室内发电系统保护用高速开关柜性能研究

K. Matsushita, Y. Matsuura, T. Funabashi, N. Takeuchi, T. Kai, M. Oobe
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引用次数: 13

摘要

在大型工业厂房和工厂中,使用连接到公用事业电力系统的内部发电系统已经变得流行。特别是,热电联产系统已被引入许多消费者,如酒店和医院。但是,当输电线路发生故障时,内部电力系统的电压会瞬间下降,直到故障解除。为了提高负荷的可靠性,开发了一种新型开关柜系统。该设备由应用晶闸管的静态开关设备、断开开关和控制电路组成。该控制电路具有电压降检测和电压同步功能。该设备与断路器串联安装,断路器连接用户自己的发电系统母线,当用户母线上的电压瞬间下降时,断路器执行高速脱扣和重合闸。本文介绍了该设备的人工试验结果。从这些结果可以证实,该设备可以在电压降至设定值以下时,在一个周期内跳闸短路电流,从而在一个周期内抑制重要负载的电压降。然后对EMTP的实测结果与仿真结果进行了比较。通过对比,证实了采用EMTP技术对该设备的性能进行验证是有效的。然后,通过模拟发电机暂态电压变化,研究了电压降(20%和50%)对负载的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Study for the performance of high speed switchgear for protection of in-house generation system
In large industrial plants and factories, it has become popular to use in-house generation systems connected to utility power systems. Especially, co-generation systems have been introduced to many consumers such as hotels and hospitals. However, when a fault occurs on the transmission line, voltage on the internal power system drops instantaneously until its clearance. To enhance the load's reliability, a new switchgear system has been developed. This equipment consists of static switchgear applying thyristor, disconnecting switches, and a control circuit. This control circuit has functions to detect voltage drops and voltage synchronization. This equipment is installed in series with the circuit breaker which connects the buses of the consumer's own power generation system, and executes high speed tripping and reclosing when the voltage on the consumer's bus drops instantaneously. In this paper, artificial test results of this equipment is presented. From these results, it is confirmed that this equipment can restrain voltage drop of the important loads within one cycle by means of tripping the short circuit current within one cycle when the voltage drops under the setting value. Then, comparison between measured results and simulated results by EMTP is represented. From this comparison, it is confirmed that verification of this equipment's performance using EMTP is effective. Then, influence of voltage drop (20% and 50%) on loads is investigated by simulating transient voltage change of the generator.
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