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Solving the Problem of Balancing Algorithms for Relay Protection and Automation Using Game Theory

机译:用博弈论解决继电保护与自动化平衡算法问题

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The development of distribution grids at 6-35 kV in accordance with the concepts of the smart grid, digital cells, digital substations, and outsourcing of services can lead to improvements in methods for describing the structures of relay protection and automation devices. A structural information method is developed here that describes the successive stages of the algorithms necessary for structural information processing in the devices, through a formal presentation of information about the network. Following this, a description is given of the information structures of transients in the network and high voltage equipment networks. A numerical evaluation is carried out of the sufficiency of the amount of signal information for automatic decision-making on disconnecting a damaged network segment. The task is set in a series of previous works, based on the results achieved in improving recognition algorithms and structures of protection devices against single-phase earth faults in networks with a Petersen coil. This article proposes a numerical definition of the equilibrium point between selectivity and blocking using game theory. A comparison is given of the results and the published solution using dynamic functional modelling.
机译:根据智能电网,数字单元,数字变电站和服务外包的概念开发6-35 kV配电网,可以改善描述继电保护和自动化设备结构的方法。本文开发了一种结构信息方法,该方法通过形式化表示有关网络的信息来描述设备中结构信息处理所必需的算法的连续阶段。接下来,给出网络和高压设备网络中瞬态信息结构的描述。对信号信息的数量进行充分的评估,以便在断开损坏的网络段时自动进行决策。该任务是在一系列先前的工作中确定的,其结果是通过改进识别算法和具有Petersen线圈的网络中针对单相接地故障的保护装置的结构而实现的。本文利用博弈论提出了选择性和封闭之间平衡点的数值定义。使用动态功能建模对结果和已发布的解决方案进行了比较。

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