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A new scalar product restraint transformer differential protection algorithm

机译:一种新的标量积约束变压器差动保护算法

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Scalar product restraint principle is widely used in transformer differential protection for high sensitivity. Based on the magnitude and phase angle relationships of the two side currents, this paper gives an ideal annular sector restraint region in the complex plane for transformer differential protection. And a novel differential criterion with the ideal region is presented by using scalar product restraint principle for reference. The new criterion defines restraint values in magnitude and phase angle respectively, to take account of both the magnitude and phase angle errors due to CT saturation. The phase angle constraint takes a form of similar scalar product restraint, and by combining it with magnitude constraint, the sensitivity of the new criterion is highly enhanced. The restraint region is adjusted by two coefficients to ensure protection stable in CT saturation during serious external faults. The new criterion provides a new idea for enhancing transformer differential protection performance theoretically. The analysis and simulation results show that compared with traditional percentage restraint differential protection, the new criterion is more sensitive during internal faults and has better anti-CT saturation performance during external faults.
机译:标量积约束原理被广泛应用于变压器差动保护中,以实现高灵敏度。基于两侧电流的大小和相位角关系,本文给出了复平面上理想的环形扇形约束区域,用于变压器差动保护。并以标量积约束原理为参考,提出了一种理想区域的微分准则。新标准分别定义了幅值和相角的约束值,以考虑到由于CT饱和而引起的幅值和相角误差。相角约束采用类似标量积约束的形式,并且通过将其与幅度约束相结合,可以大大提高新准则的灵敏度。通过两个系数调整约束区域,以确保严重外部故障时在CT饱和时保护稳定。新标准为理论上提高变压器差动保护性能提供了新思路。分析和仿真结果表明,与传统的百分比约束差动保护相比,新准则在内部故障时更加敏感,在外部故障时具有更好的抗CT饱和性能。

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