们是出了名的慢。原因是MAF的时间延迟和PI控制器的整定方法给快速控制回路的设计带来了挑战。本文证明二阶pad近似足以实现MAF的精确模型,并提出了一种控制器设计技术,该技术可以使带有PI控制器的MAF- pll实现最小的沉降时间。仿真和实验结果验证了该方法的有效性。
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