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文章摘要
一种电波暗室的谐波抑制电路及其无功补偿方法
An Approach to Harmonic Suppression and Reactive Power Compensation in Anechoic Chamber
Received:July 24, 2014  Revised:August 25, 2014
DOI:
中文关键词: 电波暗室  电磁兼容  谐波  无功补偿  干式铁芯电抗器
英文关键词: anechoic chamber  electromagnetic compatibility  harmonic  reactive power compensation  dry iron core reactor
基金项目:
Author NameAffiliationE-mail
Yuan Rui-ming Metrology Centre of State Grid JiBei Electric Power Co.Ltd Research Institute  
Ju Han-ji* Metrology Centre of State Grid JiBei Electric Power Co.Ltd Research Institute juhanji@163.com 
Gao Di-ya Southeast University  
Li Si-qi Metrology Centre of State Grid JiBei Electric Power Co.Ltd Research Institute  
Ding Heng-chun Metrology Centre of State Grid JiBei Electric Power Co.Ltd Research Institute  
Tian Hai-ting Metrology Centre of State Grid JiBei Electric Power Co.Ltd Research Institute  
Zhong Kan Metrology Centre of State Grid JiBei Electric Power Co.Ltd Research Institute  
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中文摘要:
      电波暗室的谐波抑制电路及无功补偿方法采用正向串联的两级串联型无源电力滤波器,滤波器和负载的电源端之间并联干式铁芯电抗器。干式铁芯电抗器主要用于抑制10kHz及以上的高频干扰,在不影响串联型无源电力滤波器的滤波性能的基础上,抑制高次谐波,限制合闸涌流及操作过电压,改善系统的电压波形,提高功率因数,保障电力电容器及其他电力设备的安全运行,并联干式铁芯电抗器解决了各类负载入口处的电压变化的问题,提高了电磁兼容检测中计量性能的可靠性和准确性。
英文摘要:
      Two stages series active power filter are used to harmonic suppression and reactive power compensation in anechoic chamber. The dry-type iron core reactor is shunt between the filter and the load power supply terminal. Dry iron core reactor is mainly used for the inhibition of 10kHz and above high-frequency interference. It can effectively suppress high order harmonic, limit switch flow and operating over-voltage, improve power factor and voltage waveform of the system withoutSaffectingSthe filter performance of theSseries passive power filter. It playsSan importantSroleSinSthe safe operation of power capacitor and power equipment.SParallel dry iron core reactor not onlySsolveSthe problem of voltage variation of various reactor load at the entrance of the load, but also improve the accuracy and reliability of the performance measurement in electromagnetic compatibility testing.
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