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Optimization in tap changer operation of power transformer using reactive power compensation by FACT devices

机译:事实上,使用无功补偿的电力变压器抽头改变器操作的优化

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Power engineers are trying to develop different techniques to compensate reactive power absorption. Variation in voltage is due to small or large disturbances, contingencies, but the main reasons are active and reactive power variations at load end. To regulate or stabilize the voltage variations the Tap Changer (TC) operates. At distribution system the load variations are very large so TC operates for several times in a given span of time. The TC has certain limitation which reduces its service life. In this paper a method is designed and implemented for reactive power compensation which compensates reactive power at load end and reduces the number of tap changer operations. The solution is Flexible AC Transmission (FACT) based compensator. The results show that adjustment of static VAR compensator (SVC) and Tap Changer parameters including settling time, gain, triggering pulse of compensator and dead band time delay of on load tap changer (OLTC) gives optimize number of TC operations with ancillary service of voltage profile improvement. Simulations have been performed on a real time system data and results are compared with present existing system.
机译:电力工程师正在尝试开发不同的技术来补偿无功功率的吸收。电压变化是由于小或大的干扰,突发事件,但主要原因是负载端的主动和无功功率变化。为了调节或稳定电压变化,抽头更换器(TC)操作。在分配系统时,负载变化非常大,因此TC在给定的时间内运转多次。 TC具有一定的限制,从而降低了其使用寿命。在本文中,设计并实现了一种方法,用于无功功率补偿,其补偿负载端的无功功率并减少分接开关操作的数量。该解决方案是基于柔性的AC传输(事实)的补偿器。结果表明,静态VAR补偿器(SVC)的调整和分接开关参数,包括稳定时间,增益,互补机的触发脉冲和负载分接开关(OLTC)的死带时间延迟,提供了通过电压的辅助服务优化TC操作的数量简介改进。已经在实时系统数据上执行模拟,并将结果与​​现有系统进行比较。

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