该方法可用在高压电气设备绝缘在线监测系统中,保证在线监测的准确性和可靠性。
It can be applied in on-line insulation status monitoring system for HV electric equipment with the veracity and reliability ensured.
介绍了一种高压电气设备绝缘在线监测智能化系统的组成、原理及功能,并分析了应用实例。
This paper introduces the principles and functions of insulation online monitoring intelligent system for HV electrical equipment, and analyzes the application example.
电力高压设备运行状态在线监测和绝缘状态在线监测的研究在电力系统中已经取得一定的研究成果。
There already have some outcomes in studies of on-line monitoring of the running condition and the insulation condition of the high voltage equipments in power system.
介绍了基于遥测技术的高压绝缘子在线监测系统的系统结构、工作原理、功能特点及其实际应用的情况。
This paper presents the structure, working principle, functions, characteristics and practical application of HV insulator monitoring system based on telemetry technology.
本系统电缆绝缘在线监测理论,以比较成熟的直流叠加法为主,加上直流分量法作为理论基础。
The DC superposition method was mainly utilized because it was ripe theory about On-line Insulation Monitoring on the XLPE power cable, in addition of the DC partial current method.
摘要:在线监测系统对于大容量电气设备的绝缘监测具有积极的意义。
Abstract: On-line monitoring system for large-capacity insulation monitoring of electric equipment has a positive meaning.
该装置安装在电动汽车上,可在线监测高压电气系统正负母线对车体的绝缘状况,一旦出现绝缘故障及时声光报警,确保整车和人身的电气安全。
The equipment can monitor insulation condition of whole high-voltage system, and give an alarm on insulation failures and other dangerous situation, thus ensure safety of vehicle and people.
针对高压绝缘子污秽闪络的巨大危害,采用自由软件设计了绝缘子污秽在线监测系统。
In view of the huge damage of high voltage insulator contamination flashover, an on-line monitoring and measurement system of insulator contamination based on free software is designed.
为了提高变电站电气设备的安全可靠性指标,研发了容性设备绝缘介损在线监测系统。
In order to improve greatly the reliability of high voltage apparatus, an online monitoring system of dielectric loss of capacitive equipment based on CAN is developed and studied.
为了提高变电站电气设备的安全可靠性指标,研发了容性设备绝缘介损在线监测系统。
In order to improve greatly the reliability of high voltage apparatus, an online monitoring system of dielectric loss of capacitive equipment based on CAN is developed and studied.
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