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首页> 外文期刊>IEEE Transactions on Power Delivery >Phase-Space-Based Pilot Main Protection for a Transmission Line Immune to Timing Attack and Controllable Shunt Reactors
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Phase-Space-Based Pilot Main Protection for a Transmission Line Immune to Timing Attack and Controllable Shunt Reactors

机译:基于相位空间的导频主保护,用于传输线免受定时攻击和可控分流器反应器

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摘要

Pilot current differential protection for transmission lines is an important part of ensuring the safety of the power grid. The loss of data synchronization due to cyberattacks and the uncertain compensation degree of controllable shunt reactors will evidently deteriorate the performance of pilot current differential protection and may lead to the maloperation of the protection if no effective countermeasure is implemented. To address the above-mentioned problems, a novel line pilot protection criterion based on the recognition of the phase space trajectory is proposed. First, the basic principle of phase space and its parameter selection scheme are analyzed. Then, the fault component instantaneous power difference (FCIPD) is selected as the time series for phase space reconstruction, and the distribution characteristics of the phase space trajectory of the FCIPD under different conditions are analyzed. Subsequently, a novel pilot main protection criterion for a transmission line is proposed. PSCAD/EMTDC-based simulation results verify that the proposed criterion is immune to timing attack and controllable shunt reactors and has the advantages of free setting, high speed, and high-fault-resistance tolerance capability.
机译:传输线路的导频电流差动保护是确保电网安全的重要组成部分。由于网络内人和可控分流反应器的不确定补偿程度,数据同步的损失将显着降低导频电流差动保护的性能,如果没有实施有效的对策,可以导致保护的误操作。为了解决上述问题,提出了一种基于识别相空间轨迹的新型线路导频保护标准。首先,分析了相位空间及其参数选择方案的基本原理。然后,选择故障组分瞬时功率差(FCIPD)作为相位空间重建的时间序列,分析了在不同条件下FCIPD的相位空间轨迹的分布特性。随后,提出了一种用于传输线的新型导频主保护标准。基于PSCAD / EMTDC的仿真结果验证了所提出的标准对定时攻击和可控分流式反应器免疫,并具有自由设定,高速和高容错的公差能力的优点。

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