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Voltage Unbalance Protection VT and Relay errors effect on Unbalanced Voltage Detection; Considerations for system Relaying, Stability and Developments

机译:电压不平衡保护VT和继电器误差对不平衡电压检测的影响;系统中继,稳定性和开发的考虑因素

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In a power system network, an unbalanced voltage condition can occur due to various reasons. Excessive voltage unbalance has become an issue of concern in power quality at network level, leading to numerous problems. This calls for a stringent management of unbalanced. There are several codes of practice to advise and to enforce network operating conditions to keep system unbalance within specific limits. Analysis of system unbalance voltage and power system control is carried out through Voltage Transformers and protective relays. The accuracy of Voltage Transformers from primary to secondary varies according to the type (Class of VT). Also, the accuracy of Relays is of the concern to the same extent. This poses a limitation on detection of actual system unbalance. This study gives an overview of fundamentals of sequence components, unbalanced voltage definitions and use of different types of VTs and relays to analyse unbalanced voltage. This paper considers detection of low level voltage unbalance equivalent to maximum limits allowed in national grid codes in order to initiate system to generate tripping/alarm. This article endeavours to summarise deviational effect of accuracy levels of VT and relays. The study provides a reference of selection of VTs and Relays to detect known % unbalance in the system. Coverage has been extended to discuss mitigation techniques of voltage unbalance and deviational error minimisation. The emphasis is to initiate a thought process for requirement of improved methodologies to eliminate errors in analysing. Therefore this study aims in building a better power system.
机译:在电力系统网络中,由于各种原因,可能发生不平衡的电压条件。电压不平衡过度不平衡已成为网络级别的电能质量问题的问题,导致众多问题。这需要严格管理的不平衡。有几个实践代码是为了建议和强制网络操作条件,以保持特定限制内的系统不平衡。通过电压互感器和保护继电器进行系统不平衡电压和电力系统控制的分析。从初级到次级的电压变压器的精度根据类型(VT类)而变化。此外,继电器的准确性是相同程度的关注。这对实际系统不平衡的检测产生了限制。本研究概述了序列组件,不平衡电压定义和使用不同类型的VTS和继电器的基础知识,以分析不平衡电压。本文考虑检测等于国家电网代码中允许的最大限制的低电平电压不平衡,以便启动系统以生成跳闸/报警。本文致力于总结VT和继电器精度水平的偏差效应。该研究提供了VTS和继电器的选择的参考,以检测系统中的已知%不平衡。覆盖覆盖率延长了讨论电压不平衡和偏差误差最小化的缓解技术。重点是启动思想过程,以要求改进的方法,以消除分析中的错误。因此,本研究旨在建立更好的电力系统。

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