ZSI Application for Reducing the Energy Incident of Arc Flash in a Distribution System

Firilia Filiana, M. Farid, M. Abdillah
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Abstract

The safety of workers and equipment in the power system can be done using a safety system. This system consists of several components that work based on certain algorithms that will work if the system experiences interference. One major disturbance that can harm the system and the workers in it is the arc of fire. This disturbance begins with a short circuit that has enough energy to produce arcs of fire and even to an explosion. Relay equipment and circuit breakers can be used to protect the system. While humans can use Personal Protective Equipment (PPE) as a safety. PPE is determined based on the energy level of the incident from the arc. One effort to reduce this energy is to reduce the time of occurrence of arcs. The time of the incident is very closely related to relay work time. Relay working time determines the circuit breaker (CB) termination when a short circuit occurs. The shorter the relay's working time, the arc will also be shorter. Improvising the relay work time must pay attention to coordination between relays so that no trip errors occur. For this reason, the Zone Selective Interlocking (ZSI) method will be used to maximize work time and relay coordination by dividing the system into several protection zones. This study takes the case of a 20 kV distribution system. A distribution system with a large amount of load will increase the potential for interference. Simulation results show that ZSI can reduce the time the arc arises and does not interfere with relay coordination.
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ZSI在减少配电系统电弧闪络能量入射中的应用
电力系统中工作人员和设备的安全可以通过安全系统来实现。该系统由几个基于特定算法的组件组成,这些算法在系统受到干扰时仍能工作。对系统和工作人员造成伤害的一个主要干扰是火的弧度。这种扰动从短路开始,它有足够的能量产生电弧,甚至爆炸。可以使用继电器设备和断路器来保护系统。虽然人类可以使用个人防护装备(PPE)作为安全措施。PPE是根据电弧入射的能量等级来确定的。减少这种能量的一种方法是减少电弧出现的时间。事故发生的时间与接力工作时间密切相关。当发生短路时,继电器的工作时间决定了断路器(CB)的终止。继电器的工作时间越短,电弧也就越短。临时调整继电器工作时间时,必须注意继电器之间的协调,以免发生跳闸错误。因此,将使用区域选择性联锁(ZSI)方法,通过将系统划分为几个保护区域来最大化工作时间和继电器协调。本研究以20kv配电系统为例。负荷较大的配电系统会增加干扰的可能性。仿真结果表明,ZSI可以缩短电弧产生的时间,并且不影响继电器的协调。
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