交流电弧炉静态无功补偿器点火角的验证

Ankur Vashi
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引用次数: 1

摘要

交流电弧炉(AC EAF)等非线性混沌负载会导致功率因数差、谐波产生等电能质量问题。静态无功补偿器(SVC)是缓解上述电能质量威胁的理想解决方案。SVC的行为类似于并联连接的可变阻抗,它可以产生或吸收与交流EAF并联的无功功率。这种无功功率的产生和消耗是由可控硅控制的电抗器通过改变可控硅的发射角和控制通过电抗器的电流来平衡的。本文介绍了基于SVC的晶闸管控制电抗器的MATLAB仿真。本文还验证了SVC可控硅控制电抗器的发射角,使交流电炉负载在系统各个功率级上的无功功率几乎为零,符合接近统一功率因数运行的实际现场实践。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Verification of firing angles of static var compensator with alternating current electric arc furnace
Non linear and chaotic loads like alternating current electric arc furnace (AC EAF) lead to power quality issues like poor power factor, harmonic generation etc. Static var compensator (SVC) is perfect solution for mitigating the above mentioned threats to power quality. The SVC behaves like shunt connected variable impedance which either generates or absorbs reactive power in parallel to the AC EAF. This generation and consumption of reactive power is balanced by thyristor controlled reactor by varying the firing angles of thyristors and control the current passing through the reactors. This review presents MATLAB simulation of thyristor controlled reactor with the SVC. This review also verifies firing angles of thyristor controlled reactor of the SVC so that reactive power drawn by AC EAF load at various power stages from the system is almost zero in line with actual field practice for nearly unity power factor operations.
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