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The theory and application of differential protection of multi-terminal lines without synchronization using vector difference as restraint quantity - simulation study

机译:矢量差作为约束量的不同步多端子线路差动保护原理及应用-仿真研究

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This paper presents an application of a new novel differential relay algorithm for EHV three terminal as well as multi-terminal transmission line, using phase measurement units in a form of an incremental current. The new method presented is based on a vector sum as an operating quantity as most methods known today. However the restraint quantity used the vector difference between the largest incremental current and the vector sum of incremental currents of other terminals. This tripping criterion reduces the need to provide synchronization between the signals at the line terminal ends for up to 400 km circuit length, as well as reducing the additional restraint when current transformer saturation occurred during an external fault. A simulation study carried and the results of which show that the scheme gives the response correctly under sever conditions/cases.
机译:本文介绍了一种新的新型差分继电器算法在超高压三端子以及多端子传输线中的应用,它使用增量电流形式的相位测量单元。提出的新方法是基于矢量和作为当今大多数方法的操作量。但是,限制量使用的是最大增量电流与其他端子的增量电流矢量和之间的矢量差。该跳闸准则减少了在线路端子末端的信号之间提供长达400 km的电路长度的同步的需要,并减少了在外部故障期间电流互感器饱和时的额外限制。进行的仿真研究及其结果表明,该方案在严酷的条件/情况下能够正确给出响应。

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