Releasers with electro-hydraulic retarders as an effective alternative for short circuit and overcurrent protection

V. Kalinchyk, V. Pobigaylo, O. Borychenko, S. Kuzovkin
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Abstract

It is known that circuit breakers (CBs) installed in distribution cabinets (DCs), better known as “enclosed circuit breakers”, depending on the execution, are designed for: - protection against emergency states of grids: overvoltage and short circuit (s/c) or voltage drop below the permissible level (circuit breakers installed on the grid do not always provide protection against voltage reduction); - protection of AC motors, as well as for combined installation with other electric devices (CBs can service by grid sections as well as separate motors if CBs are used to operate the wound-rotor motor or starting devices, they must include voltage drop protection); - to be used as disconnectors for supply and trunk networks. Overcurrent protection is done by a bimetallic plate, while an electromagnetic releaser provides s/c protection. The main features inherent in this technical solution of overcurrent protection include: - relative dependence on ambient temperature; - inability to quickly switch on again after the CB is triggered; - unstable time-current characteristics of the CB. National Technical University of Ukraine “Igor Sikorsky Kyiv Polytechnic Institute” and «E.NEXT Ukraine» offers an alternative solution for the design of CB protection elements, which is an integrated overcurrent and short circuit protection at the same time in the form of a releaser with an electro – hydraulic retarder. A releaser with an electro-hydraulic retarder triggers the СB actuator, which breaks the contact group of the CB when the current exceeding the set maximum permissible value (s/c or overcurrent) is passing through electrical equipment. The main part of this releaser is an electromagnet, whose coil is connected in series with working contacts in the circuit of the operating current.
带电液缓速器的释放器,作为短路和过流保护的有效选择
众所周知,安装在配电柜(dc)中的断路器,根据执行情况,更称为"封闭式断路器",设计用于:-防止电网紧急状态:过压和短路(s/c)或电压降至允许水平以下(安装在电网上的断路器并不总是提供防止电压降低的保护);-交流电机的保护,以及与其他电气设备组合安装时的保护(断路器可以通过电网部分或单独的电机来服务,如果断路器用于操作绕线转子电机或启动装置,则必须包括电压下降保护);-用作供电和干线网络的断开器。过流保护由双金属板完成,而电磁释放器提供s/c保护。该过流保护技术方案固有的主要特点包括:对环境温度的相对依赖性;-在触发CB后无法快速切换- CB不稳定的时间-电流特性。乌克兰国立技术大学“伊戈尔西科尔斯基基辅理工学院”和«E。NEXT乌克兰»为CB保护元件的设计提供了另一种解决方案,这是一种集成的过流和短路保护,同时采用带有电液缓速器的释放器的形式。带有电液缓速器的释放器触发СB执行器,当电流超过设定的最大允许值(s/c或过电流)通过电气设备时,执行器断开CB的触点组。该释放器的主要部分是电磁铁,其线圈与工作电流电路中的工作触点串联。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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