用于将可再生能源系统与电网互连的新型混合锁相环

L. Hadjidemetriou, E. Kyriakides, F. Blaabjerg
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引用次数: 121

摘要

由于可再生能源(RES)的渗透不断增加,特别是风力发电系统(WPS),需要开发新的控制策略来将可再生能源(RES)与电力系统互连。控制策略通常基于快速准确地检测电网电压相角,该相角可以通过使用锁相环(PLL)控制电路来估计。锁相环在正常和异常运行条件下的性能是一个至关重要的方面,因为RES需要在电网故障条件下运行以支持电力系统。本文研究了同步参考帧锁相环(dqPLL)、静止参考帧锁相环(αβPLL)和解耦双同步参考帧锁相环(ddsrfPLL)三种不同锁相环的性能。本研究的结果激发了一种新的混合锁相环的开发,它是上述锁相环的组合,并利用每个锁相环的优点。所提出的解耦静止参考框架锁相环(dαβ锁相环)在非平衡故障下的精度优于其他锁相环,可能是具有穿越故障(RTF)能力的互连RES中使用的合适解决方案。此外,故障发生后的估计相位偏差较小。通过仿真和实验验证了新型dαβ混合锁相环的性能。通过正常工作和RTF工作的实验,将新锁相环应用于互连RES中。
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A new hybrid PLL for interconnecting Renewable Energy Systems to the grid
There is a need to develop new control strategies for interconnecting Renewable Energy Sources (RES) to the power system due to the ever increasing penetration of RES and in particular for wind power systems (WPS). The control strategies are typically based on a fast and accurate detection of the phase angle of the grid voltage which may be estimated by using a Phase-Locked Loop (PLL) control circuit. The performance of the PLL under normal and abnormal operational conditions is a crucial aspect, since the RES is desired to operate to support the power system under grid fault conditions. This paper investigates the performance of three different PLLs: a synchronous reference frame PLL (dqPLL), a stationary reference frame PLL (αβPLL), and a decoupled double synchronous reference frame PLL (ddsrfPLL). The results of this investigation motivate to the development of a new hybrid PLL which is a combination of the abovementioned PLLs and uses the advantages of each PLL. The proposed decoupled stationary reference frame PLL (dαβPLL) may be an appropriate solution to use in an interconnected RES with Ride Through Fault (RTF) capability, since it prevails the other PLLs with regards to its accuracy under unbalanced faults. Further, it has a lower deviation of the estimated phase after the fault occurs. The performance of the new hybrid dαβPLL is verified through simulations and experiments. Further the new PLL is used in an interconnected RES through experiments under normal and RTF operation.
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