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Wide Area Current Phase Differential Protection Based on Stamp Sampling Point

机译:基于印章采样点的广域电流相位差动保护

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With the development of digital technology, more and more applications of current phase differential protection have been implemented in smart power grid and large power system, thereby reducing the dependency of wide area differential protection to accurate synchronous sampling. In this paper, the transmitted sample values are re-treated to promote implementation of WCPDP in the actual projects based on 0-1 quantitative principle. To enhance the WCPDP design and application, certain topics are concerned in the article respectively, such as segregated current starting algorithm, synchronization correction method and wide area protection scheme. The simulation results show that the WCPDP proposed by the paper has smaller amount of communication traffic, simpler principle, faster action and higher sensitivity which can accommodate the working conditions of high-resistance grounding fault, open-phase operation and evolving fault.
机译:随着数字技术的发展,越来越多的电流相位差动保护在智能电网和大型电力系统中实现了应用,从而降低了广域差分保护对准确同步采样的依赖性。 在本文中,重新处理传输的样本值,以促进基于0-1定量原理的实际项目中的WCPDP的实施。 为了增强WCPDP设计和应用,某些主题分别涉及物品,例如隔离电流启动算法,同步校正方法和广域保护方案。 仿真结果表明,本文提出的WCPDP具有较少量的通信流量,更简单的原理,更快的动作和更高的灵敏度,可以适应高电阻接地故障,开放式操作和不断变化的故障的工作条件。

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