Unbalanced three-phase distribution system frequency estimation using least mean squares method and positive voltage sequence

被引:13
|
作者
Marcetic, Darko P. [1 ]
Tomic, Josif J. [1 ]
Kusljevic, Miodrag D. [2 ]
机构
[1] Univ Novi Sad, Novi Sad 21000, Serbia
[2] Termoelektro Enel AD, Belgrade 11060, Serbia
关键词
frequency estimation; least mean squares methods; low-pass filters; power convertors; power distribution; power engineering computing; power grids; power harmonic filters; virtual instrumentation; unbalanced three-phase electrical distribution system frequency estimation; grid-connected power converters; complex least mean squares algorithm; CLMS algorithm; voltage amplitude unbalance; harmonic distortion levels; circular vector trajectory; two-phase i<plus; minus>i(2)-plane; constant delay block; signal frequency feedback loop; positive voltage phase-sequence vector; high signal harmonics; computer simulations; noise measurement; LabVIEW software environment; three-phase grid voltage; POWER QUALITY INSTRUMENTS; LOCKED LOOP; SYNCHRONIZATION; ALGORITHM;
D O I
10.1049/iet-smt.2012.0003
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
The subject of this study is a frequency estimation algorithm suitable for grid-connected power converters placed at a weak coupling point of a three-phase electrical distribution system. An upgraded version of the widely used complex least mean squares (CLMS) algorithm for frequency estimation is introduced to cope with different voltage amplitude unbalance and harmonic distortion levels, both frequently present in power system at distribution level. First, it is suggested that the CLMS algorithm uses only a positive phase-sequence component of voltage vector, the component that is inherently symmetrical and by cancelling the phase unbalance preserves the circular vector trajectory in a two-phase -plane. This study shows that it is even possible to use the positive voltage phase-sequence vector extracted using a constant delay block, thus avoiding potential instability issues in the case of signal frequency feedback loop. Second, possible high signal harmonics and signal measurement noise are both removed using low-pass filters prior to CLMS algorithm deployment. Computer simulations and experiments are performed under a variety of conditions to validate the effectiveness of the proposed technique. Experimental results are achieved using the dataset sampled from the actual three-phase grid voltage at distributed level and with data processing done in the LabVIEW software environment.
引用
收藏
页码:30 / 38
页数:9
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