DocumentCode
2839691
Title
A new phase sequence detector for the three-phase rotary loads
Author
Bidgoli, M. Alizadeh ; Soori, A. ; Bina, M. Tavakoli
Author_Institution
K.N. Toosi Univ. of Technol., Tehran, Iran
fYear
2011
fDate
16-17 Feb. 2011
Firstpage
529
Lastpage
533
Abstract
Automated load balancers can swap output phases of feeders in a distribution substation by the use of matrix converters. In addition, the rotational three phase loads operate clockwise if three phase system has positive sequence. In order to complete the proposed method for balancers, in this paper three different methods is proposed for recognizing phase sequence in power systems. The first evaluated method detects phase sequence by measuring of instantaneous symmetrical components. This method has drawbacks of complexity and low speed in detecting. The second method detects phase sequence by using a phase lock loop (PLL) for metering the power system frequency. The second technique is fast, but PLL that is used in this technique operates incorrectly under unbalanced condition. Finally, the third method is a new technique that is proposed for the first time in this paper which is very fast. This innovative method detects phase swapping by the zero crossing times. The whole methods are simulated by SIMULINK to verify and compare the suggested method with other techniques.
Keywords
matrix convertors; phase detectors; phase locked loops; substations; automated load balancer; distribution substation; matrix converter; phase lock loop; phase sequence detector; power system frequency; three phase rotary load; Load flow; Matrix converters; Phase frequency detector; Phase locked loops; Phase measurement; Substations; Voltage measurement; phase lock loop; phase sequence; power system balancer; zero crossing detection;
fLanguage
English
Publisher
ieee
Conference_Titel
Power Electronics, Drive Systems and Technologies Conference (PEDSTC), 2011 2nd
Conference_Location
Tehran
Print_ISBN
978-1-61284-422-0
Type
conf
DOI
10.1109/PEDSTC.2011.5742476
Filename
5742476
Link To Document