Optimal Passive Filter Design for Effective Utilization of Cables and Transformers under Non-sinusoidal Conditions

被引:0
作者
Aleem, Shady H. E. Abdel [1 ]
Balci, Murat E. [2 ]
Zobaa, Ahmed F. [3 ]
Sakar, Selcuk [4 ]
机构
[1] 15th May Higher Inst Engn, Cairo, Egypt
[2] Balikesir Univ, Balikesir, Turkey
[3] Brunel Univ, Sch Engn & Design, Uxbridge UB8 3PH, Middx, England
[4] Gediz Univ, Izmir, Turkey
来源
2014 IEEE 16TH INTERNATIONAL CONFERENCE ON HARMONICS AND QUALITY OF POWER (ICHQP) | 2014年
关键词
Transformers; cables; loading capability; C-type filters; harmonic distortion; optimal filter design; AMPACITY; SYSTEM;
D O I
暂无
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
Transformers and cables have overheating and reduced loading capabilities under non-sinusoidal conditions due to the fact that their losses increases with not only rms value but also frequency of the load current. In this paper, it is aimed to employ passive filters for effective utilization of the cables and transformers in the harmonically contaminated power systems. To attain this goal, an optimal passive filter design approach is provided to maximize the power factor definition, which takes into account frequency-dependent losses of the power transmission and distribution equipment, under non-sinusoidal conditions. The obtained simulation results show that the proposed approach has a considerable advantage on the reduction of the total transmission loss and the transformer loading capability under non-sinusoidal conditions when compared to the traditional optimal filter design approach, which aims to maximize classical power factor definition. On the other hand, for the simulated system cases, both approaches lead to almost the same current carrying (or loading) capability value of the cables.
引用
收藏
页码:626 / 630
页数:5
相关论文
共 22 条
[11]   Measurement of Eddy-current loss coefficient PEC-R, derating of single-phase transformers, and comparison with K-factor approach [J].
Fuchs, EF ;
Yildirim, D ;
Grady, WM .
IEEE TRANSACTIONS ON POWER DELIVERY, 2000, 15 (01) :148-154
[12]   Measurement of three-phase transformer derating and reactive power demand under nonlinear loading conditions [J].
Fuchs, EF ;
Lin, DS ;
Martynaitis, J .
IEEE TRANSACTIONS ON POWER DELIVERY, 2006, 21 (02) :665-672
[13]  
Hiranandani A., 1998, IEEE Industry Applications Magazine, V4, P42, DOI 10.1109/2943.655660
[14]   Non-sinusoidal power theory in a power system having transmission lines with frequency-dependent resistances [J].
Jeon, S.-J. .
IET GENERATION TRANSMISSION & DISTRIBUTION, 2007, 1 (02) :331-339
[15]   Derating of asymmetric three-phase transformers serving unbalanced nonlinear loads [J].
Masoum, Mohammad A. S. ;
Moses, Paul S. ;
Masoum, Amir S. .
IEEE TRANSACTIONS ON POWER DELIVERY, 2008, 23 (04) :2033-2041
[16]   CALCULATION OF SECONDARY CABLE LOSSES AND AMPACITY IN THE PRESENCE OF HARMONICS [J].
MELIOPOULOS, APS ;
MARTIN, MA ;
HIRANDANI, A ;
ERNST, A .
IEEE TRANSACTIONS ON POWER DELIVERY, 1992, 7 (02) :451-459
[17]   An Investigation on the Selection of Filter Topologies for Passive Filter Applications [J].
Nassif, Alexandre B. ;
Xu, Wilsun ;
Freitas, Walmir .
IEEE TRANSACTIONS ON POWER DELIVERY, 2009, 24 (03) :1710-1718
[18]  
RANADE SJ, 1998, IEEE POW ENG SOC C, P1
[19]   Measured transformer derating and comparison with harmonic loss factor (FHL) approach [J].
Yildirim, D ;
Fuchs, EF .
IEEE TRANSACTIONS ON POWER DELIVERY, 2000, 15 (01) :186-191
[20]  
Zhou JL, 1997, TR92107R5 U MAR I SY