计算机科学 ›› 2024, Vol. 51 ›› Issue (6A): 230700171-8.doi: 10.11896/jsjkx.230700171

• 交叉&应用 • 上一篇    下一篇

考虑多种攻击策略的国防工程电力系统网架生存性评估

李飞, 陈童   

  1. 海军工程大学管理工程与装备经济系 武汉 430033
  • 发布日期:2024-06-06
  • 通讯作者: 李飞(lifeinue@163.com)

Survivability Evaluation of National Defense Engineering Power System Grid Considering MultipleAttack Strategies

LI Fei, CHEN Tong   

  1. Department of Management Engineering and Equipment Economics,Naval University of Engineering,Wuhan 430033,China
  • Published:2024-06-06
  • About author:LI Fei,born in 1989,master,engineer.His main research interest is the survivability evaluation and optimization of power system grids in national defense engineering.

摘要: 针对战时国防工程电力系统网架技术性能评估问题,尤其是生存性指标量化评估问题,提出了国防工程电力系统网架生存性多指标综合评价方法,从抗毁性、安全性和恢复性3个维度衡量国防工程电力系统网架生存性,并考虑敌方可能采取的多种攻击策略,得到国防工程电力系统网架生存性量化指标随等效攻击波次变化曲线,可对国防工程电力系统网架的运行和改进决策提供分析方法和工具;并采用该方法对某国防工程电力系统网架进行仿真实验,实验结果表明,该方法可有效评估多种攻击策略下的国防工程电力系统网架的生存性,网架结构信息保密和网架防护等级对国防工程电力系统网架生存性有较大影响。

关键词: 国防工程, 电力系统网架, 生存性评估, 抗毁性, 安全性, 恢复性, 攻击策略

Abstract: The survivability evaluation of the national defense power grid is an important part of the military technical perfor-mance evaluation of the national defense power system.In this paper,a comprehensive multi-indicator evaluation index system for grid survivability is established by considering several possible enemy attack strategies and analyzing various characteristics of the grid.The survivability evaluation is quantified in 3 dimensions:invulnerability,security,and recoverability.The simulation analysis is performed for a specific type of power grid.Simulation experiment results show that the assessment method is effective and can provide a convenient method for grid optimization of national defense power grid.

Key words: National defense engineering, Power system grid, Survivability evaluation, Invulnerability, Security, Recoverability, Attack strategy

中图分类号: 

