海底电缆泵站控制系统的研究与开发

Zhengming Chen, Yan Wang, Qingshuai Wu, Kun Han, Youhe Wang, Tailong Lv
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引用次数: 0

摘要

500kV输变电站采用海底电缆。绝缘液被注入电缆以保护它们。在南岭、临市各有一套绝缘流体泵站。配置了相应的控制系统,实现了南岭、临市保温液泵站的自动控制。该控制系统可满足不同工况。控制系统可以根据设定值改变流量和压力。控制系统可实现南岭和临市绝缘液的送出和回收交替进行。如果电缆损坏,可以保护电缆不受海水的影响。运行信息可发送至福州控制中心。控制系统采用AB公司的ControlLogix控制器搭建,根据现场不同的设备类型,采用不同的模块进行信号采集。对信号进行计算、分析和优化。根据信号可以了解海底电缆的运行情况。控制系统可以通过启动或停止泵来改变绝缘流体的流动速率和方向。在正常工作模式下,海底电缆出口绝缘流体压力保持在相对范围内,绝缘流体流量保持在最大值。在应急模式下,海底电缆出口绝缘流体压力保持在最小值以上,绝缘流体流量由最大值减小到最小值。该控制系统经过对系统长期运行情况的监控和记录,能够稳定满足海底电缆的日常运行要求。当油泵系统出现异常时报警。在紧急情况下,它可以保护海底电缆免受海水的伤害,并且绝缘液将是最小的,以保护环境。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Research and development of control system for submarine cable pumping station
Submarine cables are used in 500kV power transmission station. Insulating fluid was filled into the cables to protect them. There is a set of insulating fluid pumping station in Nanling and Linshi. The corresponding control systems were equipped to achieve the automatic control of insulating fluid pumping station in Nanling and Linshi. The control systems could meet different operating conditions. The rate and the pressure of the flow could be changed according to the set values by the control systems. The send-out and take-back of the Insulating fluid in Nanling and Linshi can be alternated by the control systems. The cables could be protected from seawater if the cables were damaged. The operation information could be sent to Fuzhou control center. The control system is built with the ControlLogix controller of AB. Different modules were used to collect signals according to different equipment types on site. The signals should be calculated, analyzed and optimized. The operations of the submarine cables could be acquainted according to the signals. The rate and direction of the Insulating fluid flow could be changed by the control system by starting or stopping the pump. Insulating fluid pressure at the outlet of submarine cable was maintained in the relative range and Insulating fluid flow remains at maximum in normal operation mode. Insulating fluid pressure at the outlet of submarine cable was maintained Above the minimum and Insulating fluid flow Decrease from maximum to the minimum In Emergency mode. The control system could meet the daily operation requirements of submarine cable stably after monitoring and recording long- term operation of the system. It could alert when the oil pump system was abnormal.it can protect the submarine cable from the seawater In emergency mode and the Insulating fluid would be the minimum to protect the environment.
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