新型电力系统下母线比率差动保护改进算法
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TM77

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国家科技重大专项资助项目“提升受端电网稳定性的主动支撑型柔性直流示范工程”(2024ZD0800900)


Improved algorithm for ratio differential protection under the new power system
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    摘要:

    新型电力系统下,大量新能源电源及电力电子设备接入交流电网。发生母线区内故障时,受控制策略影响,故障电流幅值受控,角度受控,谐波含量高,母线比率差动保护的动作性能下降,因此文中提出一种适用于新型电力系统的母线比率差动保护改进算法。首先,介绍传统比率差动算法的基本原理,并分析新型电力系统下该算法存在的问题;然后,提出不受故障电流角差及谐波影响的母线比率差动保护改进算法,将相位存在差异的各支路电流相量映射到同一坐标系下,并进行差流和制动电流计算,分析母线比率差动保护改进算法在母线区内外故障及区外故障电流互感器(current transformer, CT)饱和时的动作性能,提出母线比率差动保护改进逻辑;最后,基于实时数字仿真(real time digital simulation, RTDS),对比传统比率差动保护和改进比率差动保护的动作性能,证明改进比率差动保护能够在不降低保护动作可靠性的前提下提高动作灵敏性。

    Abstract:

    In the new power system, a large number of new energy sources and power electronic equipment are connected to the AC power grid. When a fault occurs in the busbar area, affected by the control strategy, the amplitude and angle of the fault current are controlled, and the harmonic content is high. As a result, the operating performance of the ratio differential protection declines. The basic principle of the traditional ratio differential algorithm is introduced, and the problems of the traditional ratio differential algorithm in the new power system are analyzed. An improved algorithm for ratio differential protection for busbar protection is proposed, which is not affected by the angle difference and harmonics of the fault currents. The current phasors of each bay with different angles are mapped to the same coordinate system. Then, the differential current and restraint current are calculated. The operating performance of the improved ratio differential algorithm is analyzed under internal and external faults of the busbar area and current transformer (CT) saturation during external faults. An improved logic for the ratio differential protection is proposed. The real time digital simulation (RTDS) test results compare the operating performance of the traditional ratio differential protection and the improved ratio differential protection. It is proved that the improved ratio differential protection enhances the operating sensitivity without reducing the reliability of protection.

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王风光,赵青春,程骁,丁杰,龚啸.新型电力系统下母线比率差动保护改进算法[J].电力工程技术,2026,45(1):83-92. WANG Fengguang, ZHAO Qingchun, CHENG Xiao, DING Jie, GONG Xiao. Improved algorithm for ratio differential protection under the new power system[J]. Electric Power Engineering Technology,2026,45(1):83-92.

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历史
  • 收稿日期:2025-06-07
  • 最后修改日期:2025-08-16
  • 在线发布日期: 2026-02-02
  • 出版日期: 2026-01-28
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