  • TM715
[1]HEEGAARD P E,TRIVERDI K S.Network Survivability mo-deling[J].Computer Nerworks,2009(1):1215-1234.
[2]MARK W,KOOSHA M,SAHRA S S,et al.Survivability Eva-luation and Importance Analysis For Cyber-Physical Smart Grids[J].Reliability Engineering Amp;System security,2021,210:107479.
[3]KONSTANTINOU C.Toward a Secure and Resilient All-Renewable Energy Grid for Smart Cities[J].IEEE Consumer Electronics Magazine,2022,11(1):33-41.
[4]TOMAS L,RODRIGO M,ALEJANDRO N E,et al.Identifying Optimal Portfolios of Resilient Network Investments Against Natural Hazards,With Applications to Earthquakes[J].IEEE Transactions on Power Systems,2020,35(2):1411-1421.
[5]WANG Z K,DING T,JIA W H,et al.Multi-stage stochasticprogramming for resilient integrated electricity and natural gas distribution systems against typhoon natural disaster attacks[J].Renewable and Sustainable Energy Reviews,2022,159:111784.
[6]WU X N,LIAO B R,SU Y G,et al.Multi-objective and multi-algorithm operation optimization of integrated energy system considering ground source energy and solar energy[J].International Journal of Electrical Power & Energy Systems,2023,144:108529.
[7]BAI X W,LIU D W,TAN J,et al.Dynamic Identification ofCritical Nodes and Regions in Power Grid Based on Spatio-Temporal Attribute Fusion of Voltage Trajectory[J].Energies,2019,12(5):780.
[8]TAMIRU D,JIWANJOT S,VIJAY K.Sood.Evaluation of agrid-connected reduced-component boost multilevel inverter(BMLI) topology[J].International Journal of Circuit Theory and Applications,2022,50(6):2075-2107.
[9]NABIL M,TAMAS K,MIHAI C.Communication-Free Equivalent Grid Impedance Estimation Technique for Multi-Inverter Systems[J].IEEE Transactions on Industrial Electronics,2023,70(2):1542-1552.
[10]NASSER N,FAZELI M.Buffered-Microgrid Structure for Fu-ture Power Networks;a Seamless Microgrid Control[J].IEEE Transactions on Smart Grid,2021,12(1):131-140.
[11]XU Z P,JOSE E R,LIU Y,et al.A new resilience-based component importance measure for multi-state networks[J].Reliability Engineering & System security,2020,193:106591.
[12]BAI Y S,LI SH Y,GU X P,et al.Collaborative planning of resilient backbone grids and PMU placement for power systems[J].International Journal of Electrical Power & Energy Systems,2021,131:107106.
[13]CHENG M,YAN X M,ZHOU J W.Negative-Sequence Current Compensation-Based Coordinated Control Strategy for Dual-Cage-Rotor Brushless Doubly Fed Induction Generator Under Unbalanced Grid Conditions[J].IEEE Transactions on Indus-trial Electronics,2023,70(5):4762-4773.
[14]ARIEF N P,SIGITP S,LEONARDO G,et al.Countermeasures design and analysis for occupant survivability of an armored vehicle subjected to blast load[J].Journal of Mechanical Science and Technology,2020,34(5):1893-1899.
[15]YANG L,CHEN Y,QIU Q G,et al.Risk Control of Mission-Critical Systems:Abort Decision-Makings Integrating Health and Age Conditions[J].IEEE Transactions on Industrial Informatics,2022,18(10):6887-6894.
[16]ZHAO X,CHAI X F,SUN J L,et al.Joint Optimization of Mis-sion Abort And Component Switching Policies For Multistate Warm Standby Systems[J].Reliability Engineering & System security,2021,212:107641.
[17]HE Y T.On the generalized Survivability of Aircraft and itsEvaluation Method[J].Acta Aeronautica et Astronautica Sinica,2022,43(6):185-193.
[18]JAIN N K,YADAV D S,VERMA A.Neuro-Fuzzy and Fuzzy Schemes For Cooperative Communication In Wireless Sensor Network:A Military Battlefield Scenario[J].IET Communications,2020,14(21):3761-3770.
[19]SHI Q,DING Y H,QING L,et al.Survivability Assessment for Wireless Sensor Networks[J].Journal of Central North University(Natural Science Edition),2020,41(5):418-430,436.
[20]CEN H F,YANG X Y,WANG Y T,et al.A planning method for secure power networks with microgrids based on survivability evaluation[J].Power System Protection and Control,2020,48(22):109-117.
[21]DONG F F,LIU D CH,WU J,et al.Constructing core backbone network based on survivability of power grid[J].International Journal of Electrical Power & Energy Systems,2015,67:161-167.
[22]LOU Y Y,CHEN C M,LIU X M,et al.Multi-Objective Planning Method for Backbone Grid Considering Economy and Multi-Stage Anti-Disaster Performance[J].Southern Power System Technology,2022,16(3):32-39.
[23]ABOLFAZL R,JORDAN P,RIBAL A,et al.A resilience-based recovery scheme for smart grid restoration following cyberattacks to substations[J].International Journal of Electrical Power & Energy Systems,2023,145:108610.
[24]GIAP L,SIFAT F,ANDREA M,et al.Survivable virtual network mapping with content connectivity against multiple link failures in optical metro networks[J].Journal of Optical Communications and Networking,2020,12(11):301-311.
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
No Suggested Reading articles found!