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Complex network theory based recognition of power grid key line

机译:基于复杂的网络理论识别电网钥匙线

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摘要

The probability of power system cascading failure is very small, but once happened, its influence is disastrous. There are a few key branches play an important role in the process of cascading failures in power system. The identification of these key branches is of great significance to the safe and stable operation of power system. Power system transmits active power and reactive power at the same time. Different from the full range of active power, the reactive power has the characteristic of regional decoupling. The impact is generally limited in the vicinity of fault branch, so this paper temporarily only considers active power. Firstly, in this paper, the only link line between two subsystems is detected. If the branch is the only link line, it is the key branch. If it is not, then make the power flow of the fault branch as the basic parameters, and reduce the active power flow in the relevant branch of the fault branch to the fault branch by the power grid topology. Then get the grid key branch identification evaluation indicator. Finally apply the evaluation indicator in practical example of IEEE 39 bus system, and the result conform to the actual operation characteristics of IEEE 39 bus system and prove the correctness and effectiveness of the method.
机译:电力系统级联失败的可能性非常小,但曾经发生过,其影响是灾难性的。有一些关键分支在电力系统的级联故障过程中发挥着重要作用。这些关键分支的识别对于电力系统的安全和稳定运行具有重要意义。电力系统同时发射有功功率和无功功率。不同于各种各样的电力功率,无功功率具有区域去耦的特点。影响在故障分支附近的影响通常是有限的,因此本文暂时仅考虑有效功率。首先,在本文中,检测两个子系统之间的唯一链路线。如果分支是唯一的链接行,则它是关键分支。如果不是,则将故障分支的电源流为基本参数,并通过电网拓扑结构减少故障分支的相关分支中的有效功率流。然后获取网格密钥分支识别评估指标。最后在IEEE 39总线系统的实际示例中应用评估指示,结果符合IEEE 39总线系统的实际操作特性,并证明了该方法的正确性和有效性。

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