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1)  magnetic optical transducer
全光式光电电流互感器
2)  magneto optical current transducer
磁光式光电电流互感器
1.
The effects of temperature and stress on the measurement accuracy of magneto optical current transducer were deeply studied, in order to promote its practical application.
为了使磁光式光电电流互感器实用化,研究了影响它精确度的主要因素:温度和应力。
3)  optoelectronic current transformer
光电式电流互感器
1.
In the light of the problem of induction mechanism,the principle and characteristic of the optoelectronic current transformer are summarized,and the measure principles of optical current transformer and optoelectronic current transformer are introduced.
针对传统的电磁式电流互感器因其传感机理而存在不可克服的问题,概述了光电式电流互感器的基本原理、特点及性能,分析了全光式电流互感器和光电式电流互感器的测量原理,并讨论了其今后的发展趋势。
2.
This article introduces a new style of kilowatt-hour meter of high voltage which adopts optoelectronic current transformer.
该表引入光电式电流互感器元件,自行设计悬浮式电源,解决了高压侧供电问题;采用高速、低功耗微处理器,实现高端电能计量,克服了传统高压电能表普遍存在的防窃电效果差的缺点;在软件上应用准同步算法,较好地解决了周期性畸变波形下电能的准确计量问题。
4)  OCT
光电式电流互感器
1.
The comparison between OCT(Optical Current Transducer) and traditional electromagnetic current transformer shows that the former is the ideal substitute for the latter with its good performance.
对光电式电流互感器(OCT)和传统的电磁式电流互感器进行了比较,结果表明OCT性能优良,是传统电流互感器较为理想的替代产品。
2.
This paper summarized and analyzes the cases in trial service for optical current transformer (OCT) and introduces the new technical development of OCT in China and abroad.
本文总结和分析了光电式电流互感器试运行的情况 ,并介绍了国内外这种互感器的研究现
5)  hybrid optoelectronic current transformer
混合式光电电流互感器
1.
Phase compensation technique for hybrid optoelectronic current transformer;
混合式光电电流互感器相位补偿技术
6)  opto-electronic current transformer
光电式电流互感器
1.
In this paper a project for the design of an opto-electronic current transformer (OECT) is presented, in which the optical fibre is used as the insulation between the high voltage side and the low voltage side and at the same time the fibre is applied to carry out the digital communication between the both sides.
介绍一种以具有快速浮点运算能力的数字信号处理器(DSP)为核心,集合了光纤、通信、微机技术的光电式电流互感器(OECT)的实用化设计方案。
补充资料:电流互感器
      见互感器。
  

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