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Enhanced High Performance Power Compensation Methodology by IPFC Using PIGBT-IDVR

机译:使用PIGBT-IDVR的IPFC增强的高性能功率补偿方法

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摘要

Currently, power systems are involuntarily controlled without high speed control and are frequently initiated, therefore resulting in a slow process when compared with static electronic devices. Among various power interruptions in power supply systems, voltage dips play a central role in causing disruption. The dynamic voltage restorer (DVR) is a process based on voltage control that compensates for line transients in the distributed system. To overcome these issues and to achieve a higher speed, a new methodology called the Parallel IGBT-Based Interline Dynamic Voltage Restorer (PIGBT-IDVR) method has been proposed, which mainly spotlights the dynamic processing of energy reloads in common dc-linked energy storage with less adaptive transition. The interline power flow controller (IPFC) scheme has been employed to manage the power transmission between the lines and the restorer method for controlling the reactive power in the individual lines. By employing the proposed methodology, the failure of a distributed system has been avoided and provides better performance than the existing methodologies.
机译:当前,电力系统在没有高速控制的情况下被非自愿地控制并且经常被启动,因此与静态电子设备相比导致缓慢的过程。在电源系统的各种电源中断中,电压骤降在引起中断方面起着核心作用。动态电压恢复器(DVR)是基于电压控制的过程,可补偿分布式系统中的线路瞬变。为了克服这些问题并实现更高的速度,已提出了一种称为基于IGBT的并联动态电压恢复器(PIGBT-IDVR)的新方法,该方法主要着眼于常见的直流链接储能中能量重新加载的动态处理。具有较少的自适应过渡。线间功率流控制器(IPFC)方案已被用于管理线之间的功率传输,以及用于控制各个线中无功功率的恢复器方法。通过采用提出的方法,可以避免分布式系统的故障,并且比现有方法具有更好的性能。

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