SIMULASI PELIMPAHAN BEBAN PMT OUTGOING PWI 06 SAAT TERJADI OVERLOAD SHEDDING PADA TRAFO INCOMING 03 GARDU INDUK PURWODADI DENGAN MONITORING VT SCADA BERBASIS ARDUINO MEGA 2560

Reza Rizkifadhla, Heru Winarno
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引用次数: 1

Abstract

Reza Rizkifadhla, Heru Winarno, in this article explains that overload shedding in incoming transformer occurs due to an increase in load current that exceeds the capacity of the transformer. If overload shedding is not handled, it will cause damage to the transformer, and even cause incoming trip feeders and a very wide blackout effect. Relay overload shedding mounted on incoming feeders works to anticipate overload shedding by deliberately releasing outgoing feeders gradually to reduce the load. This study aims to provide a simulation of the conditions of incoming feeders during normal times, during overload shedding and handling of outgoing feeders deliberately released by carrying out load maneuvers to other feeders with different incoming transformers. Maneuvers are carried out to maintain the reliability of the continuity of electricity distribution. In this study one simulation tool was designed. The design of this tool uses a relay and Arduino Mega 2560 as a control center. Arduino Mega 2560 reads the current using the ZMCT 103C sensor. The simulation is based on the overload shedding event that has occurred in Purwodadi Substation. As for controlling switching equipment and monitoring current and voltage is done using HMI with VT Scada software. In the experiment, 3 incoming normal currents were 2.2 A with a load of 5 12 VAC 5W lamps. Simulated maneuvering error, the load on incoming 3 increased to 2.60 A. This situation is considered to have reached the condition of overload shedding, relay PMT C trip to reduce the load. Incoming 3 returns back to normal, namely 1.68 A. Loads on PMT C that are extinguished are maneuvered to PMT E or PMT F which have different incoming.
Reza Rizkifadhla, Heru Winarno在这篇文章中解释说,由于负载电流的增加超过了变压器的容量,进入变压器的过载脱落会发生。如果不处理掉过载,就会对变压器造成损坏,甚至造成进站跳闸馈线和非常大范围的停电影响。安装在输入馈线上的继电器过载脱落工作,通过故意逐渐释放输出馈线来减少负载,从而预期过载脱落。本研究的目的是模拟输入馈线在正常情况下的情况,以及通过对具有不同输入变压器的其他馈线进行负载机动而故意释放输出馈线的情况。为了保持配电系统的可靠性,进行了机动操作。本研究设计了一个仿真工具。该工具的设计采用继电器和Arduino Mega 2560作为控制中心。Arduino Mega 2560使用ZMCT 103C传感器读取电流。仿真是基于普沃达地变电站发生的过负荷脱闸事件进行的。对开关设备的控制和电流、电压的监测采用人机界面技术,采用VT Scada软件实现。在实验中,3个输入的正常电流为2.2 A,负载为5个12 VAC的5W灯。模拟机动误差时,入风3的载荷增加到2.60 A。这种情况认为已达到过载脱落的条件,继电器PMT C跳闸以减少负载。入线3恢复正常,即1.68 A。在PMT C上被熄灭的负载被机动到具有不同入线的PMT E或PMT F上。
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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