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Cascading failure across space self-adaptive early warning method and system for grid cyber physical systems

A cyber-physical system and cross-space technology, which is applied in the field of self-adaptive early warning of cross-space cascading faults in power grid cyber-physical systems, can solve problems such as expansion of fault damage, consumption of defense resources, and difficulty in accurately identifying attackers.

Active Publication Date: 2021-01-01
WUHAN UNIV
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  • Abstract
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  • Claims
  • Application Information

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Problems solved by technology

[0003] At present, the research on CFAS early warning methods is in its infancy. The research content is mostly the formation mechanism and detection methods of small-scale power grid physical faults caused by network attacks. It is difficult to accurately identify the CFAS implemented by attackers: First, the existing research objects are only network attacks. The small-scale physical faults caused by it do not fully consider the space-time coordination relationship between multiple physical faults in CFAS, and it is difficult to infer the type of CFAS and its evolution trend; second, the existing fault detection methods work in a "zero tolerance to harm" manner It is difficult to provide effective decision-making support for blocking the evolution of CFAS. It will alert immediately after potential faults are discovered, which is likely to generate a large number of false alarms, and even cause GCPS defenders to be misled by disruptive network attacks and take wrong handling methods, which further expands the damage of faults and causes The frequent actions of the three lines of defense of the power system and the blackout defense system consume limited defense resources and reduce the resilience of GCPS

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  • Cascading failure across space self-adaptive early warning method and system for grid cyber physical systems
  • Cascading failure across space self-adaptive early warning method and system for grid cyber physical systems
  • Cascading failure across space self-adaptive early warning method and system for grid cyber physical systems

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Embodiment Construction

[0040] In order to facilitate those of ordinary skill in the art to understand and implement the present invention, the present invention will be described in further detail below in conjunction with the accompanying drawings and embodiments. It should be understood that the implementation examples described here are only used to illustrate and explain the present invention, and are not intended to limit this invention.

[0041] please see figure 1 A method for self-adaptive early warning of cross-space cascading faults in grid cyber-physical systems (power grid cyber-physical system CFAS self-adaptive early warning method) provided by the present invention comprises the following steps:

[0042] Step 1: Construct a GCPS operation state transition model that tolerates periodic failure hazards, including 5 GCPS states and 11 state transitions and transition conditions;

[0043] please see figure 2 , the GCPS operating state transition model that tolerates periodic fault haza...

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Abstract

The invention discloses a cascading failure across space self-adaptive early warning method for grid cyber physical systems (GCPS). The method is a self-adaptive early warning method suitable for a cascading failure across space (CFAS) of the grid cyber physical systems caused by a collaborative network attack. The method comprises two parts of a GCPS operation state migration model considering the influence of CFAS stage fault hazards and a CFAS adaptive early warning process tolerating the stage fault hazards. According to the CFAS self-adaptive early warning method provided by the invention, the CFAS type implemented by an attacker and the evolution process of the attacker can be accurately judged, and a GCPS defender can be assisted to block the CFAS from continuing to evolve in time under the condition of avoiding interference network attack confusion.

Description

technical field [0001] The invention belongs to the field of grid cyber-physical systems (GridCyber-Physical Systems, GCPS) security protection, and relates to a cross-space cascading fault self-adaptive early warning method and system for a grid cyber-physical system that tolerates periodic fault hazards. Background technique [0002] Attackers can cause a series of spatio-temporal coordinated physical faults on multiple power grid physical nodes through coordinated network attacks, forming large-scale cross-space cascading faults (Cascading Failures Across Space, CFAS), resulting in reduced safety margins of power grid physical systems, and even Large-scale power outages have seriously affected the stable operation of GCPS. Accurate early warning during the evolution of CFAS can assist GCPS defenders to take effective protective measures to block or delay the continued development of CFAS and improve the ability of GCPS to resist malicious attacks. [0003] At present, th...

Claims

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Application Information

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IPC IPC(8): H04L29/06G06N5/02
CPCG06N5/022H04L63/1416H04L63/1441
Inventor 王宇飞李俊娥陆秋余陈洋荣梁佳琦
Owner WUHAN UNIV
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